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    • 2. 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。
    • 3. 发明授权
    • Traction device, traction system incorporating said traction device and an elevator arrangement incorporating said traction system
    • 牵引装置,包括所述牵引装置的牵引系统和包括所述牵引系统的电梯装置
    • US08789658B2
    • 2014-07-29
    • US13104739
    • 2011-05-10
    • Hubert Göser
    • Hubert Göser
    • B66B7/06F16G1/16F16G1/28B66B11/08F16G5/20D07B1/22
    • B66B7/062D07B5/006D07B2501/2007
    • A traction device includes tension members (2) coated with an elastomer material to form jacketed tension members (3). The jacketed tension members (3) are arranged next to each other in a plane in the cross section of the traction device, at such a distance from each other that there is a clear space (6) between each two mutually adjacent ones of the jacketed tension members (3). The jacketed tension members (3) are connected at the back thereof by a back layer. The clear space (6) begins on the side facing away from the back layer (4) and extends at least beyond the center point (5) of the tension member, and the ratio of the second diameter (d2) of the jacketed tension member (3) in relation to the first diameter (d1) of the tension member (2) is between 1.05 and 2.25. The invention is also directed to a traction system which includes the traction device which can be driven by at least one traction sheave (9), and each jacketed tension member (3) engages in a corresponding groove (10) of the traction sheave (9). The back layer (4) is arranged on the side of the jacketed tension members (3) that faces away from the side engaging in the grooves (10) of the traction sheave (9). At least one tension member (2) engages in the corresponding groove (10) of the traction sheave (9) by between 5% and 25% of its diameter (d1).
    • 牵引装置包括涂覆有弹性体材料的张力构件(2),以形成夹套张紧构件(3)。 夹套的张紧构件(3)在牵引装置的横截面中的平面中彼此相邻布置,彼此间隔开距离,在夹套的两个相互相邻的两个相邻的位置之间存在清除空间(6) 张力构件(3)。 夹套的张紧构件(3)在其背面通过背层连接。 透明空间(6)从背层(4)的背面开始,至少延伸超过张力构件的中心点(5),夹套张紧构件的第二直径(d2) (3)相对于张力构件(2)的第一直径(d1)在1.05和2.25之间。 本发明还涉及一种牵引系统,其包括可由至少一个牵引滑轮(9)驱动的牵引装置,并且每个夹套的张紧构件(3)接合在牵引滑轮(9)的相应凹槽(10)中 )。 后层(4)布置在所述夹套的张紧构件(3)的远离与所述牵引滑轮(9)的凹槽(10)接合的一侧的侧面上。 至少一个张力构件(2)在牵引滑轮(9)的相应的凹槽(10)中的直径(d1)的5%和25%之间。
    • 4. 发明授权
    • Traction device
    • 牵引装置
    • US08479888B2
    • 2013-07-09
    • US12588867
    • 2009-10-30
    • Hubert Göser
    • Hubert Göser
    • B66B11/08F16G1/22F16G1/28F16G9/00
    • 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。
    • 5. 发明申请
    • Two-stage method for producing belts
    • 两阶段生产带的方法
    • US20090127739A1
    • 2009-05-21
    • US11989860
    • 2006-07-22
    • Hubert Göser
    • Hubert Göser
    • B29D29/00
    • B29C43/48B29C43/222B29C43/26B29C43/28B29C2043/486B29D29/08B29K2105/06B29L2031/7094
    • In the two-step method according to the invention for producing belts from plasticatable material (5), a semi-finished product (2′) is produced in the first of the two steps and the finished belt is produced as an end product (2) from the semi-finished product (2′) in the second step by thermal shaping. To carry out the two-step method, two stations (6, 8) are provided. The first station (6) has a first rotatable mold wheel (14), a mold band (18), which is wrapped around a segment of the first mold wheel (14) with the aid of pressing and tension rollers (20, 22, 24) while keeping a hollow mold space (26) free, an extruder (10) and a filament feed (28). The second station (8) has a second mold wheel (16) and at least one pressing roller (34; 34a, 34b, . . . ). In particular for the production of belts for elevator/lifting technology (for example also for forklift trucks).
    • 在根据本发明的用于从可塑材料(5)生产带的两步法中,在两个步骤中的第一个阶段中生产半成品(2'),并且将成品带作为最终产品(2 )从第二步骤中的半成品(2')通过热成形。 为了执行两步法,提供了两个站(6,8)。 第一工位(6)具有第一可旋转模具轮(14),模具带(18),其借助于压制和张紧辊(20,22)缠绕在第一模具轮(14)的一段上, 24),同时保持空心模具空间(26),挤出机(10)和细丝进料(28)。 第二站(8)具有第二模具轮(16)和至少一个加压辊(34; 34a,34b ...)。 特别是用于生产用于电梯/提升技术的带(例如用于叉车)。
    • 6. 发明申请
    • TRACTION DEVICE, TRACTION SYSTEM INCORPORATING SAID TRACTION DEVICE AND AN ELEVATOR ARRANGEMENT INCORPORATING SAID TRACTION SYSTEM
    • 牵引装置,牵引装置和跟踪装置,以及装有追踪系统的电梯装置
    • US20110226563A1
    • 2011-09-22
    • US13104739
    • 2011-05-10
    • Hubert Göser
    • Hubert Göser
    • B66B7/08F16B2/02F16G11/00
    • B66B7/062D07B5/006D07B2501/2007
    • A traction device includes tension members (2) coated with an elastomer material to form jacketed tension members (3). The jacketed tension members (3) are arranged next to each other in a plane in the cross section of the traction device, at such a distance from each other that there is a clear space (6) between each two mutually adjacent ones of the jacketed tension members (3). The jacketed tension members (3) are connected at the back thereof by a back layer. The clear space (6) begins on the side facing away from the back layer (4) and extends at least beyond the center point (5) of the tension member, and the ratio of the second diameter (d2) of the jacketed tension member (3) in relation to the first diameter (d1) of the tension member (2) is between 1.05 and 2.25. The invention is also directed to a traction system which includes the traction device which can be driven by at least one traction sheave (9), and each jacketed tension member (3) engages in a corresponding groove (10) of the traction sheave (9). The back layer (4) is arranged on the side of the jacketed tension members (3) that faces away from the side engaging in the grooves (10) of the traction sheave (9). At least one tension member (2) engages in the corresponding groove (10) of the traction sheave (9) by between 5% and 25% of its diameter (d1).
    • 牵引装置包括涂覆有弹性体材料的张力构件(2),以形成夹套张紧构件(3)。 夹套的张紧构件(3)在牵引装置的横截面中的平面中彼此相邻布置,彼此间隔开距离,在夹套的两个相互相邻的两个相邻的位置之间存在清除空间(6) 张力构件(3)。 夹套的张紧构件(3)在其背面通过背层连接。 透明空间(6)从背层(4)的背面开始,至少延伸超过张力构件的中心点(5),夹套张紧构件的第二直径(d2) (3)相对于张力构件(2)的第一直径(d1)在1.05和2.25之间。 本发明还涉及一种牵引系统,其包括可由至少一个牵引滑轮(9)驱动的牵引装置,并且每个夹套的张紧构件(3)接合在牵引滑轮(9)的相应凹槽(10)中 )。 后层(4)布置在所述夹套的张紧构件(3)的远离与所述牵引滑轮(9)的凹槽(10)接合的一侧的侧面上。 至少一个张力构件(2)在牵引滑轮(9)的相应的凹槽(10)中的直径(d1)的5%和25%之间。
    • 7. 发明授权
    • Flat belt made of elastomeric material
    • 由弹性材料制成的平带
    • US07926649B2
    • 2011-04-19
    • US11629975
    • 2005-05-13
    • Hubert Göser
    • Hubert Göser
    • B65G15/34F16G5/00F16G1/28F16G5/20F16G1/00B32B3/10B32B3/00B32B7/02B66B11/04B66B11/08
    • B29D29/00B29C43/22B29C43/26B29C43/28B29C70/504B29C2043/483B29C2043/486B29L2029/00Y10T428/24339Y10T428/24612Y10T428/24983
    • A flat belt (2), which is made of elastomeric material (46a, 46b), is made up of a first partial belt (2a) and a second partial belt (2b). The first partial belt (2a) is reinforced with a reinforcement layer (4) made up of cords. A layer separation which is to be feared theoretically is to be reliably avoided and the bonding of the belt material to the reinforcement layer (4) is to be optimized. The first belt part (2a) is provided with slots (44) with the aid of mold drum winding-projections (42); the second belt part (2b) defines a filling of the slots (44) of the first belt part (2a). Preferably, the reinforcement layer (4) is positioned centrally in the neutral bending plane of the finished flat belt (2). The first belt part (2a) and the second belt part (2b) can be made of different elastomeric materials (46a, 46b). Also, at least one of the two surfaces of the belt (2) can be coated and/or provided with a longitudinal profile or transverse profile.
    • 由弹性体材料(46a,46b)制成的扁平带(2)由第一带部分(2a)和第二带部分(2b)组成。 第一带部分(2a)用由帘线构成的加强层(4)加强。 要可靠地避免理论上可怕的层分离,并且使带材与加强层(4)的结合最优化。 第一带部分(2a)借助于模具滚筒卷绕突起(42)设置有槽(44); 第二带部分(2b)限定第一带部分(2a)的槽(44)的填充物。 优选地,加强层(4)位于完成的平带(2)的中性弯曲平面的中心。 第一带部分(2a)和第二带部分(2b)可以由不同的弹性体材料(46a,46b)制成。 此外,带(2)的两个表面中的至少一个可以涂覆和/或设置有纵向轮廓或横向轮廓。
    • 8. 发明授权
    • Arrangement for making a belt made of plasticatable material
    • 制造由可塑性材料制成的皮带的布置
    • US06966763B2
    • 2005-11-22
    • US10440097
    • 2003-05-19
    • Hubert GöserThomas WinklerAndré Kucharczyk
    • Hubert GöserThomas WinklerAndré Kucharczyk
    • F16G1/08B29C43/22B29C43/26B29C43/28B29C47/02B29C70/50B29D29/00B29K105/08F16C13/00F16G1/12B29C59/04B29F47/52
    • B29C43/28B29C43/22B29C43/26B29C47/0021B29C47/027B29C70/504B29C2043/483B29D29/00B29K2075/00B29K2105/06B29K2105/101B29L2029/00F16G1/12
    • The two belt parts (2a, 2b) of a belt (2) made of plasticatable material are produced with the aid of a first station (6) and a second station (8). The first station (6) includes a rotatable mold drum (14) and a continuous mold belt (18). The mold belt (18) is brought together with the mold drum (14) along a peripheral section via an upper pressure roller (20), a lower pressure roller (22) and a tensioning roller (24) in such a manner that a hollow mold space (26) is formed between the mold drum (14) and the mold belt (18). An extruder (10) is mounted forward of the hollow mold space (26). Furthermore, the first station (6) includes a filament feed (28) for forming a reinforcement layer (4) in the first belt part (2a). For a simplified manufacture of the belt (2), the second station (8) includes only a direction-changing roller (30) in addition to the extruder (12) and a mold drum (16). The spacing (32) between the direction-changing roller (30) and the second mold drum (16) equals the thickness of the belt (2) to be manufactured. To limit and guide the first belt part (2a) to be manufactured and/or the belt (2), the first mold drum (14), the second mold drum (16) and/or the direction-changing roller (30) are preferably provided with flange discs (14a, 14b; 16a, 16b and/or 30a, 30b). In order to make possible a targeted softening of the surfaces of the belt parts to be joined, the various rollers (20, 22, 34, 34′, 35, 35′) and the two mold drums (14, 16) can be provided with heating/cooling.
    • 借助于第一工位(6)和第二工位(8)制造由可塑性材料制成的带(2)的两个带部分(2a,2b)。 第一工位(6)包括可旋转的模具滚筒(14)和连续的模具带(18)。 模具带(18)通过上压辊(20),下压力辊(22)和张紧辊(24)沿着周边部分与模具滚筒(14)一起以这样的方式与模制鼓(14) 在模具滚筒(14)和模具带(18)之间形成有模具空间(26)。 挤出机(10)安装在空心模具空间(26)的前方。 此外,第一工位(6)包括用于在第一带部分(2a)中形成加强层(4)的细丝进给(28)。 为了简化皮带(2)的制造,除了挤出机(12)和模具滚筒(16)之外,第二工位(8)仅包括一个换向辊(30)。 方向转换辊(30)与第二成型转鼓(16)之间的间隔(32)等于要制造的带(2)的厚度。 为了限制和引导要制造的第一皮带部分(2a)和/或皮带(2),第一模制滚筒(14),第二模制滚筒(16)和/或方向转换辊(30) 优选地设置有凸缘盘(14a,14b; 16a,16b和/或30a,30b)。 为了能够使要连接的带部件的表面有目标地软化,可以提供各种辊(20,22,34,34',35,35')和两个模制鼓(14,16) 加热/冷却。
    • 9. 发明授权
    • Traction system and an elevator arrangement incorporating said traction system
    • 牵引系统和包括所述牵引系统的电梯装置
    • US08794387B2
    • 2014-08-05
    • US13104530
    • 2011-05-10
    • Hubert Göser
    • Hubert Göser
    • B66B7/06B66B11/08D07B1/22F16G1/16F16G1/28F16G5/20
    • B66B15/04B66B7/062
    • A traction system includes a composite rope (1), especially for an elevator. The composite rope (1) is driveable by a traction sheave (6). The traction system has a composite rope that is easy to handle, whereby high traction forces can be transferred, and the composite rope enables a narrower drive unit than known belt technology. To this end, the composite rope has parallel individual tension members (4) surrounded by an elastomer material which are interconnected by an elastomer connecting layer (5) on one side, and the tension members (4) engage in corresponding grooves (7) of the traction sheave (6). The penetration depth of the individual ropes (2) of the tension members (4) in the grooves of the traction sheave (6) is at least 25% of the diameter (d) of the individual ropes (2).
    • 牵引系统包括复合绳索(1),特别是用于电梯。 复合绳索(1)可由牵引滑轮(6)驱动。 牵引系统具有易于操作的复合绳,由此可以传递高牵引力,并且复合绳能够实现比已知的带技术更窄的驱动单元。 为此,复合绳索具有由弹性体材料围绕的平行的各个张力构件(4),弹性体材料通过弹性体连接层(5)在一侧相互连接,并且张紧构件(4)接合在相应的凹槽 牵引滑轮(6)。 牵引轮(6)的槽中的张力构件(4)的单个绳索(2)的穿透深度是单根绳索(2)的直径(d)的至少25%。
    • 10. 发明申请
    • Traction System and an Elevator Arrangement Incorporating Said Traction System
    • 牵引系统和电梯布置结合所述牵引系统
    • US20110226562A1
    • 2011-09-22
    • US13104530
    • 2011-05-10
    • Hubert Göser
    • Hubert Göser
    • B66B7/08F16G11/00
    • B66B15/04B66B7/062
    • A traction system includes a composite rope (1), especially for an elevator. The composite rope (1) is driveable by a traction sheave (6). The traction system has a composite rope that is easy to handle, whereby high traction forces can be transferred, and the composite rope enables a narrower drive unit than known belt technology. To this end, the composite rope has parallel individual tension members (4) surrounded by an elastomer material which are interconnected by an elastomer connecting layer (5) on one side, and the tension members (4) engage in corresponding grooves (7) of the traction sheave (6). The penetration depth of the individual ropes (2) of the tension members (4) in the grooves of the traction sheave (6) is at least 25% of the diameter (d) of the individual ropes (2).
    • 牵引系统包括复合绳索(1),特别是用于电梯。 复合绳索(1)可由牵引滑轮(6)驱动。 牵引系统具有易于操作的复合绳,由此可以传递高牵引力,并且复合绳能够实现比已知的带技术更窄的驱动单元。 为此,复合绳索具有由弹性体材料围绕的平行的各个张力构件(4),弹性体材料通过弹性体连接层(5)在一侧相互连接,并且张紧构件(4)接合在相应的凹槽 牵引滑轮(6)。 牵引轮(6)的槽中的张力构件(4)的单个绳索(2)的穿透深度是单根绳索(2)的直径(d)的至少25%。