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Room temperature mechanical properties of polycrystalline YbAl_3, a promising low temperature thermoelectric material

机译:多晶YBAL_3的室温力学性能,具有很大的低温热电材料

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摘要

Intermetallic YbAl_3 in the L1_ 2 (AuCu_3) phase is a promising material for low temperature thermoelectric applications. However, there is no experimental data in the literature on the mechanical properties of YbAl_3, although the design and development of thermoelectric modules incorporating YbAl_3 will require mechanical property data. Using resonant ultrasound spectroscopy (RUS), the room temperature Young's modulus, shear modulus, bulk modulus and Poisson's ratio were determined as a function of volume fraction porosity, P, for specimens densified by both hot pressing (HP) and pulsed electric current sin tering (PECS) polycrystalline specimens, where P ranged from 0.030 to 0.233 and mean grain sizes ranged from 0.5 to 1.4 μm. In addition, the longitudinal and acoustic wave speeds and the Debye temperature were measured. Using Vickers indentation, the hardness and fracture toughness of the specimens were also measured. Despite microstructural differences between the HP and PECS-processed specimens, the porosity dependence of the mechanical properties was a function of the total volume fraction porosity, P, independent of the details of the size and spatial distribution of pores within individual specimens.
机译:L1_2(AUCU_3)相中的金属间YBAL_3是用于低温热电应用的有希望的材料。然而,在YBAL_3的机械性能下没有实验数据,尽管包含YBAL_3的热电模块的设计和开发将需要机械特性数据。使用谐振超声波谱(RUS),室温杨氏模量,剪切模量,剪切模量和泊松比是体积分数孔隙率,P的函数,用于通过热压(HP)和脉冲电流SIN TERETED致密的样品(PECS)多晶样本,其中P范围为0.030至0.233,平均晶粒尺寸范围为0.5至1.4μm。另外,测量纵向和声波速度和脱义温度。使用维氏压痕,还测量样品的硬度和断裂韧性。尽管HP和PECS处理样本之间的微观结构差异,但机械性能的孔隙率依赖性是总体积分数孔隙率,P的函数,与单个样本内的孔的尺寸和空间分布的细节无关。

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