THE INFLUENCE OF COOLING MIXTURES ON THE ROUGHNESS OF HOLES WHEN DRILLING WORKPIECES MADE OF LOW-ALLOY STEELS

Stepan Mihaylenko, A. Kisel’
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Abstract

The rational choice of cooling mixtures (coolant) is a complex technological task. Currently, world industries produce a wide range of such substances. At the same time, manufacturers' recommendations on their use are of a general nature, which makes it difficult to choose them for specific cases. One of the criteria for choosing a coolant is the roughness of the formed surface, especially during constrained cutting, in particular during drilling. Therefore, studies of the influence of cooling mixture on the roughness of the hole surface during drilling are relevant. The task to which the paper is devoted is to find out the dependence of the roughness of the hole surface obtained when drilling workpieces of low-alloy steel on the properties of the coolant used. To achieve this aim, experimental studies were conducted. As a result of laboratory tests of coolants, their lubricating properties and density were determined. The evaluation of the obtained roughness dependencies during drilling on the properties of coolant allowed us to define a formula for determining the predicted surface quality. It is found out that the determinant property of the coolant is its lubricating action, and the parameter for its evaluation is friction factor. The calculation formula makes it possible to predict the roughness of the hole surface when drilling low-alloy steels with an error of 11.8%. The method of coolants testing and determination of their effectiveness by the roughness parameter Raavg is presented.
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低合金钢工件钻孔时冷却混合物对孔粗糙度的影响
合理选择冷却混合物(冷却剂)是一项复杂的技术任务。目前,世界工业生产了各种各样的这类物质。同时,制造商对其使用的建议是一般性的,这使得很难针对具体情况选择它们。选择冷却剂的标准之一是成形表面的粗糙度,特别是在受限切削过程中,特别是在钻孔过程中。因此,研究冷却混合物对钻孔过程中孔表面粗糙度的影响是有意义的。本文的任务是找出低合金钢工件钻孔时所获得的孔表面粗糙度与所用冷却剂性能的关系。为了达到这一目的,进行了实验研究。通过对冷却剂的实验室测试,确定了冷却剂的润滑性能和密度。通过评估钻井过程中获得的粗糙度与冷却剂特性的相关性,我们可以定义一个公式来确定预测的表面质量。研究发现,冷却剂的决定特性是其润滑作用,其评价参数是摩擦系数。该计算公式可用于低合金钢钻孔时孔表面粗糙度的预测,误差为11.8%。提出了用粗糙度参数Raavg测定冷却剂有效性的方法。
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