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    • 2. 发明授权
    • System and method using portable wall engaging ferromagnetic particle
impregnated target medium for electromagnetically measuring distance
between oposing walls of a structure
    • 使用便携式墙壁接合铁磁颗粒浸渍的目标介质的系统和方法用于电磁测量结构的施加壁之间的距离
    • US5373235A
    • 1994-12-13
    • US38214
    • 1993-03-29
    • William G. Clark, Jr.Francis X. GradichLee W. BurtnerMichael J. Metala
    • William G. Clark, Jr.Francis X. GradichLee W. BurtnerMichael J. Metala
    • G01B7/00G01B7/14G01V3/10G01V15/00G01B7/10
    • G01B7/14G01V15/00
    • Both a system and a method are provided which allows an eddy current probe to accurately determine both the proximity and dimensions of non-conductive structures which are normally invisible to such probes. The system comprises a portable target medium that is movable into a known position with respect to the non-conductive structure, and that includes a conductive material that couples strongly with a fluctuating magnetic field, and a movable eddy current probe that emanates a fluctuating magnetic field and which generates a signal indicative of the magnitude of the interaction between the field and the portable target medium from which the distance between the two may be computed. The system may be used to determine the proximity of non-conductive structures such as plastic pipes that have been buried under ground, as well as the dimensions of such non-conductive structures. When the system is applied to measure the dimensions of such a structure, the portable target medium assumes a form that is flexibly conformable to one of the walls of the structure and which is placed in abutting relationship thereto. The eddy current probe is then scanned against an opposing wall of the structure, whereby the width of the structure may be computed by measuring the strength of the interaction between the probe and the medium. In addition to measuring the dimensions of non-conductive structures, the system may be used to measure the dimensions of non-magnetic structures when the target medium includes a strongly magnetic material.
    • 提供了一种系统和方法,其允许涡流探针精确地确定通常对这种探针不可见的非导电结构的接近度和尺寸。 该系统包括可移动到相对于非导电结构的已知位置的便携式目标介质,并且其包括强烈地与波动的磁场耦合的导电材料以及发出波动磁场的可移动涡流探针 并且其产生指示可以从其计算两者之间的距离的场和便携式目标介质之间的相互作用的大小的信号。 该系统可以用于确定非导电结构(例如埋在地下的塑料管)的接近度以及这种非导电结构的尺寸。 当该系统被应用于测量这种结构的尺寸时,便携式目标介质采用与该结构中的一个壁柔性地一致并且与其相邻置的形式。 然后将涡流探针扫过结构的相对壁,由此可以通过测量探针和介质之间的相互作用的强度来计算结构的宽度。 除了测量非导电结构的尺寸之外,当目标介质包括强磁性材料时,该系统可用于测量非磁性结构的尺寸。
    • 6. 发明授权
    • Apparatus and method for inspecting the profile of the inner wall of a
tube employing a wall follower and an eddy current probe
    • 用于检查使用壁跟随器和涡流探针的管的内壁的轮廓的装置和方法
    • US4876506A
    • 1989-10-24
    • US205768
    • 1988-06-13
    • Stephen D. BrownWarren R. JunkerFrancis X. Gradich
    • Stephen D. BrownWarren R. JunkerFrancis X. Gradich
    • G01B11/24G01B7/13G01B7/28
    • G01B7/281G01B7/13
    • Both an apparatus and method for accurately inspecting the profile of the inner wall of a conduit, such as a heat exchanger tube in a steam generator, is disclosed herein. The apparatus comprises a cylindrical probe body that is insertable within the tube, a probe assembly disposed within the probe body that includes an eddy current sensing coil and a copper plate which are movable with respect to one another, and a wall follower assembly including a stylus on one end and which is linked to the probe assembly on its other end for converting changes in the radius of the tube wall into changes in the distance between the eddy current sensing coil and the copper plate. A ferrite core is disposed within the sensing coil for focusing the electromagnetic flux into the copper plate. Additionally, the sensing coil is serially connected to a balancing coil in order to provide an accurate zero point for the sensing coil. In the preferred embodiment, the sensing coil is stationarily mounted within the probe body, while the copper plate is connected to the radially movable stylus assembly. The probe body and all of the components of the wall follower assembly including the springs which resiliently urge the stylus toward the tube wall are formed from nonconductive plastic materials so as to maximize the electromagnetic coupling between the eddy current sensing coil and the copper plate. The apparatus is capable of accurately detecting not only localized flaws within the inner tube wall, but also tube ovality and wall thinning which are typically caused by the deposition of sludge in the crevice regions of tubesheets and support plates of steam generators.
    • 本文公开了用于精确地检查导管(例如蒸汽发生器中的热交换器管)的内壁的轮廓的装置和方法。 该装置包括可插入管内的圆柱形探针主体,设置在探针主体内的探针组件,其包括可相对于彼此移动的涡流检测线圈和铜板,以及包括触针 并且其另一端连接到探针组件,用于将管壁的半径变化转换为涡流感测线圈与铜板之间的距离的变化。 在感测线圈内设有铁氧体磁芯,用于将电磁通量聚焦到铜板中。 此外,感测线圈串联连接到平衡线圈,以便为传感线圈提供精确的零点。 在优选实施例中,感测线圈固定地安装在探针主体内,而铜板连接到可径向移动的触笔组件。 探针体和包括将触针朝向管壁弹性推动的弹簧的壁随动体组件的所有部件由非导电塑料材料形成,以便使涡流感测线圈和铜板之间的电磁耦合最大化。 该装置能够精确地检测内管壁内的局部缺陷,而且能够精确地检测通常由蒸汽发生器的管板和支撑板的缝隙区域中的淤渣沉积引起的管椭圆度和壁变薄。