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Optimization of Testing Method in Comparison with the Coated Composites and Metals by Vibratory Cavitation Test

机译:振动汽蚀试验与涂层复合材料和金属比较试验方法的优化

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Cavitation-erosion is a hydrodynamic phenomenon that results in the formation and collapse of vapor bubbles in a liquid. Cavitation damage is encountered in a wide variety of fluid handling machinery and over a broad range of liquid pressures and temperatures. In this study, cavitation damage was investigated by using the piezoelectric vibrator with 20 kHz, 50 μm to cavity generation apparatus. At the first cavitation test, coated composite material specimens appear to generating the low bubbles due to damping vibration. This study is mainly compared with cavitation test (ASTM G 32) and modified cavitation test. And it is also concerned with phenomenon of cavitation-erosion on the several materials. In order to compare the both test methods, cavitaion weight loss and rate of the several materials in fresh-water and sea-water measured and observed with digital camera.
机译:空蚀是一种流体动力学现象,会导致液体中气泡的形成和破裂。在各种各样的流体处理机械中以及在很大范围的液体压力和温度下都会遇到气蚀损坏。在这项研究中,通过使用20 kHz,50μm的压电振动器对空穴产生装置研究了空穴的破坏。在第一次气蚀测试中,由于阻尼振动,涂覆的复合材料试样似乎产生低气泡。该研究主要与气蚀试验(ASTM G 32)和改进的气蚀试验进行了比较。并且还涉及在几种材料上的气蚀现象。为了比较两种测试方法,用数码相机测量并观察了淡水和海水中几种材料的空化重量损失和比率。

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