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Mist Generation from High-Speed Grinding with Straight Oils

机译:直油高速研磨产生的烟雾

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High-speed grinding with plated-CBN wheels generally requires the use of straight oils as the metal removal fluid to obtain the required performance. Unfortunately, the combination of straight oils and high speeds results in high mist generation. In this study, several grinding oils were tested for both performance and misting characteristics. Oils were chosen to cover a range of viscosities, additives, and oil types. Two fluids were also tested with antimisting polymers and showed significant decreases in mist after polymer addition. The distribution of the mist droplet size was also measured, which gives information about the mist generation mechanism; centrifugally produced aerosols are in the 1-10 μm range, while condensation aerosols are in the 0.1-1 μm range. Oil performance, as indicated by the power and force monitors, showed little difference between the oils. However, mist generation was highly variable across the eight tested oils. The generation of centrifugal aerosols was related to the viscosity and the surface tension of the fluid, while the generation of condensation aerosols was related to the Noack volatility and the flash point of the fluid. Higher fluid flows led to increased centrifugal aerosols and decreased condensation aerosols.
机译:使用镀CBN砂轮进行高速磨削通常需要使用直油​​作为金属去除液,以获得所需的性能。不幸的是,直接油和高速的结合导致高雾气产生。在这项研究中,测试了几种研磨油的性能和雾化特性。选择的油应覆盖各种粘度,添加剂和油类型。还用防雾聚合物测试了两种液体,并显示在添加聚合物后雾气明显减少。还测量了雾滴大小的分布,从而给出了有关雾产生机理的信息。离心产生的气溶胶的范围是1-10μm,而凝结的气溶胶的范围是0.1-1μm。如功率和力监视器所示,机油性能之间几乎没有差异。但是,在八种测试油中,雾的产生变化很大。离心气溶胶的产生与流体的粘度和表面张力有关,而凝结气溶胶的产生与流体的Noack挥发性和闪点有关。较高的流体流量导致离心气雾剂增加,凝结气雾剂减少。

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