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Dynamic Fracture Analysis of Functional Gradient Material Coating Based on the Peridynamic Method

机译:基于白动力学方法的功能梯度材料涂层动态断裂分析

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Functional gradient materials (FGMs) have tremendous potential due to their characteristic advantage of asymptotic continuous variation of their properties. When an FGM is used as a coating material, damage and failure of the interface with the substrate component can be effectively inhibited. In order to study the dynamic crack propagation in FGM coatings, a new method, peridynamics (PD), was used in the present study to simulate dynamic fractures of FGM coatings bonded to a homogeneous substrate under dynamic loading. The bond-based PD theory was employed to study crack propagation and branching in the FGM coating. The influences of the coating gradient pattern, loading, and the geometry and size of the structure on crack curving and propagation under impact loading were investigated. The numerical results show that different forms of the elastic modulus of graded material, the geometry of the structure, and the loading conditions have considerate effects on crack propagation in FGM coatings, but a specific form of elastic modulus had a limited effect on the dynamic fracture of FGM coating.
机译:功能梯度材料(FGMS)由于其特征优势,具有其性质的渐近连续变化的特征优势。当使用FGM作为涂层材料时,可以有效地抑制与基板组件的界面的损坏和失效。为了研究FGM涂层中的动态裂纹繁殖,在本研究中使用了一种新方法,白颌动力学(Pd),以在动态载荷下模拟粘合到均相底物的FGM涂层的动态骨折。基于键的PD理论用于研究FGM涂层中的裂纹繁殖和分支。研究了涂层梯度图案,负荷和几何形状和裂纹弯曲结构的几何形状和尺寸的影响,并在冲击载荷下进行了影响。数值结果表明,不同形式的渐变材料的弹性模量,结构的几何形状,以及负载条件对FGM涂层中的裂纹繁殖具有效果,但特定形式的弹性模量对动态骨折有有限的影响FGM涂层。

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