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    • 2. 发明授权
    • Rotary drive coupling
    • 旋转联轴器
    • US4392837A
    • 1983-07-12
    • US206695
    • 1980-11-14
    • Charles J. Wirth
    • Charles J. Wirth
    • F16D3/60F16D3/62
    • F16D3/60
    • A flexible coupling for drivingly connecting two rotatable shafts or the like, and for use in applications where torque is transmitted only in one direction of rotation or where the torque transmitted in one direction of rotation is significantly greater than the torque transmitted in the other direction of rotation, includes a flex member consisting of four elongated flex elements fixedly joined together in a unitary rectangular arrangement. The two elements positioned on opposite sides of the rectangular arrangement are of substantially rectangular cross-sectional shape along a major portion of element length, and the elements of one such pair are thicker than the elements of the other pair. The flex member is connected between the two rotatable shafts in a manner which causes the thicker elements to be in compression and the thinner elements to be in tension during torque transmission in the favored direction. The difference in element thickness provides a more stable flex member structure, reducing unwanted spurious deflections and thereby improving the capacity for useful deflections associated with driving and driven member misalignments. The coupling may include only a single flex member or may have a number of such members connected in series to increase its misalignment capabilities.
    • 用于驱动地连接两个可旋转轴等的柔性联接器,并且用于仅在一个旋转方向上传递扭矩或者在一个旋转方向上传递的扭矩明显大于沿另一方向传递的扭矩的应用中 旋转包括由四个细长的柔性元件组成的柔性构件,其以一体的矩形结构固定地连接在一起。 定位在矩形布置的相对侧上的两个元件沿着元件长度的主要部分具有基本上矩形的横截面形状,并且一个这样的对的元件比另一对的元件厚。 柔性构件以使得较厚元件处于压缩状态的方式连接在两个可旋转轴之间,并且较薄的元件在有利的方向的扭矩传递期间处于张紧状态。 元件厚度的差异提供了更稳定的弯曲构件结构,减少了不想要的杂散偏转,从而提高了与驱动和从动构件未对准有关的有用挠度的能力。 联接器可以仅包括单个柔性构件,或者可以具有多个这样的构件串联连接以增加其不对准能力。
    • 3. 发明授权
    • Method of assembling bearings
    • 轴承组装方法
    • US4033019A
    • 1977-07-05
    • US597632
    • 1975-07-21
    • Stanley S. Orkin
    • Stanley S. Orkin
    • B23K15/04B29C45/14F16C23/04B21D53/10
    • B29C45/14754B23K15/04F16C23/046Y10T29/49655Y10T29/49663
    • The disclosure embraces a method of assembling a self-aligning spherical bearing by placing the mating surfaces of two ring members each having annular facing recesses together about the spherical member and then directing an energized beam raised inwardly towards the common axis of the ring members to fusion bond the mating surface of the ring members together; the depth of the fusion bonding extending from the outer edges of the ring members to the cavity defined by the mating recesses formed on the mating surfaces of the ring members on their interior edges; the inner bearing surfaces of the ring members have a bearing surface formed thereon by injecting a mixture of an acrylate composition and a solid particulate lubricant between the spherical bearing surface and the inner annular surfaces of the ring members.
    • 本公开包括一种组装自对准球面轴承的方法,通过将两个环形构件的配合表面各自具有围绕球形构件的环形相对的凹部放置在一起,然后将激励的梁向内朝向环构件的公共轴线向内引导以融合 将环构件的配合表面粘合在一起; 熔融粘结的深度从环形构件的外边缘延伸到由在其内部边缘处的环构件的配合表面上形成的配合凹部限定的空腔; 环形构件的内部支承表面通过在球形轴承表面和环形构件的内部环形表面之间注入丙烯酸酯组合物和固体颗粒润滑剂的混合物而在其上形成有支承表面。
    • 8. 发明授权
    • Self-aligning track roller
    • 自调心滚轮
    • US5110221A
    • 1992-05-05
    • US285601
    • 1988-12-16
    • Glennwood H. NarkonStanley S. Orkin
    • Glennwood H. NarkonStanley S. Orkin
    • F16C33/20F16C33/28
    • F16C33/201F16C13/006F16C23/046F16C33/28
    • A track-roller bearing assembly is disclosed which includes a fixed inner ball race member having an outwardly facing arcuate peripheral bearing surface; an annular body of self-lubricating bearing material affixed to the outwardly bearing surface of said inner race; and a coaxial outer race which is rotatable about an axis of the inner race and anguarly displaceable relative to the axis of the inner race so as to accommodate track deflections or irregularities. The track-roller further includes a resilient element disposed between respective ends of the inner and outer races so as to bias the races back into axial alignment after they have been angularly displaced relative to each other.
    • 公开了一种滚子轴承组件,其包括具有向外的弓形周向支承表面的固定内滚珠座构件; 固定在所述内圈的向外支承表面上的自润滑轴承材料的环形体; 以及同轴的外圈,其能够围绕内圈的轴线旋转并相对于内圈的轴线可角度地移位,以便适应轨道偏转或不规则。 轨道滚轮还包括设置在内圈和外圈的相应端部之间的弹性元件,以便在它们已经相对于彼此成角度位移之后将其重新轴向对准。
    • 9. 发明授权
    • Rotary drive coupling
    • 旋转联轴器
    • US4615687A
    • 1986-10-07
    • US700460
    • 1985-02-11
    • Charles J. Wirth
    • Charles J. Wirth
    • F16D3/60F16D3/78F16D3/62
    • F16D3/60F16D3/78
    • A flexible coupling includes a quadrilateral, flex member, which coupling rotatably couples a driving shaft to a driven shaft and accommodates endwise, parallel or angular misalignment between the shafts. The flex member includes corner portions each having one substantially aligned face and a raised face created by thickening of each corner portion. The substantially aligned faces of two diagonally opposed corner portions face in one generally axial direction and the substantially aligned faces of the other corner portions face in a direction generally opposite to that of the substantially aligned faces of the two diagonally opposed corner portions to minimize the endwise spacing required between the driving shaft and the driven shaft needed to insert the coupling. The decreased endwise spacing minimizes the bending moment on the flex member and facilitates the identification of the proper assembly orientation of the flex member within the flexible coupling. The decreased endwise spacing also increases the lateral stiffness of the coupling arrangement and the maximum operating speed of the coupling.
    • 柔性联接器包括四边形弯曲构件,该联接器将驱动轴可旋转地联接到从动轴并且容纳轴之间的端部,平行或角度偏移。 柔性构件包括角部,每个角部具有一个基本上对齐的面和通过每个角部增厚而产生的凸起面。 两个对角相对的角部的基本上对准的面在一个大致轴向方向上面对,并且另一角部的基本对齐的面在与两个对角相对的角部的基本对准的面大致相反的方向上面对, 插入联轴器所需的驱动轴和从动轴之间所需的间距。 减小的最终间距使柔性构件上的弯曲力矩最小化,并且有助于识别柔性构件在柔性联接件内的正确组件取向。 减小的端向间距也增加了联接装置的横向刚度和联接器的最大工作速度。