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Can ferrroelasticity be evaluated by nanoindentation?

机译:可以通过纳米endentation评估纤维弹性吗?

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摘要

The present study investigated the possibility of evaluating ferroelastic mechanical characteristics by spherical indentation. Finite element simulation of spherical indentation, with a relatively large sphere, of a ferroelasticplastic material was performed using characteristic bulk data of a typical ferroelastic oxide (La-Sr-Co-Fe-O). The simulation results showed that the ferroelastic mechanical behaviour cannot be observed in the indentation load vs depth curve, but is clearly observable in the indentation stress vs indentation strain curve, which can be obtained reliably in experiments by estimating the contact radius using load-partial unloading sequences. The method can be reliable when the indentation stress is under the upper ferroelastic critical stress. Therefore, in principle ferroelastic mechanical characteristics could be evaluated by spherical indentation by obtaining the indentation stress vs indentation strain curve using partial unloading to estimate the contact radius, although the requirements are very difficult to satisfy in actual experiments.
机译:本研究探讨了通过球形压痕评估铁弹性力学特性的可能性。利用典型铁弹性氧化物(La-Sr-Co-Fe-O)的特征体数据,对铁弹塑性材料的球形压痕进行了有限元模拟。模拟结果表明,在压痕载荷-深度曲线中无法观察到铁弹性力学行为,但在压痕应力-压痕应变曲线中可以清楚地观察到,通过使用载荷-部分卸载序列估计接触半径,可以在实验中可靠地获得该曲线。当压痕应力低于上限铁弹性临界应力时,该方法是可靠的。因此,原则上可以通过球形压痕来评估铁弹性力学特性,方法是通过部分卸载获得压痕应力-压痕应变曲线来估计接触半径,尽管在实际实验中很难满足要求。

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