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首页> 外文期刊>Journal of the European Ceramic Society >Influence of the elastic mismatch on the Hertzian cone crack path in ceramic bilayers
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Influence of the elastic mismatch on the Hertzian cone crack path in ceramic bilayers

机译:弹性失配对陶瓷双层陶瓷赫兹锥裂纹路径的影响

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Contact damage is a key aspect in the structural integrity of ceramics, particularly ceramic coatings and multilayers that may have an elastic mismatch. An understanding of the critical load and trajectories of the crack produced by contact loads in such materials is valuable to characterize the damage tolerance and improve their rehabihty. In this work, the Hertzian cone crack initiation and propagation in brittle bilayers has been studied by FEM and verified by experimental observations. It was concluded that the elastic mismatch affects the crack initiation position and critical load for cone cracking. Critical loads are lower in bilayers than in monohthic materials. Cone crack trajectory and the corresponding fracture energy release rate are also affected by the elastic mismatch, which thus influences the damage tolerance of the system.
机译:接触损伤是陶瓷结构整体性的一个关键方面,特别是陶瓷涂层和多层陶瓷可能具有弹性失配。了解此类材料中的接触载荷所产生的裂纹的临界载荷和轨迹,对于表征损伤容忍度并改善其修复性具有重要意义。在这项工作中,已经通过有限元法研究了脆性双层中赫兹锥裂纹的萌生和扩展,并通过实验观察进行了验证。结论是,弹性失配会影响裂纹的起始位置和锥裂的临界载荷。双层中的临界载荷低于单层材料。圆锥形裂纹轨迹和相应的断裂能释放率也受弹性失配的影响,从而影响系统的损伤容限。

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