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    • 1. 发明申请
    • Work conveying system and traveling path sealing structure in the work conveying system
    • 工作输送系统中的工作输送系统和行进路径密封结构
    • US20030106776A1
    • 2003-06-12
    • US10230275
    • 2002-08-29
    • HIRATA CORPORATION
    • Kazuyuki Matsumura
    • B65G029/00
    • H01L21/67706H01L21/67727H01L21/67733Y10S414/14
    • In a work conveying system including at least a work holder for holding a work and a horizontal mover for moving the work holder horizontally in an upper ceiling space within a clean room, the work being conveyed to each of plural processing apparatuses. The horizontal mover has at least one linear moving mechanism including a duct with an internal guide, a traveling body engaging the guide and traveling through the traveling path defined by the duct, and a slider connected to the traveling body for travel with the traveling body on the exterior of the traveling path. The work holder is attached to the slider. Air cleaners are disposed at suitable intervals in the traveling path to clean the air therein and to discharge the cleaned air to the exterior. The traveling path accommodates a drive source, a drive mechanism, and a power supply.
    • 在至少包括用于保持工件的工件保持件和用于在洁净室内的上部天花板空间中水平移动工件保持器的水平移动器的工件输送系统中,工件被输送到多个处理装置中的每一个。 水平移动器具有至少一个直线移动机构,其包括具有内部引导件的管道,与引导件接合并行进通过由管道限定的行进路径的行进体,以及连接到行进体的滑块,用于行进体行进 行驶路径的外观。 工件夹固定在滑块上。 空气净化器以适当的间隔设置在行进路径中以清洁其中的空气并将清洁的空气排出到外部。 行进路径容纳驱动源,驱动机构和电源。
    • 2. 发明申请
    • Indexing conveyor with operable part retaining mechanism
    • 具有可操作部分保持机构的分度输送机
    • US20030029700A1
    • 2003-02-13
    • US09974213
    • 2001-10-09
    • Jack E. Miller
    • B65G029/00
    • B65G17/323B65G17/12B65G2201/02
    • An apparatus for transporting parts along a fixed path. At least one cradle is provided for receiving at least one part to be transported. An endless conveyor extends around first and second rollers disposed at first and second ends for movement of the conveyor along the fixed path. A mechanism retains each part to be transported with respect to a corresponding cradle while moving along at least a portion of the fixed path. The retaining mechanism can be actuated between a part-retaining position and a part-releasing position by operable engagement of a cam follower with a cam surface extending along either the entire fixed path, or any one or more parts of the path as required for the particular application. A spring can be provided for biasing the retaining mechanism toward either the open or the closed position as required.
    • 一种用于沿固定路径输送零件的装置。 提供至少一个支架用于接收至少一个要运输的部件。 环形输送机围绕设置在第一和第二端处的第一和第二辊延伸,以沿着固定路径移动输送机。 一个机构将沿着固定路径的至少一部分移动的每个部件相对于对应的托架保持运输。 保持机构可以通过凸轮从动件与沿着整个固定路径或者路径的任何一个或多个部分延伸的凸轮表面的可操作接合而在零件保持位置和零件释放位置之间被致动,如 特殊应用。 可以设置弹簧以根据需要朝向打开位置或关闭位置偏压保持机构。
    • 4. 发明申请
    • System for conveying ceramic shaped bodies and a receiving plate used therefor
    • 用于输送陶瓷体的系统和用于其的接收板
    • US20020046925A1
    • 2002-04-25
    • US09917219
    • 2001-07-30
    • Takashi MiyakawaYuji UedaSatoshi Sugiyama
    • B65G029/00
    • B65G49/08B28B13/04B65G47/53B65G47/90B65G2201/0261B65G2207/28
    • In order to prevent deformations, cracks and breakages of thin-walled ceramic honeycomb shaped bodies upon conveying them, a system for conveying such ceramic shaped bodies and cradles used for the system are provided. Since, in the first aspect of the present invention, the cradle 4 is lifted up from the first conveyor path 5-1, transferred to the next conveyor path 5-2 having a different conveying direction from that of the first one while keeping the ceramic shaped bodies 2 lifted, and then put down on the next conveyor path 5-2 when the conveying direction of the cradles 4 on which the ceramic shaped bodies 2 are placed is changed on the way of the conveyor 5, and since, in the second aspect of the present invention, the conveying speed of the cradles 4 on the conveyor 5 is gradually reducing to stop the cradle 4 on the way of the conveyor 5, when the cradles 4 on which the ceramic shaped bodies 2 are placed are stopped on the way of the conveyor 5, the impact on the ceramic shaped bodies 2 can be absorbed in each cases. The cradle 4 consists of an aluminum base 31, a support portion 33 provided on the base 31 and having a receiving portion 32 formed on a side opposed to the side contacting the base 31 in a shape corresponding to the ceramic shaped body 2, and a cushioning material 34 provided to cover the supporting member and the receiving portion 32 of the supporting member 33.
    • 为了防止薄壁陶瓷蜂窝状体在传送它们时发生变形,破裂和破裂,提供了用于输送用于该系统的这种陶瓷成形体和托架的系统。 由于在本发明的第一方面中,托架4从第一传送路径5-1被提升,转移到具有与第一传送路径不同的传送方向的下一传送路径5-2,同时保持陶瓷 在搬运陶瓷成形体2的托架4的输送方向在输送机5的途中发生变化的同时,将第二形状体2抬起,然后放在下一个输送路径5-2上, 在本发明的方面中,当托架4在输送机5上的运送速度逐渐降低时,当托架4上放置有陶瓷成形体2时停止传送带5途中的支架4 传送带5的方式,可以在每种情况下吸收对陶瓷成形体2的冲击。 托架4包括铝基座31,设置在基座31上的支撑部分33,并且具有形成在与基体31相接触的一侧的相对于与陶瓷成形体2对应的形状的一侧的接收部分32,以及 缓冲材料34设置成覆盖支撑构件和支撑构件33的容纳部32。
    • 5. 发明申请
    • Wire harness assembly line and wheeled worktables
    • 线束组装线和轮式工作台
    • US20010026750A1
    • 2001-10-04
    • US09750053
    • 2000-12-29
    • Toshiaki Suzuki
    • E04H006/00B65F009/00B65G067/00B65G029/00B65G037/00
    • H01B13/01227
    • Each of the wheeled worktables 1, which is isolated from the others, travels self-dependently with drive of the motor M and the sensor (optical recognition device) 5 is provided on each wheeled worktable 1 while the optical recognition tape T as the recognition object for the sensor 5 is attached to the predetermined conveyance passage on the floor 11 for inducement of the wheeled worktables 1. Since the modification of the conveyance passage to meet any need of increase or decrease of the wheeled worktables is carried out only by reattachment of the optical recognition tape T, the passage can be modified into any form by a simple operation without generation of useless spaces between the adjoining wheeled worktables 1 and, without any mechanical restraint on the wheeled worktables, replacement of the wheeled worktables 1 for any increase or decrease in the wheeled worktables do not require such labor and time for dismounting from and remounting on the chain as in the case of the assembly line driven with the endless chain.
    • 与其他的隔离的轮式工作台1中的每一个在马达M的驱动下自行行进,并且传感器(光学识别装置)5设置在每个轮式工作台1上,而光学识别带T作为识别对象 因为传感器5被附接到用于引导轮式工作台1的地板11上的预定传送通道。由于传送通道的改变以满足轮式工作台的任何增加或减少的需要,只能通过重新附接 光学识别带T,可以通过简单的操作将通道改变成任何形式,而不会在相邻的轮式工作台1之间产生无用的空间,并且在轮式工作台上没有任何机械约束,更换轮式工作台1以进行任何增加或减少 在轮式工作台中,不需要这样的劳动力和时间来拆卸和重新安装在链条上,如同样的情况 bly线与无尽的链驱动。
    • 7. 发明申请
    • Conveying device
    • 输送装置
    • US20040045792A1
    • 2004-03-11
    • US10250883
    • 2003-07-10
    • Ralf Schurmann
    • B65G029/00
    • B65G35/06B23Q7/1457B23Q7/1489B61B13/12
    • According to the invention, a device (2), which comprises a multitude of assembly carriages (4) and a drive device (12) and which serves to convey these assembly carriages (4), is provided in a process chain used in a production process. Each assembly carriage (4) comprises a drawbar (10) via which the assembly carriages (4) are joined to one another. The assembly carriages (4) are guided on a guide rail (6). At one sole location of the process chain, a drive device (12), alone, drives one of the assembly carriages (4) that are joined to one another by the drawbars (10).
    • 根据本发明,包括多个组装托架(4)和驱动装置(12)并且用于输送这些组装托架(4)的装置(2)设置在生产中使用的工艺链中 处理。 每个组装支架(4)包括一个牵引杆(10),组合支架(4)通过它们彼此连接。 组装托架(4)在导轨(6)上被引导。 在制程链的唯一位置处,单独的驱动装置(12)驱动通过拉杆(10)彼此连接的组合滑架(4)中的一个。
    • 9. 发明申请
    • Adjustable disc roll for longitudinally orienting elongated wood chips
    • 用于纵向定向细长木片的可调圆盘
    • US20040003984A1
    • 2004-01-08
    • US10615160
    • 2003-07-07
    • Maschinenfabrik J. Dieffenbacher GmbH & Co.
    • Friedrich Bossler
    • B65G029/00
    • B27N3/143
    • An apparatus for longitudinally orienting pre-glued elongated wood strands for forming OSB panels includes a spreading head with disc rolls that each have discs arranged parallel to one another on a rotatable shaft arranged over a forming belt. The discs of a given disc roll intermesh overlappingly in the interspaces between the discs of the adjacent disc rolls, to form vertical orienting passages between the intermeshing discs. The shaft or the individual discs of at least one of the disc rolls is/are slidably adjustable in the axial direction of the shaft, to adjust the axial width of the orienting passages. In a method of operating the apparatus, the width of the orienting passages is adjusted depending on the dimensions, the dimensional variation or tolerance, and/or the throughput quantity of the supplied strand material. Thereby, the throughput quantity and the longitudinal orienting of the strands can be optimized, depending on the particular strand material.
    • 用于纵向定向用于形成OSB面板的预胶合细长木线的装置包括具有盘辊的扩展头,每个盘具有布置在成形带上的可旋转轴线上彼此平行布置的盘。 给定盘卷的盘相互重叠地相互间隔地在相邻的盘的圆盘之间的间隙中,以在相互啮合的盘之间形成垂直定向的通道。 至少一个盘辊的轴或单个盘在轴的轴向方向上可滑动地调节,以调节定向通道的轴向宽度。 在操作该装置的方法中,取决于通道的宽度根据所供应的股线材料的尺寸,尺寸变化或公差和/或通过量进行调节。 因此,取决于具体的股线材料,可以优化股线的通过量和纵向定向。
    • 10. 发明申请
    • Device for conveying separated objects
    • 用于传送分离的物体的装置
    • US20030079963A1
    • 2003-05-01
    • US10280776
    • 2002-10-25
    • Thomas Zimmermann
    • B65G029/00
    • G07D9/00B65G15/44B65G19/02
    • A device for conveying separated objects (1), especially disk-shaped objects, such as coins, includes a guideway (2) and with a lamellar belt (4) circulating on a conveying arm (3), wherein a strand (5) of the lamellar belt (4) facing the guideway (2) is guided over the entire longitudinal extension of the conveying arm (3), providing that lamella tips (6) of the lamellar belt (4) pointing toward the guideway (2) have a distance A from the guideway (2) that is smaller than the smallest height of an object (1) over the guideway (2). A support feature (8) for supporting the lamella tips (6) in the direction at right angles to the direction of conveying is installed at least in an intake area (7) of the conveying arm (3).
    • 用于传送分离的物体(1)的装置,特别是诸如硬币的盘形物体包括导轨(2)和在输送臂(3)上循环的层状带(4),其中, 面向导轨(2)的层状带(4)被引导到输送臂(3)的整个纵向延伸部上,只要指向导轨(2)的层状带(4)的薄片尖端(6)具有 导轨(2)的距离A小于导轨(2)上物体(1)的最小高度。 至少在输送臂(3)的进气区域(7)中安装有用于在与输送方向成直角的方向上支撑薄片尖端(6)的支撑特征(8)。