Investigation of the Process of Deep Drilling of Stainless Steel

E. Yatsun, O. Zubkova, S. N. Mogilev
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Abstract

Purpose of research. Experimental assessment of the effect of deep drilling modes for high-alloy steel on the components of cutting forces. Making holes in a solid material with a hole depth equal to or greater than ten hole diameters refers to deep drilling operations. For drilling, special tools are used – drills for deep drilling - ejector, cannon, gun drills. Universal or special equipment is applied, the tooling includes travelling or fixed rests, guide bushes. To achieve this goal, it is necessary to choose equipment: type of tool for deep drilling, type of setting; create a model of the forces acting on the cutting part of the tool during deep drilling; evaluate the degree of influence of processing modes on cutting forces.Methods. The research is based on the cutting theory provisions, mechanical engineering technology, experiment planning and regression analysis.Results. Based on the provisions of mechanical engineering technology, the setting up for deep drilling with a rotating workpiece and a non-rotating drill, which is imparted only by the axial feed, was developed. A cutting tool for performing a deep drilling operation is defined – a gun drill. A pattern was created for such a processing scheme and experimental cutting forces were calculated. According to the results of the calculations, it is determined that the greatest influence on the components of the cutting force in a given range of cutting modes is exerted by the axial feed rate of the tool.Conclusion. The cutting forces that occur during deep drilling reach significant values. The polynomial equations obtained as a result of the study allow us to assess the degree of influence of processing modes on cutting forces, calculate cutting forces for further calculation for the sag of the stem of a gun drill.
不锈钢深孔加工工艺研究
研究目的。高合金钢深钻方式对切削力组成影响的实验评估。在固体材料上钻孔深度等于或大于10个孔径的是深钻孔作业。对于钻孔,使用专用工具-深钻钻-喷射器,大炮,枪钻。通用或专用设备的应用,工具包括移动或固定支架,导套。要实现这一目标,必须选择设备:深钻工具类型、坐封类型;创建深钻过程中作用于刀具切削部分的力的模型;评价加工方式对切削力的影响程度。本研究是基于切削理论规定、机械工程技术、实验规划和回归分析结果。根据机械工程技术的规定,研制了旋转工件和非旋转钻头仅靠轴向进给进行深钻的机构。定义了一种用于深钻作业的切削工具——枪钻。建立了该加工方案的模型,并计算了实验切削力。根据计算结果,确定了在给定的切削模式范围内,刀具的轴向进给速度对切削力组成的影响最大。深钻过程中产生的切削力达到显著值。研究结果得到的多项式方程使我们能够评估加工方式对切削力的影响程度,计算切削力,以便进一步计算枪钻杆的凹陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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