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    • 36. 发明申请
    • Under Shelf Mounted Drawer
    • 在搁板抽屉下
    • US20120074825A1
    • 2012-03-29
    • US13115984
    • 2011-05-25
    • William ArmstrongChristopher J. ClaypoolBradley S. HooleyMichael SchumannStian TesdalAnthony TorrisAllen Zadeh
    • William ArmstrongChristopher J. ClaypoolBradley S. HooleyMichael SchumannStian TesdalAnthony TorrisAllen Zadeh
    • A47B88/04
    • A47B88/407
    • A drawer assembly for mounting beneath a shelf has a drawer and a mounting unit. The drawer has a bottom, a front end, a rear end, and a pair of opposed side panels. The mounting unit is configured to mount to a shelf and has a pair of spaced apart drawer supports that support the drawer under a shelf. A pair of laterally spaced apart tracks is provided on either the drawer side panels or the mounting unit drawer supports. A pair of lugs protrudes from each of the other of the drawer side panels or the mounting unit drawer supports. Each pair of lugs is slidable relative to and along a respective one of the tracks. The drawer is slidable between a closed position and an open position relative to the mounting unit. The tracks and lugs cooperate such that the front end and rear end of the drawer are substantially level with one another in the closed position and the front end is lower than the rear end in the open position.
    • 用于安装在架子下方的抽屉组件具有抽屉和安装单元。 抽屉具有底部,前端,后端和一对相对的侧板。 安装单元被配置成安装到搁架上,并且具有一对间隔开的抽屉支撑件,其支撑在搁板下面的抽屉。 一对横向间隔开的轨道设置在抽屉侧面板或安装单元抽屉支架上。 一对凸耳从抽屉侧面板或安装单元抽屉支架中的每一个突出。 每对凸耳可以相对于并沿着相应的一个轨道滑动。 抽屉可在关闭位置和相对于安装单元的打开位置之间滑动。 轨道和凸耳配合使得抽屉的前端和后端在关闭位置基本上彼此平齐,并且前端低于处于打开位置的后端。
    • 37. 发明申请
    • METHOD OF MANUFACTURING A SUPPLEMENTAL LABEL
    • 制造补充标签的方法
    • US20080108491A1
    • 2008-05-08
    • US11670284
    • 2007-02-01
    • Mike WilkinsonWilliam Armstrong
    • Mike WilkinsonWilliam Armstrong
    • B31F5/00
    • B32B37/206B32B37/12B32B38/0004B32B38/145B32B2309/10B32B2519/00G09F3/10G09F3/204Y10T428/14Y10T428/28Y10T428/2848
    • Supplemental labels and methods of manufacturing supplemental labels are disclosed herein. A supplemental label according to an embodiment includes a presentation portion having a front face and a coupling portion coupled to the presentation portion. The front face has a printable area and includes a print-receiving medium. The coupling portion is transparent and has opposed front and rear faces. The rear face has an adhesive, and at least a portion of the adhesive is exposed to removably couple the coupling portion to the object. A supplemental label according to an embodiment includes a presentation portion having a front face and a coupling portion coupled to the presentation portion. The front face has a printable area and includes a print-receiving medium. The coupling portion is transparent, has opposed front and rear faces, and extends beyond the presentation portion. The rear face of the coupling portion has a transparent adhesive.
    • 本文公开补充标签和制造补充标签的方法。 根据实施例的补充标签包括呈现部分,其具有前表面和联接到呈现部分的联接部分。 前面具有可打印区域,并且包括打印接收介质。 联接部分是透明的并且具有相对的前表面和后表面。 后表面具有粘合剂,并且至少一部分粘合剂被暴露以将联接部分可拆卸地联接到物体上。 根据实施例的补充标签包括呈现部分,其具有前表面和联接到呈现部分的联接部分。 前面具有可打印区域,并且包括打印接收介质。 联接部分是透明的,具有相对的前表面和后表面,并且延伸超过呈现部分。 连接部分的后表面具有透明粘合剂。
    • 39. 发明申请
    • System and method for the mitigation of paraffin wax deposition from crude oil using ultrasonic waves
    • 使用超声波减轻原油石蜡沉积的系统和方法
    • US20070034014A1
    • 2007-02-15
    • US10557999
    • 2004-05-20
    • William ArmstrongJonathan NaughtonWilliam Lindberg
    • William ArmstrongJonathan NaughtonWilliam Lindberg
    • G01N3/24
    • G01N3/24G01N13/02G01N2013/0216G01N2203/0005G01N2203/0025
    • A shear stress sensor for measuring fluid wall shear stress on a test surface is provided. The wall shear stress sensor is comprised of an active sensing surface and a sensor body. An elastic mechanism mounted between the active sensing surface and the sensor body allows movement between the active sensing surface and the sensor body. A driving mechanism forces the shear stress sensor to oscillate. A measuring mechanism measures displacement of the active sensing surface relative to the sensor body. The sensor may be operated under periodic excitation where changes in the nature of the fluid properties or the fluid flow over the sensor measurably changes the amplitude or phase of the motion of the active sensing surface, or changes the force and power required from a control system in order to maintain constant motion. The device may be operated under non-periodic excitation where changes in the nature of the fluid properties or the fluid flow over the sensor change the transient motion of the active sensor surface or change the force and power required from a control system to maintain a specified transient motion of the acive sensor surface.
    • 提供了一种用于测量测试表面上的流体壁剪切应力的剪切应力传感器。 壁剪切应力传感器由主动感测表面和传感器体构成。 安装在主动感测表面和传感器主体之间的弹性机构允许主动感测表面和传感器主体之间的移动。 驱动机构迫使剪切应力传感器振荡。 测量机构测量主动感测表面相对于传感器主体的位移。 传感器可以在周期性激励下操作,其中流体特性的性质或传感器上的流体流动的变化可测量地改变主动感测表面的运动的幅度或相位,或者改变控制系统所需的力和功率 以保持恒定运动。 该装置可以在非周期性激励下操作,其中流体性质的性质或者传感器上的流体流动的变化改变了主动传感器表面的瞬态运动,或改变了从控制系统所需的力和功率,以维持指定的 酸性传感器表面的瞬态运动。