在取样和干燥过程中由于蒸发造成的直接金属加工液样品损失。

Dong-Uk Park, Shin-Bum Kim, Chung-Sik Yoon
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引用次数: 0

摘要

使用直金属加工液(MWFs)来评估过滤器中MWF质量损失的可能性。采用两种方法研究了MWF质量在过滤介质上的稳定性。第一种方法是将已知数量的MWF添加到聚氯乙烯(PVC)过滤器上,将过滤器储存在硅胶干燥剂上,并每隔1、2和3天对过滤器进行重复的重量测量。第二种实验方法是在实验室内产生MWF气溶胶雾,并在PVC过滤器上收集。额外的清洁空气通过一组过滤器(范围0.02-0.48 m(3))吸入,然后在称重之前将其储存在硅胶上。在未暴露于气流的过滤器以及吸入后的过滤器中发现了干燥造成的损失。加钉过滤器的损失(平均范围为2.6-15.2%)高于收集过滤器(范围为0.7-8.1%)。PVC过滤器收集的MWF气溶胶质量随着通过过滤器的洁净空气体积的增加而减少。在多元回归模型中,为了预测因干燥而导致的收集的MWF损失,装载质量、新鲜MWF和空气通过时间10 min是显著的预测因子(p=。0001年,R(2) = .374)。特别是,只有10 min的空气通道显著高于参考空气通道(2.13%)(p= 0.0054)。研究人员得出结论,聚氯乙烯过滤器上收集的MWF气溶胶可能在典型的运输、储存和样品过滤器干燥条件下以及气流通过过滤器时蒸发损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Loss of straight metalworking fluid samples from evaporation during sampling and desiccation.

Straight metalworking fluids (MWFs) were used to evaluate the potential for the loss of MWF mass from filters. Two methods were used to study the stability of MWF mass on filter media. The first was to spike known amounts of MWF onto polyvinyl chloride (PVC) filters, store the filters over silica gel desiccant, and take repeated gravimetric measurements of the filters at intervals of 1, 2, and 3 days. An MWF aerosol mist was generated in a test chamber and collected on PVC filters for the second experimental method. Additional clean air was drawn through a subset of filters (range 0.02-0.48 m(3)), which were then stored over silica gel prior to weighing. Losses due to desiccation were found in filters that had not been exposed to airflow, as well as for filters after aspiration. The losses occurring in spiked filters (range of mean 2.6-15.2%) were higher than those in collected filters (range 0.7-8.1%). The MWF aerosol mass collected on PVC filters decreased with the increasing volume of clean air passing through the filter. In a multiple regression model, to predict the loss of collected MWF due to desiccation, loading mass, fresh MWF, and air passing time of 10 min were significant predictors (p=.0001, R(2)=.374). In particular, only air passage of 10 min was significantly higher (2.13%) than the reference air passage (p=.0054). The investigators concluded that MWF aerosol collected on PVC filters may be lost to evaporation under conditions typical of shipment, storage, and desiccation of sample filters, and with airflow through the filter.

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