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Optimization design and residual thermal stress analysis of PDC functionally graded materials

机译:PDC功能梯度材料的优化设计和残余热应力分析

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摘要

The distribution of thermal stresses in functionally graded polycrystalline diamond compact (PDC) and in single coating of PDC are analyzed respectively by thermo-mechanical finite element analysis (FEA). It is shown that they each have a remarkable stress concentration at the edge of the interfaces. The diamond coatings usually suffer premature failure because of spallation, distortion or defects such as cracks near the interface due to these excessive residual stresses. Results showed that the axial tensile stress in FGM coating is reduced from 840 MPa to 229 MPa compared with single coating, and that the shear stress is reduced from 671 MPa to 471 MPa. Therefore, the single coating is more prone to spallation and cracking than the FGM coating. The effects of the volume compositional distribution factor (n) and the number of the graded layers (L) on the thermal stresses in FGM coating are also discussed respectively. Modelling results showed that the optimum value of the compositional distribution factor is 1.2, and that the best number of the graded layers is 6.
机译:通过热机械有限元分析(FEA)分别分析了功能梯度多晶金刚石复合片(PDC)和PDC单涂层中的热应力分布。结果表明,它们各自在界面边缘处都具有显着的应力集中。金刚石涂层通常会因剥落,变形或缺陷(例如由于这些过大的残余应力而在界面附近产生裂纹)而遭受过早的破坏。结果表明,与单层涂层相比,FGM涂层的轴向拉伸应力从840 MPa降低到229 MPa,剪切应力从671 MPa降低到471 MPa。因此,单一涂层比FGM涂层更易于散裂和开裂。分别讨论了体积成分分布因子(n)和梯度层数(L)对FGM涂层热应力的影响。建模结果表明,组成分布因子的最佳值为1.2,渐变层的最佳数量为6。

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