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    • 2. 发明授权
    • Hybrid powered vehicle
    • 混合动力车
    • US06302227B1
    • 2001-10-16
    • US09493333
    • 2000-01-28
    • Tadashi TakemuraKaoru Sawase
    • Tadashi TakemuraKaoru Sawase
    • B60K100
    • B60W20/00B60K5/04B60K6/365B60K6/40B60K6/48B60K6/543B60W10/02B60W10/06B60W10/08B60W30/18036F16H3/725F16H61/66Y02T10/6221Y02T10/6286Y10S903/903Y10S903/909Y10S903/91Y10S903/914Y10S903/918Y10S903/946Y10S903/951Y10T477/23
    • A hybrid powered vehicle is capable of running forward and backward under various conditions (e.g., by a motor) and enables the regeneration of energy during the reduction of speed without increasing the full length, weight, cost and the like of a transmission. The hybrid powered vehicle has a planetary gear unit, which comprises the following three elements: a ring gear, a sun gear, and a carrier pivotally supporting a planetary pinion arranged between the carrier and the sun gear. The planetary gear unit is disposed between an engine and an electric motor. The hybrid powered vehicle also has a forward/backward rotation switching mechanism, which comprises a brake for braking a first element that is one of the above-mentioned three elements and a clutch for connecting and disconnecting two elements among the above-mentioned three elements. An output shaft of the engine connects to one of the two elements other than the first element, and an output shaft of the electric motor and an input shaft of the transmission connect to the other.
    • 混合动力车辆能够在各种条件下(例如,通过电动机)前后运行,并且能够在降低速度的同时实现能量再生,而不会增加变速器的全长,重量,成本等。 混合动力车辆具有行星齿轮单元,其包括以下三个元件:环形齿轮,太阳齿轮和枢转地支撑布置在托架和太阳齿轮之间的行星小齿轮的托架。 行星齿轮单元设置在发动机和电动马达之间。 混合动力车辆还具有向前/向后旋转切换机构,其包括用于制动作为上述三个元件之一的第一元件的制动器和用于在上述三个元件之间连接和断开两个元件的离合器。 发动机的输出轴连接到除了第一元件之外的两个元件中的一个,电动机的输出轴和变速器的输入轴连接到另一个。
    • 5. 发明授权
    • Vehicle damper device
    • 车阻尼装置
    • US08858345B2
    • 2014-10-14
    • US13988164
    • 2010-11-19
    • Masataka SugiyamaYoshinori MoritaTadashi Takemura
    • Masataka SugiyamaYoshinori MoritaTadashi Takemura
    • F16F15/121F16D3/12F16D7/00F16F15/139F16D7/02
    • F16D3/12F16D7/00F16D7/025F16F15/1392
    • A vehicle damper device disposed between a power transmission member coupled to an output shaft of an engine and a power transmission shaft disposed concentrically and rotatably relative to the power transmission member, the vehicle damper device includes: an input-side rotating member to which power of the engine is input via the power transmission member; an output-side rotating member relatively non-rotatably coupled to the power transmission shaft to be concentric and rotatable relative to the input-side rotating member; a mass body disposed rotatably relative to the input-side rotating member; a first elastic member interposed between the input-side rotating member and the mass body; and a second elastic member interposed between the input-side rotating member and the output-side rotating member.
    • 一种车辆阻尼器装置,其设置在与发动机的输出轴联接的动力传递构件和相对于所述动力传递构件同心且可旋转地设置的动力传递轴之间,所述车辆阻尼装置包括:输入侧旋转构件, 发动机经由动力传递构件输入; 输出侧旋转构件,其相对于所述动力传递轴相对不可旋转地联接成相对于所述输入侧旋转构件同心并且可旋转; 相对于输入侧旋转构件可旋转地设置的质量体; 插入在所述输入侧旋转构件和所述质量体之间的第一弹性构件; 以及插入在输入侧旋转构件和输出侧旋转构件之间的第二弹性构件。
    • 6. 发明授权
    • Vehicular damper device
    • 车辆阻尼器
    • US08944925B2
    • 2015-02-03
    • US13988206
    • 2010-11-19
    • Kazunori SakaiMasataka SugiyamaYoshinori MoritaTadashi Takemura
    • Kazunori SakaiMasataka SugiyamaYoshinori MoritaTadashi Takemura
    • F16F15/123F16F15/14F16F15/134F16F15/30F16D3/12F16F15/31
    • F16F15/1485F16D3/12F16F15/134F16F15/30F16F15/31
    • A vehicular damper device interposed between an engine and an output shaft and provided with a dual-mass flywheel includes: a first inertial body in the form of a disk connected to a crankshaft of said engine and rotatable about an axis of said crankshaft; a torsional damping portion interposed between said first inertial body and said output shaft; a second inertial body in the form of a disk rotatable about said axis and having a smaller outside diameter than said first inertial body, said second inertial body cooperating with said first inertial body to constitute said dual-mass flywheel; and an elastic member interposed between said first inertial body and said second inertial body and operatively connecting said first and second inertial bodies such that said elastic member is elastically deformable according to an amount of relative rotation of the first and second inertial bodies.
    • 插入在发动机和输出轴之间并设置有双质量飞轮的车辆阻尼器装置包括:连接到所述发动机的曲轴并可围绕所述曲轴的轴线旋转的盘形式的第一惯性体; 介于所述第一惯性体和所述输出轴之间的扭转阻尼部分; 第二惯性体,其可以围绕所述轴线旋转并且具有比所述第一惯性体更小的外径,所述第二惯性体与所述第一惯性体协作以构成所述双质量飞轮; 以及插入在所述第一惯性体和所述第二惯性体之间并且可操作地连接所述第一和第二惯性体的弹性构件,使得所述弹性构件可根据所述第一和第二惯性体的相对旋转量而弹性变形。
    • 10. 发明申请
    • VEHICULAR DAMPER DEVICE
    • 车辆阻尼器装置
    • US20130244800A1
    • 2013-09-19
    • US13988206
    • 2010-11-19
    • Kazunori SakaiMasataka SugiyamaYoshinori MoritaTadashi Takemura
    • Kazunori SakaiMasataka SugiyamaYoshinori MoritaTadashi Takemura
    • F16F15/14F16F15/31F16D3/12
    • F16F15/1485F16D3/12F16F15/134F16F15/30F16F15/31
    • A vehicular damper device interposed between an engine and an output shaft and provided with a dual-mass flywheel includes: a first inertial body in the form of a disk connected to a crankshaft of said engine and rotatable about an axis of said crankshaft; a torsional damping portion interposed between said first inertial body and said output shaft; a second inertial body in the form of a disk rotatable about said axis and having a smaller outside diameter than said first inertial body, said second inertial body cooperating with said first inertial body to constitute said dual-mass flywheel; and an elastic member interposed between said first inertial body and said second inertial body and operatively connecting said first and second inertial bodies such that said elastic member is elastically deformable according to an amount of relative rotation of the first and second inertial bodies.
    • 插入在发动机和输出轴之间并设置有双质量飞轮的车辆阻尼器装置包括:连接到所述发动机的曲轴并可围绕所述曲轴的轴线旋转的盘形式的第一惯性体; 介于所述第一惯性体和所述输出轴之间的扭转阻尼部分; 第二惯性体,其可以围绕所述轴线旋转并且具有比所述第一惯性体更小的外径,所述第二惯性体与所述第一惯性体协作以构成所述双质量飞轮; 以及插入在所述第一惯性体和所述第二惯性体之间并且可操作地连接所述第一和第二惯性体的弹性构件,使得所述弹性构件可根据所述第一和第二惯性体的相对旋转量而弹性变形。