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    • 92. 发明专利
    • Fuel cell system
    • 燃油电池系统
    • JP2012243402A
    • 2012-12-10
    • JP2011109157
    • 2011-05-16
    • Denso Corp株式会社デンソー
    • NAKAGAWA TADAHIROFUSE TAKUYAKUWAYAMA KAZUTOSHI
    • H01M8/04H01L35/16H01L35/30H01M8/00H01M8/06H01M8/12
    • Y02E60/525
    • PROBLEM TO BE SOLVED: To provide a fuel cell which can enhance generation efficiency of the entire system effectively while allowing heat self-sustained operation of the fuel cell.SOLUTION: In the fuel cell system comprising a fuel cell 10 which generates electric energy by electrochemical reaction of air (oxidant gas) and hydrogen (fuel gas), and a thermoelectric conversion element 33 which generates power by utilizing the temperature difference between a high temperature side end 33h and a low temperature side end 33l, and supplying waste-heat of the fuel cell 10 to the high temperature side end 33h of the thermoelectric conversion element 33, the low temperature side end 33l of the thermoelectric conversion element 33 is configured so that it can transfer heat to the air (supply fluid) being supplied to the fuel cell 10.
    • 要解决的问题:提供一种能够有效地提高整个系统的发电效率同时允许燃料电池的热自持运行的燃料电池。 解决方案:在包括通过空气(氧化剂气体)和氢气(燃料气体)的电化学反应产生电能的燃料电池10的燃料电池系统中,以及通过利用温度差产生电力的热电转换元件33, 高温侧端部33h和低温侧端部331,向热电转换元件33的高温侧端部33h供给燃料电池10的废热,将热电转换元件33的低温侧端部331 被配置为能够将热量传递给供给到燃料电池10的空气(供给流体)。(C)版权所有:(C)2013,JPO&INPIT
    • 95. 发明专利
    • BiTe-BASED POLYCRYSTALLINE THERMOELECTRIC MATERIAL AND THERMOELECTRIC MODULE USING THE SAME
    • 基于BiTe的多晶硅热电材料及其热电模块
    • JP2012204452A
    • 2012-10-22
    • JP2011065648
    • 2011-03-24
    • Komatsu Ltd株式会社小松製作所
    • RI YOUKUNKURIHARA TAKESHI
    • H01L35/16
    • PROBLEM TO BE SOLVED: To improve mechanical strength while minimizing degradation in the thermoelectric characteristics of a BiTe-based thermoelectric material subjected to hot plastic working by suppressing grain growth and improving the strength of at least one of grain and grain boundary.SOLUTION: The BiTe-based polycrystalline thermoelectric material obtained through hot plastic working contains at least one of Ge and Ga as an additive. The Ge is dispersed uniformly into grains or grain boundary, whereas the Ga is dispersed ununiformly into grain boundary and has an average crystal grain size of 8 μm or less due to the effect of additive dispersion.
    • 要解决的问题:通过抑制晶粒生长并提高晶粒和晶界中的至少一个的强度,来提高机械强度,同时使经过热塑性加工的BiTe系热电材料的热电特性降低最小化。 解决方案:通过热塑性加工获得的基于BiTe的多晶热电材料包含Ge和Ga中的至少一种作为添加剂。 Ge均匀分散于晶粒或晶界,Ga由于添加剂分散的影响而不均匀地分散在晶界,平均晶粒尺寸为8μm以下。 版权所有(C)2013,JPO&INPIT