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    • 5. 发明授权
    • Electrically driven turbocharger device
    • 电动涡轮增压器
    • US09328656B2
    • 2016-05-03
    • US13384967
    • 2011-02-02
    • Noriyuki HayashiYukio Yamashita
    • Noriyuki HayashiYukio Yamashita
    • F02B39/10F02B39/00F02B37/22F02B37/04F01P7/02
    • F02B39/10F01P7/02F02B37/04F02B37/225F02B39/005Y02T10/144
    • Inside of a gas-tight housing, an electric motor, an inverter and a compressor are housed. Further, an intake air pipe is connected to the gas-tight housing. Inside of the gas-tight housing, an intake air flow passage is formed. Further, a connection opening of an outside air induction pipe provided with a flow rate regulating valve is arranged so as to face a suction opening of a compressor. When the delivery air flow rate as well as the delivery air pressure of the compressor is reduced due to the pressure loss and the like of the intake air ‘a’ which passes through the air flow passage and cools the electric motor and the inverter, an outside air ‘o’ of low temperature is induced so that: the capacity shortage as well as the performance deterioration of the compressor is constrained; and the over-heating of the compressor is constrained.
    • 在气密的外壳内部,安装有电动机,变频器和压缩机。 此外,进气管连接到气密壳体。 在气密壳体的内部形成有进气通道。 此外,设置有流量调节阀的外部空气吸入管的连接口布置成面对压缩机的吸入口。 当通过通过空气流动通道并冷却电动机和逆变器的进气“a”的压力损失等导致压缩机的输送空气流量以及输送空气压力降低时, 引起外部空气“o”的低温,使得容量不足以及压缩机的性能劣化受到限制; 并且限制了压缩机的过热。
    • 6. 发明申请
    • ELECTRICALLY DRIVEN TURBOCHARGER DEVICE
    • 电动式涡轮增压器装置
    • US20120121447A1
    • 2012-05-17
    • US13384967
    • 2011-02-02
    • Noriyuki HayashiYukio Yamashita
    • Noriyuki HayashiYukio Yamashita
    • F04B35/04
    • F02B39/10F01P7/02F02B37/04F02B37/225F02B39/005Y02T10/144
    • Inside of a gas-tight housing, an electric motor, an inverter and a compressor are housed. Further, an intake air pipe is connected to the gas-tight housing. Inside of the gas-tight housing, an intake air flow passage is formed. Further, a connection opening of an outside air induction pipe provided with a flow rate regulating valve is arranged so as to face a suction opening of a compressor. When the delivery air flow rate as well as the delivery air pressure of the compressor is reduced due to the pressure loss and the like of the intake air ‘a’ which passes through the air flow passage and cools the electric motor and the inverter, an outside air ‘o’ of low temperature is induced so that: the capacity shortage as well as the performance deterioration of the compressor is constrained; and the over-heating of the compressor is constrained.
    • 在气密的外壳内部,安装有电动机,变频器和压缩机。 此外,进气管连接到气密壳体。 在气密壳体的内部形成有进气通道。 此外,设置有流量调节阀的外部空气吸入管的连接口布置成面对压缩机的吸入口。 当通过通过空气流动通道并冷却电动机和逆变器的进气“a”的压力损失等导致压缩机的输送空气流量以及输送空气压力降低时, 引起外部空气“o”的低温,使得容量不足以及压缩机的性能劣化受到限制; 并且限制了压缩机的过热。
    • 7. 发明授权
    • Method of producing an air cushion and an apparatus for the same
    • 气垫的制造方法及其装置
    • US5824392A
    • 1998-10-20
    • US556949
    • 1996-04-10
    • Shuichi GotohYukio Yamashita
    • Shuichi GotohYukio Yamashita
    • B29C49/00B29C51/16B29C51/26B65D81/03B32B3/28B32B31/00
    • B31D5/0073B29C49/0047B29C51/16B29C51/261B65D81/03B29L2022/02B29L2031/7138Y10T156/1737Y10T428/24562Y10T428/24661
    • Two-ply films 23, 24 are sent and heat-fused in a longitudinal direction and a transverse direction on a heat drum-roller 30, furthermore, hollow bubble portions 63 with an air-leading groove 32 and bubble-forming depressions 33, provided on a circumferential surface of the heat drum-roller, and a communicating portion 62 going through sealed portions in the direction transverse to the longitudinal direction to make communication between the bubbles, are formed on the film, in order that each bubble is expanded by feeding into the hollow bubble portion 63 with air, sent from an air-blowing nozzle 40 through the communication portion 62, and then, the communicating portion 62 communicating the expanded bubbles is sealed with a point-seal 50. Therefore, an air cushion sheet 60 having plural independent bubbles 65 which are each formed in a large long type in the transverse direction is easily and certainly produced.
    • PCT No.PCT / JP95 / 00540 Sec。 371日期:1996年4月10日 102(e)日期1996年4月10日PCT 1995年3月24日PCT公布。 WO95 / 25681 PCT出版物 日期1995年9月28日双层薄膜23,24在热鼓轮30上沿长度方向和横向方向发送和热熔,此外,空心气泡部分63具有空气引导槽32和气泡 - 形成凹部33,设置在热鼓轮的圆周面上,并且在薄膜上形成有在与纵向方向横切的方向上穿过密封部分以形成气泡之间的连通的连通部62,以使每个 通过从吹气喷嘴40通过连通部62送入空气的空气泡沫部分63膨胀气泡,然后用点状密封件50密封连通膨胀气泡的连通部62。 容易且可靠地制造具有多个独立气泡65的空气缓冲片60,它们横向形成为大长型。