Elevator with flat belt as suspension means
    93.
    发明授权
    Elevator with flat belt as suspension means 有权
    电梯带平带作为悬挂装置

    公开(公告)号:US08336675B2

    公开(公告)日:2012-12-25

    申请号:US11665938

    申请日:2005-10-14

    CPC classification number: B66B7/062 D07B1/22 D07B2201/2087 D07B2501/2007

    Abstract: An elevator with belt-sheaves and at least one flat belt to suspend and move an elevator car. For the purpose of guiding the flat belt on the belt-sheaves, the belt has at least one guide groove in which at least one guide rib projecting from the sheave running surface of the belt-sheave engages.

    Abstract translation: 具有皮带轮和至少一个平带的电梯,以悬挂和移动电梯轿厢。 为了将皮带引导到皮带轮上,皮带具有至少一个引导槽,至少一个从皮带轮的滑轮运动表面伸出的引导肋啮合。

    Method of making a load bearing member for an elevator system
    94.
    发明授权
    Method of making a load bearing member for an elevator system 有权
    制造电梯系统的承载构件的方法

    公开(公告)号:US08052820B2

    公开(公告)日:2011-11-08

    申请号:US12066389

    申请日:2005-09-13

    Abstract: A method of making a load bearing member (30) for an elevator system (20) includes placing at least one tension member (32) adjacent one side (60) of a first layer (36) of a polymer material. A second layer (38), comprising a urethane in a disclosed example, is added adjacent to at least the one side (60) of the first layer (36) such that the tension member (32) is between the first layer (36) and the second layer (38). Such a technique allows for eliminating the bridges typically used to support the tension members in molding devices. Eliminating such bridges eliminates the resulting grooves associated with previous arrangements. Providing a grooveless exterior on the jacket (34) of the load bearing member (30) eliminates a significant source of potential vibration and noise in an elevator system.

    Abstract translation: 制造用于电梯系统(20)的承载构件(30)的方法包括:将至少一个张紧构件(32)放置在邻近聚合物材料的第一层(36)的一侧(60)附近。 在第一层(36)的至少一侧(60)附近添加包括所公开实例中的聚氨酯的第二层(38),使得所述张紧构件(32)位于所述第一层(36)之间, 和第二层(38)。 这种技术允许消除通常用于支撑模制装置中的张紧构件的桥。 消除这种桥梁消除了与先前布置相关联的所产生的凹槽。 在承载构件(30)的护套(34)上提供无沟槽的外部消除了电梯系统中潜在的振动和噪声的重要来源。

    ELEVATOR ROPE
    95.
    发明申请
    ELEVATOR ROPE 有权
    电梯绳

    公开(公告)号:US20110192131A1

    公开(公告)日:2011-08-11

    申请号:US13123403

    申请日:2009-12-09

    Abstract: An elevator rope of the present invention includes: a rope main body; and a covering resin layer that covers the periphery of the rope main body and comprises a molded product of a composition for forming the covering resin layer, wherein the composition is produced by mixing a thermoplastic polyurethane elastomer, a thermoplastic resin other than the thermoplastic polyurethane elastomer and an isocyanate compound having two or more isocyanate groups per molecule. Preferably, a rope main body impregnated with an impregnating solution comprising a hydroxy compound having two or more hydroxy groups per molecule and an isocyanate compound having two or more isocyanate groups per molecule and having a lower viscosity than a melt viscosity of the composition for forming the covering resin layer is used as the rope main body. The elevator rope of the present invention has a stable friction coefficient that does not depend on temperature or sliding velocity.

    Abstract translation: 本发明的电梯绳索包括:绳索主体; 以及覆盖树脂层,其覆盖绳索主体的周围,并且包括用于形成覆盖树脂层的组合物的模制产品,其中所述组合物通过混合热塑性聚氨酯弹性体,除热塑性聚氨酯弹性体之外的热塑性树脂 和每分子具有两个以上异氰酸酯基的异氰酸酯化合物。 优选地,浸渍有包含每分子具有两个或更多个羟基的羟基化合物和每分子具有两个或更多个异氰酸酯基团的异氰酸酯化合物并且具有比用于形成所述组合物的组合物的熔融粘度低的粘度的浸渍溶液的绳主体 覆盖树脂层用作绳主体。 本发明的电梯绳索具有不依赖于温度或滑动速度的稳定的摩擦系数。

    METHOD AND DEVICE FOR PRODUCING A SUPPORT BELT FOR AN ELEVATOR INSTALLATION
    96.
    发明申请
    METHOD AND DEVICE FOR PRODUCING A SUPPORT BELT FOR AN ELEVATOR INSTALLATION 有权
    用于生产用于电梯安装的支撑带的方法和装置

    公开(公告)号:US20110088981A1

    公开(公告)日:2011-04-21

    申请号:US12937572

    申请日:2008-04-14

    Abstract: A process for producing a support belt for an elevator system includes steps of: placing at least one cable-shaped tension support in position; embedding the tension support in a first belt layer made from a first plasticizable material to produce a partial belt having a first outer surface and a surface which forms a connecting plane, wherein parts of the tension support project out of the connecting plane and at least parts of the projecting portion of the tension support are covered by the first plasticizable material; and integrally forming a second belt layer made from a second plasticizable material on the connecting surface of the partial belt and the projecting portions of the tension support so as to produce a support belt having the first outer surface on the side of the first belt layer and a second outer surface on the side of the second belt layer.

    Abstract translation: 一种用于生产用于电梯系统的支撑带的方法包括以下步骤:将至少一个电缆状张力支撑件放置在适当位置; 将张力支撑件嵌入由第一可塑化材料制成的第一带束层中,以产生具有第一外表面和形成连接平面的表面的部分带,其中张力支撑件的部分突出于连接平面外,并且至少部分 张力支撑件的突出部分被第一可塑化材料覆盖; 并且在所述部分带的连接表面和所述张力支撑件的所述突出部分上一体地形成由第二可塑化材料制成的第二带束层,以便产生具有在所述第一带束层一侧上的所述第一外表面的支撑带,以及 在第二带束层一侧的第二外表面。

    Elevator system having a flat belt with wedge-shaped ribs
    98.
    发明授权
    Elevator system having a flat belt with wedge-shaped ribs 有权
    电梯系统具有带楔形肋的平带

    公开(公告)号:US07757817B2

    公开(公告)日:2010-07-20

    申请号:US10585563

    申请日:2004-12-27

    Applicant: Ernst Ach

    Inventor: Ernst Ach

    CPC classification number: B66B7/062 D07B1/22 D07B2201/2087 D07B2501/2007

    Abstract: The invention relates to a lift system wherein a drive unit (2) drives, by means of a driving disk (4.1), a flat belt-type carrier means (12.1, 12.2) which carries the lift cage (3). Said flat belt-type carrier means comprises several ribs (20.1, 20.2) which extend in a parallel manner in a longitudinal direction of the carrier means on a bearing surface which is orientated towards the driving disk (4.1) and each rib comprises at least two traction carriers (22) which are orientated in a longitudinal direction of the carrier means. The whole cross-sectional surface of all the traction carriers (22) is at least 25% of the cross-section surface of the carrier means.

    Abstract translation: 本发明涉及一种提升系统,其中驱动单元(2)通过驱动盘(4.1)驱动带有提升箱(3)的平带传送装置(12.1,12.2)。 所述扁平带式承载装置包括多个肋(20.1,20.2),所述肋(20.1,20.2)在承载装置的纵向方向上平行地延伸,所述支承表面朝向驱动盘(4.1)定向,并且每个肋包括至少两个 牵引载体(22),其沿着载体装置的纵向取向。 所有牵引载体(22)的整个横截面是承载装置的横截面的至少25%。

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