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    • 3. 发明授权
    • Refrigerant evaporator and manufacturing method for the same
    • 制冷剂蒸发器及其制造方法相同
    • US06272881B1
    • 2001-08-14
    • US09283790
    • 1999-04-01
    • Isao KuroyanagiMasamichi MakiharaToshio OharaSadayuki Kamiya
    • Isao KuroyanagiMasamichi MakiharaToshio OharaSadayuki Kamiya
    • F25B3902
    • F28D1/05391F25B39/02F28D1/035F28D2021/0085F28F9/0212F28F9/0214F28F9/0246F28F9/0253F28F9/18
    • An evaporator has plural tubes arranged in parallel with each other in a width direction perpendicular to an air flowing direction. The tubes are further arranged in a plural rows in the air flowing direction, and tank portions extending in the width direction are arranged in the plural rows in the air flowing direction to correspond to the tubes. In the evaporator, refrigerant flows through a zigzag-routed refrigerant passage formed by the tank portions and the tubes. A partition wall defining adjacent two tank portions in the air flowing direction has plural bypass holes through which the adjacent two tank portions directly communicate with each other. Therefore, the zigzag-routed refrigerant passage of the evaporator is readily formed without an additional side passage or the like. Thus, the number of components of the evaporator is reduced thereby simplifying the structure of the evaporator, and pressure loss of refrigerant flowing in the evaporator is decreased.
    • 蒸发器具有在垂直于空气流动方向的宽度方向上彼此平行布置的多个管。 这些管在空气流动方向上进一步布置成多排,并且在宽度方向上延伸的罐部沿空气流动方向排列成多个排,以对应于管。 在蒸发器中,制冷剂流过由罐部分和管形成的之字形布线的制冷剂通道。 在空气流动方向上限定相邻的两个罐部分的分隔壁具有多个旁通孔,相邻的两个罐部分彼此直接连通。 因此,蒸发器的之字形路由的制冷剂通道容易地形成,而没有附加的侧通道等。 因此,蒸发器的部件数量减少,从而简化了蒸发器的结构,减少了在蒸发器中流动的制冷剂的压力损失。
    • 7. 发明申请
    • Thermoelectric transducer
    • 热电传感器
    • US20060219281A1
    • 2006-10-05
    • US11397546
    • 2006-04-04
    • Isao KuroyanagiAkio MatsuokaYasuhiko NiimiTakashi YamamotoYukinori HatanoShizuo MaruoFumiaki Nakamura
    • Isao KuroyanagiAkio MatsuokaYasuhiko NiimiTakashi YamamotoYukinori HatanoShizuo MaruoFumiaki Nakamura
    • H01L35/34H01L35/28
    • H01L35/30H01L35/32
    • In a thermoelectric transducer, a plurality of P-type thermoelectric devices and N-type thermoelectric devices are alternately arranged on an insulating board, and each of a plurality of electrode members is connected to two end portions of adjacent N-type and P-type thermoelectric devices for electrically connecting the adjacent N-type and P-type thermoelectric devices. Furthermore, a plurality of heat exchanging members each of which includes an electrode portion connectable to the electrode member and a heat exchanging portion for exchanging heat transmitted from the electrode portion are located at two sides of a thermoelectric device substrate to form a heat absorbing part and a heat radiating part partitioned from each other. The electrode portions and the heat exchanging portions have, respectively, the same shapes, and the electrode portions and the heat exchanging portions are arranged in the same direction in all the heat exchanging members of each heat absorbing or radiating part.
    • 在热电换能器中,多个P型热电元件和N型热电元件交替配置在绝缘板上,多个电极构件中的每一个连接到相邻的N型和P型的两个端部 用于电连接相邻的N型和P型热电装置的热电装置。 此外,多个热交换构件中的每一个包括可连接到电极构件的电极部分和用于交换从电极部分传递的热量的热交换部分,位于热电装置基板的两侧以形成吸热部分, 相互隔开的散热部。 电极部分和热交换部分分别具有相同的形状,并且电极部分和热交换部分沿相同方向排列在每个吸热或辐射部分的所有热交换部件中。