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Accelerateci life assessment methods for thermoelectric modules with mechanical stress tests

机译:具有机械应力测试的热电模块的加速寿命评估方法

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During the operation of a Thermoelectric (TE) module, one side of it has thermal expansion and the other side has cooling shrinkage. The corresponding resulted tensile and compressive stresses at the interfaces of its constituent materials will often cause the fatigue failure, especially during the repeated operations of the module. However, knowing the life of TE Modules is often required no matter for designers or end users. Thus, this study investigated some alternatives of the quick life assessment methods by applying mechanical stresses through bend and shear tests respectively. Generally, the reliability tests of the TE module is time consuming and usually take thousands of hours to get a result. It can't fit the requirement in the development of TE products. Based on the concept of accelerated life test, this study developed the mechanical bend test to simulate the deformation of the TE Modules during operations. A special fixture was designed in the tests that can load the TE module to generate similar deformation as that in the real world applications. Considering shear stresses are also the dominate factor in causing the TE modules' failure, a shear test was also developed for testing the TE modules. The results from these two tests are compared and discussed. Regarding the bend test, various descending displacements and speeds are used for shortening the test time. The results and failure modes are also examined. Besides, finite element analysis was used for the parametric analyses of different geometrical dimensions of TE Modules for checking the optimum design of it operational life. Also, the normal and shear stresses on the TE Modules with those tests are also compared with each other. The test results showed that it takes longer time for failure to occur with the bend test than that with the shear test. It was concluded that TE modules are more vulnerable to shear loadings. Based on the experimental and analytical investigations, the mathematical - odels to predict the service life are presented, and even the design improvement for TE modules is also proposed. It is believed that the studied results will be beneficial to the related applications of thermoelectric modules.
机译:在热电(TE)模块运行期间,其一侧有热膨胀,另一侧有冷却收缩。在其组成材料的界面处相应产生的拉伸应力和压缩应力通常会导致疲劳失效,尤其是在模块重复操作期间。但是,无论是设计者还是最终用户,通常都需要了解TE模块的寿命。因此,本研究通过分别通过弯曲和剪切试验施加机械应力,研究了快速寿命评估方法的一些替代方法。通常,TE模块的可靠性测试非常耗时,并且通常需要数千小时才能获得结果。它不能满足TE产品开发的要求。基于加速寿命测试的概念,本研究开发了机械弯曲测试来模拟TE模块在操作过程中的变形。在测试中设计了一种特殊的夹具,该夹具可以加载TE模块以产生与实际应用中相似的变形。考虑到剪切应力也是导致TE模块故障的主要因素,因此还开发了用于测试TE模块的剪切测试。比较和讨论了这两个测试的结果。关于弯曲测试,使用各种下降的位移和速度来缩短测试时间。还检查了结果和故障模式。此外,有限元分析被用于TE模块不同几何尺寸的参数分析,以检查其使用寿命的最佳设计。此外,还将使用这些测试对TE模块上的法向应力和剪切应力进行比较。测试结果表明,与剪切测试相比,弯曲测试失败所需的时间更长。结论是,TE模块更容易受到剪切载荷的影响。在实验和分析研究的基础上,提出了预测使用寿命的数学方法,甚至提出了TE模块的设计改进。相信研究结果将有利于热电模块的相关应用。

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