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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 装卸和运输系统 CN201180002901.9 2011-01-25 CN102933447B 2015-03-25 陈永祥
展示一个能绕着设施促进板材移动的板材装运装置。每一个板材装运装置包括一个与地面平行、平装配的基架,基架的末端从基架上延伸出一个突出部分,基架上垂直连接这第二个框架,分成展示一侧和堆垛一侧。基架上装有多个边轮,而且轨道轮的直径要大于边轮的直径,装在基架上的第一组尾端自动止车器用来使板材在展示一侧处于合适的位置。第二组止车器用来固定在堆垛一侧的多板材。
2 搬运装置 CN201380027791.0 2013-05-23 CN104349961B 2016-09-07 铃木孝晴
一种搬运装置,由以下所构成:连结彼此前后相邻的搬运用行走体的连结组件(17),其包含自一边的搬运用行走体(1)向上突出的被接合构件(18)、以及自另一边的搬运用行走体上(1)以上下摆动自如的方式枢轴支承,并且自被接合构件(18)上方嵌合接合部的可动接合构件(19);其中,可动接合构件(19)能够自与被接合构件(18)接合的作用姿势,到自被接合构件(18)的上方超过脱离的非接合姿势的反对向的非作用姿势之间摆动;于贮藏区域中,将可动接合构件(19)切换至非作用姿势,使各搬运用行走体(1)能够以前后对接状态贮藏的搬运装置。
3 搬运装置 CN201380027791.0 2013-05-23 CN104349961A 2015-02-11 铃木孝晴
一种搬运装置,由以下所构成:连结彼此前后相邻的搬运用行走体的连结组件(17),其包含自一边的搬运用行走体(1)向上突出的被接合构件(18)、以及自另一边的搬运用行走体上(1)以上下摆动自如的方式枢轴支承,并且自被接合构件(18)上方嵌合接合部的可动接合构件(19);其中,可动接合构件(19)能够自与被接合构件(18)接合的作用姿势,到自被接合构件(18)的上方超过脱离的非接合姿势的反对向的非作用姿势之间摆动;于贮藏区域中,将可动接合构件(19)切换至非作用姿势,使各搬运用行走体(1)能够以前后对接状态贮藏的搬运装置。
4 组装线的传送设备 CN201310008884.0 2013-01-10 CN103192257B 2017-06-13 K.D.霍尔; J.米克尔森; J.K.佩德森; M.B.索鲁森
发明涉及组装线(1)的传送设备(2),该组装线包括多个组装站(3),该传送设备(2)包括:引导器(20),其被实现成限定组装站(3)的行进路径;接合装置(21),其用于使得组装站(3)接合到所述引导器(20);以及驱动装置(22、23、24),其用于沿所述引导器(20)驱动所述接合装置(21)以使所述组装站(3)运动通过所述组装线(1)的相继阶段(1A、……、1F)。本发明还描述了在组装线(1)中使用的组装站(3)、组装线(1)以及组装用于涡轮机的发电机(4)的方法。
5 组装线的传送设备 CN201310008884.0 2013-01-10 CN103192257A 2013-07-10 K.D.霍尔; J.米克尔森; J.K.佩德森; M.B.索鲁森
发明涉及组装线(1)的传送设备(2),该组装线包括多个组装站(3),该传送设备(2)包括:引导器(20),其被实现成限定组装站(3)的行进路径;接合装置(21),其用于使得组装站(3)接合到所述引导器(20);以及驱动装置(22、23、24),其用于沿所述引导器(20)驱动所述接合装置(21)以使所述组装站(3)运动通过所述组装线(1)的相继阶段(1A、……、1F)。本发明还描述了在组装线(1)中使用的组装站(3)、组装线(1)以及组装用于涡轮机的发电机(4)的方法。
6 装卸和运输系统 CN201180002901.9 2011-01-25 CN102933447A 2013-02-13 陈永祥
展示一个能绕着设施促进板材移动的板材装运装置。每一个板材装运装置包括一个与地面平行、平装配的基架,基架的末端从基架上延伸出一个突出部分,基架上垂直连接这第二个框架,分成展示一侧和堆垛一侧。基架上装有多个边轮,而且轨道轮的直径要大于边轮的直径,装在基架上的第一组尾端自动止车器用来使板材在展示一侧处于合适的位置。第二组止车器用来固定在堆垛一侧的多板材。
7 搬送装置 JP2012121557 2012-05-29 JP5804277B2 2015-11-04 鈴木 孝晴
8 CONVEYOR APPARATUS FOR AN ASSEMBLY LINE EP12150612.5 2012-01-10 EP2615007B1 2016-09-28 Hoell, Kenneth Damgaard; Mikkelsen, Jakob; Pedersen, John Krath; Soerensen, Martin Bach
The invention describes a conveyor apparatus (2) for an assembly line (1) comprising a number of assembly stations (3), which conveyor apparatus (2) comprises a guide (20) realised to define a path of travel for an assembly station (3); an engaging means (21) for engaging an assembly station (3) to the guide (20); and a driving means (22, 23, 24) for driving the engaging means (21) along the guide (20) such that the assembly station (3) is moved through successive stages (1A, ..., IF) of the assembly line (1). The invention further describes an assembly station (3) for use in an assembly line (1); an assembly line (1); and a method of assembling a generator (4) for a wind turbine.
9 Conveyor apparatus for an assembly line EP12150612.5 2012-01-10 EP2615007A1 2013-07-17 Hoell, Kenneth Damgaard; Mikkelsen, Jakob; Pedersen, John Krath; Soerensen, Martin Bach

The invention describes a conveyor apparatus (2) for an assembly line (1) comprising a number of assembly stations (3), which conveyor apparatus (2) comprises a guide (20) realised to define a path of travel for an assembly station (3); an engaging means (21) for engaging an assembly station (3) to the guide (20); and a driving means (22, 23, 24) for driving the engaging means (21) along the guide (20) such that the assembly station (3) is moved through successive stages (1A, ..., IF) of the assembly line (1). The invention further describes an assembly station (3) for use in an assembly line (1); an assembly line (1); and a method of assembling a generator (4) for a wind turbine.

10 Verfahren und Anordnung zum Steuern von Förderung und Bearbeitung von Stückgut EP99109722.1 1999-05-18 EP0961188B1 2003-04-23 Maeder, Carl Conrad; Lutz, Bruno
11 HANDLING AND TRANSPORT SYSTEM EP11856956.5 2011-01-25 EP2668084B1 2015-08-19 Chan, Weng Seong
12 HANDLING AND TRANSPORT SYSTEM EP11856956.5 2011-01-25 EP2668084A1 2013-12-04 Chan, Weng Seong
A slab handling device for facilitating movement of slabs around a facility is presented. The slab handling device includes a base frame disposed horizontally in parallel to a floor surface, wherein a first end of the base frame comprises a projection extending from the base frame. The base frame hosts a second frame disposed vertically on the base frame to form a viewing side and a stacking side. Pluralities of side wheels are coupled to the base frame, wherein the diameter of the plurality of track wheels is greater than the diameter of the plurality of side wheels. A first set of end stoppers are disposed on the base frame and configured to hold a slab in position on the viewing side and a second set of end stoppers are disposed on the base frame and configured to hold multiple slabs in place on the stacking side.
13 Dispositif de transport d'objets passant dans des cuves, procédé de convoyage et installation de traitement d'objets EP86402280.1 1986-10-14 EP0225209A1 1987-06-10 Gros, Jacques

La présente invention concerne un dispositif de transport d'objets portés par des luges de transport, un procédé de convoyage mettant en oeuvre ce dispositif, et l'installation de traitement d'objets correspondant.

Le dispositif de transport d'objets (7) passant dans des cuves de traitement desdits objets comporte deux convoyeurs aériens (1) latéralement espacés, entre lesquels l'objet (7) se déplace le long d'un trajet à l'écart des plans verticaux desdits convoyeurs. Ce dispositif est caractérisé en ce qu'il comporte des pendules (4) librement suspendus à leurs extrémités supérieures par des moyens d'articulations à des moyens d'entraînement (50 à 57) propres, respectivement, à chaque convoyeur, lesdits pendules (4) associés en couple sur chaque convoyeur dans un même plan de progression comportant sur leur extrémité libre, des moyens de suspension (46) de luges supportant les objets (7) à traiter, chaque luge coopérant alors de cette manière avec au moins deux desdits pendules respectivement associés à chacun des convoyeurs.

14 Handling and transport system US13981266 2011-01-25 US09150232B2 2015-10-06 Weng Seong Chan
A slab handling device for facilitating movement of slabs around a facility is presented. The slab handling device includes a base frame disposed horizontally in parallel to a floor surface, wherein a first end of the base frame comprises a projection extending from the base frame. The base frame hosts a second frame disposed vertically on the base frame to form a viewing side and a stacking side. Pluralities of side wheels are coupled to the base frame, wherein the diameter of the plurality of track wheels is greater than the diameter of the plurality of side wheels. A first set of end stoppers are disposed on the base frame and configured to hold a slab in position on the viewing side and a second set of end stoppers are disposed on the base frame and configured to hold multiple slabs in place on the stacking side.
15 Conveyor apparatus for an assembly line US13732594 2013-01-02 US08839943B2 2014-09-23 Kenneth Damgaard Hoell; Jakob Mikkelsen; John Krath Pedersen; Martin Bach Soerensen
A conveyor apparatus for an assembly line having a number of assembly stations is provided. The conveyor apparatus has a guide realized to define a path of travel for an assembly station, an engaging unit for engaging an assembly station to the guide, and a driving unit for driving the engaging unit along the guide such that the assembly station is moved through successive stages of the assembly line. The assembly line is used for assembling a generator for a wind turbine.
16 Stackable Carrier Assembly, System, And Method For Storing Carrier Assemblies US12507123 2009-07-22 US20110017572A1 2011-01-27 Noel F. Dehne; Melvin A. Edwards; David M. Stewart
A stackable carrier assembly, carrier stacking system, and method of storing carrier assemblies is disclosed. The carrier assembly includes a base member presenting a load surface and opposite facing transfer surface. A plurality of carrier trolleys extend transversely from the load surface to engage conveyor tracks. A plurality of track sections are coupled to the load surface for receiving the carrier trolleys of another carrier assembly. The track sections are vertically aligned with the carrier trolleys. In a power and free or friction drive conveyor system, a lift device and telescoping arm can lift and stack the carrier assemblies so that track sections of one carrier assembly receive the carrier trolleys of another carrier assembly. In an overhead conveyor system, one carrier assembly can hang from the track sections of another carrier assembly.
17 Industrial shock absorber for use in a conveyor system US11390548 2006-03-28 US07600617B1 2009-10-13 Gerald E. Mueller; Gene B Slachta; Douglas W. King
An apparatus for controlling relative movement between two interconnected bodies includes a first end cap, a second end cap having an opening, a sleeve interconnecting the end caps to define a chamber between the sleeve and the end caps, a piston assembly including a piston rod extending through the opening of the second end cap, a piston connected to the piston rod, received in the chamber to define at least two fluid chambers on opposed sides of the piston, and a plurality of rollers carried by the piston for rolling engagement with the sleeve. A fluid flow path provides communication between the fluid chambers and provides a restricted fluid flow rate therethrough to control the rate of fluid transfer between the fluid chambers and permit fluid pressure to increase in a chamber into which the piston is being moved to provide a force on the piston opposing its movement.
18 Carrier conveyor system US10421354 2003-04-23 US06997303B2 2006-02-14 Melvin A. Edwards; Christopher L. Audia; Kelsey R. Schell; David M. Stewart
The present invention is directed to a carrier and conveyor system that permits the carrier to be driven by at least two different types of conveyors or drive assemblies, including a power and free conveyor. The system includes a plurality of carriers, first and second areas, a power and free conveyor assembly, and a friction drive assembly. The power and free conveyor drivably engages the first and second carriers when the carriers are in the first area and is out of driving engagement with the carriers in the second area. The friction drive assembly is engageable with each carrier when the carriers are in the second area and out of driving engagement with each carrier when the carriers are in the first area.
19 Container for use with and method of managing an overhead track chain US10390821 2003-03-18 US06823991B2 2004-11-30 Scott T. Breyer; Kyle C. Stoehr
A container for use with an overhead track chain is disclosed. The container generally comprises a base and a housing. The base includes a tapered spool that extends upwardly from a top surface of the base. The housing surrounds at least a portion of the tapered spool. Therefore, when the base and the housing are secured together the base, the tapered spool, and the housing form an overhead track chain storage area. The chain is stowed in the container when the chain is received in a winding fashion around the spool and within the overhead track chain storage area. When this occurs, the typically heavy and bulky overhead track chain, which includes links permitting the chain to swivel, can be easily packaged, stored, and subsequently transported within the container. A method of stowing the overhead track chain in the container is also disclose.
20 Conveyor chains and wheel assemblies used in conveyor chains US10245397 2002-09-18 US20030075420A1 2003-04-24 Donald E. Larkins
A conveyor chain includes a number of interconnected links. Each link includes a bearingless wheel assembly that has a simple structure and a wheel made of a special wheel material that is suitable for use as a conveyor wheel material in a corrosive environment. The bearingless wheel assembly includes a wheel having a center bore, a hub extending through the center bore of the wheel and having a flange, and a retainer for engaging the hub to secure the wheel between the flange and the retainer.
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