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    • 1. 发明专利
    • The thermoelectric conversion module
    • 热电转换模块
    • JP2014086650A
    • 2014-05-12
    • JP2012236208
    • 2012-10-26
    • Hitachi Chemical Co Ltd日立化成株式会社Honda Motor Co Ltd本田技研工業株式会社
    • TOMINAGA MASANAOJINUSHI TAKAHIROISHIJIMA ZENZOMORI MASAYOSHIYAMAGAMI TAKESHIMATSUDA HIROSHI
    • H01L35/32H01L35/30H02N11/00
    • PROBLEM TO BE SOLVED: To provide a highly practical thermoelectric conversion module having improved thermoelectric conversion efficiency and using, as a heat source, the waste heat, etc. of a compressive fluid such as an exhaust gas from various kinds of industrial apparatus and an automobile, etc.SOLUTION: The thermoelectric conversion module comprises: a cylindrical tube body 31 used for a compressive fluid to flow; a high temperature side electrode part 12 disposed on each of the top face and the bottom face sides of the tube body and electrically insulated from the tube body; a thermoelectric conversion element 13 having a p-type thermoelectric semiconductor and an n-type thermoelectric semiconductor electrically connected in series on the high temperature side electrode part; a low temperature side electrode part 14 having a p-type thermoelectric semiconductor and an n-type thermoelectric semiconductor electrically connected in series on the thermoelectric conversion element; and a case member 15 constructed to have a space for a coolant to flow between the low temperature side electrode part and itself and used for accommodating the tube body, the high temperature side electrode part, the thermoelectric conversion element, and the low temperature side electrode part. The thermoelectric conversion module is configured so as to block at least a part of an internal space equivalent to a non-formation region of the thermoelectric conversion element in a direction almost perpendicular to the passage direction of the compressive fluid.
    • 要解决的问题:提供一种具有改进的热电转换效率并且使用诸如来自各种工业设备和汽车的废气的压缩流体的废热等作为热源的高度实用的热电转换模块 等等。解决方案:热电转换模块包括:用于压缩流体流动的圆筒管体31; 设置在管体的上表面和底面两侧的高温侧电极部12,与管体电绝缘; 具有在高温侧电极部上串联电连接的p型热电半导体和n型热电半导体的热电转换元件13; 在热电转换元件上串联电连接的p型热电半导体和n型热电半导体的低温侧电极部14; 以及壳体构件15,其被构造成具有用于冷却剂的空间在低温侧电极部与本身之间流动并用于容纳管体,高温侧电极部,热电转换元件和低温侧电极 部分。 热电转换模块被构造成在大致垂直于压缩流体的通过方向的方向上阻挡与热电转换元件的非形成区域相当的内部空间的至少一部分。
    • 2. 发明专利
    • Thermoelectric conversion power generator
    • 热电转换发电机
    • JP2014075552A
    • 2014-04-24
    • JP2012223590
    • 2012-10-05
    • Hitachi Chemical Co Ltd日立化成株式会社Honda Motor Co Ltd本田技研工業株式会社
    • TOMINAGA MASANAOJINUSHI TAKAHIROISHIJIMA ZENZOMORI MASAYOSHIYAMAGAMI TAKESHIMATSUDA HIROSHI
    • H01L35/10H01L35/30H02N11/00
    • PROBLEM TO BE SOLVED: To provide a thermoelectric conversion power generator in which deterioration of lead wires can be suppressed, by separating the lead wires from a heating passage at a part where the lead wires connected with a thermoelectric conversion module are taken out.SOLUTION: A heating part 35A and cooling parts 5A, 5B are disposed, respectively, on both sides of a thermoelectric conversion module 4, and power is generated by giving a temperature difference to the thermoelectric conversion module 4 by these heating part 35A and cooling parts 5A, 5B. In such a thermoelectric conversion generator 1, the thermoelectric conversion module 4 is housed in a closed vessel 3, and lead wires 46 are wired. The heating part 35A has a heating passage 351 through which a heating fluid H flows, and the lead wires 46 are taken out from a position on the side of the heating passage 351 at the downstream side end thereof, while penetrating the sidewall of an outer cover 33 on the cooling part 5B side.
    • 要解决的问题:提供一种热电转换发电机,其中可以通过在与热电转换模块连接的引线被取出的部分处将引线与加热通道分离来抑制引线的劣化。解决方案: 分别在热电转换模块4的两侧设置有加热部件35A和冷却部件5A,5B,并且通过这些加热部件35A和冷却部件5A向热电转换模块4产生温度差而产生功率, 5B。 在这样的热电转换发电机1中,热电转换模块4容纳在密闭容器3中,引线46被布线。 加热部分35A具有加热流体H流过的加热通道351,并且引线46在其下游侧端部从加热通道351的侧面的位置被取出,同时穿过外部的侧壁 盖33在冷却部5B侧。
    • 3. 发明专利
    • Thermoelectric generator
    • 热电发生器
    • JP2014075551A
    • 2014-04-24
    • JP2012223521
    • 2012-10-05
    • Hitachi Chemical Co Ltd日立化成株式会社Honda Motor Co Ltd本田技研工業株式会社
    • JINUSHI TAKAHIROTOMINAGA MASANAOISHIJIMA ZENZOMORI MASAYOSHIYAMAGAMI TAKESHIMATSUDA HIROSHI
    • H01L35/30H01L35/14H02N11/00
    • PROBLEM TO BE SOLVED: To bring plate members, which are provided on both sides of a thermoelectric conversion module to create a temperature difference therefor, into close contact with the thermoelectric conversion module in a uniformly pressurized state without complexity and increased costs in a device.SOLUTION: In a hermetically sealed container 3, which has a circulation pipe 35 disposed on the inside of a housing 30, a thermoelectric conversion module 4 is sandwiched between an inside rigid part 312 of a movable plate part 31 of the housing 30 and an inner plate part 36 of the circulation pipe 35 to be disposed. The inside rigid part 312 is pressurized to the thermoelectric conversion module 4 by an elastic plate 7 accommodated in cooling parts 5A, 5B to be brought into close contact therewith. By cooling the inside rigid part 312 of the movable plate part 31 with the cooling parts 5A, 5B and flowing a heated fluid H through the circulation pipe 35 to heat the inner plate part 36, a temperature difference is created for the thermoelectric conversion module 4 to generate power.
    • 要解决的问题:为了使设置在热电转换模块的两侧上的板构件以均匀加压的状态与热电转换模块紧密接触而不会在装置中复杂和增加成本。 解决方案:在具有设置在壳体30内部的循环管35的气密密封容器3中,将热电转换模块4夹在壳体30的可动板部31的内部刚性部312和内部 要布置的循环管35的板部分36。 内部刚性部分312通过容纳在冷却部分5A,5B中的弹性板7加压到热电转换模块4,以使其与其紧密接触。 通过用冷却部件5A,5B冷却可动板部件31的内部刚性部件312并使加热的流体H流过循环管35以加热内部板件36,从而产生热电转换模块4的温度差 发电。
    • 5. 发明专利
    • Thermoelectric generator
    • 热电发生器
    • JP2014075542A
    • 2014-04-24
    • JP2012223445
    • 2012-10-05
    • Hitachi Chemical Co Ltd日立化成株式会社Honda Motor Co Ltd本田技研工業株式会社
    • JINUSHI TAKAHIROTOMINAGA MASANAOISHIJIMA ZENZOMORI MASAYOSHIYAMAGAMI TAKESHIMATSUDA HIROSHI
    • H01L35/30H02N11/00
    • PROBLEM TO BE SOLVED: To bring plate members, which are provided on both sides of a thermoelectric conversion module to create a temperature difference therefor, into close contact with the thermoelectric conversion module in a uniformly pressurized state without complexity and increased costs in a device.SOLUTION: In a hermetically sealed container 3, which has a circulation pipe 35 disposed on the inside of a housing 30, the housing 30 includes an outer plate part 31 having an elastic part 313 with elasticity provided on the periphery of an inside rigid part 312, and is disposed such that a thermoelectric conversion module 4 is sandwiched between the inside rigid part 312 and an inner plate part 36 of the circulation pipe 35 in the hermetically sealed container 3. The inside rigid part 312 is brought into close contact with the thermoelectric conversion module 4 in a uniformly pressurized state by the elasticity of the deformed elastic part 313 while being assembled in the hermetically sealed container 3. By cooling the inside rigid part 312 of the outer plate part 31 with cooling parts 5A, 5B and flowing a heated fluid H through the circulation pipe 35 to heat the inner plate part 36, a temperature difference is created for the thermoelectric conversion module 4 to generate power.
    • 要解决的问题:为了使设置在热电转换模块的两侧上的板构件以均匀加压的状态与热电转换模块紧密接触而不会在装置中复杂和增加成本。 解决方案:在具有设置在壳体30的内部的循环管35的气密密封容器3中,壳体30包括外板部分31,该外板部分31具有弹性部分313,弹性部分313设置在内刚性部分312的周边 并且被配置为使得热电转换模块4夹在密封容器3中的循环管35的内部刚性部312和内板部36之间。内部刚性部312与热电转换模块4紧密接触 转换模块4通过变形的弹性部件313的弹性同时被组装在密封件中而处于均匀的加压状态 通过用冷却部件5A,5B冷却外板部件31的内部刚性部分312并使加热的流体H流过循环管35以加热内板部件36,从而产生温度差 热电转换模块4发电。
    • 6. 发明专利
    • Thermoelectric conversion module
    • 热电转换模块
    • JP2014086649A
    • 2014-05-12
    • JP2012236207
    • 2012-10-26
    • Hitachi Chemical Co Ltd日立化成株式会社Honda Motor Co Ltd本田技研工業株式会社
    • TOMINAGA MASANAOJINUSHI TAKAHIROISHIJIMA ZENZOMORI MASAYOSHIYAMAGAMI TAKESHIMATSUDA HIROSHI
    • H01L35/30F01N5/02H02N11/00
    • Y02T10/16
    • PROBLEM TO BE SOLVED: To provide a thermoelectric conversion module capable of securing the flatness of top and bottom faces even when a tube body for a compressive fluid to flow has a reduced wall thickness.SOLUTION: The thermoelectric conversion module comprises: a cylindrical tube body 11 used for a compressive fluid to flow; a high temperature side electrode part disposed on each of the top face and the bottom face sides of the tube body and electrically insulated from the tube body; a thermoelectric conversion element disposed on the high temperature side electrode part; a low temperature side electrode part disposed on the thermoelectric conversion element; and a case member 15 for accommodating the tube body, the high temperature side electrode part, the thermoelectric conversion element, and the low temperature side electrode part. The thermoelectric conversion module is configured in such a way that, in a non-formation region of the thermoelectric conversion element in a direction almost perpendicular to the passage direction of the compressive fluid, the upper tube wall and/or the lower tube wall of the tube body has a depressed rib 23 formed so as to touch the upper tube wall and/or the lower tube wall of the tube body, and that the high temperature side electrode part and/or the low temperature side electrode part include a bridge-shaped electrode 25 formed so as to stretch over a recess which is formed as a result of the rib.
    • 要解决的问题:提供一种能够确保顶面和底面的平坦度的热电转换模块,即使当用于压缩流体的管体具有减小的壁厚时。热解转换模块包括:圆柱形管体 11用于压缩流体流动; 高温侧电极部,其设置在所述管体的上表面侧和所述底面侧,并与所述管体电绝缘; 设置在高温侧电极部上的热电转换元件; 设置在所述热电转换元件上的低温侧电极部; 以及容纳管体,高温侧电极部,热电转换元件和低温侧电极部的壳体部件15。 热电转换模块以这样的方式构造,使得在热电转换元件的非形成区域中,在与压缩流体的通过方向几乎垂直的方向上,上管壁和/或下管壁 管体具有形成为与管体的上管壁和/或下管壁接触的凹陷肋23,高温侧电极部和/或低温侧电极部包括桥状 电极25形成为在由肋形成的凹部上延伸。
    • 7. 发明专利
    • Thermoelectric conversion power generator
    • 热电转换发电机
    • JP2014075553A
    • 2014-04-24
    • JP2012223592
    • 2012-10-05
    • Hitachi Chemical Co Ltd日立化成株式会社Honda Motor Co Ltd本田技研工業株式会社
    • TOMINAGA MASANAOJINUSHI TAKAHIROISHIJIMA ZENZOMORI MASAYOSHIYAMAGAMI TAKESHIMATSUDA HIROSHI
    • H01L35/10H01L35/30H02N11/00
    • PROBLEM TO BE SOLVED: To provide a thermoelectric conversion power generator in which deterioration of lead wires can be suppressed, by cooling the lead wires connected with a thermoelectric conversion module at a part where the lead wires are taken out.SOLUTION: A heating part 35A and cooling parts 5A, 5B are disposed, respectively, on both sides of a thermoelectric conversion module 4, and power is generated by giving a temperature difference to the thermoelectric conversion module 4 by means of these heating part 35A and cooling parts 5A, 5B. In such a thermoelectric conversion power generator 1, the thermoelectric conversion module 4 is housed in a closed vessel 3 and lead wires 46 are wired. The heating part 35A has a heating passage 351 through which a heating fluid H flows, and the lead wires 46 are taken out from a position on the side of the heating passage 351 at the end on the downstream side thereof while penetrating the sidewall of an outer cover 33 on the cooling part 5B side and the cooling part 5B.
    • 要解决的问题:提供一种能够抑制引线劣化的热电转换发电机,通过冷却在导线被取出的部分与热电转换模块连接的引线。解决方案:加热部件35A 并且冷却部件5A,5B分别设置在热电转换模块4的两侧,并且通过借助于这些加热部件35A和冷却部件5A,5B向热电转换模块4提供温差来产生功率。 在这种热电转换发电机1中,热电转换模块4容纳在密闭容器3中,并且引线46被布线。 加热部分35A具有加热流体H流过的加热通道351,并且引线46在其下游侧的端部处从加热通道351的一侧的位置被取出,同时穿过 冷却部5B侧的外罩33和冷却部5B。
    • 8. 发明专利
    • 熱電変換モジュール
    • 热电转换模块
    • JP2014212632A
    • 2014-11-13
    • JP2013087813
    • 2013-04-18
    • 日立化成株式会社Hitachi Chemical Co Ltd本田技研工業株式会社Honda Motor Co Ltd
    • JINUSHI TAKAHIROTOMINAGA MASANAOISHIJIMA ZENZOMORI MASAYOSHIYAMAGAMI TAKESHIMATSUDA HIROSHIYAMASHITA SHOHEI
    • H02N11/00H01L35/30
    • H01L35/30H02N11/00
    • 【課題】熱電変換効率を向上させ、各種産業機器及び自動車等における排ガス等の圧縮性流体の廃熱等を熱源とする、実用性に富んだ熱電変換モジュールを提供する。【解決手段】圧縮性流体を流すための筒状の管体11、高温側電極部、熱電変換素子及び低温側電極部を収納する第1のケース部材と、第1ケース部材の外方であって、低温側電極部との間に冷媒を流すための冷媒室が形成されるようにして配設され、第1のケース部材を収納するための第2のケース部材と、冷媒室内において、冷媒室の導入口から熱電変換素子の形成領域に向けて狭窄されるようにして配設された流路ガイド板18と、を具えるようにして熱電変換モジュールを構成する。【選択図】図2
    • 要解决的问题:提供实现改进的热电转换效率的实用的热电转换模块,并且例如来自诸如来自各种工业设备,汽车等的可压缩流体的废热的热量。解决方案: 热电转换模块包括:容纳用于导引可压缩流体的管状管11的第一壳体构件,高温侧电极部,热电转换元件和低温侧电极部; 第二壳体构件,其设置在所述第一壳体构件的外侧,以与所述低温侧电极部分形成用于导入制冷剂的制冷剂室,以容纳所述第一壳体构件; 以及设置在制冷剂室中以从制冷剂室的入口朝向形成热电转换元件的区域收缩的通道引导板18。
    • 9. 发明专利
    • 熱電変換式発電装置
    • 热电转换发电机
    • JP2014212590A
    • 2014-11-13
    • JP2013086541
    • 2013-04-17
    • 日立化成株式会社Hitachi Chemical Co Ltd本田技研工業株式会社Honda Motor Co Ltd
    • JINUSHI TAKAHIROTOMINAGA MASANAOISHIJIMA ZENZOMORI MASAYOSHIYAMAGAMI TAKESHIMATSUDA HIROSHIYAMASHITA SHOHEI
    • H02N11/00H01L35/14H01L35/30H01L35/32
    • H01L35/32H01L35/30
    • 【課題】熱電変換モジュールに温度差を与えるために熱電変換モジュールの側方に配設される冷却側の板部材を、装置が複雑かつ高コストになることなく熱電変換モジュールに対し均一な加圧状態で密着させる。【解決手段】筐体20内に流通管25が貫通し、筐体20と流通管25との間の減圧空間29に熱電変換モジュール4が配設される密閉容器2において、筐体20の熱電変換モジュール4に対応する冷却側の板部材を可撓性を有する薄板22で構成し、薄板22と流通管25との間に熱電変換モジュール4を挟んだ状態とする。減圧空間29を減圧することにより薄板22は加圧状態で熱電変換モジュール4に当接するが、可撓性を有することにより薄板22は熱電変換モジュール4の形状に追従して変形し、密着性が向上したものとなる。【選択図】図4
    • 要解决的问题:为了在热电转换模块的侧面上设置板状部件,以在热电转换模块中产生温差,在均匀加压状态下与热电转换模块紧密接触 ,没有引起并发症和装置的高成本。解决方案:在密封容器2中,流量管25穿透壳体20,并且热电转换模块4设置在壳体20和流体之间的减压空间29中 管25,与热电转换模块4对应的冷却侧的壳体20的板构件由柔性薄板22构成,热电转换模块4保持在薄板22和流量管25之间。 薄板22通过降低减压空间29中的压力而在加压状态下抵靠热电转换模块4,但是柔性 在板22中变形以跟随热电转换模块4的形状,从而增强粘合力。
    • 10. 发明专利
    • Thermoelectric generator
    • 热电发生器
    • JP2014075959A
    • 2014-04-24
    • JP2012223632
    • 2012-10-05
    • Hitachi Chemical Co Ltd日立化成株式会社Honda Motor Co Ltd本田技研工業株式会社
    • JINUSHI TAKAHIROTOMINAGA MASANAOISHIJIMA ZENZOMORI MASAYOSHIYAMAGAMI TAKESHIMATSUDA HIROSHI
    • H02N11/00H01L35/32
    • PROBLEM TO BE SOLVED: To bring each of heating-side and cooling-side plate members, which are provided on both sides of a thermoelectric conversion module to create a temperature difference therefor, in a hermetically sealed container into close contact with the thermoelectric conversion module in a uniformly pressurized state without complexity and increased costs.SOLUTION: In a hermetically sealed container 3 including a circulation pipe 35 through which a heated fluid H is flown and which is disposed on the inside of a housing 30, the housing 30 includes a movable plate part 31 having a flexible deformable part 313 provided on the periphery of an inside rigid part 312. A thermoelectric conversion module 4 is sandwiched between the inside rigid part 312 and an inner plate part 36 of the circulation pipe 35 to be disposed, and the movable plate part 31 is cooled with cooling water W supplied into cooling jackets 53a, 53b provided on the outside of the movable plate part 31. The deformable part 313 of the movable plate part 31 is deformed by an inner pressure caused in the cooling jackets 53a, 53b, so that the inside rigid part 312 is pressurized to contact with the thermoelectric conversion module 4.
    • 要解决的问题:为了使设置在热电转换模块的两侧的每个加热侧和冷却侧板构件在气密密封的容器中形成与该热电转换模块紧密接触的温差 处于均匀的加压状态,没有复杂性和增加的成本。解决方案:在包括循环管35的气密密封容器3中,加热的流体H通过该循环管35被设置在壳体30的内部,壳体30包括可移动的 板部31具有设置在内部刚性部312的外周上的柔性变形部313.热电转换模块4夹在内部刚性部312和要布置的循环管35的内板部36之间, 可动板部31被供给到设置在可动板部31的外侧的冷却套53a,53b的冷却水W冷却。变形 通过在冷却套53a,53b中产生的内压使可动板部31的能量部313变形,使得内部刚性部312被加压而与热电转换模块4接触。