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    • 1. 发明申请
    • Self relieving seal
    • 自卸密封
    • US20060096782A1
    • 2006-05-11
    • US11312075
    • 2005-12-19
    • James NevilleJames LarsenSteven PetersonManikiran BandiAlan LockstedtPeter CariveauAlysia WhiteAnthony GriffoMichael Siracki
    • James NevilleJames LarsenSteven PetersonManikiran BandiAlan LockstedtPeter CariveauAlysia WhiteAnthony GriffoMichael Siracki
    • E21B7/00E21B10/12
    • E21B10/25Y10S277/926Y10S277/928
    • Self relieving seals of this invention comprise an elastomeric seal body having a first sealing surface and a second sealing surface for contact with respective drill bit sealing surfaces. The seal includes a pair of external surfaces that each extend along the seal body between the first and second sealing surfaces. The seal includes one or more relief ports that are disposed through the seal body and that have openings through each of the seal body external surfaces. The relief port can be specially configured, e.g., have different diameter sections of constant or variable dimensions, to provide a degree of control over pressure equalization through the seal body when the seal is loaded within the drill bit. The seal may include an element, e.g., solid, tubular, or porous, disposed within the relief port to provide a further desired degree of control over pressure equalization through the seal when the seal is loaded within the drill bit. Surface features, on the seal or the drill bit, can be provided to offset the relief port opening from the rock bit so that it is not blocked off. The seal can include a valve mechanism to provide a further degree of control over fluid passage through the relief port.
    • 本发明的自卸式密封件包括具有第一密封表面和用于与相应的钻头密封表面接触的第二密封表面的弹性体密封体。 密封件包括一对外表面,每个外表面沿密封体在第一和第二密封表面之间延伸。 密封件包括一个或多个卸载口,其设置成穿过密封体并具有通过每个密封体外表面的开口。 泄压口可以被特别地构造,例如具有恒定或可变尺寸的不同直径部分,以在密封件被装载在钻头内时通过密封体提供对压力平衡的程度的控制。 密封件可以包括设置在泄放口内的元件,例如固体,管状或多孔的,以便当密封件装载在钻头内时,通过密封件提供对压力平衡的进一步期望程度的控制。 可以提供在密封件或钻头上的表面特征以将卸载口开口偏离岩石钻头,使得其不被堵塞。 密封件可以包括阀机构,以进一步控制通过排放口的流体通道。
    • 2. 发明申请
    • SELF RELIEVING SEAL
    • 自我保护密封
    • US20070181347A1
    • 2007-08-09
    • US11733731
    • 2007-04-10
    • James NevilleJames LarsenSteven PetersonManikiran BandiAlan LockstedtPeter CariveauAlysia WhiteAnthony GriffoMichael Siracki
    • James NevilleJames LarsenSteven PetersonManikiran BandiAlan LockstedtPeter CariveauAlysia WhiteAnthony GriffoMichael Siracki
    • E21B10/22
    • E21B10/25Y10S277/926Y10S277/928
    • Self relieving seals of this invention comprise an elastomeric seal body having a first sealing surface and a second sealing surface for contact with respective drill bit sealing surfaces. The seal includes a pair of external surfaces that each extend along the seal body between the first and second sealing surfaces. The seal includes one or more relief ports that are disposed through the seal body and that have openings through each of the seal body external surfaces. The relief port can be specially configured, e.g., have different diameter sections of constant or variable dimensions, to provide a degree of control over pressure equalization through the seal body when the seal is loaded within the drill bit. The seal may include an element, e.g., solid, tubular, or porous, disposed within the relief port to provide a further desired degree of control over pressure equalization through the seal when the seal is loaded within the drill bit. Surface features, on the seal or the drill bit, can be provided to offset the relief port opening from the rock bit so that it is not blocked off. The seal can include a valve mechanism to provide a further degree of control over fluid passage through the relief port.
    • 本发明的自卸式密封件包括具有第一密封表面和用于与相应的钻头密封表面接触的第二密封表面的弹性体密封体。 密封件包括一对外表面,每个外表面沿密封体在第一和第二密封表面之间延伸。 密封件包括一个或多个卸载口,其设置成穿过密封体并具有通过每个密封体外表面的开口。 泄压口可以被特别地构造,例如具有恒定或可变尺寸的不同直径部分,以在密封件被装载在钻头内时通过密封体提供对压力平衡的程度的控制。 密封件可以包括设置在泄放口内的元件,例如固体,管状或多孔的,以便当密封件装载在钻头内时,通过密封件提供对压力平衡的进一步期望程度的控制。 可以提供在密封件或钻头上的表面特征以将卸载口开口偏离岩石钻头,使得其不被堵塞。 密封件可以包括阀机构,以进一步控制通过排放口的流体通道。
    • 5. 发明授权
    • Method for minimizing the clogging of a cooling zone heat exchanger in a
reflow solder apparatus
    • 在回流焊接装置中最小化冷却区热交换器的堵塞的方法
    • US5641341A
    • 1997-06-24
    • US599941
    • 1996-02-14
    • David HellerJames NevillePeter J. Griffin
    • David HellerJames NevillePeter J. Griffin
    • B23K1/20B01D29/56
    • B23K1/203B23K2201/14
    • A method for minimizing the clogging of a cooling zone heat exchanger of a reflow solder apparatus that includes the steps of: removing a gas/flux mixture from an exhaust zone (20) that is located adjacent a heated zone and/or a cooling zone; conducting the gas/flux mixture to and through a first filter chamber (22), conducting the filtered gas from the filter chamber (22) through a low pressure portion of a blower housing of a cooling zone (16), then subsequently to and through a high pressure portion (44) of the cooling zone that includes a collection tray (38), a mesh filter (48), a heat exchanger (46) and at least one perforated plate (50). The heat exchanger is thermostatically controlled at a preset tempering temperature that minimizes the collection of flux on its exterior surfaces while allowing a solder joint of an article to solidify.
    • 一种用于最小化回焊焊接设备的冷却区热交换器的堵塞的方法,包括以下步骤:从位于加热区和/或冷却区附近的排气区(20)去除气体/助熔剂混合物; 将气体/助熔剂混合物导入并通过第一过滤室(22),通过冷却区(16)的鼓风机壳体的低压部分将来自过滤室(22)的过滤气体导入,然后通过 冷却区的高压部分(44)包括收集盘(38),网状过滤器(48),热交换器(46)和至少一个多孔板(50)。 热交换器被恒温控制在预设的回火温度,使得其外表面上的焊剂的收集最小化,同时允许制品的焊点固化。
    • 6. 发明申请
    • System, apparatus and methods for board cooling
    • 板冷却的系统,设备和方法
    • US20070254255A1
    • 2007-11-01
    • US11729321
    • 2007-03-27
    • James NevilleYushing Sun
    • James NevilleYushing Sun
    • F27B9/00B05B1/14
    • B23K3/085B05B1/202B23K2101/42H05K3/3494H05K7/20345H05K2203/1121
    • Cooling of printed circuit boards and electronic components mounted to such boards through evaporative cooling is achieved using a system, an apparatus and methods of water mist rapid cooling. The system and the apparatus comprise one or more spray assemblies, each including a water distribution manifold assembly and a multiple of spray nozzles connected to the manifold assembly, to deliver water spray mists to printed circuit boards during reflow processing. Spray assemblies are incorporated in a reflow oven to define an evaporative cooling zone. As heated printed circuit boards are conveyed through an evaporative cooling zone, one or more spray assemblies spray boards with water spray mists to lower elevated temperatures of boards, components, and solders to thereby ensure solder solidification to form solder joints and interconnections and sufficient board cooling for safe handling. The system, apparatus and methods are particularly suited for high temperature reflow soldering, such as reflow processes using lead-free solders.
    • 使用系统,水雾快速冷却的设备和方法,通过蒸发冷却来冷却安装在这种板上的印刷电路板和电子部件。 系统和设备包括一个或多个喷射组件,每个喷射组件包括分配歧管组件和连接到歧管组件的多个喷嘴,以在回流处理期间将喷水雾输送到印刷电路板。 喷射组件结合在回流炉中以限定蒸发冷却区。 当加热的印刷电路板通过蒸发冷却区输送时,一个或多个喷雾组件用喷雾器喷雾板,以降低板,部件和焊料的升高温度,从而确保焊料固化以形成焊点和互连以及足够的板冷却 为安全处理。 该系统,设备和方法特别适用于高温回流焊接,例如使用无铅焊料的回流工艺。
    • 7. 发明授权
    • Method for transporting an article through process housing while
minimizing a loss of a controlled atmosphere therefrom
    • 一种通过工艺外壳运输物品的方法,同时最大程度地减少受控气氛的损失
    • US5653587A
    • 1997-08-05
    • US573667
    • 1995-12-18
    • David HellerJames Neville
    • David HellerJames Neville
    • B23K1/008H01L21/677F27B9/00F27B3/00
    • H01L21/67706B23K1/008H01L21/6776B23K2201/36
    • A method of transporting an article through a processing housing while minimizing the loss of a controlled atmosphere from the process housing. This method includes the steps of placing an article on a first carriage member, then vertically displacing the article from the entry level through an entry opening of entry housing to a processing level. The article is then transferred from the first carriage member to an endless conveyor for transporting, horizontally, through the process housing. The article is then transferred to a second carriage member which moves the article vertically through a exit housing to and through an exit opening near an exit level. The processed article is then removed at the exit level. The vertical distance between the process level and the entry opening and the exit opening separates the controlled atmosphere from the ambient atmosphere exterior of the housings.
    • 一种将制品运送通过处理壳体同时最小化来自过程壳体的受控气氛的损失的方法。 该方法包括以下步骤:将物品放置在第一托架构件上,然后将物品从入口级垂直移位通过入口壳体的入口开口到处理水平。 然后将物品从第一托架构件转移到环形输送机,用于水平地运送通过过程壳体。 然后将物品转移到第二托架构件,该第二托架构件将物品垂直地移动通过出口壳体并通过靠近出口水平的出口开口移动。 然后在出口处移除处理后的物品。 处理水平与进入开口和出口之间的垂直距离将受控气氛与壳体外部的环境大气分开。