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首页> 外文期刊>Journal of Electronic Materials >Structural Reliability Evaluation of Thermoelectric Generator Modules: Influence of End Conditions, Leg Geometry, Metallization, and Processing Temperatures
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Structural Reliability Evaluation of Thermoelectric Generator Modules: Influence of End Conditions, Leg Geometry, Metallization, and Processing Temperatures

机译:热电发电机模块的结构可靠性评估:最终条件,腿几何,金属化和加工温度的影响

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摘要

Structural reliability of thermoelectric generators (TEGs) in medium to high temperature applications still remains a challenge. Currently there are no established standards for evaluating the thermomechanical reliability of TEGs during new material and module development phases in the industry. In this work we implemented a procedure for evaluating the reliability of brittle TE materials based on the common practice in the ceramics industry. The probabilistic thermomechanical reliability of TEG couples and modules is evaluated using Weibull analysis. Finite element simulations were carried out to study the influence of TEG couple parameters such as leg geometry, dimensions, spacing, metallization thickness, and processing conditions on the stresses, and the structural reliability evaluations were conducted based on the TE material stresses. Results showed that the boundary conditions and processing temperatures have significant influence on the TE material and metallization stresses and overall device reliability. The external compressive load significantly enhanced structural reliability. Results also showed that among geometrical parameters the leg length has a dominating influence on the overall stresses compared to the leg cross-sectional shapes. The cross-section geometry of legs showed considerable effect at shorter lengths, and the influence diminished with increased lengths. The proposed approach for evaluating the structural reliability could be integrated with performance optimization techniques for developing optimal and reliable TEG devices.
机译:中高温应用中的热电发电机(TEG)的结构可靠性仍然是挑战。目前,在行业中新材料和模块开发阶段,没有建立的标准来评估TEGS的热机械可靠性。在这项工作中,我们基于陶瓷行业的共同实践来实现评估脆弱材料可靠性的程序。使用Weibull分析评估TEG耦合和模块的概率热机械可靠性。进行有限元模拟以研究TEG耦合参数,例如腿部几何,尺寸,间隔,金属化厚度和处理条件的影响,并且基于TE材料应力进行结构可靠性评估。结果表明,边界条件和加工温度对TE材料和金属化应力和整体装置可靠性具有显着影响。外部压缩载荷显着提高了结构可靠性。结果还表明,与腿部横截面形状相比,腿长的几何参数对整体应力的主导影响。腿部的横截面几何形状在较短的长度下表现出相当大的效果,并且随着长度的增加而减小。用于评估结构可靠性的所提出的方法可以与用于开发最佳和可靠的TEG器件的性能优化技术集成。

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