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Electric and thermal contact resistances of the new type thermoelectric module assembled by a screwing method

机译:通过螺钉组装的新型热电模块的电气和热接触电阻

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For several years, we have tried to realize a new type module composed of thermoelectric elements assembled by a screwing method to avoid the thermal shear stress. We prepared a test module named the HB-twin module. In order to reduce the electric contact resistance between metallic parts in the module, we used "metallic paste" of liquid InGa+solid Zn. For the electric insulating materials at high and low temperature sides of the module, an alumina thin plate with silicone grease and a "sealing wax sheet" were used, respectively. The thermoelectric generating power and heat transfer properties of the HB-twin module were measured in comparison with those of the HZ-14 module, commercially available, with similar cross-sectional area in which the alumina thin plates were used at both sides. The maximum electric power of the HB-twin module was slightly lower than that of the HZ-14 module. In both modules, the maximum electric power was 50-70% of the generating ability of the element chips owing to the existence of electric contact resistance in the modules. The use of the metallic paste for the HB-twin module proved successful, since the effect of electric contact resistance was not more than that of the HZ-14 module.
机译:几年来,我们尝试实现由通过螺纹方法组装的热电元件组成的新型模块,以避免热剪应力。我们准备了一个名为HB-Twin模块的测试模块。为了降低模块中金属部件之间的电接触电阻,我们使用液体Inga +固体Zn的“金属糊”。对于在模块的高温和低温侧的电绝缘材料,分别使用具有硅氧烷润滑脂和“密封蜡片”的氧化铝薄板。与Hb-To模块的热电发电功率和传热性能与可商购的HB-14模块相比测量,其中两侧使用氧化铝薄板的类似横截面积。 HB-Twin模块的最大电力略低于Hz-14模块的电力。在两个模块中,由于模块中的电接触电阻存在,最大电力为元件芯片的发电能力的50-70%。使用金属浆料对于HB-双模块证明是成功的,因为电接触电阻的效果不大于HZ-14模块的影响。

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