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Particle velocity and size effects in laboratory slurry erosion measurements OR... do you know what your particles are doing?

机译:实验室泥浆侵蚀测量中的颗粒速度和尺寸影响或...您知道颗粒在做什么吗?

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摘要

The major factors which determine the erodent particle impact wear process are described. Thus, particle impact velocity, impact angle and impact frequency are dictated by the slurry flow regime about the specimen. The influence of these factors on erosion rates (or on erosion-corrosion rates) can only be understood in terms of a quantitative model for slurry flow and particle impact and an assumption on the nature of the rate-controlling factor governing material loss. For erosion in the absence of corrosion, this latter has been taken to be the rate of dissipation of particle impact energy on the specimen surface. It is emphasised that material loss must be measured by changes in surface profile rather than mass loss, and that the best specimen form for this analysis is a cylinder. The effect of change of particle size on erosion rates is discussed. It is suggested that the application of these experimental and analytical techniques should provide a tool for the quantitative analysis of wastage in conditions of erosion-corrosion.
机译:描述了决定腐蚀颗粒冲击磨损过程的主要因素。因此,颗粒的撞击速度,撞击角度和撞击频率由样品周围的浆液流态决定。这些因素对侵蚀速率(或对侵蚀-腐蚀速率)的影响只能通过泥浆流和颗粒影响的定量模型以及控制材料损失的速率控制因子的性质的假设来理解。对于没有腐蚀的腐蚀,后者被认为是颗粒冲击能在样品表面上的耗散率。要强调的是,材料损失必须通过表面轮廓的变化而不是质量损失来衡量,并且这种分析的最佳样品形式是圆柱体。讨论了粒径变化对腐蚀速率的影响。建议这些实验和分析技术的应用应为在腐蚀-腐蚀条件下的浪费进行定量分析提供一种工具。

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