Ben-Ayoun Dana, Sadia Yatir, Gelbstein Yaniv
Unit of Energy Engineering, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
Department of Materials Engineering, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
Materials (Basel). 2018 Jan 10;11(1):99. doi: 10.3390/ma11010099.
In thermoelectric (TE) generators, maximizing the efficiency of conversion of direct heat to electricity requires the reduction of any thermal and electrical contact resistances between the TE legs and the metallic contacts. This requirement is especially challenging in the development of intermediate to high-temperature TE generators. PbTe-based TE materials are known to be highly efficient up to temperatures of around 500 °C; however, only a few practical TE generators based on these materials are currently commercially available. One reason for that is the insufficient bonding techniques between the TE legs and the hot-side metallic contacts. The current research is focused on the interaction between cobalt-metallized -type 9.104 × 10 mol % PbI₂-doped PbTe TE legs and the AgCuIn brazing alloy, which is free of volatile species. Clear and fine interfaces without any noticeable formation of adverse brittle intermetallic compounds were observed following prolonged thermal treatment testing. Moreover, a reasonable electrical contact resistance of ~2.25 mΩmm² was observed upon brazing at 600 °C, highlighting the potential of such contacts while developing practical PbTe-based TE generators.
在热电(TE)发电机中,要使直接热转化为电的效率最大化,就需要降低TE腿与金属接触之间的任何热接触电阻和电接触电阻。这一要求在中高温TE发电机的开发中尤其具有挑战性。已知基于PbTe的TE材料在高达约500°C的温度下效率很高;然而,目前基于这些材料的实用TE发电机在市场上仅有少数几款。原因之一是TE腿与热侧金属接触之间的键合技术不足。当前的研究集中在钴金属化的9.104×10摩尔% PbI₂掺杂的PbTe TE腿与不含挥发性物质的AgCuIn钎焊合金之间的相互作用。经过长时间的热处理测试后,观察到清晰且良好的界面,没有明显形成不利的脆性金属间化合物。此外,在600°C钎焊时观察到约2.25 mΩmm²的合理电接触电阻,这突出了此类接触在开发实用的基于PbTe的TE发电机时的潜力。