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    • 3. 发明申请
    • Dispersion spinning core-shell fluoropolymers
    • 分散纺丝芯 - 壳含氟聚合物
    • US20050143494A1
    • 2005-06-30
    • US10980701
    • 2004-11-03
    • Clay Jones
    • Clay Jones
    • C08K3/00D01F6/12D01F6/48
    • D01D5/06C08L1/26C08L27/18D01D1/02D01F1/02D01F6/12D01F6/48Y10T428/3154C08L2666/26
    • A process is disclosed for dispersion spinning non-melt-processible fluoropolymer fiber in which a mixture of an aqueous dispersion of non-melt-processible fluoropolymer particles and an aqueous solution of a matrix polymer is formed. The non-melt-processible fluoropolymer particles have an SSG of less than about 2.40 and comprise a core of high molecular weight polytetrafluoroethylene and a shell of lower molecular weight polytetrafluoroethylene or modified polytetrafluoroethylene. The mixture is extruded into a coagulation bath containing a concentration of ions which coagulate the matrix polymer to form an intermediate fiber structure. The intermediate fiber structure is sintered to decompose the matrix polymer and coalesce the non-melt-processible fluoropolymer particles to form the fiber. The present invention also provides for spinning composition useful for the dispersion spinning of non-melt-processible fluoropolymer fiber.
    • 公开了用于分散纺丝不可熔融加工的含氟聚合物纤维的方法,其中形成了不可熔融加工的含氟聚合物颗粒的水性分散体和基质聚合物的水溶液的混合物。 不可熔融加工的含氟聚合物颗粒具有小于约2.40的SSG,并且包含高分子量聚四氟乙烯核和低分子量聚四氟乙烯或改性聚四氟乙烯的壳。 将混合物挤压成含有浓缩离子的凝固浴,其凝结基质聚合物以形成中间纤维结构。 中间纤维结构被烧结以分解基质聚合物并聚结不可熔融加工的含氟聚合物颗粒以形成纤维。 本发明还提供了用于不可熔融加工的含氟聚合物纤维的分散纺丝的纺丝组合物。
    • 4. 发明申请
    • NETWORK DEVICES WITH MULTIPLE FULLY ISOLATED AND INDEPENDENTLY RESETTABLE DIRECT MEMORY ACCESS CHANNELS AND METHODS THEREOF
    • 具有多个完全分离和独立可重置的直接存储器访问通道的网络设备及其方法
    • US20150019923A1
    • 2015-01-15
    • US12689832
    • 2010-01-19
    • Timothy MichelsClay Jones
    • Timothy MichelsClay Jones
    • G06F11/00G06F11/16G06F13/28G06F15/167
    • G06F11/00G06F11/1438G06F11/1443G06F11/16G06F13/28G06F15/17331
    • A method, computer readable medium, and system independently managing network applications within a network traffic management device communicating with networked clients and servers include monitoring with a network device a plurality of applications communicating over a plurality of direct memory access (DMA) channels established across a bus. The network device receives a request from a first application communicating over a first DMA channel in the plurality of DMA channels to restart the first DMA channel. In response to the request, the first DMA channel is disabled with the network device while allowing other executing applications in the plurality of applications to continue to communicate over other DMA channels in the plurality of DMA channels. A state of the first DMA channel is cleared independently from other DMA channels in the plurality of DMA channels, and communications for the first application over the first DMA channel are resumed with the network device.
    • 一种方法,计算机可读介质和系统,其独立地管理与网络客户端和服务器通信的网络流量管理设备内的网络应用,包括利用网络设备监视多个应用程序,所述多个应用程序通过跨越所建立的多个直接存储器访问(DMA) 总线。 网络设备从多个DMA通道中的第一DMA通道上接收来自第一应用程序通信的请求,以重启第一DMA通道。 响应于该请求,第一DMA通道被网络设备禁用,同时允许多个应用程序中的其他执行应用程序继续通过多个DMA通道中的其他DMA通道进行通信。 第一DMA通道的状态与多个DMA通道中的其它DMA通道独立地被清除,并且通过网络设备恢复通过第一DMA通道的第一应用的通信。
    • 5. 发明申请
    • NETWORK TEST INSTRUMENT
    • 网络测试仪器
    • US20140310604A1
    • 2014-10-16
    • US13874104
    • 2013-04-30
    • James A. KahkoskaDonna EastepMichael WaltersClay JonesMichael Morgan
    • James A. KahkoskaDonna EastepMichael WaltersClay JonesMichael Morgan
    • G06F3/0484
    • H04L41/22H04L43/50
    • A method and apparatus (e.g., network test instrument) for presenting network device diagnostic information in which a listing of network devices discovered via a first network connection (e.g., wirelessly—802.11) to a test network is presented in a GUI of a network diagnostic instrument. Acquired network diagnostic information for a network device selected from the listing of network devices is then presented in the GUI wherein the presented network diagnostic information is acquired via the first network connection (e.g., wirelessly—802.11). Indication (and a link thereto) is provided in the GUI indicating network diagnostic information for the selected network device was also acquired via a second network connection to the test network (e.g., via a wired connection—802.3).
    • 一种用于呈现网络设备诊断信息的方法和装置(例如,网络测试仪器),其中经由第一网络连接(例如,无线802.11)发现的网络设备的列表到测试网络被呈现在网络诊断的GUI中 仪器。 然后在GUI中呈现从网络设备列表中选择的网络设备的获取的网络诊断信息,其中通过第一网络连接(例如,无线802.11)获取所呈现的网络诊断信息。 在GUI中提供指示(及其链接),指示所选择的网络设备的网络诊断信息也经由到测试网络的第二网络连接(例如,经由有线连接802.3)获取。
    • 6. 发明申请
    • Spinning low fluorosurfactant fluoropolymer dispersions
    • 旋转低含氟表面活性剂含氟聚合物分散体
    • US20070029697A1
    • 2007-02-08
    • US11494893
    • 2006-07-28
    • Devin FlowersClay JonesRobert Cavanaugh
    • Devin FlowersClay JonesRobert Cavanaugh
    • C09D5/02
    • D01F6/12C08L1/00C08L27/18C08L29/14C08L71/02C08L2205/03C08L2205/16D01F6/48Y10T428/3154C08L2666/04C08L2666/02
    • A process for dispersion spinning non-melt-processible fluoropolymer fiber in which a mixture of an aqueous dispersion of non-melt-processible polytetrafluoroethylene or modified polytetrafluoroethylene fluoropolymer particles and an aqueous solution of matrix polymer is formed. The non melt-processible particles have an SSG of less than about 2.40. The aqueous dispersion contains an aliphatic alcohol ethoxylate nonionic surfactant having a 20% residuals temperature determined by thermogravimetric analysis (TGA) of less than about 290° C. and is essentially free of surfactants containing aromatic groups. The dispersion has a fluorinated surfactant content of less than about 300 ppm. The mixture is extruded into a coagulation bath containing a concentration of ions which coagulate the matrix polymer to form an intermediate fiber structure. The intermediate fiber structure is sintered to decompose the matrix polymer and coalesce. The present invention also provides a spinning composition useful for the dispersion spinning of non-melt-processible fluoropolymer fiber.
    • 分散纺丝不熔融加工的含氟聚合物纤维的方法,其中形成不熔融加工的聚四氟乙烯或改性聚四氟乙烯含氟聚合物颗粒的水性分散体和基质聚合物的水溶液的混合物。 不可熔融加工的颗粒具有小于约2.40的SSG。 水性分散体含有脂肪醇乙氧基化物非离子表面活性剂,其具有通过热重分析(TGA)测定的低于约290℃的20%残留温度,并且基本上不含含芳族基团的表面活性剂。 分散体具有小于约300ppm的氟化表面活性剂含量。 将混合物挤压成含有浓缩离子的凝固浴,其凝结基质聚合物以形成中间纤维结构。 中间纤维结构被烧结以分解基体聚合物并聚结。 本发明还提供了一种可用于不可熔融加工的含氟聚合物纤维的分散纺丝的纺丝组合物。
    • 8. 发明授权
    • Network devices with multiple fully isolated and independently resettable direct memory access channels and methods thereof
    • 具有多个完全隔离且可独立复位的直接存储器存取通道的网络设备及其方法
    • US09152483B2
    • 2015-10-06
    • US12689832
    • 2010-01-19
    • Timothy MichelsClay Jones
    • Timothy MichelsClay Jones
    • G06F11/00G06F13/28G06F11/16G06F15/173
    • G06F11/00G06F11/1438G06F11/1443G06F11/16G06F13/28G06F15/17331
    • A method, computer readable medium, and system independently managing network applications within a network traffic management device communicating with networked clients and servers include monitoring with a network device a plurality of applications communicating over a plurality of direct memory access (DMA) channels established across a bus. The network device receives a request from a first application communicating over a first DMA channel in the plurality of DMA channels to restart the first DMA channel. In response to the request, the first DMA channel is disabled with the network device while allowing other executing applications in the plurality of applications to continue to communicate over other DMA channels in the plurality of DMA channels. A state of the first DMA channel is cleared independently from other DMA channels in the plurality of DMA channels, and communications for the first application over the first DMA channel are resumed with the network device.
    • 一种方法,计算机可读介质和系统,其独立地管理与网络客户端和服务器通信的网络流量管理设备内的网络应用,包括利用网络设备监视多个应用程序,所述多个应用程序通过跨越所建立的多个直接存储器访问(DMA) 总线。 网络设备从多个DMA通道中的第一DMA通道上接收来自第一应用程序通信的请求,以重启第一DMA通道。 响应于该请求,第一DMA通道被网络设备禁用,同时允许多个应用程序中的其他执行应用程序继续通过多个DMA通道中的其他DMA通道进行通信。 第一DMA通道的状态与多个DMA通道中的其它DMA通道独立地被清除,并且通过网络设备恢复通过第一DMA通道的第一应用的通信。
    • 9. 发明申请
    • Dispersion Spinning Core-Shell Fluoropolymers
    • 分散纺丝芯壳含氟聚合物
    • US20080119608A1
    • 2008-05-22
    • US12019804
    • 2008-01-25
    • Clay Jones
    • Clay Jones
    • C08L1/26C08L27/00
    • D01D5/06C08L1/26C08L27/18D01D1/02D01F1/02D01F6/12D01F6/48Y10T428/3154C08L2666/26
    • A process is disclosed for dispersion spinning non-melt-processible fluoropolymer fiber in which a mixture of an aqueous dispersion of non-melt-processible fluoropolymer particles and an aqueous solution of a matrix polymer is formed. The non-melt-processible fluoropolymer particles have an SSG of less than about 2.40 and comprise a core of high molecular weight polytetrafluoroethylene and a shell of lower molecular weight polytetrafluoroethylene or modified polytetrafluoroethylene. The mixture is extruded into a coagulation bath containing a concentration of ions which coagulate the matrix polymer to form an intermediate fiber structure. The intermediate fiber structure is sintered to decompose the matrix polymer and coalesce the non-melt-processible fluoropolymer particles to form the fiber. The present invention also provides for spinning composition useful for the dispersion spinning of non-melt-processible fluoropolymer fiber.
    • 公开了用于分散纺丝不可熔融加工的含氟聚合物纤维的方法,其中形成了不可熔融加工的含氟聚合物颗粒的水性分散体和基质聚合物的水溶液的混合物。 不可熔融加工的含氟聚合物颗粒具有小于约2.40的SSG,并且包含高分子量聚四氟乙烯核和低分子量聚四氟乙烯或改性聚四氟乙烯的壳。 将混合物挤压成含有浓缩离子的凝固浴,其凝结基质聚合物以形成中间纤维结构。 中间纤维结构被烧结以分解基质聚合物并聚结不可熔融加工的含氟聚合物颗粒以形成纤维。 本发明还提供了用于不可熔融加工的含氟聚合物纤维的分散纺丝的纺丝组合物。