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首页> 外文期刊>Journal of Electronic Materials >Synthesis and Characterization of New Ceramic Thermoelectrics Implemented in a Thermoelectric Oxide Module
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Synthesis and Characterization of New Ceramic Thermoelectrics Implemented in a Thermoelectric Oxide Module

机译:在热电氧化物模块中实现的新型陶瓷热电材料的合成与表征

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摘要

Novel thermoelectric oxides were developed, produced, and characterized to demonstrate their promising thermoelectric conversion potential in a thermoelectric converter. Four-leg thermoelectric oxide modules were fabricated by combining p- and n-type oxide thermoelements made of pressed polycrystalline GdCo_(0.95)Ni_(0.05)O_(3) and CaMn_(0.98)Nb_(0.02)O_(3), respectively. In these modules, the p- and n-type thermoelements were connected electrically in series and thermally in parallel. The materials were joined by electrical contacts consisting of a Ag/CuO composite material. Fairly good thermal contacts were ensured by pressing the thermoelements between alumina substrates. Cross-sections of the alumina/Ag-CuO mixture/thermoelement interface were investigated by scanning electron microscopy. The temperature distribution across the module was monitored using K-type thermocouples and a micro-infrared (IR) camera. The open-circuit voltage and the load voltages of the module were measured up to a temperature difference of (DELTA)T velence 500 K while keeping the temperature of the cold side at 300 K. The output power and internal resistance were calculated. The characteristics of the module evaluated from electrical measurements were compared with respective values of the p- and n-type leg materials. An output power of 0.04 W at (DELTA)T velence 500 K led to a power density of approx0.125 W/cm~(3), where the volume of thermoelectric material was determined by a cross-section of 4 mm X 4 mm and a leg length of 5 mm.
机译:开发,生产和表征了新型热电氧化物,以证明其在热电转换器中具有广阔的热电转化潜力。通过组合分别由压制的多晶GdCo_(0.95)Ni_(0.05)O_(3)和CaMn_(0.98)Nb_(0.02)O_(3)制成的p型和n型氧化物热电元件来制造四腿热电氧化物模块。在这些模块中,p型和n型热电偶串联电连接,而热并联。这些材料通过由Ag / CuO复合材料组成的电触点连接。通过按压氧化铝基板之间的热电偶,可以确保良好的热接触。通过扫描电子显微镜研究氧化铝/ Ag-CuO混合物/热元素界面的横截面。使用K型热电偶和微红外(IR)摄像机监控模块上的温度分布。测量模块的开路电压和负载电压,直到温度差为ΔTvelence 500 K,同时将冷侧的温度保持在300K。计算输出功率和内部电阻。将通过电学测量评估的模块特性与p型和n型支脚材料的相应值进行比较。在ΔT速度500 K时输出功率为0.04 W,导致功率密度约为0.125 W / cm〜(3),其中热电材料的体积由4 mm X 4 mm的横截面确定腿长为5毫米。

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