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    • 102. 发明申请
    • MANUFACTURING METHOD OF DRIVING BELT
    • 驱动带的制造方法
    • US20100243131A1
    • 2010-09-30
    • US12745998
    • 2008-12-02
    • Daisuke Kobayashi
    • Daisuke Kobayashi
    • F16G1/00
    • F16G5/16Y10T29/4978Y10T29/49863Y10T29/53978
    • A manufacturing method of a driving belt, which can measure and adjust an endplay of the driving belt including a ring and elements to improve productivity of the driving belt, the method including: obtaining a correlation among a circumferential length of the ring, a total weight of the elements fastened by the ring, and a range of a movement of the fastened elements in the length direction of the ring; determining a range of a required element weight as a total weight of the elements to be fastened by the ring, on the basis of the obtained correlation, a desired moving range of the element, and the length of the ring; feeding the elements in the amount within the range of the required element weight while measuring a total weight of the element being fed; and fastening the element fed at the element feeding by the ring.
    • 一种驱动带的制造方法,其可以测量和调节包括环的传动带的端面,以提高传动带的生产率,该方法包括:获得环的圆周长度与总重量之间的相关性 由所述环固定的元件以及所述紧固元件在所述环的长度方向上的移动范围; 基于所获得的相关性,所述元件的期望移动范围和所述环的长度,确定要由所述环紧固的元件的总重量的所需元件重量的范围; 在测量所供给的元件的总重量的同时,将所述元件以所需元件重量的范围内供给; 并且紧固在由所述环进给的元件处供给的元件。
    • 103. 发明申请
    • Traction device
    • 牵引装置
    • US20100044158A1
    • 2010-02-25
    • US12588867
    • 2009-10-30
    • Hubert Göser
    • Hubert Göser
    • F16G1/28F16G1/00B66B11/08F16G1/22
    • B66B7/062F16G5/20
    • The invention relates to a traction device (1), especially for an elevator system. The traction device (1) is driveable by a traction sheave. The task which is the basis of the invention is to provide a traction device which is simple to manipulate. High tension forces are transferable and the traction device makes possible a drive unit of lesser width compared to the known belt technology. For this purpose, the traction device is configured as a composite rope (1) wherein individual tension carriers (2, 3) are connected to each other via a one-sided elastomer connecting layer (4). The individual tension carriers (2, 3) lie in parallel and are jacketed with elastomeric material. The tension carriers (2, 3) engage in corresponding grooves (13) of the traction sheave (10). The tension carriers (2, 3) engage in the grooves (13) of the traction sheave (10) with at least 25% of their total diameter.
    • 本发明涉及牵引装置(1),特别是用于电梯系统。 牵引装置(1)可由牵引滑轮驱动。 作为本发明的基础的任务是提供一种操纵简单的牵引装置。 与已知的带技术相比,高张力是可转移的,并且牵引装置使得具有较小宽度的驱动单元成为可能。 为此,牵引装置被配置为复合绳索(1),其中各个张紧载体(2,3)经由单侧弹性体连接层(4)相互连接。 各个张紧载体(2,3)平行地并且被弹性体材料夹套。 张紧载体(2,3)接合牵引滑轮(10)的相应凹槽(13)。 张紧载体(2,3)以其总直径的至少25%与牵引滑轮(10)的凹槽(13)接合。
    • 105. 发明申请
    • Spliceless baler belt
    • 无缝打捆机皮带
    • US20080125263A1
    • 2008-05-29
    • US11592885
    • 2006-11-03
    • Donald Ray Belik
    • Donald Ray Belik
    • F16G1/00B29D29/00
    • F16G1/08A01F15/18A01F2015/183
    • An endless elastomeric belt is comprised of one or more reinforcement layers, and one or more elastomeric layers, wherein at least one of the reinforcement layers is formed of strips that are spirally wound forming a helix. A method of making an endless belt is provided and includes the steps of applying a first elastomeric layer on the outer circumferential surface of a belt building mandrel; splicing the ends together; applying a fabric reinforcement layer over the first layer, wherein said reinforcement layer is comprised of a continuous strip which is spirally wound around the mandrel to form a continuous, endless helix, and applying a second elastomeric layer over said fabric reinforcement layer, cutting the layers into one or more belts having a desired width, and then vulcanizing the one or more belts.
    • 环形弹性体带由一个或多个加强层和一个或多个弹性体层组成,其中至少一个加强层由形成螺旋形螺旋缠绕的条带形成。 提供一种制造环形带的方法,包括以下步骤:将第一弹性体层施加在带建筑心轴的外圆周表面上; 将末端拼接在一起; 在所述第一层上施加织物加强层,其中所述加强层由连续的条带组成,所述连续带围绕所述心轴螺旋缠绕以形成连续的环形螺旋,并且在所述织物加强层上施加第二弹性体层, 进入具有期望宽度的一个或多个带中,然后硫化该一个或多个带。
    • 106. 发明申请
    • Power transmission belt
    • 动力传动皮带
    • US20070249452A1
    • 2007-10-25
    • US11399926
    • 2006-04-07
    • Bobbie South
    • Bobbie South
    • F16G1/00F16G5/00
    • F16G5/20F16G1/28
    • A power transmission belt comprising a body comprising a first elastomeric material and having tensile members running in a longitudinal direction, the body having a pulley engaging region having a profile; characterized in that the pulley engaging region comprises a surface region and a subsurface region; the subsurface region comprising a second elastomeric material having a friction modifying agent; and the surface region comprising a nonwoven fabric material co-mingled with the second elastomeric material.
    • 一种动力传递带,包括主体,所述主体包括第一弹性体材料并且具有在纵向方向上延伸的拉伸构件,所述主体具有带轮廓的滑轮接合区域; 其特征在于,所述滑轮接合区域包括表面区域和地下区域; 所述地下区域包括具有摩擦改性剂的第二弹性体材料; 并且所述表面区域包括与所述第二弹性体材料共混的非织造织物材料。
    • 109. 发明申请
    • CIRCUMFERENTIAL LENGTH CORRECTING METHOD AND APPARATUS FOR METAL RING
    • 圆周长度校正方法和金属环设备
    • US20070087879A1
    • 2007-04-19
    • US11548128
    • 2006-10-10
    • Yoshiharu WatabeSeiichi MinegishiToru YagasakiHideaki Aoyama
    • Yoshiharu WatabeSeiichi MinegishiToru YagasakiHideaki Aoyama
    • F16G1/00F16G5/00F16G1/21
    • B21D53/14B21D3/12
    • The invention provides a circumferential length correcting method for a metal ring including: a circumferential length measuring step of passing the metal ring around a driving roller and a driven roller, displacing the driving roller and the driven roller away from each other, and measuring the actual circumferential length of the ring under tension; and a circumferential length correcting step of correcting the circumferential length of the ring by displacing a circumferential length correcting roller by a predetermined distance in a direction in which the metal ring is extended, the method being capable of imparting an appropriate arc shape to the metal ring while correcting the circumferential length to fall within an appropriate value range, and a circumferential length correcting apparatus therefor. Before the circumferential length correcting step, the method includes an arc-shape imparting step of displacing an arc-shape imparting roller 3, which has an arc-shaped circumference and is positioned inside a metal ring W, by a predetermined distance in a direction in which the metal ring W is extended, thereby imparting an arc shape W1 conforming to the shape of the circumference of the arc-shape imparting roller 3 to the metal ring W.
    • 本发明提供了一种用于金属环的圆周长度校正方法,包括:周向长度测量步骤,使金属环绕驱动辊和从动辊,使驱动辊和从动辊彼此远离,并测量实际 环的周长在张力下; 以及圆周长度校正步骤,通过使圆周长度校正辊在金属环延伸的方向上移动预定距离来校正环的周长,该方法能够赋予金属环适当的弧形形状 同时校正圆周长度落入适当的值范围内,以及其圆周长度校正装置。 在圆周长度校正步骤之前,该方法包括将具有弧形圆周并位于金属环W内部的弧形赋予辊3沿圆周方向的方向移动预定距离的圆弧形状赋予步骤 金属环W延伸,从而赋予与圆弧形状赋予辊3的圆周形状相符合的金属环W.