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    • 1. 发明专利
    • Method and apparatus for assembling complex product in parallel process system
    • 用于在并行处理系统中组装复杂产品的方法和装置
    • JP2009142975A
    • 2009-07-02
    • JP2008188938
    • 2008-07-22
    • Comau Incコウマウ,インコーポレイテッドComau,Inc.
    • WALLACE RICHARD AGRAHAM JOHNBROWN THEODORE ROBERT
    • B23P21/00
    • G05B19/418B23P19/001B23P19/042B23P21/00B23P21/002B23P23/04B23P2700/50G05B19/41805G05B2219/31054Y02P90/04Y02P90/28
    • PROBLEM TO BE SOLVED: To provide a method and apparatus for assembling a complex product in a parallel process system in which the collection of components is presented to assemble the complex product. SOLUTION: The collection of the components is transferred to one of a plurality of similar computerized assembly cells 20 through the use of a transport system 18. The collection of components is automatically assembled into the complex product through the use of the computerized assembly cells. The complex product is then transferred from one of the assembly cells to a computerized test cell 22, where the complex product is tested to ensure for the proper dimensioning and functioning of the complex product. The complex product is then transferred from the test cell via the transport system to either a part reject area or conveyor 24, if the complex product is defective, or to an automatic dunnage load or part return system 26, if the complex product is not defective. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种在并行处理系统中组装复杂产品的方法和装置,其中提供组件的收集以组装复杂产品。 解决方案:组件的集合通过使用传送系统18传送到多个类似的计算机化组装单元20中的一个。组件的集合通过使用计算机化组件被自动组装成复杂产品 细胞。 然后将复合产物从组装单元之一转移到计算机化的测试单元22,在此测试复合产品以确保复杂产品的适当尺寸和功能。 然后,如果复合产品有缺陷,则复合产品经由运输系统从测试单元转移到零件拒收区域或输送机24,或者如果复合产品没有缺陷则将其从自动衬垫负载或部件返回系统26传送 。 版权所有(C)2009,JPO&INPIT
    • 6. 发明申请
    • INDUSTRIAL COMMUNICATION SYSTEM AND METHOD
    • 工业通信系统与方法
    • WO2010107872A3
    • 2011-01-13
    • PCT/US2010027596
    • 2010-03-17
    • COMAU INCKILIBARDA VELIBORWANG DAVID
    • KILIBARDA VELIBORWANG DAVID
    • H04L12/28G06F15/16
    • G05B19/4186B25J9/1602B25J9/1612Y02P90/185
    • Disclosed here is a method for controlling at least one industrial device using a remote infrastructure environment having at least one computing resource and a cloud communication network. The method includes establishing communication between the at least one industrial device and the remote infrastructure environment, transmitting data from the at least one computing resource using the cloud communication network to a plant communication network, the at least one industrial device configured to perform at least one predetermined function in response to at least a portion of the transmitted data and receiving data from the at least one industrial device by the at least one computing resource using the cloud communication network, the received data generated in response to performance of the at least one predetermined function.
    • 这里公开了一种用于使用具有至少一个计算资源和云通信网络的远程基础设施环境来控制至少一个工业设备的方法。 该方法包括建立至少一个工业设备与远程基础设施环境之间的通信,使用云通信网络将数据从至少一个计算资源传输到工厂通信网络,所述至少一个工业设备被配置为执行至少一个 响应于所发送的数据的至少一部分并且由使用云通信网络的至少一个计算资源从至少一个工业设备接收数据的预定功能,响应于至少一个预定的 功能。
    • 7. 发明申请
    • MULTIPLE NATURAL FREQUENCY COUPLING APPARATUS
    • 多个自然频率耦合装置
    • WO2015152963A1
    • 2015-10-08
    • PCT/US2014/053409
    • 2014-08-29
    • COMAU, INC.
    • KERCHEN, Robert, M.
    • F16D25/04
    • F16D3/80F16D3/64F16D3/74F16D25/046F16D47/02F16D2300/22F16F15/126
    • A multiple natural frequency coupling apparatus (10) for connecting a rotatable driving member to a rotatable driven member of a drive line. The coupling apparatus (10) of the present invention provides a substantially cylindrical housing (12) having a longitudinal axis (13) with a substantially cylindrical outer shaft (34) coaxially aligned with and connected to the housing (12). A substantially cylindrical inner shaft (38) is coaxially aligned with the outer shaft (34) and the housing (12). A substantially cylindrical fluid chuck housing (26) is coaxially aligned with the housing (12), the outer shaft (34), and the inner shaft (38) wherein the fluid chuck housing (26) is connected to the inner shaft (38). A substantially cylindrical collapsible sleeve (50) is coaxially aligned with and between the fluid chuck housing (26) and the outer shaft (34), wherein the collapsible sleeve (50) may move between a non-actuated position, wherein the collapsible sleeve (50) does not engage the outer shaft (34) thereby providing the coupling apparatus (10) with a first torsional stiffness corresponding to a first natural frequency, and an actuated position, wherein the collapsible sleeve (50) engages the outer shaft (34) thereby providing the coupling apparatus (10) with a second torsional stiffness corresponding to a second natural frequency.
    • 一种用于将可旋转驱动构件连接到驱动线的可旋转从动构件的多重固有频率耦合装置(10)。 本发明的联接装置(10)提供了具有纵向轴线(13)的基本上圆柱形的壳体(12),该纵向轴线(13)具有与壳体(12)同轴对准并连接到壳体(12)的基本上圆柱形的外轴(34)。 基本上圆柱形的内轴(38)与外轴(34)和外壳(12)同轴对准。 基本上圆柱形的流体卡盘壳体(26)与壳体(12),外轴(34)和内轴(38)同轴对准,其中流体卡盘壳体(26)连接到内轴(38) 。 基本上圆柱形的可折叠套筒(50)与流体卡盘壳体(26)和外轴(34)同轴对准,其中可折叠套管(50)可在非致动位置之间移动,其中可折叠套管 50)不接合外轴(34),从而为联接装置(10)提供对应于第一固有频率的第一扭转刚度和致动位置,其中可折叠套筒(50)接合外轴(34) 从而为联接装置(10)提供对应于第二固有频率的第二扭转刚度。
    • 8. 发明申请
    • CONTINUOUS FASTENER FEEDING APPARATUS AND METHOD
    • 连续紧固器送料装置及方法
    • WO2014124007A1
    • 2014-08-14
    • PCT/US2014/014873
    • 2014-02-05
    • COMAU, INC.
    • KILIBARDA, VeliborMAYBEE, William
    • B27F7/00
    • B21J15/323B21J15/025Y10T29/5377
    • Methods and apparatuses for continuous fastener feeding for sequentially delivering single fasteners to a fastener installation device are disclosed. In one embodiment the apparatus includes a first fastener reel for supporting a first fastener tape securing a plurality of fasteners and a second fastener reel for supporting a second fastener tape for securing a plurality of fasteners. A fastener tape joining device positioned downstream of the first and second fastener reels receives the respective first and the second fastener tapes and selectively engage the first and second fastener tapes when one of the fastener tapes becomes depleted of fasteners.
    • 公开了用于将紧固件连续递送到紧固件安装装置的连续紧固件进给的方法和装置。 在一个实施例中,该装置包括用于支撑固定多个紧固件的第一拉链带的第一拉链卷轴和用于支撑用于固定多个紧固件的第二拉链带的第二拉链卷轴。 位于第一和第二紧固件卷轴下游的拉链带接合装置接收相应的第一和第二拉链带,并且当其中一个拉链带变得耗尽紧固件时,选择性地接合第一和第二拉链带。
    • 9. 发明申请
    • FLEXIBLE LEAK TEST APPARATUS AND METHOD
    • 灵活的泄漏测试装置和方法
    • WO2012129496A1
    • 2012-09-27
    • PCT/US2012/030331
    • 2012-03-23
    • COMAU INC.GRAHAM, John
    • GRAHAM, John
    • G01M3/02G01M3/32
    • G01M3/02G01M3/025G01M3/3236G01M3/3281
    • A flexible leak test apparatus and method for leak testing a variety of workpieces having various multiple configurations with at least one internal cavity and at least one aperture leading therefrom. The flexible leak test apparatus and method provide a plurality of leak test fixtures adaptable to receive the workpieces. Each leak test fixture has a bottom portion and a top portion that engage one another when the workpieces are loaded in the bottom portion of the leak test fixture. The leak test fixtures are shuttled in and out of the workstation, and a manipulator loads and unloads the workpieces into and out of the bottom portion of the leak test fixtures. The leak test fixtures seal the apertures in the workpieces so that the workpieces can be leak tested by pressurizing the internal cavity of the workpiece.
    • 一种用于对具有各种多种构造的各种工件进行泄漏测试的柔性泄漏测试装置和方法,该工具具有至少一个内部空腔和至少一个从其导出的孔。 柔性泄漏测试装置和方法提供了多个可适应于接收工件的泄漏测试夹具。 每个泄漏测试夹具具有底部和顶部,当工件装载在泄漏测试夹具的底部时彼此接合。 泄漏测试夹具进出工作站,机械手将工件装入和卸载泄漏测试夹具的底部。 泄漏测试夹具密封工件中的孔,使得可以通过对工件的内部空腔加压来泄漏测试工件。
    • 10. 发明申请
    • VARIABLE VEHICLE BODY FIXED FRAMER AND METHOD
    • 可变车身固定框架和方法
    • WO2011137283A3
    • 2012-04-05
    • PCT/US2011034434
    • 2011-04-29
    • COMAU INCKILIBARDA VELIBOR
    • KILIBARDA VELIBOR
    • B62D65/02B62D65/18
    • B23K37/047B23K2201/006B62D65/024B62D65/18Y10T29/49764Y10T29/53022
    • A vehicle body framing apparatus and method for use in assembling vehicle body structures of varying vehicle types in a framing station positioned along an assembly line. The apparatus includes an overhead bridge frame that is connected to two pairs of vertical pillars positioned at a build station. One pair of the pillars is moveable to accommodate different lengths of vehicle bodies. The spaced pillars and overhead bridge provide substantially unobstructed access openings to the body sides of the vehicle to increase efficiency and quality of build. The device and method may include a bridge frame storage and transport system for remotely storing the different bridge frames not in use and then transporting a selected bridge frame to the build station for use.
    • 一种用于在沿着装配线定位的框架站中组装各种车辆类型的车身结构的车身框架装置和方法。 该装置包括连接到位于建造工位的两对垂直柱的架空桥架。 一对支柱可移动以适应不同长度的车体。 间隔开的支柱和架空桥梁为车辆的车身侧面提供基本无障碍的进入开口,以提高构造的效率和质量。 该装置和方法可以包括用于远程存储不使用的不同桥架的桥架存储和传输系统,然后将所选择的桥架传送到构建站以供使用。