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    • 1. 发明申请
    • SYSTEM FOR REMOTE MONITORING OF A MANUFACTURING DEVICE
    • 远程监控制造设备的系统
    • WO2004102294A3
    • 2005-04-14
    • PCT/US2004014516
    • 2004-05-10
    • INTELLIPACKCOCCIADIFERRO EDWARDHANNA TODDDYE NOELLE
    • COCCIADIFERRO EDWARDHANNA TODDDYE NOELLE
    • B29B7/76G05B23/02G05B19/418
    • B29B7/7678B29B7/7663B29K2075/00G05B23/0283G05B2219/13Y02P90/14Y02P90/18Y02P90/185
    • A system and method for providing operational control and/or remote monitoring of a manufacturing device as in a foam dispenser device such as a foam-in-bag dispensing device. In architecture, the remote monitoring system includes a server device containing a remote monitoring system. The remote monitoring system further includes a transceiver to receive an indication of a help condition, connect to the manufacturing device; and receive data from the manufacturing device. The present invention can also be viewed as a method for providing remote monitoring of a manufacturing device. The method operates by (1) receiving an indication of a help condition; (2) connecting to the manufacturing device; and (3) receiving data from the manufacturing device. The operational control system is designed to control operation of one or more sub-systems of the manufacturing device as in a foam dispenser's chemical supply (proper temperature and pressure) and solvent supply as well as performance of a reciprocating valve device. With a foam-in-bag system, the control system provides for additional control over, for example, film feed and tensioning, bag edge and end seals as well as dispenser output into the bag. In a preferred embodiment, the operational control system and remote monitoring control interface with each other.
    • 一种用于提供制造装置的操作控制和/或远程监控的系统和方法,如泡沫分配器装置,例如泡沫袋分配装置。 在架构中,远程监控系统包括一个包含远程监控系统的服务器设备。 远程监控系统还包括收发器,用于接收帮助状态的指示,连接到制造设备; 并从制造设备接收数据。 本发明还可以被视为用于提供制造装置的远程监视的方法。 该方法通过(1)接收帮助条件的指示来操作; (2)连接制造装置; 和(3)从制造装置接收数据。 操作控制系统被设计为控制制造装置的一个或多个子系统的操作,如泡沫分配器的化学品供应(适当的温度和压力)和溶剂供应以及往复阀装置的性能。 使用泡沫袋系统,控制系统提供对例如胶片进给和张紧,袋边缘和端部密封以及分配器输出到袋中的附加控制。 在优选实施例中,操作控制系统和远程监视控制彼此接口。
    • 2. 发明申请
    • PAD FORMATION METHOD, ASSEMBLY AND PAD PRODUCED THEREBY
    • 垫形成方法,由其制造的组装件和垫
    • WO2010017110A3
    • 2010-08-12
    • PCT/US2009052468
    • 2009-07-31
    • INTELLIPACK INCBURKE SCOTTHANNA TODD
    • BURKE SCOTTHANNA TODD
    • B29C44/18B29C44/30B29C44/60
    • B29C44/5627B29C44/182B29C44/306B29C44/60B29L2031/58
    • A foam cushion pad formation assembly that includes a conveyance assembly having at least one moving conveyor component presenting a pad shape formation surface, which surface is convoluted and arranged to shape sealed enclosures of a pad chain received by the conveyance assembly. A separation device is provided to separate shaped pads of the pad chain received by said conveyor device. The shaped pads include convoluted surface that are formed by way of gripping projection and recesses combinations in the moving conveyor component. Embodiments include sensing for non separated pads from a downstream end of the bag chain, pad chain separation enhancement devices, and various control system including the requirement of confirmation of separation before feeding a new pad enclosure as in one containing liquid polyurethane precursor chemicals. An embodiment includes a pad chain path disruption sensor and a form feed control which implements the formation of pad enclosures free of filler material in a bridging region between the outlet end of the enclosure formation means and the conveyance assembly.
    • 一种泡沫缓冲垫形成组件,所述泡沫缓冲垫形成组件包括传送组件,所述传送组件具有至少一个移动传送部件,所述移动传送部件呈现衬垫形状形成表面,所述表面被卷曲并布置成形成由所述传送组件接收的衬垫链的密封外壳。 提供分离装置以分离由所述输送装置接收的垫链的成形垫。 成形的垫包括通过抓握突起形成的盘旋表面,并且在移动的传送器部件中凹陷组合。 实施例包括感测来自袋链下游端的未分离的衬垫,衬垫链分离增强装置和各种控制系统,包括在供给新的衬垫外壳之前确认分离的要求,如在包含液体聚氨酯前体化学品的那个中。 一个实施例包括垫链路径中断传感器和形式馈送控制器,其实现在外壳形成装置的出口端和传送组件之间的桥接区域中形成没有填充材料的垫外壳。
    • 3. 发明申请
    • DISPENSING SYSTEM WITH MIXING MODULE MOUNT, DRIVE AND TIP
    • 分配系统与混合模块安装,驱动和提示
    • WO2004101243A3
    • 2005-06-09
    • PCT/US2004014392
    • 2004-05-07
    • INTELLIPACKHAYDUK MATTHEWHANNA TODDJONES MICHAEL P
    • HAYDUK MATTHEWHANNA TODDJONES MICHAEL P
    • B29B7/76
    • B29B7/7678B29B7/7663B29K2075/00
    • A chemical (e.g., foam precursor) dispensing system having a mixing module valve/purge rod (or valving/purge device) reciprocating drive system that comprises a crank and slide mechanism in an effort to prevent lock up. The same drive system also preferably is used to reciprocate a mechanical tip contact cleaner as in a reciprocating brush. The mixing module is preferably in the form of a cartridge which is received within an adjustable, finger releasable mounting region of the dispenser housing so as to properly align the mixing module relative to chemical and solvent feed ports. To further maintain a clean dispenser tip a solvent feed system is provided which includes a double front cap wall arrangement for bathing the free end of tip and the tip outlet region of the mixing module.
    • 具有混合模块阀/净化杆(或阀/清除装置)往复驱动系统的化学(例如,泡沫前体)分配系统,其包括曲柄和滑动机构,以防止锁定。 相同的驱动系统也优选地用于往复运动机械尖端接触清洁器,如在往复刷中。 混合模块优选地为盒式的形式,其被容纳在分配器壳体的可调节的可松开的手指安装区域内,以便相对于化学和溶剂进料口适当地对准混合模块。 为了进一步维持清洁的分配器末端,提供了一种溶剂进料系统,其包括用于洗涤尖端的自由端和混合模块的尖端出口区域的双前盖壁布置。
    • 5. 发明专利
    • AT428961T
    • 2009-05-15
    • AT04751746
    • 2004-05-10
    • INTELLIPACK INC
    • COCCIADIFERRO EDWARDHANNA TODDDYE NOELLE
    • G05B19/418B29B7/76G05B23/02
    • A system and method for providing operational control and/or remote monitoring of a manufacturing device as in a foam dispenser device such as a foam-in-bag dispensing device. In architecture, the remote monitoring system includes a server device containing a remote monitoring system. The remote monitoring system further includes a transceiver to receive an indication of a help condition, connect to the manufacturing device; and receive data from the manufacturing device. The present invention can also be viewed as a method for providing remote monitoring of a manufacturing device. The method operates by (1) receiving an indication of a help condition; (2) connecting to the manufacturing device; and (3) receiving data from the manufacturing device. The operational control system is designed to control operation of one or more sub-systems of the manufacturing device as in a foam dispenser's chemical supply (proper temperature and pressure) and solvent supply as well as performance of a reciprocating valve device. With a foam-in-bag system, the control system provides for additional control over, for example, film feed and tensioning, bag edge and end seals as well as dispenser output into the bag. In a preferred embodiment, the operational control system and remote monitoring control interface with each other.
    • 6. 发明专利
    • DE602004020616D1
    • 2009-05-28
    • DE602004020616
    • 2004-05-10
    • INTELLIPACK INC
    • COCCIADIFERRO EDWARDHANNA TODDDYE NOELLE
    • G05B19/418B29B7/76G05B23/02
    • A system and method for providing operational control and/or remote monitoring of a manufacturing device as in a foam dispenser device such as a foam-in-bag dispensing device. In architecture, the remote monitoring system includes a server device containing a remote monitoring system. The remote monitoring system further includes a transceiver to receive an indication of a help condition, connect to the manufacturing device; and receive data from the manufacturing device. The present invention can also be viewed as a method for providing remote monitoring of a manufacturing device. The method operates by (1) receiving an indication of a help condition; (2) connecting to the manufacturing device; and (3) receiving data from the manufacturing device. The operational control system is designed to control operation of one or more sub-systems of the manufacturing device as in a foam dispenser's chemical supply (proper temperature and pressure) and solvent supply as well as performance of a reciprocating valve device. With a foam-in-bag system, the control system provides for additional control over, for example, film feed and tensioning, bag edge and end seals as well as dispenser output into the bag. In a preferred embodiment, the operational control system and remote monitoring control interface with each other.