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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Effect of erosion angle and Fe 2B orientation on cavitation erosion and interfaces of Fe-B alloy in high-velocity flowing zinc
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Effect of erosion angle and Fe 2B orientation on cavitation erosion and interfaces of Fe-B alloy in high-velocity flowing zinc

机译:侵蚀角度和Fe 2 B取向对高速流动锌的电气腐蚀和Fe-B合金界面的方向

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摘要

The effects of erosion angle and Fe2B orientation on cavitation erosion and interface structures of a directionally solidified (DS) Fe-B alloy in flowing liquid zinc were investigated to clarify erosion mechanism of liquid metal. The results indicate that the cavitation erosion rate of DS Fe-B alloy with Fe2B [001] orientation vertical to interface exhibits better erosion cavitation resistance. Erosion angle can strongly affect erosion performance that depends not only on interfacial orientation structure but also on local microturbulence. Erosion morphologies manifest that an obvious cavitation erosion occurs in strong flowing zinc disturbed and agitated zone, which results in severe cavitation pits and slip deformation of products, thus stimulating subsequent localized corrosion and pit-aggregation cracks. Cavitation erosion craters coupled with performance variations confirm that microturbulence-assisted fluid eddies and backflow are responsible for the cavitation pits. The combined effects of flow pattern and interface orientation significantly govern the epitaxial grown ζ removal/accumulation behaviors and multiphase pinning film adhesion. A model of hydraulic liquid-hammer action by cavitation-induced microjet and interface orientation interaction is proposed and discussed to account for cavitation pits and slip cracking, which reveals underlying erosion mechanism and material design of DS Fe-B alloy in flowing liquid zinc.
机译:研究了侵蚀角度和Fe2b取向对流动液体锌中定向固化(DS)Fe-B合金的空化腐蚀和界面结构的影响,以阐明液态金属的腐蚀机理。结果表明,DS Fe-B合金与Fe2b的空化腐蚀速率垂直于界面的垂直于界面表现出更好的腐蚀抗蚀性。侵蚀角度会强烈影响侵蚀性能,这不仅取决于界面取向结构,还取决于局部微矛盾。侵蚀形态表现出明显的空化腐蚀发生在强大的流动性锌扰和搅拌区中,这导致产品的严重空化坑和滑动变形,从而刺激随后的局部腐蚀和坑聚集裂缝。环形侵蚀陨石坑与性能变化相结合,确认微矛盾辅助的流体漩涡和回流负责浮雕坑。流动模式和界面取向的组合效果显着地控制外延生长的ζ除去/累积行为和多相钉粘膜粘附。提出了一种空化诱导的微射精和界面取向相互作用液压液体锤作用模型,并讨论了用于空化坑和滑动裂纹,揭示流动液体锌中DS Fe-B合金的潜水机理和材料设计。

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