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    • 1. 发明申请
    • DEVICE FOR CLAMPING AND SEPARATING TUBING
    • 夹紧和分离管道装置
    • US20080116241A1
    • 2008-05-22
    • US11561202
    • 2006-11-17
    • Carl Martin
    • Carl Martin
    • B26F1/00
    • B26D3/169A61M5/1418B26F3/002Y10T83/748Y10T83/7493Y10T225/321
    • A device (10) for clamping and separating a length of tubing. The device (10) comprises first and second subassemblies (12,14) for, in their closed positions, clamping the tubing at first and second locations, respectively, and at least weakening the tubing for subsequent separation. The subassemblies (12,14) face each other and are connected by a breakable connection. Each subassembly (12,14) includes clamping elements (26,34) for clamping the tubing, a perforating or cutting element (28) for perforating or otherwise weakening or cutting the tubing, and locking elements (24,32) for locking the subassembly (12,14) in the closed position. The perforating element (28) may be at least one hard plastic or metal spike. Once each subassembly (12,14) is locked in the closed position, the breakable connection is broken to result in respective lengths of clamped tubing.
    • 一种用于夹紧和分离一段管道的装置(10)。 设备(10)包括第一和第二子组件(12,14),用于在其关闭位置中分别在第一和第二位置处夹紧管道,并且至少削弱管道以用于随后的分离。 子组件(12,14)彼此面对并通过易断连接连接。 每个子组件(12,14)包括用于夹紧管道的夹紧元件(26,34),用于穿孔或以其它方式削弱或切割管道的穿孔或切割元件(28),以及锁定元件(24,32) (12,14)处于关闭位置。 穿孔元件(28)可以是至少一个硬塑料或金属钉。 一旦每个子组件(12,14)被锁定在关闭位置,则可破坏的连接被破坏,导致夹紧管道的相应长度。
    • 4. 发明授权
    • Device for clamping and separating tubing
    • 用于夹紧和分离管道的装置
    • US07661345B2
    • 2010-02-16
    • US11561202
    • 2006-11-17
    • Carl Martin
    • Carl Martin
    • B26D7/02B23K37/04
    • B26D3/169A61M5/1418B26F3/002Y10T83/748Y10T83/7493Y10T225/321
    • A device (10) for clamping and separating a length of tubing. The device (10) comprises first and second subassemblies (12,14) for, in their closed positions, clamping the tubing at first and second locations, respectively, and at least weakening the tubing for subsequent separation. The subassemblies (12,14) face each other and are connected by a breakable connection. Each subassembly (12,14) includes clamping elements (26,34) for clamping the tubing, a perforating or cutting element (28) for perforating or otherwise weakening or cutting the tubing, and locking elements (24,32) for locking the subassembly (12,14) in the closed position. The perforating element (28) may be at least one hard plastic or metal spike. Once each subassembly (12,14) is locked in the closed position, the breakable connection is broken to result in respective lengths of clamped tubing.
    • 一种用于夹紧和分离一段管道的装置(10)。 设备(10)包括第一和第二子组件(12,14),用于在其关闭位置中分别在第一和第二位置处夹紧管道,并且至少削弱管道以用于随后的分离。 子组件(12,14)彼此面对并通过易断连接连接。 每个子组件(12,14)包括用于夹紧管道的夹紧元件(26,34),用于穿孔或以其它方式削弱或切割管道的穿孔或切割元件(28),以及锁定元件(24,32) (12,14)处于关闭位置。 穿孔元件(28)可以是至少一个硬塑料或金属钉。 一旦每个子组件(12,14)被锁定在关闭位置,则可破坏的连接被破坏,导致夹紧管道的相应长度。
    • 6. 发明授权
    • E-hook
    • 电子挂钩
    • US08616814B2
    • 2013-12-31
    • US13217201
    • 2011-08-24
    • Edward MartinCarl MartinCharles Martin
    • Edward MartinCarl MartinCharles Martin
    • B60P7/08
    • B60P7/08
    • A trailer wall hook is provided as a single unit that includes a U-shaped hook with a rounded or square base. The U-shaped hook includes an open eye-loop and j-hook support brackets. The open eye-loop is attached to the top front of the U-shaped hook and two smaller j-hooks are attached upside down on the rear of the U-shaped hook. The j-hooks provide for mounting the trailer wall hook on a cargo control or tie-down system on the inside wall of a trailer. The trailer wall hook provides for loading and supporting linear shaped or irregular shaped freight onto the wall.
    • 提供拖车壁挂钩作为单个单元,其包括具有圆形或正方形底座的U形钩。 U形钩包括一个开放的眼环和j-钩支架。 开放的眼圈连接到U形钩的顶部前部,并且两个较小的j形钩被倒置在U形钩的后部上。 j型挂钩用于将挂车挂钩安装在拖车内壁上的货物控制或系固系统上。 拖车墙挂钩提供负载和支撑线性或不规则形状的货物到墙上。
    • 7. 发明授权
    • Device and method for accessing fluid in container
    • 用于容器内流体的装置和方法
    • US08281961B2
    • 2012-10-09
    • US11753717
    • 2007-05-25
    • Carl Martin
    • Carl Martin
    • B67D3/00
    • B67D7/0294Y10T137/86501
    • A device (10) and method for aseptically or non-aseptically accessing a fluid in a container (210) using an existing container opening (211). The device (10) includes a sanitary fitting (12) for attaching the device to the container over the existing container opening, and a sample coupling (14) associated with the sanitary fitting. The sanitary fitting (12) includes a first port (32), and the sample coupling (14) includes at least two second ports (52). The sample coupling (14) is rotatable relative to the sanitary fitting (12) in one direction to cause the first port (32) to successively align with each of the second ports (52), and thereby allows access to the fluid through the aligned first and second ports (32,52).
    • 一种使用现有容器开口(211)无菌或非无菌地进入容器(210)中的流体的装置(10)和方法。 装置(10)包括用于将装置连接到现有容器开口上的容器的卫生用品(12)和与卫生配件相关联的样品联接器(14)。 卫生配件(12)包括第一端口(32),并且样品联接器(14)包括至少两个第二端口(52)。 样品联接器(14)可以在一个方向上相对于卫生配件(12)旋转,以使第一端口(32)与每个第二端口(52)连续对准,从而允许通过对准 第一和第二端口(32,52)。
    • 8. 发明授权
    • System and method for filling containers
    • 填充容器的系统和方法
    • US08201594B2
    • 2012-06-19
    • US12136412
    • 2008-06-10
    • Carl Martin
    • Carl Martin
    • B65B3/04
    • B65B39/004B65B55/00
    • A system (10) and method for substantially automatically aseptically or non-aseptically filling a container with a fluid. The transfer of fluid occurs via a movable nozzle mechanism (20) substantially automatically inserted into a side opening (32) in a connector (12) attached to the container. More specifically, the side opening (32) in the connector (12) is exposed, the nozzle mechanism (20) is moved into the side opening (32), the fluid is transferred into the container via the nozzle mechanism (20) and the connector (12), the nozzle mechanism (20) is removed from the side opening (32) in the connector (12), and the side opening (32) in the connector (12) is closed. The aseptic transfer of fluid includes a substantially automatic sterilization procedure accomplished by both spray and contact components (54,56).
    • 一种用于基本上自动无菌或非无菌地填充容器的流体系统(10)和方法。 流体的传送通过基本上自动插入连接到容器的连接器(12)中的侧开口(32)中的可移动喷嘴机构(20)发生。 更具体地,连接器(12)中的侧开口(32)露出,喷嘴机构(20)移动到侧开口(32)中,流体经由喷嘴机构(20)被转移到容器中,并且 连接器(12)中,喷嘴机构(20)从连接器(12)中的侧开口(32)移除,并且连接器(12)中的侧开口(32)关闭。 流体的无菌转移包括由喷雾和接触组分两者完成的基本上自动的灭菌程序(54,56)。
    • 9. 发明授权
    • System for filling a container
    • 填充容器的系统
    • US07530374B2
    • 2009-05-12
    • US11694365
    • 2007-03-30
    • Carl Martin
    • Carl Martin
    • B67C3/26B65B3/04
    • B65B55/10B65B39/004Y10T137/4245
    • A system (10) and method for substantially automatically aseptically or non-aseptically filling a container with a fluid. The transfer of fluid occurs via a movable nozzle mechanism (20) substantially automatically inserted into a side opening (32) in a connector (12) attached to the container. More specifically, the side opening (32) in the connector (12) is exposed, the nozzle mechanism (20) is moved into the side opening (32), the fluid is transferred into the container via the nozzle mechanism (20) and the connector (12), the nozzle mechanism (20) is removed from the side opening (32) in the connector (12), and the side opening (32) in the connector (12) is closed. The aseptic transfer of fluid includes a substantially automatic sterilization procedure accomplished by both spray and contact components (54,56).
    • 一种用于基本上自动无菌或非无菌地填充容器的流体系统(10)和方法。 流体的传送通过基本上自动插入连接到容器的连接器(12)中的侧开口(32)中的可移动喷嘴机构(20)发生。 更具体地,连接器(12)中的侧开口(32)露出,喷嘴机构(20)移动到侧开口(32)中,流体经由喷嘴机构(20)被转移到容器中,并且 连接器(12)中,喷嘴机构(20)从连接器(12)中的侧开口(32)移除,并且连接器(12)中的侧开口(32)关闭。 流体的无菌转移包括由喷雾和接触组分两者完成的基本上自动的灭菌程序(54,56)。
    • 10. 发明申请
    • SYSTEM AND METHOD FOR FILLING CONTAINERS
    • 填充容器的系统和方法
    • US20080302443A1
    • 2008-12-11
    • US12136412
    • 2008-06-10
    • Carl Martin
    • Carl Martin
    • B65B3/04
    • B65B39/004B65B55/00
    • A system (10) and method for substantially automatically aseptically or non-aseptically filling a container with a fluid. The transfer of fluid occurs via a movable nozzle mechanism (20) substantially automatically inserted into a side opening (32) in a connector (12) attached to the container. More specifically, the side opening (32) in the connector (12) is exposed, the nozzle mechanism (20) is moved into the side opening (32), the fluid is transferred into the container via the nozzle mechanism (20) and the connector (12), the nozzle mechanism (20) is removed from the side opening (32) in the connector (12), and the side opening (32) in the connector (12) is closed. The aseptic transfer of fluid includes a substantially automatic sterilization procedure accomplished by both spray and contact components (54,56).
    • 一种用于基本上自动无菌或非无菌地填充容器的流体系统(10)和方法。 流体的传送通过基本上自动插入连接到容器的连接器(12)中的侧开口(32)中的可移动喷嘴机构(20)发生。 更具体地,连接器(12)中的侧开口(32)露出,喷嘴机构(20)移动到侧开口(32)中,流体经由喷嘴机构(20)被转移到容器中,并且 连接器(12)中,喷嘴机构(20)从连接器(12)中的侧开口(32)移除,并且连接器(12)中的侧开口(32)关闭。 流体的无菌转移包括由喷雾和接触组分两者完成的基本上自动的灭菌程序(54,56)。