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    • 4. 发明申请
    • RESIN COMPONENT WELDING APPARATUS AND METHOD OF WELDING RESIN COMPONENTS
    • 树脂组分焊接设备和焊接树脂组件的方法
    • US20110024038A1
    • 2011-02-03
    • US12843755
    • 2010-07-26
    • Atsuhiro Mori
    • Atsuhiro Mori
    • B29C65/10C09J5/10
    • B29C66/54B29C65/103B29C65/20B29C65/7841B29C66/00141B29C66/1142B29C66/131B29C66/324B29C66/73921B29C66/80B29C66/81423B29C66/81431B29C66/83221B29L2031/30B29L2031/747F21V17/101
    • A resin component welding apparatus and method are for welding joint faces of resin components with each other. The apparatus has supporting members which support respective resin components in an axial direction with the joint faces movable to each other along the axial direction; a hot air die having nozzle faces and moveable from an inserting position to a retracting position between both resin components; first driving means for moving said supporting members to a heating position wherein joint faces of respective resin components come close to the nozzle faces of said hot air die located at an inserting position, or to a welding position wherein joint faces of respective resin components are pressure-contacted to each other under the condition of said hot air die located at the retracting position; and second driving means for moving said hot air die between inserting and retracting positions, wherein said hot air die provides a hot air circuit that has a hot air generating structure.
    • 树脂部件焊接装置和方法用于将树脂部件的接合面彼此焊接。 该装置具有支撑构件,该支撑构件沿着轴向支撑相应的树脂构件,其中接合面沿着轴向可彼此相对移动; 具有喷嘴面并可从两个树脂部件之间的插入位置移动到缩回位置的热空气模具; 第一驱动装置,用于将所述支撑构件移动到加热位置,其中各个树脂部件的接合面靠近位于插入位置处的所述热空气模具的喷嘴面,或者接合到各个树脂部件的接合面是压力的焊接位置 在位于缩回位置的所述热空气模具的条件下彼此接触; 以及用于在插入和缩回位置之间移动所述热空气模具的第二驱动装置,其中所述热空气模具提供具有热空气产生结构的热空气回路。
    • 8. 发明授权
    • Friction-roller type transmission mechanism
    • 摩擦辊式传动机构
    • US08402851B2
    • 2013-03-26
    • US12864188
    • 2009-01-20
    • Atsuhiro MoriTakeshi KariyaShinji Kiyohara
    • Atsuhiro MoriTakeshi KariyaShinji Kiyohara
    • F16H21/14
    • F16H13/10B60K17/344F16H13/02Y10T74/18392
    • Under control of rotation of a crankshaft 41, a friction roller 32 is pressed against a friction roller 31 in a radial direction, so as to achieve torque transmission between the rollers 31, 32. An inter-roller radial pressing reaction is canceled as an internal force in bearing supports 23, 25, with no input to a housing 11. The reaction causes a radial displacement of a bearing-fitting portion provided with inner and outer bearings 21, 42 in double layer arrangement, wherein the radial displacement is larger than that of a bearing-fitting portion provided with a bearing 18, 19, 22 in single arrangement, so as to cause unbalanced contact between rollers 31, 32. In order to prevent this, support stiffness of bearing support 23 against the inter-friction-roller radial pressing reaction is set higher than that of bearing support 25.
    • 在曲轴41旋转的控制下,摩擦辊32沿径向压靠在摩擦辊31上,以实现辊31,32之间的扭矩传递。作为内部的辊间径向按压反作用被取消 轴承支撑件23,25中的力,没有输入到壳体11.反作用引起设置有内外轴承21和42的轴承配合部分的双层布置的径向位移,其中径向位移大于 一个轴承装配部分设置有一个单独布置的轴承18,19,22,以便导致辊子31,32之间的不平衡接触。为了防止这种情况,轴承支撑件23抵靠摩擦辊间的支撑刚度 径向挤压反应设定为高于轴承座25。
    • 9. 发明申请
    • TORQUE DISTRIBUTOR
    • 扭矩分配器
    • US20120264557A1
    • 2012-10-18
    • US13145034
    • 2009-12-07
    • Katsuhiko SandoAtsuhiro Mori
    • Katsuhiko SandoAtsuhiro Mori
    • F16H13/04B60K17/344
    • B60K17/35F16H13/04F16H13/10
    • A torque distributor includes a friction-drive mechanism having a first roller rotatable together with a first rotary member, partly constituting a torque-transmission path to primary drive wheels, and a second roller rotatable together with a second rotary member, partly constituting a torque-transmission path to secondary drive wheels. Also provided is an eccentric-crank mechanism for revolving the second roller in a direction opposite to a rotation direction of power transmission of the second roller around an eccentric-shaft axis displaced from a second-roller rotation axis to produce a displacement of the second roller from a non-power-transmission position of non-frictional-contact with the first roller to a radially-loaded power-transmission position of frictional-contact with the first roller. Although the friction-drive type is used, the torque distributor enables torque-distribution-control mode switching between them, while ensuring high-precision torque-distribution control by avoiding a polarity of moment acting on a rotational-position-control system for an eccentric crank from being reversed.
    • 扭矩分配器包括摩擦驱动机构,该摩擦驱动机构具有与第一旋转构件一起旋转的第一滚子,部分地构成到主驱动轮的扭矩传递路径,以及与第二旋转构件一起旋转的第二滚子, 传动路径到二级驱动轮。 还提供了一种偏心曲柄机构,用于使第二辊沿着与第二辊的动力传递的旋转方向相反的方向围绕偏离轴轴线旋转,偏心轴轴线从第二辊旋转轴线偏移,以产生第二辊的位移 从与第一辊非摩擦接触的非动力传递位置到与第一辊摩擦接触的径向负载的动力传递位置。 虽然使用了摩擦驱动型,但是扭矩分配器能够在它们之间进行扭矩分配控制模式切换,同时通过避免作用在偏心的旋转位置控制系统上的力矩的极性来确保高精度的扭矩分配控制 曲柄被扭转。