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Mechanical properties of Bi _xSb _(2-x)Te _3 nanostructured thermoelectric material

机译:Bi _xSb _(2-x)Te _3纳米结构热电材料的力学性能

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摘要

Research on thermoelectric (TE) materials has been focused on their transport properties in order to maximize their overall performance. Mechanical properties, which are crucial for system reliability, are often overlooked. The recent development of a new class of high-performance, low-dimension thermoelectric materials calls for a better understanding of their mechanical behavior to achieve the desired system reliability. In the present study we investigate the mechanical behavior of nanostructure bulk TE material p-type Bi _xSb _(2x)Te _3 by means of nanoindentation and 3D finite element analysis. The Youngs modulus of the material was estimated by the OliverPharr (OP) method and by means of numerically assisted nanoindentation analysis yielding comparable values about 40GPa. Enhanced hardness and yield strength can be predicted for this nanostructured material. Microstructure is studied and correlation with mechanical properties is discussed.
机译:为了最大化其整体性能,对热电(TE)材料的研究一直集中在其传输性能上。对于系统可靠性至关重要的机械性能通常被忽略。新型高性能,低尺寸热电材料的最新发展要求对它们的机械性能有更好的了解,以实现所需的系统可靠性。在本研究中,我们通过纳米压痕和3D有限元分析,研究了纳米结构体TE材料p型Bi _xSb _(2x)Te _3的力学行为。材料的杨氏模量通过OliverPharr(OP)方法进行估算,并通过数字辅助纳米压痕分析得到大约40GPa的可比值。可以预测该纳米结构材料的硬度和屈服强度提高。研究了微观结构,并讨论了与力学性能的关系。

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