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1)  membrane force
薄膜力
1.
Use the calculating method of ring structures to analyze the internal forces of an outer-ring beam and simplifies the calculation of shell moment theory to analyze the displacements and turning corners under the actions of membrane force and fringe force.
采用环形结构的计算理论,对外环梁进行了受力分析·通过对壳体理论的简化计算,分析了壳体在薄膜力和边缘力作用下的位移和转角,利用外环梁处的位移协调条件,能够求出外环梁的力和弯距,为外环梁的工程设计提供理论工具·并且利用给出的公式可以计算矮圆仓壳体上弯矩和应力的分布·分析表明,弯矩在接近外环梁处较大,远离则逐渐变小·通过与有限元计算和实测的结果对比,说明本文的计算方法具有可靠的精度
2.
Considering the influence of the membrane forces, a hydoelastic analysis method of a floating plate in frequency domain is presented.
提供了一种考虑薄膜力影响的海上浮动平板的水弹性频域分析方法。
3.
A box girder was decomposed splint constructions and simple strength of ma- terial relations was used to derive membrane force equations.
根据微积分关系,得到了箱梁各板考虑剪滞效应的纵、横向薄膜力和薄膜剪力的计算公式,探讨了悬臂箱梁薄膜力剪滞效应随梁的跨宽比、宽高比以及荷载形式等因素变化的影响。
2)  membrane stress
薄膜应力
1.
According to the theory of force-free moment and by means of the sectional method of Materials Mechanics, this paper gives an analysis of and a solution to the meridional membrane stress of gyro shell in three cases.
根据无力矩理论采用材料力学的截面法对三个实例中回转薄壁壳体的经向薄膜应力作了分析和求解,并用弹性理论的计算结果进行了验证,从而说明回转薄壳薄膜应力材料力学解答的准确性。
2.
The deformation curve of inflated airbag fabric and the membrane stress distribution were computed using the finite element method to simulate the process of airbag inflation under different pressures ranging from 0 to 50 kPa.
对气囊织物承受0~50kPa的气流充胀过程进行了有限元模拟,得到了其充胀后的变形曲线及其薄膜应力分布,并通过实测中心挠度验证了数值模拟的有效性。
3)  mechanical film
力学薄膜
1.
Properties of mechanical films such as TiN can be effectively improved by using multilayers.
采用多层膜系是进一步提高诸如TiN等力学薄膜性能的有效方法之一。
4)  Membrance stress
薄膜应力
1.
Explorations on the solution to membrance stress of full liquid vessel;
充液容器薄膜应力解法的探讨
5)  thin film stress
薄膜应力
1.
The measurement of thin film stress is always a problem with great difficulty.
薄膜应力的测量一直是一个困难的问题。
2.
According to the principle of substrate curvature method,an apparatus had been designed and refitted to measure the curvature radius of amorphous RGMF sample,then the thin film stress was calculated.
利用基片曲率法原理,设计改装了一套基片曲率显微观测装置用于测量稀土超磁致伸缩合金非晶RGMF薄膜试样的曲率半径并计算薄膜应力;分析探讨了使用该装置测量计算曲率半径的随机误差与系统误差,并在此基础上进一步分析了薄膜应力的相对误差。
3.
In order to meet the requirements of optical, electronic and mechanical performance of semiconductor products, it is necessary to measure thin film stress during the deposition.
 为使半导体产品达到所要求的光学、电子和机械性能,必须实时地在沉积过程中直接测量薄膜应力。
6)  film stress
薄膜应力
1.
Stoney formula and the corresponding approximate deducing with substrate curvature method are adopted to evaluate the film stress in several processes.
针对压印光刻工艺实现图章保真复型对阻蚀胶薄膜的均匀度和应力分布的要求,对匀胶过程中的时间、转速和加速度等参数进行了分析,并采用基片曲率法的Stoney公式及其近似计算公式,对不同参数环境下的薄膜应力及应力梯度分布作了计算分析。
2.
This paper first analyses the nature and features of the edge stress, and its differeces from and its relationswith the film stress, then points out the relationship between the edge stress and the strength of pressure vessel, andputs forward several detailed measures to treat the eege stress, and therefore solves the important problem in the ves-sel design.
分析边缘应力的性质,特点及其与薄膜应力的区别联系,指出边缘应力与压力容器强度的关系,提出了容器设计中处理边缘应力的几种方法和具体措施。
3.
The experimental results show that the film stress tu rns from compressive to tensile with the increase of Ar gas pressure, and the magnetic anisotropy has a close relationship with the depositi on conditions.
研究了溅射条件对薄膜应力、磁滞回线及巨磁阻抗效应的影响。
补充资料:赤力力
1.亦作"赤历历"。 2.象声词。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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