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赝三元材料
相关语句
  quasi-ternary material
     Investigation on two-stage segmented thermoelectric module with quasi-ternary material
     两段式结构赝三元材料热电模块的研究
短句来源
     Based on experiments ana researches of monolithic thermoelectric module of quasi-ternary material, two-stage segmented one is designed and fabricated using the existing producdon technology of semiconductor freezer, employing quasi-ternary materials with different resistance rate, and according to temperature character of thermoelectric material and work temperatures of cold end and hot end.
     在实验研究单段式结构赝三元材料的热电模块基础上,利用现有半导体致冷器生产工艺,依据热电材料的温度特性和冷热端工作温度,采用不同电阻率的赝三元材料,设计制作了两段式结构的热电模块.
短句来源
  相似匹配句对
     THE DEVELOPMENT OF THE PSEUDO-TERNARY SEMICONDUCTOR COOLING MATERIAL
     半导体致冷材料的研究
短句来源
     Research on Preparation and Properties of Pseudo-ternary Semiconductor Cooling Sintered Materials
     热电烧结体材料制作技术的研究
短句来源
     Bioceramic Materials
     生物陶瓷材料()
短句来源
     Methods.
     材料和方法
短句来源
     PSEUDO-TERNARY THERMOELECTRIC MATERIALS PREPARED BY MECHANICAL ALLOYING COLD-PRESSING AND SINTERING METHODS
     热电材料的机械合金化冷压烧结法制备
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Based on experiments ana researches of monolithic thermoelectric module of quasi-ternary material, two-stage segmented one is designed and fabricated using the existing producdon technology of semiconductor freezer, employing quasi-ternary materials with different resistance rate, and according to temperature character of thermoelectric material and work temperatures of cold end and hot end. When the difference of temperature between cold end and hot one is 80k, both its output power and generation efficiency...

Based on experiments ana researches of monolithic thermoelectric module of quasi-ternary material, two-stage segmented one is designed and fabricated using the existing producdon technology of semiconductor freezer, employing quasi-ternary materials with different resistance rate, and according to temperature character of thermoelectric material and work temperatures of cold end and hot end. When the difference of temperature between cold end and hot one is 80k, both its output power and generation efficiency are 1. 8 times more than single-section one' s.

在实验研究单段式结构赝三元材料的热电模块基础上,利用现有半导体致冷器生产工艺,依据热电材料的温度特性和冷热端工作温度,采用不同电阻率的赝三元材料,设计制作了两段式结构的热电模块.研究表明,当冷、热端工作温差为80K时,其输出功率和发电效率均比单段式结构的热电模块提高80%左右.

 
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