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    • 2. 发明授权
    • Exhaust pipe supporting device
    • 排气管支撑装置
    • US5829732A
    • 1998-11-03
    • US819131
    • 1997-03-17
    • Naoki YamaguchiKenji MuraseMotoo KunihiroTakashi AkimotoHiroyuki Fujioka
    • Naoki YamaguchiKenji MuraseMotoo KunihiroTakashi AkimotoHiroyuki Fujioka
    • F16F1/377F16F7/108F16F7/00
    • F16F1/377F16F7/108F16F2236/06
    • An exhaust pipe supporting device includes a generally elliptical body portion integrally formed of an elastic material, such as rubber. The body portion includes a first holder portion having a through-hole to receive a support member associated with a car body, a second holder portion having another through-hole to receive a support member associated with the exhaust pipe. A pair of lateral walls connect the first and second holder portions by attachment at opposite ends to opposed sides of the first and second holding portions. The first and second holding are held in this manner in spaced apart relation to each other, and a central connector is disposed intermediate between the first and second holder portions and connected at opposite sides thereof to the lateral walls. The central connector portion includes a central portion formed as a mass section, which optionally includes a metal mass portion, and opposite lateral portions which extend from the mass section to the opposite sides. The mass section is heavier than the opposite portions, the latter which are bifurcated to provide branch portions advantageously diverging at a branch angle in a range between 30 and 60 degrees.
    • 排气管支撑装置包括由橡胶等弹性材料一体形成的大致椭圆形的本体部。 主体部分包括第一保持器部分,其具有用于容纳与车体相关联的支撑构件的通孔,第二保持器部分具有用于接收与排气管相关联的支撑构件的另一个通孔。 一对侧壁通过在相对的端部处附接到第一和第二保持部分的相对侧而连接第一和第二保持器部分。 第一和第二保持件以这种方式彼此间隔开地保持,并且中心连接器设置在第一和第二保持器部分之间的中间并且在其相对侧连接到侧壁。 中央连接器部分包括形成为质量部分的中心部分,其可选地包括金属质量部分,以及从质量部分延伸到相对侧的相对的侧部。 质量部分比相对部分重,后者分叉以提供分支部分,有利地以30度和60度之间的范围内的分支角发散。
    • 6. 发明授权
    • Automatic transmission control device
    • 自动变速箱控制装置
    • US08394001B2
    • 2013-03-12
    • US12972893
    • 2010-12-20
    • Hiroshi TsutsuiYutaka TeraokaKeishi MoritaHiroyuki FujiokaHiroyasu AmanoMasatake IchikawaTetsuya Shimizu
    • Hiroshi TsutsuiYutaka TeraokaKeishi MoritaHiroyuki FujiokaHiroyasu AmanoMasatake IchikawaTetsuya Shimizu
    • B60W10/04F16H61/26
    • F16H61/0437F16H61/686F16H2061/0485F16H2061/0488F16H2061/207Y10T477/688Y10T477/69363Y10T477/817
    • A control device controlling a vehicle's automatic transmission. The automatic transmission engages first and second friction engagement elements by fluid pressure from a pump operating using motive power from the vehicle's motor when a shift position is at a reverse traveling position, places the first friction engagement element on standby at a predetermined pressure that is higher than a stroke starting pressure by which a piston stroke is started and lower than a complete engagement pressure or engages the first friction engagement at the complete engagement pressure when the shift position is at a non-traveling position, and engages a third friction engagement element as a starting shift speed when the shift position is at a forward traveling position. When the shift position is at the forward traveling position, the first friction engagement element is placed on standby at the predetermined pressure if a vehicle speed is lower than a predetermined vehicle speed, or releases the predetermined standby pressure if the vehicle speed is equal to or higher than the predetermined vehicle speed.
    • 控制车辆的自动变速器的控制装置。 自动变速器通过来自使用来自车辆电动机的动力的泵的流体压力接合第一和第二摩擦接合元件,当变速位置处于相反的行进位置时,将第一摩擦接合元件置于待机状态,预定压力更高 比起动活塞行程开始并低于完全接合压力的行程起动压力或当变速位置处于非行驶位置时在完全接合压力下接合第一摩擦接合,并且将第三摩擦接合元件接合为 当换档位置处于前进行驶位置时的起动换档速度。 当换档位置处于向前行驶位置时,如果车速低于预定车速,则第一摩擦接合元件处于预定压力的待机状态,或者如果车速等于或等于则释放预定待机压力 高于预定车速。