机床试验用英语怎么说,机床试验的英文翻译


词语导航

基本信息

词语:机床试验

繁体:機床試驗

拼音:jī chuáng shì yàn

英语翻译

【化】 machine test

分词翻译

机床的英语翻译:

machine tool; tool
【化】 machine tool
【经】 machine tool

试验的英语翻译:

experiment; test; try; try on; try out; examination; experimentation; trial
trial run
【计】 breadboarding
【医】 probation; test; tria
【经】 test; trial

翻译例句

1. 利用有限元和实验的方法,对微型机床试验台进行了结构动态特性分析。

The structural dynamic analysis of the test-bed of micro ma chine tool using finite element (FE) and experimental approaches is made.

2. 此方法精度高,比现有机床试验规范推荐的方法简便易行,可在机床空载功率试验、效率试验以及机床节能研究中得到广泛应用。

It is much more simple and practical than the traditional method and can be used widely in the test of idle power and efficiency, and in the research on energy saving of machine tools.

3. 理论分析和试验结果表明,采用变速切削加工时,电机瞬时电流确有一定程度的波动,但不影响机床电机的正常使用;

The theoretical analysis and experimental results demonstrate that the motor current has some fluctuation in vari-speed cutting process, but it is almost no effect on normal operation of machine tool.

4. 本文对机床滚动支承主轴系统采用油膜阻尼技术进行了深入、系统的试验研究和机理分析。

The deep, systematic research of experiments and theoretical analysis are made to employing fluid Film damping technology in antifriction bearing spindle system of machine tool.

5. 试验表明,这种无颤振的机床技术思想与方法是可行的和有效的。

Experimental results show that the conception of chatter-free machine tools is feasible and effective.

6. 加工试验表明,该机床具有良好的运动稳定性和较高的位置精度,可实现5坐标加工。

The better moving stability, the higher positional accuracy and the 5-axis machining of the proposed machine tool have been proved by the experiment.

7. 这个工厂正在生产经过设计阶段的计算机模拟和样机试验的高精密度、高稳定性的机床

The plant is producing machine tools of increased precision, rigidity, and vibrational stability, as a result of computer simulation and tests of mockups at the design stage.

8. 试验结果表明,这种热管不但能降低主轴轴承的温升,而且可大大提高主轴轴线的热稳定性,从而提高机床的加工精度。

The testing results showed that the rise-temperature of spindle bearings can be reduced, the thermal stability of spindle axis and the machining accuracy of machine tool can also be improved.

9. 介绍应用计算机技术,实现机床主轴热变形试验各侧点的温度、热变形的在线检测和数据处理。

This paper deals with application of computer technology to accomplish the temperature and hot, deformed on-line measurement and data process in the main shaft hot deformed experiment of machine tool.

10. 本文利用M序列的随机信号进行了机床运转状态下试验模态分析的探索。

This paper explores the experimental modal analysis of machine tool structures with rotating spindle. the excitation signal is the pseudo-random binary M series.

11. 通过空运转试验查明了机床受迫振动的振源。

The sources of forced vibration in the machine tool are found by means of the free running experiment.

12. 分析了高原环境对机床电器可靠性的主要影响,并对影响的几方面因素进行模拟试验

Analysis was made to the major impacts on the reliability of machine tool electrical apparatus from plateau environmental conditions, and these factors of impacts were carried out simulation tests.

13. 提出数控机床热误差鲁棒建模的综合极值法和优化试验设计法两种新方法。

In this paper, two new methods of thermal error robust modeling for NC machine tools are proposed: one is the comprehensive extreme value method, the other is the optimal experiment design method.

14. 叙述了利用金属切削试验寻求数控机床经济切削参数的研究。

Using metal cutting experiment to find the better economy cutting parameter is recounted.

15. 阐述内锥面刃磨麻花钻原理及在工具磨床上进行磨削工艺试验的方法和机床的调整。

Illustrates the principle of the inner cone grinding twist drills, the process of grinding experiments on the tool grinder and the adjustment of the tool grinder.

16. 用在此基础上编制的计算机程序,在主轴系统实际安装条件下,根据各测点的位移导纳试验数据,对机床主轴系统支承动态参数进行了识别计算。

By the computer program, the bearing dynamic parameters of the lathe spindle sys-tem could be identified using the experiment data when the lathe spindle system is mounted practically.

17. 在试验中应用了CHFZ—1型传递函数分析装置来测量和分析该机床在稳态正弦激振下的响应。

In this test, a Transfer Function Analyser Model CHFZ-1 is used to measure and analyse the response of the machine under stabilized harmonic excitation.

18. 研究了基于指数分布的数控机床可靠性评估试验方案。

A reliability evaluation test plan of NC machine tools based on exponent distribution was investigated.

19. 极限切深试验表明,以稳定切削点所对应的主轴转速进行切削可以提高机床的切削效率。

The experiments to verify the limit cutting depth show that the cutting efficiency of machine tool can be improved by cutting at the spindle speed corresponding to the stable cutting point.

20. 通过试验,获得了该机床的关键几何参数的加工和装配误差,为机床的误差补偿提供了重要依据。

Manufacturing and assembly errors of key geometric parameters are obtained by experiments which supplies basis of machine error compensation.

21. 采用机床主电动机功率法和声发射(AE)法来获取切削过程中发出的刀具磨损和破损信号,建立了刀具状态试验系统。WWw.WEnTIyI.com

Experiments were implemented to obtain the motor power and AE signals under different cutting parameter condition(cutting velocity, feed velocity and cutting depth), tool wear and breakage conditions.

22. 计算机模拟计算和试验研究表明,机床滚动支承主轴系统采用复合式油膜阻尼器,可显著提高机床的动态性能。

Analogue computation and experiments show that employing compound oil film damper in antifriction bearing spindle system will raise significantly the dynamic behavior of machine tool.

23. 通过误差测量与补偿试验,验证了该方法应用于数控机床误差补偿的可行性。

Through an experiment to measure and compensate the spatial position errors, the feasibility of applying this compensation method to NC machine tools is validated.

24. 同时研制了数控液流悬浮抛光机床,并对硅晶片等材料进行了加工试验

At the same time aerosol developed the numerical control liquid flow to polish the engine bed, and to material and so on silicon chip has carried on the processing experiment.

25. 试验结果表明,这一开放式数控系统可以应用于其他机床的数控改造,且具有一定的经济性和实用性。

The results show that the open numerical control system can also be applicable for numerical control transformation of other machine tool, so it has certain economy and practicality.

26. 试验表明,该测头可满足新型数控机床对高精密测量及仿形加工的要求。

Experiments have proved that the probe can meet the requires of new NC and be used in copying process and precise measurement.

27. 通过切削试验说明:这种系统有助于充分发挥机床的加工能力,提高机床功率利用率和节约能源。

Cutting test have been made and show clearly that this system will contribute to develop the cutting ability of machine tools and to increase utilizing rate of machine tools and to save energy.

28. 通过模态柔度和能量分布计算确定了机床的动态薄弱环节——砂轮架系统,这与激振试验的结论是一致的。

Basing on the computations of modal flexibility and energy distribution, the dynamical weakest part of this machine — Wheel head system is found. T...

29. 通过模态柔度和能量分布计算确定了机床的动态薄弱环节——砂轮架系统,这与激振试验的结论是一致的。

Basing on the computations of modal flexibility and energy distribution, the dynamical weakest part of this machine — Wheel head system...

30. 通过模态柔度和能量分布计算确定了机床的动态薄弱环节——砂轮架系统,这与激振试验的结论是一致的。

Basing on the computations of modal flexibility and energy distribution, the dynamical weakest part of this machine — Wheel head system...

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