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New ceramics related investigation of the indentation energy concept

机译:与压痕能量概念相关的新陶瓷研究

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The nanomechanical properties of advanced materials can be determined from analytical models or experimentally using depth sensing indentation (DSI) instruments. In the latter method, load-displacement and energy data can be used successfully to determine the required properties. Three different values of the energy have been commonly used: the total, the plastic and the elastic values. In the present work dealing with ceramics (SiO_2, TiO_2 and Ta_2O_5), instead of limiting the energy concept to these energies, we consider for the first time a set of other energy values obtained from a new partition of the load-displacement plane. It is noticed that, with no dependence on load and displacement changes, some linear relationships hold between these energy terms and allow introducing new constants specific to the mechanical behaviour of ceramics. An exhaustive representation of all possible energies is proposed with identification of the five unique ones. The absolute energy is the one that reveals to be a reference value in comparison to the others, and useful for further investigations related to the modelling of indentation procedure.
机译:可以从分析模型或使用深度感应压痕(DSI)仪器通过实验确定高级材料的纳米力学性能。在后一种方法中,负载位移和能量数据可以成功地用于确定所需的特性。通常使用三种不同的能量值:总值,塑性值和弹性值。在处理陶瓷(SiO_2,TiO_2和Ta_2O_5)的当前工作中,我们没有考虑将能量概念限制为这些能量,而是首次考虑了从载荷位移平面的新分区中获得的一组其他能量值。值得注意的是,在不依赖于载荷和位移变化的情况下,这些能量项之间保持了一些线性关系,并允许引入特定于陶瓷机械性能的新常数。提出了所有可能能量的详尽表示,并确定了五个独特的能量。绝对能量是一个与其他能量相比具有参考价值的能量,对于与压痕过程建模有关的进一步研究很有用。

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