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Application of an imaging system to study machining mist formation via an atomization mechanism

机译:成像系统在雾化机构研究加工雾化的应用

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Airborne inhalable particulate in the workplace represents a significant health hazard. One of the primary sources of this particulate is mist produced through the application of cutting fluids in machining operations. One of the important mechanisms for the production of cutting fluid mist is the atomization mechanism. In this paper, atomization is studied by applying cutting fluid to a rotating workpiece such as found in turning. An imaging system is presented for the study of the atomization mechanism. The imaging system extends the size measurement range typically achievable with aerosol sampling devices to consider larger particles. Experimental observations from the imaging system reveal that workpiece rotation speed and cutting fluid flow rate have significant effects on the size of the droplets produced by the atomization mechanism. With respect to atomization, the technical literature describes models for fluid interaction with the rotating workpiece and droplet formation via drop and ligament formation modes. Experimental measurements are compared with model predictions. For a range of rotation speeds and fluid application flow rates, the experimental data is seen to compare favorably with the model predictions.
机译:工作场所中的空气中可吸入颗粒是重大的健康危害。该颗粒的主要来源是通过在加工操作中施加切削液而产生的雾。切削液雾产生的重要机制之一是雾化机制。在本文中,通过将切割流体施加到旋转工件,例如在转弯时进行雾化。提出了一种成像系统,用于研究雾化机制。成像系统延伸尺寸测量范围通常可以通过气溶胶采样装置实现,以考虑较大的颗粒。成像系统的实验观察显示,工件旋转速度和切削流体流量对由雾化机构产生的液滴的尺寸具有显着影响。关于雾化,技术文献描述了通过下降和韧带形成模式与旋转工件和液滴形成流体相互作用的模型。将实验测量与模型预测进行比较。对于一系列旋转速度和流体应用流速,可以看到实验数据与模型预测有利地比较。

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