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    • 1. 发明授权
    • Spacer for liner motion apparatus and liner motion apparatus provided with spacer
    • 用于衬垫运动装置和衬垫运动装置的间隔件设置有间隔件
    • US06352367B1
    • 2002-03-05
    • US09560624
    • 2000-04-28
    • Masashi KonomotoHidekazu Michioka
    • Masashi KonomotoHidekazu Michioka
    • F16C2906
    • F16C29/0635F16C29/0642F16C33/3706F16C33/374
    • A spacer for a linear motion apparatus is to be interposed alternately between balls arranged in an endless circulation passage of the linear motion apparatus. The spacer has a body portion comprising spherical retaining surface portions formed for supporting the balls on both end portions thereof in an advancing direction of the spacer when moving in the endless circulation passage and a circumferential surface portion constituting an outer peripheral portion of the spherical retaining surface portions. The spherical retaining surface portion has a radius of curvature smaller than a diameter of the ball and the circumferential surface portion is provided with a groove extending in the circumferential direction thereof so that one of the spherical retaining surface portions is elastically deformable towards another one thereof. The spacer is preferably applicable to various kinds of linear motion apparatus. Further, rollers as rolling members may be utilized in place of the balls.
    • 用于直线运动装置的间隔件应交替布置在线性运动装置的环形循环通道中的球之间。 间隔件具有主体部分,该主体部分包括球形保持表面部分,该保持表面部分形成用于当在环形循环通道中移动时在间隔件的前进方向上支撑其两端部的球体以及构成球形保持表面的外周部分的周面部分 部分。 所述球形保持面部的曲率半径小于所述球的直径,所述圆周面部设置有沿其周向延伸的槽,使得所述球形保持面部中的一个朝向其另一个弹性变形。 间隔件优选适用于各种直线运动装置。 此外,可以使用作为滚动构件的辊代替球。
    • 4. 发明授权
    • Damping device
    • 阻尼装置
    • US06499573B1
    • 2002-12-31
    • US09926539
    • 2001-11-16
    • Masashi Konomoto
    • Masashi Konomoto
    • F16F912
    • F16F9/103F16F9/12F16F15/023F16F2232/06
    • There is provided a damping device for making large a damping force per unit length in an axial direction thereof. The damping device 20 is provided with a motion conversion section 21 for converting a relative linear motion between the two object portions to a rotational motion of a rotation member 30 and a damping section 22 operatively connected to the motion conversion section and adapted to resist the rotational motion of the rotation member. The damping section 22 is formed with the rotation member 30, an inner peripheral side sealing layer 34 disposed on an inner peripheral side of the rotation member 30 and an outer peripheral side sealing layer 33 disposed on an outer peripheral side of the rotation member. The inner and outer peripheral side sealing structure are sealed with viscous medium. Since the inner peripheral side sealing layer 34 and the outer peripheral side sealing layer 33 resist against the rotational motion of the rotation member 30, the damping force per unit length of the rotation member in its axial direction can be made large.
    • 提供了一种用于在其轴向方向上每单位长度产生大的阻尼力的阻尼装置。 阻尼装置20设置有运动转换部分21,用于将两个物体部分之间的相对直线运动转换成可旋转部件30和可操作地连接到运动转换部分的阻尼部分22的旋转运动, 旋转构件的运动。 阻尼部22形成有旋转部件30,设置在旋转部件30的内周侧的内周侧密封层34和配置在旋转部件的外周侧的外周侧密封层33。 内外侧密封结构用粘性介质密封。 由于内周侧密封层34和外周侧密封层33抵抗旋转构件30的旋转运动,因此可以使旋转构件的轴向的每单位长度的阻尼力变大。
    • 5. 发明授权
    • Method of making a slider of a linear guide device
    • 制造线性引导装置的滑块的方法
    • US6042269A
    • 2000-03-28
    • US137844
    • 1998-08-21
    • Masashi Konomoto
    • Masashi Konomoto
    • B29C45/14B29L31/00F16C29/06F16C33/38F16C33/58F16C33/64
    • F16C29/0659F16C29/0602F16C33/3825F16C33/58F16C33/64Y10T29/49641Y10T29/4984Y10T29/49984
    • The present invention relates to a slider of a linear guide device for guiding a movable body such as a work table or an industrial robot or the like of a machine tool under load which moves along a track rail arranged at a fixed portion such as a bed, or a column. The block main body is made of a metal which becomes a core part of the slider in a predetermined shape and forming load rolling faces of balls on the block main body by machine. The block main body is inserted into a mold and injection molding of a synthetic resin is performed by which ball retaining portions are built on both sides of the load rolling faces of block main body. Pairs of smooth faces for shielding the molten synthetic resin are formed along the both edges in the longitudinal direction of the load rolling faces formed on block main body whereas the block main body is fixed at a predetermined position in the mold by bringing a projected support portion on the side of the mold into contact with the smooth faces for shielding the molten synthetic resin.
    • 线性引导装置技术领域本发明涉及一种线性引导装置的滑块,其用于引导诸如工作台或工业机器人之类的可移动体,该工具或工业机器人等在负载下沿着布置在诸如床的固定部分的轨道轨道 ,或一列。 块主体由成为滑块的核心部分的金属制成,具有预定形状,并通过机器在块主体上形成滚珠的载荷滚动面。 将块体主体插入模具中,进行合成树脂的注射成型,在块体主体的载荷滚动面的两侧形成有球保持部。 沿着形成在块体主体上的负载滚动面的长度方向上的两个边缘形成有用于屏蔽熔融合成树脂的平面的对,而块主体通过使突出的支撑部分固定在预定位置 在模具的侧面与平滑的表面接触以屏蔽熔融的合成树脂。
    • 7. 发明授权
    • Base isolation device with damping mechanism
    • 带阻尼机构的基座隔离装置
    • US06385917B1
    • 2002-05-14
    • US09661800
    • 2000-09-14
    • Masashi Konomoto
    • Masashi Konomoto
    • E04B198
    • E04H9/021F16F9/103F16F2232/06
    • A base isolation device used for the purpose of absorbing a quake of the ground by, for example, an earthquake to thereby reduce the quake of a building, or used for the purpose of reducing a quake applied to a precision machinery and tool in transportation etc. of the precision machinery and tool. The base isolation device comprises 1st and 2nd track rails disposed orthogonally to each other, a 1st slide member freely linearly movable along the 1st track rail, a 2nd slide member connected to the 1st slide member and freely linearly movable along the 2nd track rail, a ball screw for converting a linear motion of the 2nd slide member into a rotary motion, a rotary sleeve to which a rotation is given by the ball screw, a stationary sleeve forming an action chamber of damping force between it and an outer periphery face of the rotary sleeve, and a viscous fluid sealed in the action chamber.
    • 用于通过例如地震吸收地震的基础隔离装置,从而减少建筑物的地震,或用于减少运输中精密机械和工具的地震的目的 的精密机械和工具。 基座隔离装置包括彼此正交配置的第一和第二轨道轨道,沿着第一轨道轨道自由直线移动的第一滑动构件,连接到第一滑动构件并沿着第二轨道轨道自由地直线移动的第二滑动构件, 用于将第二滑动构件的直线运动转换成旋转运动的滚珠丝杠,由滚珠丝杠给予旋转的旋转套筒,形成在其与其的外周面之间的阻尼力作用室的静止套筒 旋转套筒和密封在动作室中的粘性流体。
    • 8. 发明授权
    • Three-dimensional guiding apparatus
    • 三维引导装置
    • US6085473A
    • 2000-07-11
    • US155957
    • 1999-02-23
    • Hiroshi TeramachiYoshikazu SugaShigeru WakoMasashi KonomotoHirokazu IshikawaTadashi Hirokawa
    • Hiroshi TeramachiYoshikazu SugaShigeru WakoMasashi KonomotoHirokazu IshikawaTadashi Hirokawa
    • E04H9/02F16F15/00F16F15/02E04B1/98
    • F16F15/02E04H9/023F16F2230/0052
    • The present invention relates to a three-dimensional guiding apparatus capable of bearing large loads and suitable for use in a vibration isolating structure for buildings. The three-dimensional guiding apparatus comprises a base 23, a first curved guiding apparatus 21 disposed above the base 23 and having an arcuate track, a second curved guiding apparatus 22 disposed above the first curved guiding apparatus 21 and having a plane of movement along an arcuate track which crosses the plane of movement of the first curved guiding apparatus 21, and an intermediate member 24 positioned between the first curved guiding apparatus 21 and the second curved guiding apparatus 22 and interconnecting the first curved guiding apparatus 21 and the second curved guiding apparatus 22. Each of the first and second curved guiding apparatuses 21, 22 has a track rail 1, a bearing block 10, lids 13, and a number of balls 9.
    • PCT No.PCT / JP97 / 02643 Sec。 371日期1999年2月23日 102(e)1999年2月23日PCT PCT 1997年7月31日PCT公布。 第WO98 / 35117号公报 日期1998年8月13日本发明涉及能够承受大负载并适合用于建筑物的隔振结构的三维引导装置。 三维引导装置包括基座23,设置在基座23上方并且具有弓形轨道的第一弯曲引导装置21,设置在第一弯曲引导装置21上方的第二弯曲引导装置22,并且具有沿着 与第一弯曲引导装置21的运动平面交叉的弧形轨迹以及位于第一弯曲引导装置21和第二弯曲引导装置22之间的中间构件24,并且将第一弯曲引导装置21和第二弯曲引导装置 第一和第二弯曲引导装置21,22中的每一个具有轨道轨道1,轴承座10,盖13和多个球9。