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Self-growing Motion Mechanism for Inspection and Maintenance

机译:用于检测和维护的自增长运动机制

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Purpose An inspection and maintenance system is essential to obtain a proper and stable construction. However, internal inspection and maintenance of the inner parts of pipeline are difficult to conduct. Force effects should be eliminated to accurately inspect the state of a pipeline. This paper suggests a self-growing mechanism (SGM) which focuses on a minimization of force effects compared to previous progress maintenance methods. Method SGM mimicks the motion of amoeba, a protozoan, as a growing unit. It is shaped like a reversed hose. The SGM represents gelation and isolation of the amoeba; the inside skin is fixed outside and fluid is injected. In this way contact force is minimized so as to be negligible. By passing through injected fluid, the SGM acts as a buffer. Nevertheless, there is a limit to the use of this instrument for maintenance due to the drift of the upper section of the growing unit. To overcome this and expand the field application, the SGM was equipped with auxiliary equipment called install-base, this is composed of three rings. Bundling several units was also considered. This can give SGM direction by differential fluid injection to each unit, and facilitates progress through the curved paths. Results & Discussion SGM allows only contact force on the surface, similar to amoeba movement. This can be described as the contact which occurs when a rolled surface unfolds. SGM can help in the maintenance process of highly hazardous or unreachable spots, such as nuclear power plants, pipelines, and so on. It is best suited for highly sensitive environments. SGM is also promising in combination with inspection and maintenance of constructions with field endoscopy; it can provide medical checkups or remedies innovatively. Moreover, it is expected that SGM, unlike previous methods, can more accurately carry out maintenance of gradually downsized applications.
机译:目的,检验和维护系统对于获得适当稳定的结构至关重要。然而,难以进行管道内部的内部检查和维护。应消除力量以准确检查管道的状态。本文建议与先前的进度维护方法相比,重点介绍了迫使力量最小化的自我生长机制(SGM)。方法SGM模仿Amoeba,原生动物,作为生长单位的运动。它的形状像反向软管一样。 SGM表示AmoEba的凝胶化和隔离;内部皮肤是固定的外部,并注入流体。在这种方式,接触力被最小化以便可忽略不计。通过注入的流体,SGM充当缓冲液。然而,由于生长单元的上部的漂移,使用该仪器的使用限制。为了克服这一点并展开现场应用程序,SGM配备了名为Install-Base的辅助设备,这由三个环组成。捆绑了几个单位也被考虑。这可以通过对每个单元的差分流体喷射给出SGM方向,并且有助于通过弯曲路径进行进展。结果与讨论SGM只允许表面接触力,类似于Amoeba运动。这可以描述为滚动的表面展开时发生的触点。 SGM可以帮助维护过程的高度危险或无法到达斑点,例如核电站,管道等。它最适合高度敏感的环境。 SGM还与现场内窥镜检查的建筑检查和维护相结合;它可以创新地提供医学检查或补救措施。此外,预计与以前的方法不同,SGM可以更准确地执行逐步缩小的应用的维护。

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