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Thermal Stability of P-Type BiSbTe Alloys Prepared by Melt Spinning and Rapid Sintering

机译:熔融纺丝和快速烧结制备的P型BiSbTe合金的热稳定性

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P-type BiSbTe alloys have been widely implemented in waste heat recovery from low-grade heat sources below 600 K, which may involve assorted environments and conditions, such as long-term service, high-temperature exposure (generally 473–573 K) and mechanical forces. It is important to evaluate the service performance of these materials in order to prevent possible failures in advance and extend the life cycle. In this study, p-type Bi 0.5 Sb 1.5 Te 3 commercial zone-melting (ZM) ingots were processed by melt spinning and subsequent plasma-activated sintering (MS-PAS), and were then subjected to vacuum-annealing at 473 and 573 K, respectively, for one week. The results show that MS-PAS samples exhibit excellent thermal stability when annealed at 473 K. However, thermal annealing at 573 K for MS-PAS specimens leads to the distinct sublimation of the element Te, which degrades the hole concentration remarkably and results in inferior thermoelectric performance. Furthermore, MS-PAS samples annealed at 473 K demonstrate a slight enhancement in flexural and compressive strengths, probably due to the reduction of residual stress induced during the sintering process. The current work guides the reliable application of p-type Bi 0.5 Sb 1.5 Te 3 compounds prepared by the MS-PAS technique.
机译:P型BiSbTe合金已广泛用于从低于600 K的低品位热源回收废热,这可能涉及各种环境和条件,例如长期使用,高温暴露(通常为473-573 K)和机械力。重要的是评估这些材料的服务性能,以防止提前发生可能的故障并延长使用寿命。在这项研究中,p型Bi 0.5 Sb 1.5 Te 3商业区熔炼(ZM)铸锭通过熔融纺丝和随后的等离子活化烧结(MS-PAS)进行加工,然后在473和573进行真空退火分别为K一周。结果表明,MS-PAS样品在473 K退火时表现出优异的热稳定性。然而,MS-PAS样品在573 K进行热退火会导致Te的明显升华,这会显着降低空穴浓度,并导致劣质热电性能。此外,在473 K退火的MS-PAS样品显示出抗弯强度和抗压强度略有提高,这可能是由于烧结过程中产生的残余应力降低所致。当前的工作指导了通过MS-PAS技术制备的p型Bi 0.5 Sb 1.5 Te 3化合物的可靠应用。

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