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Stress Analysis of Multilayered Coatings Subjected to Surface Point Contact Loading Based on Its Three-Dimensional Elastic Field Solution

机译:基于其三维弹性场溶液对表面点接触载荷进行多层涂层的应力分析

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In order to investigate the effect of the structural layout of multilayered coatings on its mechanical behavior, a three-dimensional elastic field solution is developed for multilayered solids subjected to surface point contact loading, which is converted from the elastic field solution in frequency domain by using a numerical conversion algorithm. The elastic field solution in frequency domain is obtained by numerically solving a group of linear equations involving the unknown constants in the general elastic field solution of layered material that is obtained by using Fourier integral transform technique. The present solution is validated by comparing with the exact analytical solution for uncoated solids and finite element solution for solids coated with 30 layers. Lastly, the effect of structural layout of multilayered coatings is further investigated with present solution. The result shows that the gradient structural layout with elasticity modulus decreasing gradually from the top layer to the substrate, which is preferable to a larger friction coefficient for multilayered solids subjected to surface line contact loading, is preferable for a smaller friction coefficient 0.1 for multilayered solids subjected to surface point contact loading, and the gradient structural layout with elasticity modulus increasing first in the top layers and then decreasing in the bottom layers, which is preferable to a smaller friction coefficient for multilayered solids subjected to surface line contact loading, is preferable for a friction coefficient 0.2.
机译:为了探讨多层涂层结构布局对其机械性能的影响,开发了一种对表面点接触载荷进行的多层固体的三维弹性场溶液,其通过使用通过频域中的弹性场溶液转换数值转换算法。通过使用使用傅里叶积分变换技术获得的层状材料的一般弹性场溶液中的一组线性方程来实现频域中的弹性场溶液。通过与未涂覆固体的精确分析溶液和用于涂覆30层的固体的固体的精确分析溶液进行验证,验证本发明的溶液。最后,通过现有溶液进一步研究了多层涂层的结构布局的影响。结果表明,具有弹性模量的梯度结构布局从顶层逐渐减小到基板上,这对于经受表面管线接触载荷的多层固体的较大摩擦系数是优选的,对于多层的较小的摩擦系数<0.1是优选的经受表面点接触载荷的固体,并且具有弹性模量的梯度结构布局在顶层中增加,然后在底层中减小,这对于经受表面线接触负荷的多层固体的较小摩擦系数是优选的对于摩擦系数> 0.2。

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