首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >FINITE ELEMENT ANALYSIS AND FATIGUE LIFE PREDICTION OF AN ALUMINUM ALLOY BRAZE FOR HIGH TEMPERATURE THERMOELECTRIC GENERATOR PACKAGE ASSEMBLY
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FINITE ELEMENT ANALYSIS AND FATIGUE LIFE PREDICTION OF AN ALUMINUM ALLOY BRAZE FOR HIGH TEMPERATURE THERMOELECTRIC GENERATOR PACKAGE ASSEMBLY

机译:高温热电发电机组件铝合金钎焊的有限元分析与疲劳寿命预测

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Thermoelectric generators (TEGs) are solid state devices that convert thermal energy into electrical energy using the Seebeck effect. They can be used for energy harvesting in trucks and passenger vehicles by taking advantage of the temperature difference between the exhaust pipes and ambient environment. The key issue with thermoelectric devices today is the demand for increased operating temperatures while maintaining adequate reliability and low cost. Since, TEGs are subjected to sub-critical thermal cyclic loading, ensuring satisfactory reliability is important for commercially viable products. TEGs used in passenger vehicles should be able to withstand extreme environmental conditions such as high temperature, shock and mechanical vibration [1]. Since the operating temperatures of TEGs can reach temperatures higher than 500 °C, aluminum brazes offer a good high temperature solution for die attach applications. The thermoelectric materials of TEGs are prone to oxidation and sublimation. A solution to minimize these phenomena is to enclose the TEG device in a hermetic package. This paper analyzes the reliability of aluminum alloy braze Al 718 (12% Si, 88% Al) used in TEG packages under fatigue loading. A power cycling temperature fluctuation method was employed to simulate the operating conditions of the TEGs for passenger vehicle. Low cycle fatigue simulations were performed using the direct cyclic approach embedded in the finite element software ABAQUS. Direct cyclic approach uses an extrapolation technique, which allows for efficient and computationally inexpensive simulations. The numerical model was validated using experimental test data. A validated damage model was used to analyze the cyclic damage evolution in the aluminum alloy braze for the hermetic TEG packages.
机译:热电发电机(TEGS)是使用塞贝克效应将热能转换为电能的固态装置。它们可以通过利用排气管和周围环境之间的温差来用于卡车和乘用车的能量收获。目前热电设备的关键问题是对更高的操作温度的需求,同时保持足够的可靠性和低成本。由于TEG进行亚临界热循环加载,因此确保可靠性令人满意的可靠性对于商业上可行的产品非常重要。在乘用车中使用的TEGS应该能够承受高温,冲击和机械振动等极端环境条件[1]。由于TEGS的操作温度可以达到高于500°C的温度,因此铝钎焊提供良好的高温溶液,用于模具安装应用。 TEGS的热电材料容易氧化和升华。最小化这些现象的解决方案是将TEG器件封闭在密封封装中。本文分析了疲劳负荷下TEG包装中的铝合金钎焊Al 718(12%Si,88%Al)的可靠性。采用功率循环温度波动方法来模拟乘用车的TEGS的操作条件。使用嵌入有限元软件ABAQUS中的直接循环方法进行低循环疲劳模拟。直接循环方法使用外推技术,其允许高效和计算廉价的模拟。使用实验测试数据验证了数值模型。验证损伤模型用于分析铝合金钎焊的循环损伤演化为封闭式TEG包装。

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