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    • 51. 发明申请
    • COILED TUBING CONNECTOR AND METHOD OF MANUFACTURE
    • 卷绕管连接器及其制造方法
    • US20050116469A1
    • 2005-06-02
    • US10724689
    • 2003-12-02
    • Robert Parker
    • Robert Parker
    • E21B17/04E21B17/042E21B17/20F16L33/18
    • E21B17/20E21B17/042
    • In the field of oil drilling and other well operations there is a need for a coiled tubing connector that is quick and simple to use. There is also a need for a coiled tubing connector that is reusable. A coiled tubing connector (50) comprises a first sub (20); at least one arcuate segment (31, 32) and a second sub (40). The first sub (20) is slidable on the exterior surface of a length of unwound coiled tubing (10); and includes an internal recessed portion (21) and an engagement portion (22) adjacent to a first end thereof (26). At least one arcuate segment (31, 32) defines a protuberance (33) extending radially from an inner surface thereof. Each protuberance (33) is engagable with a corresponding circumferentially extending recess (11) in the coiled tubing (10). The second sub (40) is slidable on the exterior surface of the coiled tubing (10); and includes an engagement portion (41) adjacent to a first end thereof (42). The engagement portion (22) of the first sub (20) is engagable with the engagement portion (41) of the second sub (40) whereby in use each arcuate segment (31, 32) is retained within the internal recessed portion (21) of the first sub (20), thereby maintaining engagement of each radially extending protuberance (33) with the circumferentially extending recess (11).
    • 在油井钻井和其他油井操作领域,需要一种快速简便的连续油管连接器。 还需要可重复使用的连续油管连接器。 连续油管连接器(50)包括第一副(20); 至少一个弓形段(31,32)和第二子(40)。 第一副(20)可以在一定长度的展开的连续油管(10)的外表面上滑动; 并且包括内部凹部(21)和与其第一端(26)相邻的接合部(22)。 至少一个弧形段(31,32)限定从其内表面径向延伸的突起(33)。 每个突起(33)可接合在连续油管(10)中的对应的周向延伸的凹部(11)。 第二子(40)可在连续油管(10)的外表面上滑动; 并且包括与其第一端(42)相邻的接合部(41)。 第一子部件(20)的接合部分(22)可与第二子部件(40)的接合部分(41)接合,由此在每个弓形部分(31,32)保持在内凹部分(21)内, 从而保持每个径向延伸的突起(33)与周向延伸的凹部(11)的接合。
    • 53. 发明授权
    • Multi-directional spray nozzle
    • 多向喷嘴
    • US06592057B1
    • 2003-07-15
    • US10154548
    • 2002-05-24
    • Kent C. EricksenRobert Parker
    • Kent C. EricksenRobert Parker
    • B05B1508
    • B05B1/308B05B1/3073B05B15/652B05B15/654
    • A multi-directional spray nozzle is disclosed. The multi-directional spray nozzle may include a grip member and a pivotal member. A rounded end of the pivotal member pivotally engages a socket of the grip member in either a ball-and-socket configuration or a hinged joint configuration. An internal passage of the grip member is in fluid communication with a pivotal passage situated within the rounded end of the pivotal member. The pivotal passage is in fluid communication with an exit port on the pivotal member. A pressurized fluid may be emitted from an exit port on the pivotal member. The pivotal member may be positioned at various angles with respect to the grip member to direct the emitted fluid to a desired location.
    • 公开了一种多方向喷嘴。 多向喷嘴可以包括握持构件和枢转构件。 枢转构件的圆形端部以球 - 插座构造或铰接接头构造枢转地接合夹持构件的插座。 夹持构件的内部通道与位于枢转构件的圆形端部内的枢转通道流体连通。 枢转通道与枢转构件上的出口流体连通。 加压流体可以从枢转构件上的出口排出。 枢转构件可以相对于把手构件以各种角度定位,以将排出的流体引导到期望的位置。
    • 57. 发明授权
    • Battery tester with stacked thermochromic elements
    • 具有堆叠热变色元件的电池测试仪
    • US5557208A
    • 1996-09-17
    • US479272
    • 1995-06-07
    • Robert Parker
    • Robert Parker
    • G01D7/00G01R31/36H01M6/50G01R27/26H01M10/48
    • G01D7/005G01R31/362G01R31/3686H01M6/505G01R31/3696
    • A thermochromic apparatus for testing dc voltage sources, particularly small, low voltage disposable batteries, employs a very thin resistive heater layer deposited onto a flexible dielectric substrate. A series of thermochromic elements are "stacked" (mounted on top of one another) at a single thermochromic site proximate the resistive heater. During testing current from the battery flows through the resistive layer heats the substrate, causing a series of thermochromic elements mounted on the substrate to undergo visual "temperature events" (such as color changes) at progressively higher temperatures. The thermochromics may be stacked in a series of discrete films, each film containing a dye for one temperature event. Alternatively, the thermochromics may be contained in microcapsules in a common film.
    • 用于测试直流电压源,特别是小型低电压一次性电池的热致变色装置采用沉积在柔性电介质衬底上的非常薄的电阻加热器层。 一系列热致变色元件在靠近电阻加热器的单个热变色部位“堆叠”(彼此顶部安装)。 在测试期间,来自电池的电流流过电阻层加热基板,导致安装在基板上的一系列热变色元件在逐渐升高的温度下经历视觉“温度事件”(例如颜色变化)。 热变色可以堆叠在一系列分立的膜中,每个膜含有用于一个温度事件的染料。 或者,热变色可以包含在普通膜中的微胶囊中。
    • 59. 发明授权
    • Display apparatus using thermochromic material
    • 显示装置使用热变性材料
    • US5202677A
    • 1993-04-13
    • US648727
    • 1991-01-31
    • Robert ParkerStephen Phillips
    • Robert ParkerStephen Phillips
    • G02F1/01G09F9/00
    • G09F9/00G02F1/0147B41M5/305
    • A visual display dependent upon the use of thermochromic materials is formed as a thin structure on a substrate sheet with a vapor deposited conductive film heater applied thereto. The current is applied to the heater through parallel opposed buss bars so that the heater heats uniformly. A non-thermochromic image layer is mounted on the substrate, with one or more thermochromic image layers thereover. One thermochromic image layer covers a first portion of a visible display area of the substrate, while a second thermochromic layer covers a second portion of the visible display area, with the first and second portions overlapping slightly along contiguous edges thereof. As the display is heated and cooled, the thermochromic materials of the thermochromic image layers reach their respective transition temperatures to change state from opaque to colorless or vice-versa, or from one color to another. The visual display is mounted within an enclosure to protect the display from environmental interference and thereby insure the desired control of heating of the display, as well as cooling thereof.
    • 根据使用热致变色材料的视觉显示器被形成为在其上施加有气相沉积导电膜加热器的基片上的薄结构。 通过平行的相对的母线将电流施加到加热器,使得加热器均匀地加热。 非热变色图像层安装在基底上,其上有一个或多个热致变色图像层。 一个热致变色图像层覆盖基板的可见显示区域的第一部分,而第二热致变色层覆盖可见显示区域的第二部分,其中第一和第二部分沿其邻接边缘稍微重叠。 当显示器被加热和冷却时,热致变色图像层的热变色材料达到其相应的转变温度,以将状态从不透明变为无色或反之亦然,或从一种颜色改变为另一种颜色。 视觉显示器安装在外壳内以保护显示器免受环境干扰,从而确保对显示器的加热的期望控制以及冷却。