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机械制造术语中英文对照

发布时间: 2021-03-04 10:14:40

㈠ 机械行业的英文专业术语

首先youthe不知道啥来意思,但这是一个报源价.我是机械厂的.
我把拖拉机的泵的图纸附上.
我们需要拖拉机液压泵285和399,他们是和他相匹配的气缸,一个是4缸的,另一种是6缸的。我们需要你给我们报价,因为这是一个较好的订单。

㈡ 机械中英文对照文章

对压缩机单螺杆专用加工机床的介绍更新时间

摘要:本文从四个方面介绍了国内现有单螺杆加工机床的布局和结构,并把优缺点一一列举出来,由于压缩机生产厂的单螺杆加工机床和机床资料对外保密,以上介绍难免有片面、不妥之处,因此仅供单螺杆压缩机生产厂参考。
一、介绍机床的布局
压缩机排气量的大小决定了星轮、螺杆直径的大小和啮合中心距的大小,因此螺杆直径的不同,机床的主轴与刀具的回转中心也不同。为满足加工不同直径的螺杆,目前国内单螺杆加工机床的布局大致有以下几种方案。
第一种:机床的主轴与刀具回转中心的中心距为固定式
机床的主轴与刀具回转中心的中心距为固定式,中心距不可调整。加工几种直径的螺杆就需要几种中心距规格不同的机床。
优点:机床的结构简单。
缺点:每种机床只能加工一种规格的螺杆,当市场上某种规格的压缩机螺杆需要量大时,造成一台机床加工,其他机床闲置。
第二种:机床的主轴箱为可回转式
机床可根据加工螺杆直径的大小在加工前把主轴箱旋转一个角度。这种主轴箱能够回转的机床是对上述第一种机床在使用方法上的改进,与第一种机床的结构基本相同。
优点:机床的结构简单,能适应多种规格螺杆的加工。
缺点1:主轴箱旋转后主轴回转中心线与刀具回转中心线间的距离不易精确测量。
缺点2:主轴箱旋转后主轴前端面与刀具的回转中心线间的距离减少,因此加工较大直径的螺杆受到限制。
第三种:机床的主轴箱为横向移动式
主轴箱底部与底座之间布置有矩形滑动导轨,主轴箱移动的方向垂直于主轴回转中心线并垂直于刀具回转中心线。主轴箱的动力通过花键轴传给底座内的刀具进给机构。
根据加工螺杆直径的大小,在加工前用手轮丝杠进给机构把主轴箱移动到适当位置,然后用螺钉将主轴箱固定在底座上。主轴箱的移动距离可用光栅尺检测,位置误差±0.005mm。
采用主轴箱可横向移动的一个机床就可以加工直径φ95~φ385mm之间任何一种规格的螺杆。
由于加工φ95~φ385mm直径的螺杆,造成主轴前端面与刀具回转中心线间的距离差值过大,因此在实际应用时设计成两种规格的机床,一个机床加工φ95~φ205mm直径的螺杆,另一个机床加工φ180~φ385mm直径的螺杆。
优点:机床能适应多种规格螺杆的加工,每种规格的螺杆不需要配备相应的加工机床。
缺点:机床的结构和机床的装配较前二种机床复杂,机床的造价也较前二种机床高。
二、介绍机床的主轴结构
机床主轴箱的水平主轴和底座上的立式的主轴精度的高低决定了被加工螺杆的精度,同时螺杆在压缩机中以几千转的速度高速旋转时,精度较差的螺杆会使压缩机产生发热、振动、效率低、磨损快等现象。
国内目前现有的单螺杆加工机床主轴结构大致有以下两种方案。
第一种:轴承径向游隙不可调的主轴结构
主轴前轴承采用1个双列圆柱滚子轴承和两个推力球轴承组合,该主轴使用双列圆柱滚子轴承承受径向切削力,使用两个推力球轴承承受轴向切削力。
主轴后轴承一般采用1个双列圆柱滚子轴承或采用1个向心球轴承。
这种主轴结构的优点:主轴的加工和装配简单,造价较低。
缺点1:由于主轴轴承的径向游隙不可调整,所以主轴精度较差。虽然可以利用轴承的内径和轴径的过盈配合来消除轴承的径向游隙,但每个轴承的内径和径向游隙不是一个固定值,因此设计和加工时很难给准轴径与轴承内径的配合公差。
缺点2:在市场上很难买到国产或进口的C、D级或P4、P5级的推力球轴承,机床生产厂常用普通级轴承替代使用,此举也影响了主轴精度的提高。
轴承径向游隙不可调的主轴结构适用于一般精度的普通机床,不适用于对主轴精度要求较高的机床。
第二种:轴承径向游隙可调的主轴结构
主轴前轴承采用一个P4级圆锥孔的双列圆柱滚子轴承和1个P4级的双列向心推力球轴承组合。该主轴使用圆锥孔的双列圆柱滚子轴承承受径向切削力,使用双列向心推力球轴承承受轴向切削力和部分径向切削力。
主轴后轴承一般采用1个P5级圆锥孔的双列圆柱滚子轴承。
圆锥孔双列圆柱滚子轴承的内圈和配合轴径均为1:12圆锥,用圆螺母锁紧轴承则使轴承在轴向产生一个位移并使轴承的内圈膨胀,从而达到减少或消除轴承径向游隙的目的。
这种主轴结构的优点:主轴精度较高。在主轴前端面φ230mm直径上测量主轴的端面跳动值为0.010mm。在主轴前端φ230mm外圆上测量主轴的径向跳动值为0.005mm。第二种结构的主轴精度比第一种主轴精度提高50%左右。
这种主轴结构的缺点:
主轴的加工工艺较复杂,主轴的装配也需要有经验的工人操作才能使主轴精度达到理想数值。
三、刀具进给深度的控制
不同直径的螺杆需要加工螺旋槽的深度也不同,螺旋槽的深度从几十毫米到一百多毫米不等,刀具进给机构大约需要旋转进刀几千圈才能完成一个螺杆零件的加工。
由于刀具进给机构在刀具旋转的同时还要完成进刀动作,所以一些在普通机床上常用的机械、电气控制切深的方法都不适用于单螺杆加工机床。
单螺杆加工机床的刀具进给机构采用以下不同的方法都可以达到控制进刀深度的目的。
第一种:摩擦离合器和电气开关控制刀具进给深度
它的控制原理是刀具切深增大时刀具进给机构的负载扭距增大,使刀具进给机构传动链中的摩擦离合器打滑,一个机械连杆机构触发电气开关并发出声、光信号提示操作者,此时操作者人工操作断开刀具进给机构的动力。
这种控制方法的优点是:控制方法简单及零件加工和操作不受突然断电的影响。
缺点是:加工不同直径的螺杆需要调整摩擦离合器压紧碟簧的预紧力。
由于每个螺杆材质的密度、硬度存在细微差异及刀具锋利程度也存在差异,因此使这种控制方法的精度不太准确,可能导致螺杆螺旋槽的深度公差过大。
第二种:用电磁离合器、编码器组合控制刀具进给深度
刀具进给系统中,装有电磁离合器及一对用于检测刀具转动圈数的测速齿轮和一个编码器。

结论:本文从四个方面介绍了国内现有单螺杆加工机床的布局和结构,并把优缺点一一列举出来,由于压缩机生产厂的单螺杆加工机床和机床资料对外保密,以上介绍难免有片面、不妥之处,因此仅供单螺杆压缩机生产厂参考。

Dedicated to the single screw compressor machine updated the Introction

Abstract: This paper describes four areas from the existing single-screw machine layout and structure, and put out the advantages and disadvantages of the list, because of the compressor plant single-screw machine tools and machine tool external Security information, the above introction there is inevitably one-sided and wrong, and are therefore single-screw compressor for the proction of reference works.
First, introce the layout of machine tools
Decide the size of the compressor displacement of the stars round, screw diameter, mesh size and the size of the center distance, so different in diameter screw, machine tool spindle and the rotary center are also different. To meet the processing of different diameter screw, single screw Currently the layout of machine tools in general there are several options.
The first is: machine tool rotary tool spindle center and the center distance for the fixed
Machine tool rotary tool spindle center and the center distance for the fixed, can not adjust the center distance. Processing of several of the screw diameter on the center distance required several different specifications of the machine.
Advantages: simple structure of the machine.
Disadvantage: each machine can only process a specification of the screw, when the market on a certain specification requirements when the screw compressor, resulting in a machine, other machine idle.
The second: the machine tool spindle box for rotary
Processing screw machine according to the size of the diameter at the processing before a point of rotating spindle box. Spindle box that the machine can turn on a machine at the above-mentioned article on the use of the improvements, with the first structure of a machine tool is basically the same.
Advantages: the structure of machine tool easy to adapt to a variety of specifications of the processing screw.
One disadvantage: after the rotating spindle box and the tool spindle turning center line distance between the center line of accurate measurement difficult.
2 disadvantage: after the rotating spindle spindle box and the front surface of the rotary cutter centerline distance between the rection of the larger diameter of the screw processing is limited.
The third: the machine tool spindle box for horizontal mobile
Box at the bottom of the spindle and the base there is arranged between the rectangular sliding rail, spindle box perpendicular to the direction of movement of spindle centerline and perpendicular to the centerline of the tool rotation. Through the power of the spindle box spline shaft to the base of the tool feed mechanism.
Screw diameter, according to the size of the processing in the processing of the previous round by hand to the body put into the screw spindle box moved to the appropriate location, and then screw the spindle box on a fixed base. Spindle box available from the mobile Grating detection, position error ± 0.005mm.
Horizontal spindle box can be used as a mobile machine can process diameter φ95 ~ φ385mm any kind between the screw specifications.
Φ95 ~ φ385mm processing because of the diameter of the screw, causing the front surface and the tool spindle rotation the distance between the center line of the margin is too large, the actual application in the design specifications of the machine into two, a φ95 ~ φ205mm machine screw diameter Another φ180 ~ φ385mm machine screw diameter.
Advantages: a variety of tools to adapt to the specifications of the processing screw, each screw specifications need not be provided with the appropriate machine tools.
Disadvantage: the structure of machine tools and machine tool assembly of the two kinds of more complex machine tools, machine tools than the cost of two kinds of machine tools before the high.
Second, introce the structure of machine tool spindle
The level of machine tool spindle box on the main axis and the base of the vertical axis determines the degree of precision was the precision screw machining, at the same time screw compressor at a speed of thousands of high-speed rotary switch, the accuracy of the screw will be less so that the compressor have a fever, vibration, low efficiency, such as wear and tear situation quickly.
Currently available single-screw machine spindle structure of the program has the following two.
The first is: bearing radial clearance is not adjustable spindle structure
Before spindle bearing out the use of one pairs of cylindrical roller bearings and thrust ball bearing combination of both, the main use of double row cylindrical roller bearings under radial cutting force, the use of two ball bearings to bear axial thrust cutting force.
After the general adoption of the spindle bearings out one pairs of cylindrical roller bearings or a ball bearing to the heart.
Main advantages of this structure: the main axis of the processing and assembly of simple, low cost.
One disadvantage: because the main axis of the radial bearing clearance can not be adjusted so poor precision spindle. Although the use of bearings and shaft diameter fit to eliminate the radial bearing clearance, but each bearing diameter and radial clearance is not a fixed value, so it is difficult to design and processing to the quasi-axial-radial and bearings with bore tolerances.
2 disadvantage: it is very difficult to buy in the market of domestically proced or imported, C, D or P4, P5 class thrust ball bearings, machine tool manufacturing plant commonly used alternative to the use of ordinary class bearings, which also affected the accuracy of the enhance spindle.
Bearing radial clearance adjustable spindle structure do not apply to the general accuracy of the general machine tools, does not apply to require a higher accuracy of the spindle of machine tools.
The second: the radial bearing clearance adjustable spindle structure
Before the adoption of a spindle bearing P4 class of double row tapered hole cylindrical roller bearings and a P4-class double row ball bearing thrust to the combination of heart. The use of the spindle hole of the double row tapered cylindrical roller bearings under radial cutting force, the use of double row ball bearing thrust to the heart to bear part of the axial and radial cutting force cutting force.
Spindle bearings generally used after a P5 class of double row tapered hole cylindrical roller bearings.
Double row tapered hole cylindrical roller bearings with inner ring and shaft are tapered 1:12, bearing lock nut with a round led a bearing in the axial displacement of the inner ring bearings and expansion, to rece or eliminate Bearing radial clearance purposes.
Main structure of such advantages: high precision spindle. At the front spindle diameter φ230mm noodle on the end measuring spindle Beat value of 0.010mm. Φ230mm cylindrical spindle at the front end on the radial axis measurement value of Beat 0.005mm. The second structure of the spindle of a precision spindle accuracy than the first about 50% improve.
Main disadvantage of this structure:
The principal axis of the more complicated process, the spindle assembly also has the experience necessary to make the workers to operate the spindle achieve the desired numerical accuracy.
Third, the depth of the tool feed control
Required different processing screw diameter spiral groove depth is also different from the depth of the spiral groove mm from dozens to more than 100 millimeters range around the tool into the institutions required to feed the thousands of ring rotation in order to achieve a screw machining .
Feed because of the tool in the tool rotating at the same time achieve motion feed, so on a number of general machine tools used in mechanical, electrical control method of depth of cut does not apply to single-screw machine.
Single screw machine tools give agencies into the following different methods can be feed to control the depth of purpose.
The first is: friction clutch and electrical switches to control the depth of the tool feed
Its principle is to control depth of cut increases the tool cutter feed mechanism increases the load torque so that the tool feeding mechanism of the friction transmission chain slipping clutch, a mechanical linkage concurrent silent trigger electrical switches, optical signal prompted operator, when manual operator to disconnect the tool into the power sector.
The advantages of this control method are: the control method is simple and spare parts processing and operational power from the impact of a sudden.
Disadvantage are: processing of different diameter screw to adjust the clutch friction discs pressed the preload spring.
Material because of the density of each screw, and the hardness of the existence of subtle differences in the degree of cutting tools sharp differences exist, thus the accuracy of this control method was not too accurate, may lead to screw spiral groove depth tolerance is too large.
The second: use of an electromagnetic clutch, encoder control tool into the mix to the depth of
Tool feed system, equipped with electromagnetic clutch and a tool for detecting the number of rotating ring gear and a gun encoder.
It is a tool of control principle刚接触hand screw surface encoder to start counting switch, then start counting counting device, when the rotary tool to pre-set number of laps when the cutting depth is reached, the electromagnetic clutch automatic off open to the power tool into the concurrent silent, optical signal parts prompted the operator has finished processing.
The detection device through the digital display shows the number of feed circles or feed. Torn off and the electromagnetic clutch, the tool does not only into the rotation with the vertical shaft to the sport.
The advantages of this control method are: the depth of the spiral groove screw tolerance control more accurate, because of several significant table shows the depth of processing, or want a few laps and the depth of processing or circle the number of operations is also very intuitive and user-friendly.
Disadvantage are: electrical control of machine tools at the same time more complex parts of this control method at the processing plant, if a sudden power failure, the prior data set will be lost.
If you add in the electrical control of the battery to power at the early-dimensional detection devices to maintain the job, the problem can be resolved.

Four, the control gear drive space
Single screw machine screw in the processing, e to the spiral groove in the rotary tool and the workpiece rotation to complete the synthesis process. Just cut into the workpiece when the tool in the tangential direction of rotation has been going on a greater resistance knife, cutting tool at the workpiece to be cut when the role of the spiral groove, the tool in the tangential direction of rotation has been going up against a smaller knife and even by the spiral groove thrust workpiece.
Because there is a box-hole processing machine tool, gear and other processing error, the tool axis of rotation of the drive space is too large, large amount of so-called open.
Detect drive way too much space is a fixed power input shaft and output shaft rotation shaking, in the case of the transmission structure of conventional design and manufacture of machine tools, the transmission output shaft angle space at more than ten degrees to the dozens of degrees. Transmission gap caused by too large spiral screw groove surface then there is obvious marks, thus affecting the machining accuracy of the screw.
Upon completion of the assembly machine tool axis of rotation of the drive space is too large, in fact are subject to various errors gear, creating a backlash of the gear is too large.
Machine tools in the mechanical transmission gear are used regardless of the accuracy of a few of the class, the designers take into account the gear manufacturing error, processing error box center distance, temperature, lubricating oil film thickness, the assembly error and other factors, machine design must ensure that transmission gear A certain amount of backlash, backlash decide the size of the gear tooth thickness tolerance size.
Single-screw machine has the Main Drive from other machine tool structure specificity. In order to rece transmission or reasonable gap single-screw machine tools currently used by the following two ways.
The first is: the installation at the output shaft brake
Tool at the output shaft rotating the location of cylindrical symmetry with radial brake, brake stand up to the tool front-end of the cylindrical rotary output shaft, brake for spring preload.
The working principle of the brake is generated by the friction brake to increase the output shaft damping, recing the sensitivity of the rotation axis.
Are: brake and easy does not change the structure of the original machine tool structure, the method of indirect rection to achieve the purpose of drive space, in practical applications there is a certain effect.
One disadvantage: the pre-spring brake tool because of the cylindrical output shaft to exert a greater radial force, in fact increases the load machine torque, resulting in increased motor power at the same time gears, bearings to accelerate wear and tear.
Disadvantage 2: pre-spring brake because of the output shaft of the cylindrical tool to exert a greater radial force on the possible geometry of the tool output shaft a negative impact on accuracy.

Conclusion: This article describes four areas from existing single-screw machine layout and structure, and put out the advantages and disadvantages of the list, because of the compressor plant single-screw machine tools and machine tool external Security information, the above introction there is inevitably one-sided and wrong, and are therefore single-screw compressor for the proction of reference works.

㈢ CNC机加工专业术语中英文对照

你可以在网上 找一本数控专业英语看看 有哪些词语的解释 但是数控机床系统里面 经常有缩写 还要看说明书 纯手打 望采纳 你是那种系统 法兰克的话 我有说明书 要的话发给你

㈣ 求机械专业术语的解释及英文翻译

1)电化学腐蚀 electrochemical corrosion
电化学腐蚀就是金属和电解质组成两个电极,组成腐蚀原电池。
2)车架 automotive chassis
车架是跨接在汽车前后车桥上的框架式结构,俗称大梁,是汽车的基体。
3)悬架 suspension
悬架是汽车的车架(或承载式车身)与车桥(或车轮)之间的一切传力连接装置的总称,其作用是传递作用在车轮和车架之间的力和力扭,并且缓冲由不平路面传给车架或车身的冲击力,并减少由此引起的震动,以保证汽车能平顺地行驶。
4) 转向器 redirector
转向器的作用是把来自转向盘的转向力矩和转向角进行适当的变换(主要是减速增矩),再输出给转向拉杆机构,从而使汽车转向,所以转向器本质上就是减速传动装置。
5)变速器 speed changer
变速器是用来改变来自发动机的转速和转矩的机构,它能固定或分档改变输出轴和输入轴传动比,又称变速箱。
6)板料冲压 sheet metal parts
板料冲压是利用冲模,使板料产生分离或变形的加工方法。因多数情况下板料无须加热,故称冷冲压,又简称冷冲或冲压。
7)孔加工 spot facing machining
孔加工一般分为钻孔,铰孔,扩孔,镗孔,拉孔。 机床上对孔的加工可以用钻头、镗刀、扩孔钻头、铰刀、拉刀进行钻孔、镗孔、扩孔、铰孔和拉孔。
8) 刚度 rigidity
刚度是指材料或结构在受力时抵抗弹性变形的能力。是材料或结构弹性变形难易程度的表征。
9)标准件 standard component
标准件是指结构、尺寸、画法、标记等各个方面已经完全标准化,并由专业厂生产的常用的零(部)件,如螺纹件、键、销、滚动轴承等等。
10) 脆性材料 brittleness material
在外力作用下(如拉伸、 冲击等)仅产生很小的变形即破坏断裂的材料。脆性材料在外力作用下(如拉伸、 冲击等)仅产生很小的变形即破坏断裂的性质。
11)垫圈 washer
指垫在被连接件与螺母之间的零件。一般为扁平形的金属环,用来保护被连接件的表面不受螺母擦伤,分散螺母对被连接件的压力。
12) 塑性变形 plastic distortion
塑性变形是物质-包括流体及固体在一定的条件下,在外力的作用下产生形变,当施加的外力撤除或消失后该物体不能恢复原状的一种物理现象。

㈤ 请教机加工中专业词汇的对应英文词(组)

01.下料:
ing
02.落料:
blanking
03.倒角:
chamfer angle
04.工序:
process
05.挤压成型:
extrusion forming
06.校准/校正:
calibration,adjustment,true up
07.量产:
mass-proction
08.异常:
exceptional
09.恒温室:
thermostatic chamber
10.百分表:
dial test indicator
11.高度尺:
tongue
12.温差:
difference in temperature
13.封样:
sealed sample
14.对称度:
degree of symmetry
15.磨损:
abrasion
16.机械传动:
mechanical transmission
17.刀具:
tool bit, cutter
18.卡具:
chucking applliance
19.班次:
number of runs
20.内孔:
endoporus
21.弹性夹头:
collet
22.内孔车刀:
endooprus lathe tool
23.三爪卡盘:
spiral chuck
24.切断车刀:
parting tool
25.数值:
numeral value
26.返修:
rework, repair
27.报废(v+n):
scrap,worthlessness(不确定是否正确)
28.自动送料:
automatic feed
29.磨损:
wear and tear
30.不到位:
incorrect position(不确定是否正确)
31.参数:
parameters
32.超差:
oversize
33.合格品:
quality proct
34.不合格品:
reject,disqualification proct
35.偏小的:
less sized(自创!!)
36.偏大的:
more sized(自创)
37.车孔:
lathe hole
38.内孔割槽车刀加工:
processing of endoporus lathe tool(不确定)
39.倾角:
obliquity
40.交汇角:
Y-shaped junction angel
41.装刀:
cutter assembly
42.万能角度尺:
universal protractor
43.角度块:
angular gauge block
44.外圈:
housing washer
45.垫刀:
shim
46.压力机:
press
47.冲模:
die
48.调试:
debug
49.压合缝:
pressing joint(自编)
50.超宽:
super wide
51.返工:
rework, repair
52.达标:
standard quality
53.超标:
over proof
54.内顶尖:
inside finial
55.车削:
turning
56.外圆车刀:
external turning tool
57.外圆尺寸:
dimension of external
58.到位:
in place , in position
59.游隙:
windage
60.偏摆仪:
beating instrument(自创)
61.端面车刀:
head facing tool
62.操作控制:
operating control
63.无心磨:
centerless grinding
64.圆度:
circular degree, circularity
65.磨削:
grinding
66.外圆:
excircle
67.倒角量:
measurement of chamfer angle
68.半径值:
radius value
69.清洗:
clean
70.过滤:
screening
71.超声波清洗机:
ultrasonic cleaner
72.防锈油:
pickling oil, rust-preventative oil
73.杂物:
sundries
74.清洗:
cleaning
75.外径:
outside diameter
76.内槽:
internal groove
77.磨削外圆(名词):
external grinding
78.车内槽(名词):
lathe internal groove
79.成品入库(名词):
ready proct storing
80.车削平面(名词):
lathe surface
81.车精外圆(名词):
lathe external circular
82.车削倒角(名词):
turning obliquity
83.成品:
finished procts

㈥ 有关机械的中英文对照文章(最好6000字左右的)和一篇英文翻译成中文的文章(英汉对照的)

电磁离合器

对压缩机单螺杆专用加工机床的介绍更新时间

摘要:本文从四个方面介绍了国内现有单螺杆加工机床的布局和结构,并把优缺点一一列举出来,由于压缩机生产厂的单螺杆加工机床和机床资料对外保密,以上介绍难免有片面、不妥之处,因此仅供单螺杆压缩机生产厂参考。
一、介绍机床的布局
压缩机排气量的大小决定了星轮、螺杆直径的大小和啮合中心距的大小,因此螺杆直径的不同,机床的主轴与刀具的回转中心也不同。为满足加工不同直径的螺杆,目前国内单螺杆加工机床的布局大致有以下几种方案。
第一种:机床的主轴与刀具回转中心的中心距为固定式
机床的主轴与刀具回转中心的中心距为固定式,中心距不可调整。加工几种直径的螺杆就需要几种中心距规格不同的机床。
优点:机床的结构简单。
缺点:每种机床只能加工一种规格的螺杆,当市场上某种规格的压缩机螺杆需要量大时,造成一台机床加工,其他机床闲置。
第二种:机床的主轴箱为可回转式
机床可根据加工螺杆直径的大小在加工前把主轴箱旋转一个角度。这种主轴箱能够回转的机床是对上述第一种机床在使用方法上的改进,与第一种机床的结构基本相同。
优点:机床的结构简单,能适应多种规格螺杆的加工。
缺点1:主轴箱旋转后主轴回转中心线与刀具回转中心线间的距离不易精确测量。
缺点2:主轴箱旋转后主轴前端面与刀具的回转中心线间的距离减少,因此加工较大直径的螺杆受到限制。
第三种:机床的主轴箱为横向移动式
主轴箱底部与底座之间布置有矩形滑动导轨,主轴箱移动的方向垂直于主轴回转中心线并垂直于刀具回转中心线。主轴箱的动力通过花键轴传给底座内的刀具进给机构。
根据加工螺杆直径的大小,在加工前用手轮丝杠进给机构把主轴箱移动到适当位置,然后用螺钉将主轴箱固定在底座上。主轴箱的移动距离可用光栅尺检测,位置误差±0.005mm。
采用主轴箱可横向移动的一个机床就可以加工直径φ95~φ385mm之间任何一种规格的螺杆。
由于加工φ95~φ385mm直径的螺杆,造成主轴前端面与刀具回转中心线间的距离差值过大,因此在实际应用时设计成两种规格的机床,一个机床加工φ95~φ205mm直径的螺杆,另一个机床加工φ180~φ385mm直径的螺杆。
优点:机床能适应多种规格螺杆的加工,每种规格的螺杆不需要配备相应的加工机床。
缺点:机床的结构和机床的装配较前二种机床复杂,机床的造价也较前二种机床高。
二、介绍机床的主轴结构
机床主轴箱的水平主轴和底座上的立式的主轴精度的高低决定了被加工螺杆的精度,同时螺杆在压缩机中以几千转的速度高速旋转时,精度较差的螺杆会使压缩机产生发热、振动、效率低、磨损快等现象。
国内目前现有的单螺杆加工机床主轴结构大致有以下两种方案。
第一种:轴承径向游隙不可调的主轴结构
主轴前轴承采用1个双列圆柱滚子轴承和两个推力球轴承组合,该主轴使用双列圆柱滚子轴承承受径向切削力,使用两个推力球轴承承受轴向切削力。
主轴后轴承一般采用1个双列圆柱滚子轴承或采用1个向心球轴承。
这种主轴结构的优点:主轴的加工和装配简单,造价较低。
缺点1:由于主轴轴承的径向游隙不可调整,所以主轴精度较差。虽然可以利用轴承的内径和轴径的过盈配合来消除轴承的径向游隙,但每个轴承的内径和径向游隙不是一个固定值,因此设计和加工时很难给准轴径与轴承内径的配合公差。
缺点2:在市场上很难买到国产或进口的C、D级或P4、P5级的推力球轴承,机床生产厂常用普通级轴承替代使用,此举也影响了主轴精度的提高。
轴承径向游隙不可调的主轴结构适用于一般精度的普通机床,不适用于对主轴精度要求较高的机床。
第二种:轴承径向游隙可调的主轴结构
主轴前轴承采用一个P4级圆锥孔的双列圆柱滚子轴承和1个P4级的双列向心推力球轴承组合。该主轴使用圆锥孔的双列圆柱滚子轴承承受径向切削力,使用双列向心推力球轴承承受轴向切削力和部分径向切削力。
主轴后轴承一般采用1个P5级圆锥孔的双列圆柱滚子轴承。
圆锥孔双列圆柱滚子轴承的内圈和配合轴径均为1:12圆锥,用圆螺母锁紧轴承则使轴承在轴向产生一个位移并使轴承的内圈膨胀,从而达到减少或消除轴承径向游隙的目的。
这种主轴结构的优点:主轴精度较高。在主轴前端面φ230mm直径上测量主轴的端面跳动值为0.010mm。在主轴前端φ230mm外圆上测量主轴的径向跳动值为0.005mm。第二种结构的主轴精度比第一种主轴精度提高50%左右。
这种主轴结构的缺点:
主轴的加工工艺较复杂,主轴的装配也需要有经验的工人操作才能使主轴精度达到理想数值。
三、刀具进给深度的控制
不同直径的螺杆需要加工螺旋槽的深度也不同,螺旋槽的深度从几十毫米到一百多毫米不等,刀具进给机构大约需要旋转进刀几千圈才能完成一个螺杆零件的加工。
由于刀具进给机构在刀具旋转的同时还要完成进刀动作,所以一些在普通机床上常用的机械、电气控制切深的方法都不适用于单螺杆加工机床。
单螺杆加工机床的刀具进给机构采用以下不同的方法都可以达到控制进刀深度的目的。
第一种:摩擦离合器和电气开关控制刀具进给深度
它的控制原理是刀具切深增大时刀具进给机构的负载扭距增大,使刀具进给机构传动链中的摩擦离合器打滑,一个机械连杆机构触发电气开关并发出声、光信号提示操作者,此时操作者人工操作断开刀具进给机构的动力。
这种控制方法的优点是:控制方法简单及零件加工和操作不受突然断电的影响。
缺点是:加工不同直径的螺杆需要调整摩擦离合器压紧碟簧的预紧力。
由于每个螺杆材质的密度、硬度存在细微差异及刀具锋利程度也存在差异,因此使这种控制方法的精度不太准确,可能导致螺杆螺旋槽的深度公差过大。
第二种:用电磁离合器、编码器组合控制刀具进给深度
刀具进给系统中,装有电磁离合器及一对用于检测刀具转动圈数的测速齿轮和一个编码器。

结论:本文从四个方面介绍了国内现有单螺杆加工机床的布局和结构,并把优缺点一一列举出来,由于压缩机生产厂的单螺杆加工机床和机床资料对外保密,以上介绍难免有片面、不妥之处,因此仅供单螺杆压缩机生产厂参考。

Dedicated to the single screw compressor machine updated the Introction

Abstract: This paper describes four areas from the existing single-screw machine layout and structure, and put out the advantages and disadvantages of the list, because of the compressor plant single-screw machine tools and machine tool external Security information, the above introction there is inevitably one-sided and wrong, and are therefore single-screw compressor for the proction of reference works.
First, introce the layout of machine tools
Decide the size of the compressor displacement of the stars round, screw diameter, mesh size and the size of the center distance, so different in diameter screw, machine tool spindle and the rotary center are also different. To meet the processing of different diameter screw, single screw Currently the layout of machine tools in general there are several options.
The first is: machine tool rotary tool spindle center and the center distance for the fixed
Machine tool rotary tool spindle center and the center distance for the fixed, can not adjust the center distance. Processing of several of the screw diameter on the center distance required several different specifications of the machine.
Advantages: simple structure of the machine.
Disadvantage: each machine can only process a specification of the screw, when the market on a certain specification requirements when the screw compressor, resulting in a machine, other machine idle.
The second: the machine tool spindle box for rotary
Processing screw machine according to the size of the diameter at the processing before a point of rotating spindle box. Spindle box that the machine can turn on a machine at the above-mentioned article on the use of the improvements, with the first structure of a machine tool is basically the same.
Advantages: the structure of machine tool easy to adapt to a variety of specifications of the processing screw.
One disadvantage: after the rotating spindle box and the tool spindle turning center line distance between the center line of accurate measurement difficult.
2 disadvantage: after the rotating spindle spindle box and the front surface of the rotary cutter centerline distance between the rection of the larger diameter of the screw processing is limited.
The third: the machine tool spindle box for horizontal mobile
Box at the bottom of the spindle and the base there is arranged between the rectangular sliding rail, spindle box perpendicular to the direction of movement of spindle centerline and perpendicular to the centerline of the tool rotation. Through the power of the spindle box spline shaft to the base of the tool feed mechanism.
Screw diameter, according to the size of the processing in the processing of the previous round by hand to the body put into the screw spindle box moved to the appropriate location, and then screw the spindle box on a fixed base. Spindle box available from the mobile Grating detection, position error ± 0.005mm.
Horizontal spindle box can be used as a mobile machine can process diameter φ95 ~ φ385mm any kind between the screw specifications.
Φ95 ~ φ385mm processing because of the diameter of the screw, causing the front surface and the tool spindle rotation the distance between the center line of the margin is too large, the actual application in the design specifications of the machine into two, a φ95 ~ φ205mm machine screw diameter Another φ180 ~ φ385mm machine screw diameter.
Advantages: a variety of tools to adapt to the specifications of the processing screw, each screw specifications need not be provided with the appropriate machine tools.
Disadvantage: the structure of machine tools and machine tool assembly of the two kinds of more complex machine tools, machine tools than the cost of two kinds of machine tools before the high.
Second, introce the structure of machine tool spindle
The level of machine tool spindle box on the main axis and the base of the vertical axis determines the degree of precision was the precision screw machining, at the same time screw compressor at a speed of thousands of high-speed rotary switch, the accuracy of the screw will be less so that the compressor have a fever, vibration, low efficiency, such as wear and tear situation quickly.
Currently available single-screw machine spindle structure of the program has the following two.
The first is: bearing radial clearance is not adjustable spindle structure
Before spindle bearing out the use of one pairs of cylindrical roller bearings and thrust ball bearing combination of both, the main use of double row cylindrical roller bearings under radial cutting force, the use of two ball bearings to bear axial thrust cutting force.
After the general adoption of the spindle bearings out one pairs of cylindrical roller bearings or a ball bearing to the heart.
Main advantages of this structure: the main axis of the processing and assembly of simple, low cost.
One disadvantage: because the main axis of the radial bearing clearance can not be adjusted so poor precision spindle. Although the use of bearings and shaft diameter fit to eliminate the radial bearing clearance, but each bearing diameter and radial clearance is not a fixed value, so it is difficult to design and processing to the quasi-axial-radial and bearings with bore tolerances.
2 disadvantage: it is very difficult to buy in the market of domestically proced or imported, C, D or P4, P5 class thrust ball bearings, machine tool manufacturing plant commonly used alternative to the use of ordinary class bearings, which also affected the accuracy of the enhance spindle.
Bearing radial clearance adjustable spindle structure do not apply to the general accuracy of the general machine tools, does not apply to require a higher accuracy of the spindle of machine tools.
The second: the radial bearing clearance adjustable spindle structure
Before the adoption of a spindle bearing P4 class of double row tapered hole cylindrical roller bearings and a P4-class double row ball bearing thrust to the combination of heart. The use of the spindle hole of the double row tapered cylindrical roller bearings under radial cutting force, the use of double row ball bearing thrust to the heart to bear part of the axial and radial cutting force cutting force.
Spindle bearings generally used after a P5 class of double row tapered hole cylindrical roller bearings.
Double row tapered hole cylindrical roller bearings with inner ring and shaft are tapered 1:12, bearing lock nut with a round led a bearing in the axial displacement of the inner ring bearings and expansion, to rece or eliminate Bearing radial clearance purposes.
Main structure of such advantages: high precision spindle. At the front spindle diameter φ230mm noodle on the end measuring spindle Beat value of 0.010mm. Φ230mm cylindrical spindle at the front end on the radial axis measurement value of Beat 0.005mm. The second structure of the spindle of a precision spindle accuracy than the first about 50% improve.
Main disadvantage of this structure:
The principal axis of the more complicated process, the spindle assembly also has the experience necessary to make the workers to operate the spindle achieve the desired numerical accuracy.
Third, the depth of the tool feed control
Required different processing screw diameter spiral groove depth is also different from the depth of the spiral groove mm from dozens to more than 100 millimeters range around the tool into the institutions required to feed the thousands of ring rotation in order to achieve a screw machining .
Feed because of the tool in the tool rotating at the same time achieve motion feed, so on a number of general machine tools used in mechanical, electrical control method of depth of cut does not apply to single-screw machine.
Single screw machine tools give agencies into the following different methods can be feed to control the depth of purpose.
The first is: friction clutch and electrical switches to control the depth of the tool feed
Its principle is to control depth of cut increases the tool cutter feed mechanism increases the load torque so that the tool feeding mechanism of the friction transmission chain slipping clutch, a mechanical linkage concurrent silent trigger electrical switches, optical signal prompted operator, when manual operator to disconnect the tool into the power sector.
The advantages of this control method are: the control method is simple and spare parts processing and operational power from the impact of a sudden.
Disadvantage are: processing of different diameter screw to adjust the clutch friction discs pressed the preload spring.
Material because of the density of each screw, and the hardness of the existence of subtle differences in the degree of cutting tools sharp differences exist, thus the accuracy of this control method was not too accurate, may lead to screw spiral groove depth tolerance is too large.
The second: use of an electromagnetic clutch, encoder control tool into the mix to the depth of
Tool feed system, equipped with electromagnetic clutch and a tool for detecting the number of rotating ring gear and a gun encoder.
It is a tool of control principle刚接触hand screw surface encoder to start counting switch, then start counting counting device, when the rotary tool to pre-set number of laps when the cutting depth is reached, the electromagnetic clutch automatic off open to the power tool into the concurrent silent, optical signal parts prompted the operator has finished processing.
The detection device through the digital display shows the number of feed circles or feed. Torn off and the electromagnetic clutch, the tool does not only into the rotation with the vertical shaft to the sport.
The advantages of this control method are: the depth of the spiral groove screw tolerance control more accurate, because of several significant table shows the depth of processing, or want a few laps and the depth of processing or circle the number of operations is also very intuitive and user-friendly.
Disadvantage are: electrical control of machine tools at the same time more complex parts of this control method at the processing plant, if a sudden power failure, the prior data set will be lost.
If you add in the electrical control of the battery to power at the early-dimensional detection devices to maintain the job, the problem can be resolved.

Four, the control gear drive space
Single screw machine screw in the processing, e to the spiral groove in the rotary tool and the workpiece rotation to complete the synthesis process. Just cut into the workpiece when the tool in the tangential direction of rotation has been going on a greater resistance knife, cutting tool at the workpiece to be cut when the role of the spiral groove, the tool in the tangential direction of rotation has been going up against a smaller knife and even by the spiral groove thrust workpiece.
Because there is a box-hole processing machine tool, gear and other processing error, the tool axis of rotation of the drive space is too large, large amount of so-called open.
Detect drive way too much space is a fixed power input shaft and output shaft rotation shaking, in the case of the transmission structure of conventional design and manufacture of machine tools, the transmission output shaft angle space at more than ten degrees to the dozens of degrees. Transmission gap caused by too large spiral screw groove surface then there is obvious marks, thus affecting the machining accuracy of the screw.
Upon completion of the assembly machine tool axis of rotation of the drive space is too large, in fact are subject to various errors gear, creating a backlash of the gear is too large.
Machine tools in the mechanical transmission gear are used regardless of the accuracy of a few of the class, the designers take into account the gear manufacturing error, processing error box center distance, temperature, lubricating oil film thickness, the assembly error and other factors, machine design must ensure that transmission gear A certain amount of backlash, backlash decide the size of the gear tooth thickness tolerance size.
Single-screw machine has the Main Drive from other machine tool structure specificity. In order to rece transmission or reasonable gap single-screw machine tools currently used by the following two ways.
The first is: the installation at the output shaft brake
Tool at the output shaft rotating the location of cylindrical symmetry with radial brake, brake stand up to the tool front-end of the cylindrical rotary output shaft, brake for spring preload.
The working principle of the brake is generated by the friction brake to increase the output shaft damping, recing the sensitivity of the rotation axis.
Are: brake and easy does not change the structure of the original machine tool structure, the method of indirect rection to achieve the purpose of drive space, in practical applications there is a certain effect.
One disadvantage: the pre-spring brake tool because of the cylindrical output shaft to exert a greater radial force, in fact increases the load machine torque, resulting in increased motor power at the same time gears, bearings to accelerate wear and tear.
Disadvantage 2: pre-spring brake because of the output shaft of the cylindrical tool to exert a greater radial force on the possible geometry of the tool output shaft a negative impact on accuracy.

Conclusion: This article describes four areas from existing single-screw machine layout and structure, and put out the advantages and disadvantages of the list, because of the compressor plant single-screw machine tools and machine tool external Security information, the above introction there is inevitably one-sided and wrong, and are therefore single-screw compressor for the proction of reference works.

㈦ 关于机械制造方面的专业术语(中英文对照表)!

英语6级,仅供参考,点个采纳,嘻嘻: 联结link 传动drive/transmission 轴shaft 弹性elasticity 频率特性 frequency characteristic 误差error 响应response 定位allocation 机床夹具 jig 动力学 dynamic 运动学 kinematic 静力学 static 分析力学 analyse mechanics 拉伸pulling 压缩hitting 剪切shear 扭转twist 弯曲应力 bending stress 强度intensity 三相交流电 three-phase AC 磁路magnetic circles 变压器 transformer 异步电动机 asynchronous motor 几何形状 geometrical 精度precision 正弦形的 sinusoid 交流电路 AC circuit 机械加工余量 machining allowance 变形力 deforming force 变形deformation 应力stress 硬度rigidity 热处理 heat treatment 退火anneal 正火normalizing 脱碳decarburization 渗碳carburization 电路circuit 半导体元件 semiconctor element 反馈feedback 发生器 generator 直流电源 DC electrical source 门电路 gate circuit 逻辑代数 logic algebra 外圆磨削 external grinding 内圆磨削 internal grinding 平面磨削 plane grinding 变速箱 gearbox 离合器 clutch 绞孔fraising 绞刀reamer 螺纹加工 thread processing 螺钉screw 铣削mill 铣刀milling cutter 功率power 工件workpiece 齿轮加工 gear mechining 齿轮gear 主运动 main movement 主运动方向 direction of main movement 进给方向 direction of feed 进给运动 feed movement 合成进给运动 resultant movement of feed 合成切削运动 resultant movement of cutting 合成切削运动方向 direction of resultant movement of cutting 切削深度 cutting depth 前刀面 rake face 刀尖nose of tool 前角rake angle

㈧ 机械外文翻译(中英文对照)

这是第一段翻译,如果你要可以把邮箱告诉我给你传过去。中文4700字,英文3500字
The development trend and countermeasure of the numerical control technology

Zhenghang Liu,GongWen,Xiaoying Wu ,Wanke Li and Xiaoying Li
1 WuHan Uiversity,WuHan (430079)
2 Institute of Geodesy and Geophysics,WuHan(430077)
Abstract: The text discuses the importance of the numerical control technology to the whole instry,and analysis the development trend of the numerical control technology and the present condition in domestic and foreign countries .By analyzing the comparing the present condition with foreign countries,it pointes out the direction we should go, and we should develop the high-speed,high finish machining technology , and the intelligently , openly , networkedlily technology , and the setting-up of the new technical standard .
Key words: the numerical control technology ; intelligently ; networkedlily,the new technical standard,the sustainable developmen。

The development of the engineering determins the modernized degree of the whole instry.Marx has ever said " the differences of different economic times, do not lie in what is proced , but lie in how to proce".Manufacturing technology is the most basic means of proction, and numerical control technology is the most central technology of the advanced manufacturing technology. Nowadays the manufacturing instry all around the world adopts numerical control technology extensively, in order to improve manufacturing capacity and level, improve the adaptive capacity and competitive power to the changeable market . In addition every instrially developed country in the world also classifies the technology and numerical control equipment of numerical control as the strategic materials of the country, not merely the great measures to develop one's own numerical control technology, but also implements blockading and restrictive policy to our country in view of " high-grade , precision and advanced key technology of numerical control ". In a word, developing the advanced manufacturing technology taking numerical control technology as the core has already become a important way to accelerate economic development and improve the overall national strength and national position.
数控技术和装备发展趋势及对策

刘征航,龚文,武晓颖 ,李万科 ,丁晓颖
1 武汉大学,武汉(430079)
2 中国科学院测量与地球物理研究所,武汉(430077)
E-mail:[email protected]
摘 要: 本文主要讨论了数控装备对整个工业现代化的重要性,并分析了当前数控技术的发展趋势和国内外数控技术的现状。在对现状的分析和与国外的比较下指出了我国数控技术应该着力发展的方向。着重指出应该向着高速、高精加工,智能化、开放式、网络化,新技术标准的建立发展。
关键词:数控技术,智能化,网络化,规范标准,可持续发展。

装备工业的技术水平决定着整个工业的现代化程度。马克思曾经说过“各种经济时代的区别,不在于生产什么,而在于怎样生产”。制造技术和装备就是人类生产活动的最基本方式,而数控技术又是当今先进制造技术最核心的技术。当今世界各国制造业广泛采用数控技术,以提高制造能力和水平,提高对动态多变市场的适应能力和竞争能力。此外世界上各工业发达国家还将数控技术及数控装备列为国家的战略物资,不仅采取重大措施来发展自己的数控技术,而且在“高精尖”数控关键技术方面对我国实行封锁和限制政策。总之,大力发展以数控技术为核心的先进制造技术已成为世界各发达国家加速经济发展、提高综合国力和国家地位的重要途径。

㈨ 谁知道机械制造方面的词汇及专业术语,要英语的,最好是有英汉对照的,很急!谢谢了!

查了一下 里边不包含你的例子
组装、冲压、喷漆等专业词汇

Assembly line组装线
Layout布置图
Conveyer流水线物料板
Rivet table拉钉机
Rivet gun拉钉枪
Screw driver起子
Electric screw driver电动起子
Pneumatic screw driver气动起子
worktable 工作桌
OOBA开箱检查
fit together组装在一起
fasten锁紧(螺丝)
fixture 夹具(治具)
pallet栈板
barcode条码
barcode scanner条码扫描器
fuse together熔合
fuse machine热熔机
repair修理
operator作业员
QC品管
supervisor 课长
ME制造工程师
MT制造生技
cosmetic inspect外观检查
inner parts inspect内部检查
thumb screw大头螺丝
lbs. inch镑、英寸
EMI gasket导电条
front plate前板
rear plate后板
chassis 基座
bezel panel面板
power button电源按键
reset button重置键
Hi-pot test of SPS高源高压测试
Voltage switch of SPS
电源电压接拉键
sheet metal parts 冲件
plastic parts塑胶件
SOP制造作业程序
material check list物料检查表
work cell工作间
trolley台车
carton纸箱
sub-line支线
left fork叉车
personnel resource department
人力资源部
proction department生产部门
planning department企划部
QC Section品管科
stamping factory冲压厂
painting factory烤漆厂
molding factory成型厂
common equipment常用设备
uncoiler and straightener整平机
punching machine 冲床
robot机械手
hydraulic machine油压机
lathe车床
planer |'plein|刨床
miller铣床
grinder磨床
driller??床
linear cutting线切割
electrical sparkle电火花
welder电焊机
staker=reviting machine铆合机
position职务
president董事长
general manager总经理
special assistant manager特助
factory director厂长
department director部长
deputy manager | =vice manager副理
section supervisor课长
deputy section supervisor =vice section superisor副课长
group leader/supervisor组长
line supervisor线长
assistant manager助理
to move, to carry, to handle搬运
be put in storage入库
pack packing包装
to apply oil擦油
to file burr 锉毛刺
final inspection终检
to connect material接料
to reverse material 翻料
wet station沾湿台
Tiana天那水
cleaning cloth抹布
to load material上料
to unload material卸料
to return material/stock to退料
scraped |'skræpid|报废
scrape ..v.刮;削
deficient purchase来料不良
manufacture procere制程
deficient manufacturing procere制程不良
oxidation |' ksi'dein|氧化
scratch刮伤
dents压痕
defective upsiding down抽芽不良
defective to staking铆合不良
embedded lump镶块
feeding is not in place送料不到位
stamping-missing漏冲
proction capacity生产力
ecation and training教育与训练
proposal improvement提案改善
spare parts=buffer备件
forklift叉车
trailer=long vehicle拖板车
compound die合模
die locker锁模器
pressure plate=plate pinch压板
bolt螺栓
name of a department部门名称
administration/general affairs dept总务部
automatic screwdriver电动启子
thickness gauge厚薄规
gauge(or jig)治具
power wire电源线
buzzle蜂鸣器
defective proct label不良标签
identifying sheet list标示单
screwdriver holder起子插座
pedal踩踏板
stopper阻挡器
flow board流水板
hydraulic handjack油压板车
forklift叉车
pallet栈板
glove(s)手套
glove(s) with exposed fingers割手套
thumb大拇指
forefinger食指
midfinger中指
ring finger无名指
little finger小指
band-aid创可贴
iustrial alcohol工业酒精
alcohol container沾湿台
head of screwdriver起子头
sweeper扫把
mop拖把
vaccum cleaner吸尘器
rag 抹布
garbage container灰箕
garbage can垃圾箱
garbage bag垃圾袋
chain链条
jack升降机
proction line流水线
chain链条槽
magnetizer加磁器
lamp holder灯架
to mop the floor拖地
to clean the floor扫地
to clean a table擦桌子
air pipe 气管
packaging tool打包机
packaging打包
missing part漏件
wrong part错件
excessive defects过多的缺陷
critical defect极严重缺陷
major defect主要缺陷
minor defect次要缺陷
not up to standard不合规格
dimension/size is a little bigger尺寸偏大(小)
cosmetic defect外观不良
slipped screwhead/slippery screw head螺丝滑头
slipped screwhead/shippery screw thread滑手
speckle斑点
mildewed=moldy=mouldy发霉
rust生锈
deformation变形
burr(金属)flash(塑件)毛边
poor staking铆合不良
excesssive gap间隙过大
grease/oil stains油污
inclusion杂质
painting peel off脏污
shrinking/shrinkage缩水
mixed color杂色
scratch划伤
poor processing 制程不良
poor incoming part事件不良
fold of pakaging belt打包带折皱
painting make-up补漆
discoloration羿色
water spots水渍
polishing/surface processing表面处理
exposed metal/bare metal金属裸露
lack of painting烤漆不到位
safety安全
quality品质
delivery deadline交货期
cost成本
engineering工程
die repair模修
enterprise plan = enterprise expansion projects企划
QC品管
die worker模工
proction, to proce生产
equipment设备
to start a press开机
stop/switch off a press关机
classification整理
regulation整顿
cleanness清扫
conservation清洁
culture教养
qualified procts, up-to-grade procts良品
defective procts, not up-to-grade procts不良品
waste废料
board看板
feeder送料机
sliding rack滑料架
defective proct box不良品箱
die change 换模
to fix a die装模
to take apart a die拆模
to repair a die修模
packing material包材
basket蝴蝶竺
plastic basket胶筐
isolating plate baffle plate; barricade隔板
carton box纸箱
to pull and stretch拉深
to put material in place, to cut material, to input落料
to impose lines压线
to compress, compressing压缩
character die字模
to feed, feeding送料
transportation运输
(be)qualfied, up to grade合格
not up to grade, not qualified不合格
material change, stock change材料变更
feature change 特性变更
evaluation评估
prepare for, make preparations for 准备
parameters参数
rotating speed, revolution转速
manufacture management制造管理
abnormal handling异常处理
proction unit生产单位
lots of proction生产批量
steel plate钢板
roll material卷料
manufacture procere制程
operation procere作业流程
to revise, modify修订
to switch over to, switch---to throw--over switching over切换
engineering, project difficulty
工程瓶颈
stage die工程模
automation自动化
to stake, staking, reviting铆合
add lubricating oil加润滑油
shut die架模
shut height of a die架模高度
analog-mode device类模器
die lifter举模器
argon welding氩焊
vocabulary for stamping
冲压常词汇
stamping, press冲压
punch press, dieing out press冲床
uncoiler & strainghtener整平机
feeder送料机
rack, shelf, stack料架
cylinder油缸
robot机械手
taker取料机
conveyer belt输送带
transmission rack输送架
top stop上死点
bottom stop下死点
one stroke一行程
inch寸动
to continue, cont.连动
to grip(material)吸料
location lump, locating piece, block stop 定位块
reset复位
smoothly顺利
dent压痕
scratch刮伤
deformation变形
filings铁削
to draw holes抽孔
inquiry, search for查寻
to stock, storage, in stock库存
receive领取
approval examine and verify审核
processing, to process加工
delivery, to deliver 交货
to return delivenry to.
to send delinery back
to retrn of goods退货
registration登记
registration card登记卡
to control管制
to put forward and hand in提报
safe stock安全库存
acceptance = receive验收
to notice通知
application form for purchase请购单
consume, consumption消耗
to fill in填写
abrasion磨损
reverse angle = chamfer倒角
character die字模
to collect, to gather收集
failure, trouble故障
statistics统计
demand and supply需求
career card履历卡
to take apart a die卸下模具
to load a die装上模具
to tight a bolt拧紧螺栓
to looser a bolt拧松螺栓
to move away a die plate移走模板
easily damaged parts易损件
standard parts标准件
breaking.(be)broken,(be)cracked 断裂
to lubricate润滑
common vocabulary for die engineering
模具工程常用词汇
die 模具
figure file, chart file图档
cutting die, blanking die冲裁模
progressive die, follow (-on)die
连续模
compound die复合模
punched hole冲孔
panel board镶块
to cutedges=side cut=side scrap切边
to bending折弯
to pull, to stretch拉伸
Line streching, line pulling线拉伸
engraving, to engrave刻印
upsiding down edges翻边
to stake铆合
designing, to design设计
design modification设计变化
die block模块
folded block折弯块
sliding block滑块
location pin定位销
lifting pin顶料销
die plate, front board模板
padding block垫块
stepping bar垫条
upper die base上模座
lower die base下模座
upper supporting blank上承板
upper padding plate blank上垫板
spare dies模具备品
spring 弹簧
bolt螺栓
document folder文件夹
file folder资料夹
to put file in order整理资料
spare tools location手工备品仓
first count初盘人
first check初盘复棹人
second count 复盘人
second check复盘复核人
equipment设备
waste materials废料
work in progress proct在制品
casing = containerazation装箱
quantity of physical invetory second count 复盘点数量
quantity of customs count
会计师盘,点数量
the first page第一联
filed by accounting department for reference会计部存查
end-user/using unit(department)使用单位
summary of year-end physical inventory bills
年终盘点截止单据汇总表
bill name单据名称
This sheet and physical inventory list will be sent to accounting
department together (Those of NHK will be sent to financial
department)
本表请与盘点清册一起送会计部-(NHK厂区送财会部)
Application status records of year-end physical inventory List and
physical inventory card 年终盘点卡与清册使用-状况明细表
blank and waste sheet NO.
空白与作废单号
plate电镀
mold成型
material for engineering mold testing工程试模材料
not included in physical inventory不列入盘点
sample样品
incoming material to be inspected进货待验
description品名
steel/rolled steel钢材
material statistics sheet
物料统计明细表
meeting minutes会议记录
meeting type 会别
distribution department分发单位
location地点
chairman主席
present members出席人员
subject主题
conclusion结论
decision items决议事项
responsible department负责单位
pre-fixed finishing date预定完成日
approved by / checked by / prepared by核准/审核/承办
PCE assembly proction schele sheet
PCE组装厂生产排配表
model机锺
work order工令
revision版次
remark备注
proction control confirmation生产确认
checked by初审
approved by核准
department部门
stock age analysis sheet
库存货龄分析表
on-hand inventory现有库存
available material良品可使用
obsolete material良品已呆滞
to be inspected or reworked
待验或重工
total合计
cause description原因说明
part number/ P/N 料号
type形态
item/group/class类别
quality品质
prepared by制表
notes说明
year-end physical inventory difference analysis sheet
年终盘点差异分析表
physical inventory盘点数量
physical count quantity帐面数量
difference quantity差异量
cause analysis原因分析
raw materials原料
materials物料
finished proct成品
semi-finished proct半成品
packing materials包材
good proct/accepted goods/ accepted parts/good parts良品
defective proct/non-good parts不良品
disposed goods处理品
warehouse/hub仓库
on way location在途仓
oversea location海外仓
spare parts physical inventory list备品盘点清单
spare molds location模具备品仓
skid/pallet栈板
tox machine自铆机
wire EDM线割
EDM放电机
coil stock卷料
sheet stock片料
tolerance工差
score=groove压线
cam block滑块
pilot导正筒
trim剪外边
pierce剪内边
drag form压锻差
pocket for the punch head挂钩槽
slug hole废料孔
feature die公母模
expansion dwg展开图
radius半径
shim(wedge)楔子
torch-flame cut火焰切割
set screw止付螺丝
form block折刀
stop pin定位销
round pierce punch=die button圆冲子
shape punch=die insert异形子
stock locater block定位块
under cut=scrap chopper清角
active plate活动板
baffle plate挡块
cover plate盖板
male die公模
female die母模
groove punch压线冲子
air-cushion eject-rod气垫顶杆
spring-box eject-plate弹簧箱顶板
bushing block衬套
insert 入块
club car高尔夫球车
capability能力
parameter参数
factor系数
phosphate皮膜化成
viscosity涂料粘度
alkalidipping脱脂
main manifold主集流脉
bezel斜视规
blanking穿落模
dejecting顶固模
demagnetization去磁;消磁
high-speed transmission高速传递
heat dissipation热传
rack上料
degrease脱脂
rinse水洗
alkaline etch龄咬
desmut剥黑膜
D.I. rinse纯水次
Chromate铬酸处理
Anodize阳性处理
seal封孔
revision版次
part number/P/N料号
good procts良品
scraped procts报放心品
defective procts不良品
finished procts成品
disposed procts处理品
barcode条码
flow chart流程表单
assembly组装
stamping冲压
molding成型
spare parts=buffer备品
coordinate座标
dismantle the die折模
auxiliary fuction辅助功能
poly-line多义线
heater band 加热片
thermocouple热电偶
sand blasting喷沙
grit 砂砾
derusting machine除锈机
degate打浇口
dryer烘干机
inction感应
inction light感应光
response=reaction=interaction感应
ram连杆
edge finder巡边器
concave凸
convex凹
short射料不足
nick缺口
speck瑕??
shine亮班
splay 银纹
gas mark焦痕
delamination起鳞
cold slug冷块
blush 导色
gouge沟槽;凿槽
satin texture段面咬花
witness line证示线
patent专利
grit沙砾
granule=peuet=grain细粒
grit maker抽粒机
cushion缓冲
magnalium镁铝合金
magnesium镁金
metal plate钣金
lathe车
mill锉
plane刨
grind磨
drill铝
boring镗
blinster气泡
fillet镶;嵌边
through-hole form通孔形式
voller pin formality滚针形式
cam driver铡楔
shank摸柄
crank shaft曲柄轴
augular offset角度偏差
velocity速度
proction tempo生产进度现状
torque扭矩
spline=the multiple keys花键
quenching淬火
tempering回火
annealing退火
carbonization碳化
alloy合金
tungsten high speed steel钨高速的
moly high speed steel钼高速的
organic solvent有机溶剂
bracket小磁导
liaison联络单
volatile挥发性
resistance电阻
ion离子
titrator滴定仪
beacon警示灯
coolant冷却液
crusher破碎机
模具工程类
plain die简易模
pierce die冲孔模
forming die成型模
progressive die连续模
gang dies复合模
shearing die剪边模
riveting die铆合模
pierce冲孔
forming成型(抽凸,冲凸)
draw hole抽孔
bending折弯
trim切边
emboss凸点
dome凸圆
semi-shearing半剪
stamp mark冲记号
deburr or coin压毛边
punch riveting冲压铆合
side stretch侧冲压平
reel stretch卷圆压平
groove压线
blanking下料
stamp letter冲字(料号)
shearing剪断
tick-mark nearside正面压印
tick-mark farside反面压印
冲压名称类
extension dwg展开图
procere dwg工程图
die structure dwg模具结构图
material材质
material thickness料片厚度
factor系数
upward向上
downward向下
press specification冲床规格
die height range适用模高
die height闭模高度
burr毛边
gap间隙
weight重量
total wt.总重量
punch wt.上模重量
五金零件类
inner guiding post内导柱
inner hexagon screw内六角螺钉
dowel pin固定销
coil spring弹簧
lifter pin顶料销
eq-height sleeves=spool等高套筒
pin销
lifter guide pin浮升导料销
guide pin导正销
wire spring圆线弹簧
outer guiding post外导柱
stop screw止付螺丝
located pin定位销
outer bush外导套
模板类
top plate上托板(顶板)
top block上垫脚
punch set上模座
punch pad上垫板
punch holder上夹板
stripper pad脱料背板
up stripper上脱料板
male die公模(凸模)
feature die公母模
female die母模(凹模)
upper plate上模板
lower plate下模板
die pad下垫板
die holder下夹板
die set下模座
bottom block下垫脚
bottom plate下托板(底板)
stripping plate内外打(脱料板)
outer stripper外脱料板
inner stripper内脱料板
lower stripper下脱料板
零件类
punch冲头
insert入块(嵌入件)
deburring punch压毛边冲子
groove punch压线冲子
stamped punch字模冲子
round punch圆冲子
special shape punch异形冲子
bending block折刀
roller滚轴
baffle plate挡块
located block定位块
supporting block for location
定位支承块
air cushion plate气垫板
air-cushion eject-rod气垫顶杆
trimming punch切边冲子
stiffening rib punch = stinger 加强筋冲子
ribbon punch压筋冲子
reel-stretch punch卷圆压平冲子
guide plate定位板
sliding block滑块
sliding dowel block滑块固定块
active plate活动板
lower sliding plate下滑块板
upper holder block上压块
upper mid plate上中间板
spring box弹簧箱
spring-box eject-rod弹簧箱顶杆
spring-box eject-plate弹簧箱顶板
bushing bolck衬套
cover plate盖板
guide pad导料块
塑件&模具相关英文
compre sion molding压缩成型
flash mold溢流式模具
plsitive mold挤压式模具
split mold分割式模具
cavity型控 母模
core模心 公模
taper锥拔
leather cloak仿皮革
shiver饰纹
flow mark流痕
welding mark溶合痕
post screw insert螺纹套筒埋值
self tapping screw自攻螺丝
striper plate脱料板
piston活塞
cylinder汽缸套
chip细碎物
handle mold手持式模具
移转成型用模具
encapsulation molding低压封装成型
射出成型用模具
two plate两极式(模具)
well type蓄料井
insulated runner绝缘浇道方式
hot runner热浇道
runner plat浇道模块
valve gate阀门浇口
band heater环带状的电热器
spindle阀针
spear head刨尖头
slag well冷料井
cold slag冷料渣
air vent排气道
h=0.02~0.05mm
w=3.2mm
L=3~5mm
welding line熔合痕
eject pin顶出针
knock pin顶出销
return pin回位销反顶针
sleave套筒
stripper plate脱料板
insert core放置入子
runner stripper plate浇道脱料板
guide pin导销
eject rod (bar)(成型机)顶业捧
subzero深冷处理
three plate三极式模具
runner system浇道系统
stress crack应力电裂
orientation定向
sprue gate射料浇口,直浇口
nozzle射嘴
sprue lock pin料头钩销(拉料杆)
slag well冷料井
side gate侧浇口
edge gate侧缘浇口
tab gate搭接浇口
film gate薄膜浇口
flash gate闸门浇口
slit gate缝隙浇口
fan gate扇形浇口
dish gate因盘形浇口
H=F=1/2t~1/5t
T=2.5~3.5mm
diaphragm gate隔膜浇口
ring gate环形浇口
subarine gate潜入式浇口
tunnel gate隧道式浇口
pin gate针点浇口
Φ0.8~1.0mm
Runner less无浇道
(sprue less)无射料管方式
long nozzle延长喷嘴方式
sprue浇口;溶渣

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