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    • 1. 发明授权
    • Centrifugal separator and rotor therefor
    • 离心分离器和转子
    • US07597658B2
    • 2009-10-06
    • US11404076
    • 2006-04-14
    • Andrew SamwaysAndy CollinsBrian HarrisonAnthony W. FellMartyn CongramStuart PercyJohn Lawrence MillsAdrian DayMartin Weindorf
    • Andrew SamwaysAndy CollinsBrian HarrisonAnthony W. FellMartyn CongramStuart PercyJohn Lawrence MillsAdrian DayMartin Weindorf
    • B04B9/06
    • B04B5/005
    • A rotor (10) for a centrifugal separator (12) for circulated engine lubricant formed by end walls (44, 46) and radially outer and inner side walls (42, 52) that define a separation and containment region (82). Wall (52) is defined by a tubular tension member (50) that surrounds a rotation axis (30) and extends between and through the end walls to keep them in position. Mounted within first and second ends (72, 74) of the tubular tension member are respective first and second end closure plugs (86, 88). Plug (88) has a passage (90) to admit liquid into the tubular member, but otherwise each plug is seated to inhibit passage of liquid from the member end. Each plug comprises a body seated by interference fit and an integral axially extending component (86′, 88′) that forms a mounting pin for mounting the rotor within bearing parts (24, 28) of the housing. Closure plugs may be assembled from separate plug body and fixed or rotatable mounting pin components and may extend along the tubular member and be coupled to each other, or be formed integrally as a unitary body, or share a common mounting pin that extends between discrete plug bodies.
    • 一种用于由端壁(44,46)和限定分离和容纳区域(82)的径向外侧壁和内侧壁(42,52)形成的用于循环发动机润滑剂的离心分离器(12)的转子(10)。 壁(52)由围绕旋转轴线(30)并在端壁之间并通过端壁延伸以保持其就位的管状张紧构件(50)限定。 安装在管状张紧构件的第一和第二端(72,74)内的是相应的第一和第二端部封闭塞(86,88)。 插头(88)具有通道(90)以允许液体进入管状构件,但是否则每个塞子就位以阻止液体从构件端部通过。 每个插头包括通过过盈配合安置的主体和形成用于将转子安装在壳体的轴承部分(24,28)内的安装销的整体轴向延伸部件(86',88')。 封闭插头可以由单独的插头本体和固定的或可旋转的安装销部件组装,并且可以沿着管状部件延伸并彼此联接,或者一体地形成为整体,或者共享在分立插头之间延伸的公共安装销 身体。
    • 2. 发明申请
    • Centrifugal seperator and rotor therefor
    • 离心分离器和转子
    • US20060258523A1
    • 2006-11-16
    • US11404076
    • 2006-04-14
    • Andrew SamwaysAndy CollinsBrian HarrisonAnthony FellMartyn CongramStuart PercyJohn MillsAdrian DayMartin Weindorf
    • Andrew SamwaysAndy CollinsBrian HarrisonAnthony FellMartyn CongramStuart PercyJohn MillsAdrian DayMartin Weindorf
    • B04B9/06F01D7/00
    • B04B5/005
    • A rotor (10) for a centrifugal separator (12) for circulated engine lubricant formed by end walls (44, 46) and radially outer and inner side walls (42, 52) that define a separation and containment region (82). Wall (52) is defined by a tubular tension member (50) that surrounds a rotation axis (30) and extends between and through the end walls to keep them in position. Mounted within first and second ends (72, 74) of the tubular tension member are respective first and second end closure plugs (86, 88). Plug (88) has a passage (90) to admit liquid into the tubular member, but otherwise each plug is seated to inhibit passage of liquid from the member end. Each plug comprises a body seated by interference fit and an integral axially extending component (86′, 88′) that forms a mounting pin for mounting the rotor within bearing parts (24, 28) of the housing. Closure plugs may be assembled from separate plug body and fixed or rotatable mounting pin components and may extend along the tubular member and be coupled to each other, or be formed integrally as a unitary body, or share a common mounting pin that extends between discrete plug bodies.
    • 一种用于由端壁(44,46)和限定分离和容纳区域(82)的径向外侧壁和内侧壁(42,52)形成的用于循环发动机润滑剂的离心分离器(12)的转子(10)。 壁(52)由围绕旋转轴线(30)并在端壁之间并通过端壁延伸以保持其就位的管状张紧构件(50)限定。 安装在管状张紧构件的第一和第二端(72,74)内的是相应的第一和第二端部封闭塞(86,88)。 插头(88)具有通道(90)以允许液体进入管状构件,但是否则每个塞子就位以阻止液体从构件端部通过。 每个插头包括通过过盈配合安置的主体和形成用于将转子安装在壳体的轴承部分(24,28)内的安装销的整体轴向延伸部件(86',88')。 封闭插头可以由单独的插头本体和固定或可旋转的安装销部件组装,并且可以沿着管状部件延伸并且彼此联接,或者作为整体形成为整体,或者共享在分立插头之间延伸的公共安装销 身体。
    • 4. 发明授权
    • Automatic fixup of network configuration on system image move
    • 网络配置自动修复系统图像移动
    • US08713139B1
    • 2014-04-29
    • US12588844
    • 2009-10-29
    • Charles C. KasperBrian HarrisonKenneth C. AveryCraig A. BoekerCharles K. WhitsettRichard L. Mouser
    • Charles C. KasperBrian HarrisonKenneth C. AveryCraig A. BoekerCharles K. WhitsettRichard L. Mouser
    • G06F15/177
    • G06F9/44505H04L61/2015H04L61/2038H04L61/6022
    • A method and device provide for automatically reconfiguring a computer network in response to an operating system image migration from a first hardware platform to a second hardware platform. The method includes detecting a boot up command and in response, initializing a fix up utility, creating a new network configuration for the migrated operating system image and storing the new network configuration information; reading the new network configuration information and old network configuration information corresponding to the first hardware platform; determining if any of the new network configuration information corresponds to a new network interface controller and if any of the old network information corresponds to a non-assigned network interface controller; and if any of the old network configuration information corresponds to a non-assigned network interface controller, reassigning network interface controller identifiers from the old network configuration information to the new network interface controller.
    • 方法和装置提供响应于从第一硬件平台到第二硬件平台的操作系统图像迁移来自动重新配置计算机网络。 该方法包括检测引导命令,并作为响应,初始化修复实用程序,为迁移的操作系统映像创建新的网络配置并存储新的网络配置信息; 读取与第一个硬件平台对应的新网络配置信息和旧网络配置信息; 确定所述新的网络配置信息中的任何一个是否对应于新的网络接口控制器,以及如果任何旧的网络信息对应于未分配的网络接口控制器; 并且如果任何旧的网络配置信息对应于未分配的网络接口控制器,则将网络接口控制器标识符从旧的网络配置信息重新分配给新的网络接口控制器。
    • 6. 发明申请
    • REACTOR AND REACTOR SYSTEM FOR HIGH TEMPERATURE AND HIGH PRESSURE REACTIONS
    • 用于高温和高压反应的反应器和反应器系统
    • US20110212003A1
    • 2011-09-01
    • US12294647
    • 2007-03-27
    • Brian HarrisonHurdon A. Hooper
    • Brian HarrisonHurdon A. Hooper
    • B01J8/00F28F99/00F28D15/00
    • B01J3/046B01J19/0013B01J2219/00123B01J2219/0263B01J2219/0286B01J2219/0295C08J11/10C08J2321/00Y02W30/702
    • A reactor and a reactor system for carrying out high temperature and high pressure reactions is disclosed herein. The reactor has an isolatable inner vessel for allowing for heat energy efficient cooling and heating of the reactor. The reactor comprises an outer reactor adapted for withstanding a reaction pressure and a reaction temperature, the outer reactor having a sealable reactor lid; an inner vessel within the outer reactor for containing a reaction solution and at least one reaction vessel, the inner vessel being open to the outer reactor such that the reaction pressure of the inner vessel and the outer reactor are substantially equalized and vapour in the inner vessel passes to the outer vessel, the inner vessel having a splatter shield for substantially preventing spillage of the reaction solution from the inner vessel into the outer reactor; a vapour injector in communication with the inner vessel for injecting vapour into the inner vessel for heating the reaction solution; an outlet in the outer vessel for exhausting vapour from the outer reactor and the inner vessel; and an outer reactor outlet for draining a liquid contained between the outer reactor and the inner vessel.
    • 本文公开了用于进行高温高压反应的反应器和反应器系统。 反应器具有可分离的内部容器,用于允许反应器的热能高效冷却和加热。 反应器包括适于承受反应压力和反应温度的外反应器,外反应器具有可密封的反应器盖; 在外部反应器内容纳反应溶液和至少一个反应容器的内部容器,内部容器向外部反应器敞开,使得内部容器和外部反应器的反应压力基本相等,并且在内部容器 通过外部容器,内部容器具有用于基本上防止反应溶液从内部容器溢出到外部反应器中的飞溅屏蔽物; 与内部容器连通的蒸气喷射器,用于将蒸汽注入到内部容器中以加热反应溶液; 用于从外部反应器和内部容器排出蒸汽的外部容器中的出口; 以及用于排出容纳在外部反应器和内部容器之间的液体的外部反应器出口。