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Mechanical Analysis of Interface in Coating Structure under Conical Concave Indenter with FEM

Mechanical Analysis of Interface in Coating Structure under Conical Concave Indenter with FEM

作     者:Shi-Qing Huang Pan-Jun Tang Wen-Hua Zhang Shi-Qing Huang;Pan-Jun Tang;Wen-Hua Zhang

作者机构:MOE Key Lab of Disaster Forecast and Control in Engineering Jinan University Guangzhou China School of Mechanics and Construction Engineering Jinan University Guangzhou China 

出 版 物:《Journal of Applied Mathematics and Physics》 (应用数学与应用物理(英文))

年 卷 期:2022年第10卷第5期

页      面:1509-1524页

学科分类:08[工学] 080502[工学-材料学] 0805[工学-材料科学与工程(可授工学、理学学位)] 

主  题:Coating Structure Finite Element Method Contact Mechanics Interfacial 

摘      要:The evaluation of mechanical properties of coating structures has always been a very important topic in the fields of mechanics, materials, and machinery. The traditional evaluation methods are easy to produce deviation, because the ratio of coating thickness to substrate thickness is too small. Therefore, accurate analysis and calculation is particularly important. Indentation technology is an important means of coating structure analysis and measurement, the basis of standardized application and analysis of coating structure, and a classical method for accurate analysis and calculation of coating structure. The finite element method is a very good means to analyze and study this kind of problems because of its applicability. Based on the finite element method, this paper analyzes and studies the interface connection form, substrate, and local delamination effects of the indentation behavior of the coating structure under the conical concave indenter. In this paper, the finite element method, which is more convenient for analysis and calculation, is used to analyze the influence of interface connection form, substrate, and local delamination on the coating structure. The results of force displacement, interface normal stress, and interface shear stress are analyzed in detail, and the effects of the three effects on the coating structure are proved. The significance of this study is reflected in: based on the analysis of the three effects of interface connection form, substrate, and local delamination, the mechanical properties of the coating structure are more in-depth, which provides some reference for mechanical engineers to design and test the coating structure.

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