壳体理论用英语怎么说,壳体理论的英文翻译


词语导航

基本信息

词语:壳体理论

繁体:殼體理論

拼音:ké tǐ lǐ lùn

英语翻译

【计】 shell theory

分词翻译

壳体的英语翻译:

【计】 body case
【化】 body; case; shell

理论的英语翻译:

frame of reference; theoretics; theorization; theory
【化】 Rice-Ramsperger-Kassel theoryRRK; theory
【医】 rationale; theory

翻译例句

1. 这些方程的误差均在壳体理论的误差范围之内。

The errors resulted in these equations are within the margin that are allowed in the theory of shells.

2. 首先利用扁壳体理论建立了大跨柔性屋盖的振动方程。

First, the equations of vibration were established using the theory of thin shallow shells.

3. 本文将壳体理论应用到一定工作条件下的压力容器上。

The attempt of the present paper is to extend the application of the shell theory to the pressure vessel under a modified working condition.

4. 中间部位视为整体环的一部分,按壳体理论应力分析方法计算。

The mid part is regarded as a segment of the whole ring and is calculated by the method of stress analysis which is based on the theory of shell.

5. 介绍了双合环高压容器的设计计算,它应用基于壳体理论的应力分析方法。

Design calculation of dual semi-ring (DSR) high pressure vessel is introduced in this paper. It USES the method of stress analysis based on the theory of shells.

6. 用正交各向异性壳体理论,对大型逆流式冷却塔的玻璃钢导风筒进行了强度、刚度和稳定性分析。

In this paper, the strength, stiffness and buckling of large FRP conducting wind channel in cooling tower are analyzed using orthotropic shell theory.

7. 拱坝的应力分析方法包括纯拱法、拱梁分载法、有限元法、壳体理论计算方法和结构模型试验法。

The stress analytic method of arch dam covers pure arch method, arch beam sharing method, finite element method, calculating method of shell theory and structural model test method.

8. 根据壳体理论对钢支撑受力机理进行分析和简化计算,得出钢支撑在轴力和弯矩共同作用下,轴向正应力呈线性分布。WWW.WENtIYi.Com

On the basis of theory analysis, it is deduced that the axial stress is linear distribution, when the steel support is loaded by axial force and moment.

9. 通过工程实例,介绍大直径筒仓按圆柱壳体理论计算不同工况的内力,计算方法简便实用,同时对不均匀堆煤的影响作了分析,可供设计参考。

Taking an actual project for example, the calculation of internal forces of a large diameter silo under different working conditions according to cylindrical shell theory is described in detail.

10. 以纤维缠绕结构的网格理论为基础,建立了纤维缠绕圆锥壳体在内压作用下的平衡方程。

Based on the netting theory for the filament-wound structure, the balanced equation of the filament-wound conical case under internal pressure was derived.

11. 有限元分析与实际试验结果具有很好的一致性,为该壳体结构的设计改进提供了理论依据。

The analysis agrees quite well with the results of real test, which provides theory support for improving of case design.

12. 用实验验证复合材料壳体设计理论在天然气汽车气瓶设计中的正确性。

The. Correctness of composite materials shell design theory in cylinders for compressed natural gas vehicles is tested and verified through experiment.

13. 基于壳体水弹性理论,探讨了潜水器动力舱振动与声辐射建模及分析方法,并对常用潜水器动力舱振动和声辐射进行了分析。

The model of vibration and sound radiation of submarine dynamic cabin and its analysis method are discussed with the help of the hydroelasticity theory of shells.

14. 根据该理论,地球外部壳体由约10个大的刚性板块和20个较小的板块组成。

According to this theory, the earth"s outer shell consists of about 10 large, rigid plates and about 20 smaller ones.

15. 论文根据均衡凝固及大孔出流理论,用计算机辅助设计的方法改进了壳体灰铸铁件的铸造工艺。

In the paper, based on the Propotional Solidification Theory and Large Orifice Discharge Theory, the foundry technology of gray iron casting shell was designed by the method of CAD.

16. 本文采用三维各向异性弹性理论直接求解纤维增强的复合材料叠层圆柱壳体在轴向载荷作用下的位移场和应力场。

In this paper, the displacement and stress fields for a composite laminated circular shell under axial load are solved by. using three-dimensional anisotropic elasticity theory.

17. 本文对不同轴长比和不同瓣数的不锈钢扁球壳体进行了整体无模胀形成形实验研究及理论探讨。

Experiments and theoretical analysis are made for the integral hydro-bulge forming technology of oblate spheroidic shells of various axial length ratios and petal Numbers.

18. 提出了应用壳体力矩理论求解密封环端面力变形的解析解的方法,并编制了相应的计算程序。

Analytical method is raised to calculate the distortion on the end of seal ring by application of the theory of moment force of shell and the relevant calculation procedure is prepared.

19. 以有矩理论导出圆柱壳体的振动微分方程。

The dynamic equations of the circular cylindrical shell are based upon an exact moment theory.

20. 利用应变等效性假设,推导了地壳体的应力-损伤耦合效应与地表重力变化之间的理论关系。

On the strength equivalent hypothesis, the theory relation between stress-damage coupling effect and variation of crustal gravity field.

21. 基于非局部弹性理论,在考虑小尺度效应影响的情况下,建立了单壁碳纳米管在均匀轴向外部压力下的壳体模型。

A shallow shell model is developed for the elastic buckling of a single wall carbon nanotube under a uniform external axial pressure by using the nonlocal elastic theory.

22. 以位移模型为基础,用有限元中的分离变量法的理论,求解了圆柱壳自由振动的固有频率,计算结果与壳体解析解相一致。

This paper calculate inherent frequency of the free vibration of the cylinder shell with the theory of the separated variable method on the basis of displacement model.

23. 理论分析结果表明,法兰截面尺寸对壳体中的应力分布及法兰变形起着重要的作用。

The theoretical results show that the size of flange section is essential for stress distribution in the shells and the deformations of flanges.

24. 本文从理论上分析了小型tea CO_2激光器的参数选取,制出了实用的陶瓷壳体全金属密封的小型TEA CO_2激光器。

The selection of parameters for miniature TEA CO2 lasers is analysed and a miniature whole metallic-sealed-off ceramic TEA CO2 laser is developed.

25. 本文分析计算了基体开裂及大变形对纤维缠绕壳体变形的影响,得到了比较满意的理论分析结果。

For matrix cracking and large deforming, the deformation of a filament wound case is analyzed and calculated.

26. 采用分段集合计算方法,对二步法三维编织变厚度变截面薄壁壳体RTM充模工艺过程进行了较深入的理论研究。

The filling process of RTM for the two step 3D braid shell preform with a varying section was investigated theoretically by employing a calculating method of divide-integration.

27. 利用豪斯纳理论对贮油罐罐内的液体作了近似处理,并用平板壳体单元建立了贮油罐的简化模型。

Using Housnae Theory to treat the fluid of fuel reservoir approximately, the writer sets up a simple model of fuel reservoir with flat and shell elements.

28. 又壳体大地构造学也是一学科系统,相应的壳体大地构造理论亦是理论系统。

And the crustobody geotectonics is a discipline them, accordingly, th e crustobody geotectonic theory is also a theoretic system.

29. 当壳体的横向剪切刚度很大时,证明了本文提出的精化理论同经典理论的一致性。

If we let the transverse shear stiffness approach to infinity, the governing equation of refined theory can be reduced to the classical thin shell equation.

30. 当壳体的横向剪切刚度很大时,证明了本文提出的精化理论同经典理论的一致性。

If we let the transverse shear stiffness approach to infinity, the governing equation of refined theory can be reduced to the classical thin shell equation.

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