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Leakage Monitoring in Static Sealing Interface Based on Three Dimensional Surface Topography Indicator

机译:基于三维表面形貌指示灯的静电密封界面泄漏监测

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摘要

Leakage directly affects the functional behavior of a product in engineering practice, and surface topography is one of the main factors in static seal to prevent leakage. This paper aims at monitoring the leakage in static sealing interface, using three-dimensional (3D) surface topography as an indicator. The 3D surface is measured by a high definition metrology (HDM) instrument that can generate millions of data points representing the entire surface. The monitoring approach proposes a series of novel surface leakage parameters including virtual gasket, contact area percentage (CAP), void volume (VV), and relative void volume (SWvoid) as indicators. An individual control chart is adopted to monitor the leakage surface of the successive machining process. Meantime, based on the Persson contact mechanics and percolation theory, the threshold of leakage parameter is found using finite element modeling (FEM). Experimental results indicate that the proposed monitoring method is valid to precontrol the machining process and prevent leakage occurring.
机译:泄漏直接影响工程实践中产品的功能行为,表面形貌是静态密封件的主要因素之一,以防止泄漏。本文旨在使用三维(3D)表面形貌作为指示器监测静态密封界面中的泄漏。 3D表面通过高清晰度计量(HDM)仪器来测量,该仪器可以生成表示整个表面的数百万个数据点。监测方法提出了一系列新型表面泄漏参数,包括虚拟垫圈,接触面积百分比(盖子),空隙量(VV)和相对空隙量(SWVOID)作为指标。采用单个控制图来监测连续加工过程的泄漏表面。同时,基于Persson联系机械和渗滤理论,使用有限元建模(FEM)找到泄漏参数的阈值。实验结果表明,所提出的监测方法有效地预防加工过程并防止发生泄漏。

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