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Polymer additives as mist suppressants in metalworking fluids part IIa: preliminary laboratory and plant studies - water-soluble fluids

机译:聚合物添加剂作为金属加工液中的雾抑制剂部分IIA:初步实验室和植物研究 - 水溶性流体

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Mist generated from water-soluble fluids used in machining operations represents a potentially significant contribution to worker exposure to airborne particles. Part I of this study, discussed polymer additives as mist suppressants for straight mineral oil metalworking fluids (MWF), which have been successfully employed at several locations. This paper focuses on recent developments in polymer mist suppressants for water-based MWF, particularly in the production environment. The polymer developed and tested in this study functions on a similar basis to that for straight oil anti-mist additives. This water soluble polymer suppresses the formation of small mist droplets and results in a distribution of larger droplet sizes. These larger droplets tend to settle out near the point of machining, resulting in a significant decrease in the total airborne mist concentration. This new polymer additive has the added property of reassociating with itself after shear stresses break it apart, so that the anti-mist effect of the polymer is maintained for extended periods in the recirculated cutting fluid systems. Preliminary laboratory and plant pilot testing shows 40-60% reduction in oil mist levels using 1000-1250 ppm of the additive, with the effect lasting at least 2 weeks, the longest test duration to date. To determine concentration of the polymer is a treated coolant system, a viscosity comparison technique has been identified which can readily be performed in the plant environment. In addition, no adverse impact on wastewater treatability, part quality, nor seals have been observed.
机译:由加工操作中使用的水溶性流体产生的雾是对工人暴露于空气颗粒的潜在显着贡献。本研究的第一部分,将聚合物添加剂讨论为直矿物油金属加工液(MWF)的雾气抑制剂,其在几个位置成功使用。本文重点介绍了水基MWF的聚合物雾抑制剂的最新发展,特别是在生产环境中。在本研究中开发和测试的聚合物在类似的基础上以直接油抗雾添加剂的作用。该水溶性聚合物抑制了小雾液滴的形成,并导致较大液滴尺寸的分布。这些较大的液滴倾向于在加工点附近沉降,导致总空气雾浓度的显着降低。该新的聚合物添加剂具有在剪切应力分开后重新分配的添加性能,从而在再循环切削液系统中长时间保持聚合物的抗雾效应。初步实验室和植物试验检测显示使用1000-1250ppm的油雾水平降低40-60%,效果持续至少2周,测试持续时间最长。为了确定聚合物的浓度是处理过的冷却剂系统,已经鉴定了粘度比较技术,其可以容易地在植物环境中进行。此外,已经观察到没有对废水处理,部分质量和密封的不利影响。

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