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    • 1. 发明授权
    • Hand-held variable angle membrane (VAM) ultrasonic scanning head for the noninvasive detection of corrosion, MIC and foreign objects in pipes
    • 手持式可变角膜(VAM)超声波扫描头,用于无损检测管道中的腐蚀,MIC和异物
    • US06578424B1
    • 2003-06-17
    • US09671405
    • 2000-09-27
    • Steven M. ZiolaMichael R. GormanWilliam J. Miller
    • Steven M. ZiolaMichael R. GormanWilliam J. Miller
    • G01N2900
    • G01N29/225G01N29/223G01N29/2487G01N29/28G01N2291/0423G01N2291/056G01N2291/102G01N2291/2634
    • A hand-held Variable Angle Membrane (VAM) ultrasonic scanning head consisting of transmitting and receiving transducers is used to excite guided waves to detect corrosion, MIC and foreign objects in containers such as pipes. The scanning head includes transducers mounted on a fluid filled housing sealed by a membrane. This system couples ultrasound from the transducer to the pipe wall. The transducer housings are mounted in a rigid frame that holds the ultrasonic transducer housings a specific distance apart and allows each transducer housing to rotate about a pivot point. The membrane deforms to the pipe diameter to be scanned. The scanning head is adjusted to perform inspections in various container diameters and thicknesses. Once adjusted for diameter and thickness, the operator places the scanning head on the pipe and couples the rubber membranes to the pipe with a small amount of couplant. Separate electronics excite the transmitting transducer, and then condition the signal from the receiving transducer for analysis.
    • 使用由发射和接收换能器组成的手持式可变角膜(VAM)超声波扫描头来激发导波,以检测诸如管道的容器中的腐蚀,MIC和异物。 扫描头包括安装在由膜密封的流体填充的壳体上的换能器。 该系统将超声波从传感器耦合到管壁。 传感器壳体安装在刚性框架中,该框架将超声换能器壳体保持特定距离,并允许每个换能器壳体围绕枢轴点旋转。 膜变形到要扫描的管直径。 调整扫描头以进行各种容器直径和厚度的检查。 一旦调节直径和厚度,操作员将扫描头放置在管道上,并将橡胶膜与少量的耦合剂连接到管道上。 单独的电子元件激发发射传感器,然后调节来自接收换能器的信号进行分析。
    • 6. 发明申请
    • CABLE CLAMP ASSEMBLY AND METHOD FOR A FLAT FIBER OPTIC CABLE
    • 用于平板光纤电缆的电缆夹具组件和方法
    • US20130223808A1
    • 2013-08-29
    • US13407257
    • 2012-02-28
    • Gerry J. HarveyWilliam J. MillerBenjamin G. Whitener
    • Gerry J. HarveyWilliam J. MillerBenjamin G. Whitener
    • G02B6/44G02B6/46
    • G02B6/4471G02B6/4403G02B6/483
    • A cable clamp assembly and a cable clamp method for a flat fiber optic cable are disclosed. The assembly includes a wedge-shaped outer shell with a bottom wall having a friction inner surface with a longitudinal central recess formed therein. The flat fiber optic cable resides within the interior of the outer shell and is supported by the friction inner surface. A shim having two parallel rows of protrusions fits within the interior of the outer shell with the protrusions being in contact with the fiber optic cable. The assembly includes a wedge insert having two outer ridges that substantially align with the two rows of protrusions. When the wedge insert matingly engages the outer shell, the outer ridges press down on the protrusions, which in turn press down on the fiber optic cable mainly at the locations where longitudinal dielectric strength members reside.
    • 公开了一种用于扁平光缆的电缆夹组件和电缆夹紧方法。 组件包括楔形外壳,其具有底壁,所述底壁具有形成在其中的纵向中心凹部的摩擦内表面。 扁平光缆位于外壳的内部并由摩擦内表面支承。 具有两个平行的突起的垫片装配在外壳的内部中,突起与光纤电缆接触。 组件包括楔形插入物,其具有两个与两排突起物基本对准的外脊。 当楔形插入件配合地接合外壳时,外脊下压到突起上,突起又主要在纵向介电强度构件所在的位置压在光纤电缆上。