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An Experimental Study of Dust Generation During Dry Drilling of Pre-Cooled and Pre-Heated Workpiece Materials

机译:预冷和预热工件材料干钻过程中产生粉尘的实验研究

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摘要

The generation of fine dust during dry machining is a serious problem both for the environment and for workers. During machining, the fine dust particles generated remain suspended in the air for long periods, during they can be inhaled by workers. The quantity of dust generated is influenced by factors such as material type and heat treatment condition, temperature, and the associated chip formation mode. The aim of this work is to discover how these parameters influence dust generation during dry machining, which could lead to the control of dust production in the future. The materials tested are the wrought 6061 and foundry A356 aluminum alloys and 70-30 brass. It is found that pre-cool-ing a workpiece material leads to changes in chip formation, in the reduction of cutting forces, and hence in a reduction in fine dust generation by at least 70%, depending on the materials and cutting conditions used. Also, preheating the workpiece increases chip ductility and dust production levels.
机译:干式加工过程中细粉尘的产生对环境和工人都是一个严重的问题。在加工过程中,产生的细粉尘颗粒长时间保持悬浮在空气中,在此期间,工人可以将其吸入。产生的粉尘量受诸如材料类型和热处理条件,温度以及相关切屑形成模式等因素影响。这项工作的目的是发现这些参数如何影响干式加工过程中的粉尘产生,从而可能在将来控制粉尘的产生。测试的材料是锻造的6061和铸造A356铝合金以及70-30黄铜。已经发现,根据所使用的材料和切削条件,对工件材料进行预冷却会导致切屑形成的变化,切削力的降低,从而减少至少70%的细粉尘产生。同样,对工件进行预热可提高切屑延展性和粉尘产生水平。

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