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    • 6. 发明授权
    • Thermoelectric conversion module
    • 热电转换模块
    • US08390113B2
    • 2013-03-05
    • US13255294
    • 2010-03-03
    • Yoshinari SawabeYuichi Hiroyama
    • Yoshinari SawabeYuichi Hiroyama
    • H01L23/34H01L35/28
    • H01L35/06H01L2924/0002H01L2924/00
    • A pressing member is prevented from being damaged by heat, heat dissipation through the pressing member on the higher-temperature side and reduction in thermoelectric conversion efficiency due to it are suppressed, and good electrical conduction is achieved even if thermoelectric conversion elements and electrodes are not cemented through a binder. A lower-temperature side electrode 6 is projecting toward a higher-temperature side substrate 8 and the lower-temperature side electrode 6 is formed with slope faces 6a, 6b, and an angle θ of each of the slope face to a surface of a lower-temperature side substrate 7 is an acute angle. A face 3a of a p-type thermoelectric conversion element 3 in contact with the lower-temperature side electrode 6 is along one slope face 6a of the lower-temperature side electrode and a face 4b of an n-type thermoelectric conversion element 4 in contact with the lower-temperature side electrode 6 is along the other slope face 6b of the lower-temperature side electrode 6; the p-type thermoelectric conversion element 3 and the n-type thermoelectric conversion element 4 are in contact with the lower-temperature side electrode 6 through the respective slope faces; a pressing member 5 presses a portion on the lower-temperature side substrate side of an outside thermoelectric conversion element 10, toward the other outside thermoelectric conversion element 10.
    • 防止加压部件受到热量的损害,通过高温侧的按压部件的散热以及由于其而产生的热电转换效率的降低,并且即使热电转换元件和电极不是,也能够实现良好的导电 通过粘合剂粘结。 低温侧电极6向高温侧基板8突出,低温侧电极6形成有斜面6a,6b和角度θ; 每个斜面与低温侧基板7的表面呈锐角。 与低温侧电极6接触的p型热电转换元件3的面3a沿着低温侧电极的一个斜面6a和接触的n型热电转换元件4的面4b 低温侧电极6沿着低温侧电极6的另一斜面6b; p型热电转换元件3和n型热电转换元件4通过相应的斜面与低温侧电极6接触; 按压构件5将外部热电转换元件10的低温侧基板侧的一部分朝向另一个外侧热电转换元件10按压。
    • 7. 发明申请
    • THERMOELECTRIC CONVERSION MODULE AND THERMOELECTRIC CONVERSION ELEMENT
    • 热电转换模块和热电转换元件
    • US20120097206A1
    • 2012-04-26
    • US13123006
    • 2009-10-05
    • Kazuo SadaokaYoshinari SawabeYuichi Hiroyama
    • Kazuo SadaokaYoshinari SawabeYuichi Hiroyama
    • H01L35/04
    • H01L35/06H01L35/22
    • The invention provides a thermoelectric conversion module and a thermoelectric conversion element. The thermoelectric conversion module comprises a plurality of thermoelectric conversion elements and a plurality of electrodes, wherein each of the thermoelectric conversion elements is made of a sintered body containing a thermoelectric conversion material and a conductive metal, has two faces, and satisfies the following condition (a) or (b): (a) each thermoelectric conversion element is electrically connected to an electrode via one face without a joint and is electrically connected to another electrode via the other face with a joint, (b) each thermoelectric conversion element is electrically connected to an electrode via one face without a joint and is electrically connected to another electrode via the other face without a joint.
    • 本发明提供一种热电转换模块和热电转换元件。 热电转换模块包括多个热电转换元件和多个电极,其中每个热电转换元件由包含热电转换材料和导电金属的烧结体制成,具有两个面,并满足以下条件( a)或(b):(a)每个热电转换元件通过一个面而不与接头电连接,并且通过另一个面与接头电连接到另一个电极,(b)每个热电转换元件是电 通过一个面没有接头连接到电极,并且经由另一个面电连接到另一个电极而没有接头。
    • 9. 发明申请
    • Thermoelectric Conversion Module
    • 热电转换模块
    • US20120018835A1
    • 2012-01-26
    • US13255294
    • 2010-03-03
    • Yoshinari SawabeYuichi Hiroyama
    • Yoshinari SawabeYuichi Hiroyama
    • H01L35/04
    • H01L35/06H01L2924/0002H01L2924/00
    • A pressing member is prevented from being damaged by heat, heat dissipation through the pressing member on the higher-temperature side and reduction in thermoelectric conversion efficiency due to it are suppressed, and good electrical conduction is achieved even if thermoelectric conversion elements and electrodes are not cemented through a binder. A lower-temperature side electrode 6 is projecting toward a higher-temperature side substrate 8 and the lower-temperature side electrode 6 is formed with slope faces 6a, 6b, and an angle θ of each of the slope face to a surface of a lower-temperature side substrate 7 is an acute angle. A face 3a of a p-type thermoelectric conversion element 3 in contact with the lower-temperature side electrode 6 is along one slope face 6a of the lower-temperature side electrode and a face 4b of an n-type thermoelectric conversion element 4 in contact with the lower-temperature side electrode 6 is along the other slope face 6b of the lower-temperature side electrode 6; the p-type thermoelectric conversion element 3 and the n-type thermoelectric conversion element 4 are in contact with the lower-temperature side electrode 6 through the respective slope faces; a pressing member 5 presses a portion on the lower-temperature side substrate side of an outside thermoelectric conversion element 10, toward the other outside thermoelectric conversion element 10.
    • 防止加压部件受到热量的损害,通过高温侧的按压部件的散热以及由于其而产生的热电转换效率的降低,并且即使热电转换元件和电极不是,也能够实现良好的导电 通过粘合剂粘结。 低温侧电极6向高温侧基板8突出,低温侧电极6形成有斜面6a,6b和角度θ; 每个斜面与低温侧基板7的表面呈锐角。 与低温侧电极6接触的p型热电转换元件3的面3a沿着低温侧电极的一个斜面6a和接触的n型热电转换元件4的面4b 低温侧电极6沿着低温侧电极6的另一斜面6b; p型热电转换元件3和n型热电转换元件4通过相应的斜面与低温侧电极6接触; 按压构件5将外部热电转换元件10的低温侧基板侧的一部分朝向另一个外侧热电转换元件10按压。