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    • 3. 发明申请
    • LIQUID FLOW RATE CONTROL VALVE
    • 液体流量控制阀
    • US20120234400A1
    • 2012-09-20
    • US13498399
    • 2010-09-30
    • Seiichiro IshikawaYuki ShibahataYasunari KimuraMasashi Kato
    • Seiichiro IshikawaYuki ShibahataYasunari KimuraMasashi Kato
    • F16K11/12F16K11/07F16K3/26
    • B60K6/12B60K6/40F02N7/08F15B13/0406F15B13/0444F16K3/262F16K3/34F16K5/0414Y02T10/6208Y02T10/6282Y10T137/3127Y10T137/86533Y10T137/86702Y10T137/8671Y10T137/86734Y10T137/86751Y10T137/88022
    • A liquid flow rate control valve is provided in which since a distributor (38) is rotated relative to a sleeve (37) by a first drive source (46) only through a predetermined angle, the total area of overlapping sections of a first opening (37a) of the sleeve (37) and the second opening (38c) of the distributor (38) changes, and a rotor (42) having a third opening (42c 42d) is rotated by a second drive source (47), it is possible to carry out PWM control of the liquid input from an input port (61e) and output it from an output port (61f). In this process, one end in an axis (L) direction of the rotor (42) disposed on an inside in a radial direction is coaxially connected to the second drive source (47), and one end in the axis (L) direction of the distributor (38) disposed on an outside in a radial direction is connected to the first drive source (46) via a gear train (66, 73, 70), and therefore, it is possible to individually rotate the distributor (38) and the rotor (42) while achieving a compact size by arranging the first and second drive sources (46, 47) in a concentrated manner at one end in the axis (L) direction of a liquid flow rate control valve (23).
    • 提供了一种液体流量控制阀,其中由于分配器38通过第一驱动源(46)仅通过预定角度相对于套筒(37)旋转,因此第一开口(...的重叠部分的总面积 分配器(38)的套筒(37)和第二开口(38c)的开口(37a)(37a)变化,并且具有第三开口(42c 42d)的转子(42)由第二驱动源(47)旋转, 可以从输入端口(61e)对液体输入进行PWM控制,并从输出端口(61f)输出。 在该工序中,沿径向设置在内侧的转子(42)的轴线(L)方向的一端与第二驱动源(47)同轴连接,另一端沿轴线(L)方向 通过齿轮系(66,73,70)将配置在径向外侧的分配器(38)与第一驱动源(46)连接,因此能够分别使分配器(38)和 通过在液体流量控制阀(23)的轴线(L)方向上的一端集中排列第一和第二驱动源(46,47),同时实现紧凑的尺寸。
    • 7. 发明申请
    • Shift Lever Device
    • 换档杆装置
    • US20070214907A1
    • 2007-09-20
    • US11578976
    • 2005-03-29
    • Masashi KatoYoshinobu Yokoyama
    • Masashi KatoYoshinobu Yokoyama
    • B60K20/00
    • F16H59/0204F16H2059/026F16H2059/0273Y10T74/20018Y10T74/2014Y10T74/20159Y10T74/20201
    • A shift lever device for operating a vehicle mounted transmission by pivoting operation of a shift lever about a predetermined axis is disclosed, and in this shift lever device, a housing is configured by a first housing member that is disposed on one side of the shift lever in a predetermined direction and a second housing member that assemblable to the first housing member along the predetermined direction from the side of the shift lever opposite to the side facing the first housing member with the shift lever therebetween, and the shift lever is axially supported inside the housing such that the shift lever is pivotable about an axis whose axial direction is the predetermined direction.
    • 公开了一种用于通过使变速杆围绕预定轴线的枢转操作来操作车载变速器的换档杆装置,并且在该变速杆装置中,壳体由设置在换档杆的一侧上的第一壳体构件 以及第二壳体构件,其中,所述第二壳体构件从所述变速杆的与所述第一壳体构件的面对所述第一壳体构件的侧面相反的方向沿着所述预定方向组装,并且所述变速杆被轴向地支撑在所述第二壳体构件的内部 所述壳体使得所述变速杆能够绕其轴向方向为预定方向的轴线枢转。
    • 8. 发明申请
    • Rankine cycle system
    • 兰金循环系统
    • US20060201154A1
    • 2006-09-14
    • US11373126
    • 2006-03-13
    • Masashi KatoAkihisa SatoMitsuo KadotaKensaku Yamamoto
    • Masashi KatoAkihisa SatoMitsuo KadotaKensaku Yamamoto
    • F01K13/00
    • F01K23/101
    • A Rankine cycle system includes: an evaporator for heating water with thermal energy of exhaust gas of an engine so as to generate steam; an expander for converting the thermal energy of the steam generated by the evaporator into mechanical energy; and a distribution device for manipulating the amount of water supplied to the evaporator in order to make the temperature of the steam supplied from the evaporator to the expander coincide with a target temperature. The distribution device controls a distribution ratio between the amount of water supplied to the entrance of the evaporator and the amount of water supplied to a portion partway along the evaporator, thereby suppressing an overshoot in the temperature of the gas-phase working medium due to a sudden increase in the thermal energy of the exhaust gas.
    • 兰金循环系统包括:蒸发器,用于对发动机的废气的热能加热水以产生蒸汽; 用于将由蒸发器产生的蒸汽的热能转换成机械能的膨胀器; 以及分配装置,用于操纵供给到蒸发器的水量,以使从蒸发器供给到膨胀器的蒸汽的温度与目标温度一致。 分配装置控制供给到蒸发器的入口的水量与供给到沿着蒸发器的中途的一部分的供水量之间的分配比,从而抑制气相工作介质的温度由于 废气热能突然增加。