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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Influence of addition of microsized alumina particles on material damage induced by vibratory cavitation erosion
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Influence of addition of microsized alumina particles on material damage induced by vibratory cavitation erosion

机译:微氧氧化铝颗粒对振动空化侵蚀引起的材料损伤的影响

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摘要

It is well-recognized that the presence of solid particles in cavitating liquids can modify the hydrodynamic conditions that operate in hydraulic machinery, increasing surface damage and mass removal of the affected materials. This effect is commonly attributed to the combined contribution of both cavitation and solid particle erosion. In this work, alpha-brass and an aluminum alloy exposed to ultrasound-induced cavitating media containing different concentrations of microsized alumina particles were studied. In order to characterize the response of the material under cavitation attack, mass loss rate, surface hardening and microstructural morphologies in the incubation period were examined. The influence of the addition of microsized particles on mechanical degradation induced by cavitation is discussed in this paper in connection with the effect of direct particle impingements and alterations of cavitation conditions.
机译:公认的是,空化液体中固体颗粒的存在可以改变在液压机械中运行的流体动力学条件,增加表面损伤和受影响材料的肿块。 这种效果通常归因于空化和固体颗粒侵蚀的组合贡献。 在这项工作中,研究了α-黄铜和暴露于含有不同浓度的微色氧化铝颗粒的超声诱导的空化培养基的铝合金。 为了表征物料在空化攻击下的响应,检查了潜伏期内的质量损失,表面硬化和微观结构形态。 本文讨论了与空化诱导的气相诱导的机械降解对通过直接颗粒萌生和空化条件的改变的影响的影响。

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