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Use of a Functionally Graded Interlayer to Improve Bonding in Coated Plates

机译:使用功能渐变夹层来改善涂层板的结合力

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摘要

Coatings play an important role in a variety of engineering applications, protecting metallic or ceramic substrates against oxidation, heat penetration, wear and corrosion. Conventional coatings, which usually consist of one or two homogeneous layers deposited on a substrate, are susceptible to cracking and debonding due to the mismatch of thermomechanical properties between the coating and the substrate. To increase resistance of coatings to functional failure, the concept of a functionally graded material is being actively explored in coating design. One of the possible ways to eliminate the mismatch of material parameters between the coating and the substrate is to introduce a functionally graded interlayer between the substrate and the top coat. This paper investigates elastic deformation of coated plates with and without a functionally graded interlayer in the context of three-dimensional elasticity, assuming the Young's modulus of the interlayer varies exponentially through the thickness. It is shown that the use of the functionally graded interlayer in plates subjected to transverse loading eliminates discontinuity of the in-plane normal stress across interfaces without increasing the stress magnitude at the top surface of the coating.
机译:涂料在各种工程应用中起着重要作用,可以保护金属或陶瓷基材免受氧化,热渗透,磨损和腐蚀。常规涂层通常由沉积在基材上的一层或两层均质层组成,由于涂层和基材之间的热机械性能不匹配,因此容易破裂和脱粘。为了增加涂层对功能失效的抵抗力,正在涂层设计中积极探索功能梯度材料的概念。消除涂层和底材之间材料参数不匹配的一种可能方法是在底材和面漆之间引入功能渐变的中间层。本文假设在中间层的杨氏模量随厚度呈指数变化的情况下,在三维弹性的情况下研究具有和不具有功能梯度中间层的涂层板的弹性变形。结果表明,在承受横向载荷的板上使用功能梯度夹层可以消除界面上的面内法向应力的不连续性,而不会增加涂层顶表面的应力大小。

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