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    • 27. 发明授权
    • Vehicular transmission
    • 车辆传动
    • US06238312B1
    • 2001-05-29
    • US09391239
    • 1999-09-07
    • Yoshimichi TsubataTomoyuki KandaEiji OhyamaEiji SuzukiNaoki Uchiyama
    • Yoshimichi TsubataTomoyuki KandaEiji OhyamaEiji SuzukiNaoki Uchiyama
    • F16H5704
    • F16H57/0489F16H37/021F16H57/0423Y10T74/2189
    • In a chamber R1 which accommodates a transmission device comprising a drive pulley 8, a driven pulley 9 and a belt 10, a cover 51 is provided to cover the lower peripheral portion of the drive pulley 8 along the periphery. The drive pulley is positioned below the driven pulley, and raised portions 52 which are used for the detection of the rotational speed of the drive pulley are provided on the periphery of the drive pulley. The end surface 51bs of the cover facing the inner wall 54 of the pulley chamber is positioned away from the inner wall with a clearance V therebetween. In a vehicular transmission which is constructed in this arrangement, the amount of lubrication oil that flows near to the periphery of the pulley which is positioned lower is comparatively small. Thus, this arrangement restricts agitation of the lubrication oil, which may be caused by the raised portions of the rotating pulley. Therefore, loss in the rotation of the pulley and oxidation and degradation of the lubrication oil are effectively prevented.
    • 在容纳包括驱动带轮8,从动带轮9和带10的传动装置的室R1中,设置有盖51,以沿着周边覆盖驱动带轮8的下周边部分。 驱动滑轮位于从动皮带轮的下方,并且用于检测驱动皮带轮的转速的凸起部分52设置在驱动皮带轮的周边上。 面向皮带轮室的内壁54的盖的端面51bs定位成远离内壁,其间具有间隙V. 在这种结构中构成的车辆用传动装置中,位于下侧的带轮周边附近流动的润滑油量相对较小。 因此,这种布置限制了可能由旋转滑轮的凸起部分引起的润滑油的搅动。 因此,有效地防止了滑轮的旋转损失和润滑油的氧化和劣化。
    • 30. 发明授权
    • Hydrogen storage method
    • 储氢方法
    • US09334163B2
    • 2016-05-10
    • US14357161
    • 2012-10-25
    • Naoki UchiyamaTomomi KanaiKazumi Harada
    • Naoki UchiyamaTomomi KanaiKazumi Harada
    • C01B3/08C01B3/00C22C23/00H01M4/24H01M4/38H01M4/46
    • C01B3/0084C01B3/0042C22C23/00H01M4/242H01M4/383H01M4/46Y02E60/124Y02E60/327Y02E60/36
    • A hydrogen storage method is provided which enables a hydrogen storage alloy to store hydrogen up to a maximum hydrogen storage amount thereof in excess of a generally known theoretical value. In a hydrogenation step, a hydrogen storage ratio calculated as an atomic weight ratio between hydrogen and the hydrogen storage alloy is obtained beforehand as a theoretical value, a pressure at which the hydrogen storage alloy stores hydrogen up to the theoretical value is set as a first pressure value, a pressure value ten or more times greater than the first pressure value is set as a second pressure value, and pressure is increased up to the second pressure value. In a dehydrogenation step, the pressure is decreased from the second pressure value to or below the first pressure value. The hydrogenation step and the dehydrogenation step are repeatedly executed.
    • 提供一种氢存储方法,其使得储氢合金能够将氢存储至超过一般已知理论值的最大储氢量。 在氢化工序中,作为理论值预先获得以氢原子与储氢合金的原子重量比计算的储氢率,将储氢合金将氢储存至理论值的压力设定为第一 压力值,比第一压力值大十倍以上的压力值被设定为第二压力值,并且将压力增加到第二压力值。 在脱氢步骤中,压力从第二压力值降低到或低于第一压力值。 重复执行氢化步骤和脱氢步骤。