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    • 1. 发明申请
    • RUN-FLAT TIRE SUPPORT, METHOD FOR MANUFACTURING THE SAME, AND RUN-FLAT TIRE
    • 运行平面轮胎支撑,其制造方法和跑平轮胎
    • US20060196589A1
    • 2006-09-07
    • US10528041
    • 2003-09-17
    • Ryuji IzumotoKazuma NakazawaFumitaka InoNarukuni Hirata
    • Ryuji IzumotoKazuma NakazawaFumitaka InoNarukuni Hirata
    • B60C17/04
    • B60C17/06B21D26/14B29D30/0681B29D2030/0683B60C17/043B60C2017/068Y10T29/49524
    • The purpose of the present invention is to provide a support, a support manufacturing method, and a pneumatic run-flat tire by which predetermined strength is ensured while lightening is achieved. An aluminum tube 54 is electromagnetically formed and a support (supporting portion) is manufactured. Due to this, process hardening can be avoided and it can be formed in the desired shape. Further, at this time, due to exhaust holes 64 provided in the metal molds 52A, 52B, discharging of the air intervening between the metal molds 52A, 52B and the aluminum tube 54 at the time of forming is performed, and the support can be formed with good precision. The support 16 having the shell 26 made from an aluminum alloy formed in this manner is formed in a predetermined shape with good precision while being sufficiently lightened, and if a run-flat tire including this support 16 is installed on a vehicle, the gas mileage and handling of the vehicle can be improved.
    • 本发明的目的是提供一种在实现减光的同时确保预定强度的支撑件,支撑件制造方法和气动扁平轮胎。 铝管54被电磁地形成,并且制造支撑(支撑部)。 因此,可以避免加工硬化,并且可以形成所需的形状。 另外,此时,由于设置在金属模具52A,52B中的排气孔64,在成形时进行金属模具52A,52B与铝管54之间的空气的排出, 可以以良好的精度形成支撑。 具有这样形成的由铝合金制成的外壳26的支撑体16在充分减轻的情况下以良好的精度形成为预定形状,并且如果将包括该支撑件16的缺气保用轮胎安装在车辆上,则燃料里程 并且可以改善车辆的处理。
    • 9. 发明授权
    • Sealing pump-up device
    • 密封泵送装置
    • US07891385B2
    • 2011-02-22
    • US11597740
    • 2005-05-26
    • Hideshi YanagiDaisuke SugioKazuma NakazawaShinichi IwasakiRieko Iwasaki, legal representativeYuji TakedaMasaki Yoshida
    • Hideshi YanagiDaisuke SugioKazuma NakazawaShinichi IwasakiYuji TakedaMasaki Yoshida
    • B65B31/00
    • F04B41/02B29C73/166B29L2030/00Y10T152/10684
    • To reliably supply a predetermined amount of sealing agent into a pneumatic tire even if the device is inclined and after the predetermined amount of sealing agent is supplied, to automatically start feeding compressed air into the pneumatic tire. In pumping device 30, when compressed air is supplied to air chamber 54, internal pressure of air chamber 54 increases, and as the internal pressure of air chamber 54 rises, a contained volume of air chamber 54 increases while a contained volume of liquid container 52 decreases. Thus, sealing agent 100 in an amount corresponding to the amount corresponding to the reduction in the contained volume of liquid container 52, is forcibly discharged from discharge outlet 64 and the discharged sealing agent 100 is injected into tire 90. In pumping device 30, when the air chamber 54 expands enough to have a predetermined amount of sealing agent to be discharged from the liquid container 52, the air discharge opening 92 opens toward the air chamber 54 to allow the air chamber 54 to communicate with the inside of tire 90. Thus, compressed air in the air chamber 54 can be supplied into tire 90 via the air discharge outlet 92, bypass hose 96 and joint hose 68.
    • 即使装置倾斜并且在提供预定量的密封剂之后,为了可靠地将预定量的密封剂供应到充气轮胎中,自动开始将压缩空气供给到充气轮胎中。 在抽吸装置30中,当压缩空气被供给到空气室54时,空气室54的内部压力增加,并且随着空气室54的内部压力升高,空气室54的容纳容积增加,而液体容器52的容纳容积 减少 因此,密封剂100的量对应于液体容器52的收容体积减少量的量被强制地从排出口64排出,排出的密封剂100被注入到轮胎90中。在泵送装置30中,当 空气室54膨胀得足以使预定量的密封剂从液体容器52排出,空气排出口92朝向空气室54开口,以允许空气室54与轮胎90的内部连通。因此 空气室54中的压缩空气可以经由排气出口92,旁通软管96和接头软管68供应到轮胎90中。
    • 10. 发明申请
    • Sealing Pump-Up Device
    • 密封泵送装置
    • US20090056850A1
    • 2009-03-05
    • US11597740
    • 2005-05-26
    • Hideshi YanagiDaisuke SugioKazuma NakazawaShinichi IwasakiRieko IwasakiYuji TakedaMasaki Yoshida
    • Hideshi YanagiDaisuke SugioKazuma NakazawaShinichi IwasakiRieko IwasakiYuji TakedaMasaki Yoshida
    • B29C73/16
    • F04B41/02B29C73/166B29L2030/00Y10T152/10684
    • To reliably supply a predetermined amount of sealing agent into a pneumatic tire even if the device is inclined and after the predetermined amount of sealing agent is supplied, to automatically start feeding compressed air into the pneumatic tire.In pumping device 30, when compressed air is supplied to air chamber 54, internal pressure of air chamber 54 increases, and as the internal pressure of air chamber 54 rises, a contained volume of air chamber 54 increases while a contained volume of liquid container 52 decreases. Thus, sealing agent 100 in an amount corresponding to the amount corresponding to the reduction in the contained volume of liquid container 52, is forcibly discharged from discharge outlet 64 and the discharged sealing agent 100 is injected into tire 90. In pumping device 30, when the air chamber 54 expands enough to have a predetermined amount of sealing agent to be discharged from the liquid container 52, the air discharge opening 92 opens toward the air chamber 54 to allow the air chamber 54 to communicate with the inside of tire 90. Thus, compressed air in the air chamber 54 can be supplied into tire 90 via the air discharge outlet 92, bypass hose 96 and joint hose 68.
    • 即使装置倾斜并且在提供预定量的密封剂之后,为了可靠地将预定量的密封剂供应到充气轮胎中,自动开始将压缩空气供给到充气轮胎中。 在抽吸装置30中,当压缩空气被供给到空气室54时,空气室54的内部压力增加,并且随着空气室54的内部压力升高,空气室54的容纳容积增加,而液体容器52的容纳容积 减少 因此,密封剂100的量对应于液体容器52的收容体积减少量的量被强制地从排出口64排出,排出的密封剂100被注入到轮胎90中。在泵送装置30中,当 空气室54膨胀得足以使预定量的密封剂从液体容器52排出,空气排出口92朝向空气室54开口,以允许空气室54与轮胎90的内部连通。因此 空气室54中的压缩空气可以经由排气出口92,旁通软管96和接头软管68供应到轮胎90中。