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Numerical analysis of fracture in smart composite structures

机译:智能复合结构断裂的数值分析

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摘要

Modern adaptive mechanical systems consists of composite structures with integrated sensors and actuators made of smart materials, as e.g. piezoelectric ceramics. For the development and application of such smart composite structures, problems of fracture and fatigue play an essential role. In the paper, the concepts of piezoelectric fracture mechanics are applied to crack-like defects in smart composite structures subjected to electrical and mechanical loads. Effective finite element tefchniques are suggested for computing the singular coupled electrome-chanical fields at the crack tips and for determining the fracture controlling parameters like mechanical as well as electrical stress intensity factors and energy release rates. Their potential use for fracture analysis in adaptive structures is demonstryated by treating various pr9oblems of cracks and interface cracks in a composite laminate with embedded piezoelectric ceramic layers.
机译:现代自适应机械系统由复合结构组成,这些结构具有集成的传感器和由智能材料制成的执行器,例如压电陶瓷。对于这种智能复合结构的开发和应用,断裂和疲劳问题起着至关重要的作用。在本文中,压电断裂力学的概念被应用于智能复合结构中承受电和机械载荷的裂纹状缺陷。建议使用有效的有限元技术来计算裂纹尖端处的奇异耦合机电场,并确定诸如机械以及电应力强度因子和能量释放速率之类的断裂控制参数。通过在具有嵌入式压电陶瓷层的复合层压板中处理各种裂纹和界面裂纹问题,证明了它们在适应性结构断裂分析中的潜在用途。

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