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Mathematical model for crack arrest of a transversely cracked piezoelectromagnetic strip - Part I

机译:横向裂纹的压电电磁条的止裂数学模型-第一部分

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摘要

A magnetic, electric and mechanical yield model is proposed for a cracked piezoelectromagnetic ceramic narrow strip. The strip is subjected to anti-plane mechanical and in-plane electric and magnetic loads, consequently the crack opens in self-similar fashion forming a magnetic, a saturation and a slide zone ahead each tip. These in turn are arrested by prescribing a magnetic, electric and mechanical load, respectively. Employing Fourier integral transform the problem reduces to the solution of three dual integral equations. The solution of dual integral equations is then expressed in terms of Fredholm integral equation of second kind. Expressions are derived for yield induction zone, slide-yield zone and saturation zone lengths, energy release rate. A case study is carried for BaTiO_3-CoFe_2O_4 and results are presented graphically. It is shown that proposed model is capable of crack opening arrest under small-scale-yielding.
机译:提出了裂纹压电陶瓷窄带的磁,电和机械屈服模型。条带承受反平面的机械和平面内的电和磁载荷,因此,裂纹以自相似的方式打开,在每个尖端之前形成了磁,饱和和滑动区域。依次规定磁,电和机械负载,可以分别阻止这些负载。使用傅里叶积分变换,问题简化为三个对偶积分方程的解。然后用第二类Fredholm积分方程表示对偶积分方程的解。导出了屈服感应带,滑动屈服带和饱和带长度,能量释放速率的表达式。对BaTiO_3-CoFe_2O_4进行了案例研究,并以图形方式显示了结果。结果表明,所提出的模型能够在小批量生产的情况下实现裂纹的止裂。

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