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Indentation Strength Of A Piezoelectric Ceramic: Experiments And Simulations

机译:压电陶瓷压痕强度的实验与仿真

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摘要

The spherical indentation strength of a lead zirconate titanate (PZT) piezoelectric ceramic was investigated under poled and unpoled conditions and with different electrical boundary conditions (arising through the use of insulating or conducting indenters). Experimental results show that the indentation strength of the poled PZT is higher than that of the unpoled PZT. The strength of a poled PZT under a conducting indenter is higher than that under an insulating indenter. Poling direction (with respect to the direction of indentation loading) did not significantly affect the strength of material. Complementary finite element analysis (FEA) of spherical indentation of an elastic, linearly coupled piezoelectric half-space is conducted for rationalizing the experimental observations. Simulations show marked dependency of the contact stress on the boundary conditions. In particular, contact stress redistribution in the coupled problem leads to a change in the fracture initiation, from Hertzian cracking in the unpoled material to subsurface damage initiation in poled PZT. These observations help explain the experimental ranking of strength the PZT in different material conditions or under different boundary conditions.
机译:在极化和非极化条件下以及在不同的电边界条件下(通过使用绝缘或导电压头来提高),研究了锆酸钛酸铅(PZT)压电陶瓷的球形压痕强度。实验结果表明,极化PZT的压痕强度高于未极化PZT的压痕强度。导电压头下的极化PZT的强度高于绝缘压头下的强度。极化方向(相对于压痕加载方向)不会显着影响材料的强度。进行弹性,线性耦合压电半空间的球形压痕的互补有限元分析(FEA),以使实验结果合理化。仿真显示了接触应力对边界条件的显着依赖性。特别是,耦合问题中的接触应力再分布会导致断裂始端发生变化,从未极化材料中的赫兹开裂到极化PZT中的地下损伤起始。这些观察结果有助于解释在不同材料条件下或在不同边界条件下PZT强度的实验等级。

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