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1)  Fretting contact
微动接触
1.
The stress distributions on the radial and translation fretting contact regions between halfcylinder and plate are studied in detail by the finite element methods.
采用有限元方法,分析了半圆柱与平板间径向微动接触区和切向微动接触区内的应力分布。
2)  differential contact
微分接触
3)  microcontact
微接触
1.
Fabrication of novel vertically aligned films of nematic liquid crystals by microcontact printing
微接触印刷法制备新型液晶垂直取向膜
4)  moving contact
移动接触
1.
Solving two dimensional moving contact problems with a hole near the contact interface using the boundary element method;
应用边界元法解决接触界面附近带有孔洞的2维移动接触问题
2.
A double iterative BEM for solving 2D closed crack loaded by a moving contact elastic body;
移动接触下求解二维闭合裂纹的双重迭代边界元法
3.
A scheme of boundary element method for moving contact of 3D elastic solids with prescribed moving direction using conforming discretization is presented.
基于对二维弹性体移动和滚动接触边界元法的前期研究,将其中的协调离散方案推广到三维问题,提出了针对给定移动方向的三维弹性体移动接触的一种边界元协调离散方案。
5)  sliding contact
滑动接触
1.
Finite element analysis of head/disk continuous sliding contact was performed to investigate temperature field and thermal stress field due to frictional heat using an axisymmetric thermal model.
采用二维轴对称有限元模型计算磁头/磁盘滑动接触下,铝质磁盘的稳态温度和热应力场以及热退磁临界条件。
2.
In order to develop the critical operating conditions for demagnetization of the disk,a coupled temperature-displacement finite element analysis of a slider sliding contact with a textured disk surface was performed,so as to investigate simultaneously the stress and temperature distributions in the magnetic layer.
采用应力场和温度场耦合的有限元方法,计算磁头/磁盘滑动接触下铝基磁盘磁层内瞬态温度场和应力场及退磁临界条件,分析接触压力、滑动速度、摩擦系数以及磁盘表面纹理对磁层内最大摩擦温升值和最大应力值的影响。
3.
Also the stess distribution problem in the half space with gradient layers coating is considered and compared with the homogeneous half space and half space with single layer coating under same sliding contact load and in plastic deformation condition.
对粗糙面在梯度表面层上的滑动过程进行应力分布研究 ,以模拟实际摩擦过程中 ,考虑塑性变形情况下 ,梯度覆层体中的应力分布规律 ,同时与均质体及单覆层体进行比较研究 ,分析了在表面载荷相同时滑动接触的应力分布。
6)  Rolling contact
滚动接触
1.
Numerical calculation of finite element of 3D multi-body rolling contact of supporting parts of rotary kiln;
回转窑支承组件三维多体滚动接触有限元数值计算
2.
Elastic-plastic stress,strain and deformation for wheel-rail rolling contact under the non-steady state locomotive and vehicle wheel loading were simulated by finite element method with consideration of material ratcheting effect and effect of partial slip.
利用有限元法,考虑材料反复滚压条件下棘轮效应和局部滑动的影响,研究了非稳态机车和车辆车轮载荷作用下轮轨滚动接触的弹塑性应力、应变和变形,进而分析了塑性流动型钢轨波浪形磨损的形成和发展过程以及波谷和波峰处材料的力学行为。
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