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The role of particle size and solids concentration on the transition from moderate to severe slurry wear regimes of ASTM A743 grade CA6NM stainless steel

机译:粒度和固体浓度对ASTM A743级Ca6nm不锈钢中度至重度浆料磨损方案的转变的作用

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摘要

The role of particle size and solids concentration on the slurry erosion of a stainless steel was studied with base in laboratory tests and data from field inspections of two Pelton turbines. The slurry for the laboratory tests was composed of water and SiO2 sand particles with mean diameter ranging from 50 to 655 mu m and solids concentrations up to 1200 mg l(-1). The wear rate increased linearly with solids concentration within the range studied, while the sensitivity of the surface to changes in erosive particle size decreased with the particle size. A critical particle size range for the moderate-to-severe wear regime transition was found, which is practically unaffected by the variety of solids concentrations considered in this study.
机译:研究了粒度和固体浓度对不锈钢浆料腐蚀的作用,并在实验室测试和来自两个佩尔顿涡轮机的田间检查的数据中进行了基础。 实验室测试的浆料由水和SiO2砂颗粒组成,平均直径为50至655μm,固体浓度高达1200mg L(-1)。 磨损率随着所研究范围内的固体浓度而线性增加,而表面的敏感性与腐蚀粒度的变化随粒径而降低。 发现了中度至严重磨损制度转变的临界粒度范围,其实际上不受本研究中考虑的各种固体浓度的影响。

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