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首页> 外文期刊>Tribology Transactions >Feasibility study of hydrodynamic lubrication in supporting of rotating elements of galvanizing hardware submerged in molten zinc
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Feasibility study of hydrodynamic lubrication in supporting of rotating elements of galvanizing hardware submerged in molten zinc

机译:流体动力润滑支撑浸入熔融锌中的镀锌硬件旋转元件的可行性研究

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摘要

Severe wear of sink roll supports in continuous galvanizing lines has been a cause for concern for some years. This wear which affects the quality of the coating and downtime costs, is a result of a corrosive environment and highly loaded surface contact. This paper presents results from a feasibility study to use journal bearings lubricated with molten zinc to separate the interacting surfaces. Analytical and experimental investigations were aimed at identifying the load capacity of sink roll bearings when operating in the hydrodynamic regime, as well as the effect of the molten zinc bath environment on bearing performance. This environment includes chemical zinc attack and the presence of intermetallic particles in the bath. The study indicates that it is difficult to achieve hydrodynamic bearing operation for the entire range of operating conditions. It also shows that, when selecting materials for journal bearings support to the rotating elements submerged in molten zinc baths, possible contact of the bearing surfaces as well as chemical inertness and resistance to the hard intermetallic particles do need to be addressed.
机译:连续镀锌生产线中沉辊支撑的严重磨损已引起人们的关注。这种磨损会影响涂层质量和停机成本,这是腐蚀环境和高负荷表面接触的结果。本文介绍了一项可行性研究的结果,该研究使用了用熔融锌润滑的轴颈轴承来分离相互作用的表面。分析和实验研究的目的是确定沉头滚子轴承在流体力学状态下工作时的负载能力以及熔融锌浴环境对轴承性能的影响。这种环境包括化学锌侵蚀和镀液中金属间颗粒的存在。研究表明,在整个工况范围内都很难实现流体动力轴承的运行。它还表明,在选择用于支撑浸没在熔融锌熔池中的旋转元件的轴颈轴承材料时,必须解决轴承表面可能的接触以及化学惰性和对硬金属间颗粒的抵抗力。

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