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Re-examination of the PKHS crack model in piezoelectric materials

机译:重新检验压电材料中的PKHS裂纹模型

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In this paper, the PKHS crack model is re-examined in detail. Some novel features and better understandings are presented. It is found that the normal crack opening displacement jump (NCODJ) across the crack is always extremely small, whereas the electric potential drop (EPD) across the crack is very large for PZT-4 or PZT-5H under 20 MPa and a varying electric field from -0.5 MV/m to 0.5 MV/m. It is also found that the permittivities of the medium inside the crack gap influence the NCODJ and the EPD significantly. Of great significance is that the crack tip energy release rate (ERR) does not always show an even functional dependence on the applied electric field as previous researchers reported. Its variable tendencies (even or odd) depend on the mechanical loading levels, which are called as the load dependence feature here. In PZT-4, this load-dependence feature induced from the increasing mechanical loading may lead to a transformation of the crack tip ERR from an even functional dependence to an odd one when the applied electric loading varies within the range mentioned above, whereas in PZT-5H no such feature exists. This implies that different mechanical loading levels may yield different fracture behaviors when using the crack tip ERR as a fracture criterion. Moreover, the permittivities of medium inside the PKHS crack gap influence the variable tendencies of the ERR significantly. Thus, a useful addition to previous works is provided and a reasonable explanation for the fundamental discrepancy between previous theoretical predictions and experimental observations in piezoelectric fracture can be given. That is, previous experiments were performed for quite different piezoelectric materials, under quite different mechanical loading levels, and with quite different media inside crack gaps.
机译:本文对PKHS裂纹模型进行了详细检查。介绍了一些新颖的功能和更好的理解。发现在20 MPa和变化的电势下,PZT-4或PZT-5H的跨裂纹的正常开裂位移跳变(NCODJ)总是非常小,而跨裂纹的电势降(EPD)很大。范围从-0.5 MV / m到0.5 MV / m。还发现裂纹间隙内介质的介电常数显着影响NCODJ和EPD。极为重要的是,裂纹尖端的能量释放率(ERR)并不总是像以前的研究人员所报道的那样对施加的电场表现出均匀的功能依赖性。其可变趋势(偶数或奇数)取决于机械负载水平,在此称为负载依赖特征。在PZT-4中,当施加的电负载在上述范围内变化时,由不断增加的机械负载引起的这种负载依赖特征可能导致裂纹尖端ERR从偶数函数依赖转变为奇数依赖,而在PZT中-5H不存在这种功能。这意味着当使用裂纹尖端ERR作为断裂准则时,不同的机械载荷水平可能会产生不同的断裂行为。此外,PKHS裂纹间隙内介质的介电常数会显着影响ERR的变化趋势。因此,提供了对先前工作的有用补充,并且可以对压电断裂中的先前理论预测和实验观察之间的基本差异给出合理的解释。也就是说,先前的实验是针对完全不同的压电材料,在完全不同的机械负载水平下以及在裂纹间隙内具有完全不同的介质而进行的。

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