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    • 6. 发明授权
    • Ratchet-type tensioner
    • US09062741B2
    • 2015-06-23
    • US13409592
    • 2012-03-01
    • Yuji KurematsuKaori MoriMunehiro MaedaOsamu Yoshida
    • Yuji KurematsuKaori MoriMunehiro MaedaOsamu Yoshida
    • F16H7/08
    • F16H7/0848F16H7/08F16H2007/0806F16H2007/0812F16H2007/0853F16H2007/0859
    • A ratchet-type tensioner, comprising: a housing; a plunger supported by the housing for movement in opposite advancing and setback directions, the plunger having rack teeth provided thereon, and being arranged to advance with respect to the housing along the advancing direction for applying tension to a traveling transmission medium engaged with rotating members; and a ratchet mechanism capable of restricting the plunger from setting back due to a reaction force acting in a setback direction from the transmission medium; said ratchet mechanism comprising: a ratchet-receiving hole provided within the housing; a ratchet element slidable in the ratchet-receiving hole and movable in a sliding direction transverse to the advancing and setback directions; ratchet teeth on the ratchet element engageable with the rack teeth of the plunger; and a ratchet-biasing means for biasing the ratchet element in an engaging direction along the sliding direction so that the ratchet teeth engage with the rack teeth; said ratchet mechanism being capable of restricting the plunger from being set back by a reaction force acting in a setback direction from the transmission medium; said rack teeth having a concave-convex form and being composed of stop surfaces facing in the setback direction and sliding surfaces facing in the advance direction, said sliding surfaces being inclined relative to the sliding direction and facing in a disengaging direction opposite from the engaging direction; each of said sliding surfaces having an entry starting location which the ratchet teeth first engage when starting to enter the rack teeth, and an entry ending location where the engagement of the ratchet teeth with the rack teeth ends; each said sliding surface being a curved surface, all of said curved surface, between said entry starting location and said entry ending location of said sliding surface, bulging in the advancing direction of the plunger and in the disengaging direction of the ratchet element from an imaginary reference plane intersecting said entry starting location and said entry ending location of said sliding surface and perpendicular to another imaginary plane to which the advancing and setback direction of the plunger and the sliding direction of the ratchet element are parallel; and at least a part of said curve midway along said curve between the entry starting location and the entry ending location is convex.
    • 8. 发明申请
    • TRANSMISSION GUIDE
    • 传输指南
    • US20130035184A1
    • 2013-02-07
    • US13558994
    • 2012-07-26
    • Masahiko KonnoKaori MoriYuji Kurematsu
    • Masahiko KonnoKaori MoriYuji Kurematsu
    • F16H7/08F16H7/18
    • F16H7/18F16H2007/0872
    • The synthetic resin guide in accordance with the invention comprises an elongated synthetic resin shoe having a front surface for sliding contact with the transmission medium and a back surface opposite from the front surface and a plurality of engaging members disposed in longitudinally spaced relationship to one another. The guide also comprises an elongated synthetic resin base in contact with the back surface of the shoe and supporting the shoe, the base having a plurality of longitudinally spaced engaged portions each of which engages with one of the engaging members. One engaging member is fixed to the engaged portion with which it is engaged. The other engaging members are longitudinally movable relative to the engaged portions with which they are engaged. Thus, the guide allows longitudinal thermal expansion and contraction of the shoe relative to the base.
    • 根据本发明的合成树脂引导件包括细长的合成树脂靴,其具有用于与传动介质滑动接触的前表面和与前表面相对的后表面,以及多个彼此纵向间隔开设置的接合构件。 引导件还包括与鞋的后表面接触并支撑鞋的细长的合成树脂基底,该基部具有多个纵向间隔开的接合部分,每个接合部分与接合构件中的一个接合。 一个接合构件固定到与其接合的接合部分。 其他接合构件相对于它们接合的接合部分可纵向移动。 因此,引导件允许鞋相对于底座的纵向热膨胀和收缩。