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The Mixed-Mode Fatigue Crack Propagation Model of Piezoelectric Materials Under Electric Fatigue Loading by the Jk-Integral 被引量:1
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作者 Xianghua Chen Chunguang Wang Qun Li 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2024年第4期634-641,共8页
The electric fatigue load has a significant effect on the crack propagation behavior and failure life of piezoelectric materials and devices. In this paper, an electrical mixed-mode fatigue crack propagation model for... The electric fatigue load has a significant effect on the crack propagation behavior and failure life of piezoelectric materials and devices. In this paper, an electrical mixed-mode fatigue crack propagation model for piezoelectric materials is proposed based on the piezoelectric Jk-integral theory. The crack initiation, propagation, and life prediction criteria of piezoelectric materials under electric fatigue loading are given by this model, and the finite element simulation model is established to study the electrical mixed-mode crack propagation behavior of piezoelectric structures. Meanwhile, the electrical mixed-mode fatigue crack propagation model is applied to the fatigue crack propagation behavior of a piezoelectric typical defective structure, the crack–hole interference model. The mixed-mode crack propagation, fatigue life, and the interference behavior between the crack and hole at various hole locations of the crack–hole interference model are well recognized by this model. The crack propagation behavior under different electrical load intensities is also considered. The results show that the hole in front of the crack tip inhibits crack propagation to a certain extent, and the strength of electrical load affects the fatigue life of piezoelectric materials and structures. Therefore, the proposed electrical mixed-mode fatigue crack propagation model provides a reference for predicting the mixed-mode fatigue crack propagation behavior and fatigue life of piezoelectric structures under electric fatigue loading. 展开更多
关键词 Configurational force J k-integral PIEZOELECTRIC Mixed-mode crack propagation Life prediction
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三维C/C复合材料烧/剥蚀行为的机械剥蚀细观模型
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作者 杨晶 景昭 +5 位作者 葛敬冉 张斌斌 李伟 张启 尚童 梁军 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2024年第2期131-146,共16页
热化学烧蚀和机械剥蚀是碳/碳(C/C)复合材料在热防护系统中面临的常见问题.本文建立了一个细观机械剥蚀模型用于分析三维C/C复合材料的烧/剥蚀行为.首先,建立了一个描述C/C复合材料反应和扩散现象的细观热化学烧蚀模型,并通过数值模拟... 热化学烧蚀和机械剥蚀是碳/碳(C/C)复合材料在热防护系统中面临的常见问题.本文建立了一个细观机械剥蚀模型用于分析三维C/C复合材料的烧/剥蚀行为.首先,建立了一个描述C/C复合材料反应和扩散现象的细观热化学烧蚀模型,并通过数值模拟方法获得了烧蚀的形貌;然后,获得的瞬态烧蚀形貌被作为机械剥蚀分析的几何模型.对于机械剥蚀,采用渐近损伤方法对复合材料在机械剥蚀作用下的损伤和失效行为进行分析;接着,提出了一个策略用于探讨C/C复合材料的烧/剥蚀行为,该策略将机械剥蚀引入到烧蚀的数值计算中.本文通过数值的方法计算了气流剪切力与表面粗糙度之间的关系,该关系可以被当作机械剥蚀判据引入到烧蚀的数值计算中;还探讨了反应/扩散比、组分反应性差异和气流剪切的临界压力对复合材料烧/剥蚀的质量损失率和机械剥蚀因子的影响.结果表明:本文提出的机械剥蚀细观模型能够较好地分析C/C复合材料的机械剥蚀损伤和失效行为及表征其烧/剥蚀性能;本文对热防护系统材料的评价和设计具有一定的指导意义. 展开更多
关键词 C/C复合材料 细观模型 机械剥蚀 临界压力 热防护系统 失效行为 热化学烧蚀 表面粗糙度
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