高锰钢车削三维切削刀具的设计

T. Kitagawa, A. Kubo, K. Maekawa
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引用次数: 0

摘要

提出了一种用于车削加工的切断或限制接触刀具,并成功地用于提高18%Mn-18%Cr锰钢(HB=241)的可加工性。假设限制长度与切屑流动方向上的实际进给量成正比,继Usui等人之后,可以用能量法唯一地确定前刀面上的切屑接触长度和切屑流动方向。最佳限制长度为实际进给的1.25倍,略宽于二维切削刀具的限制长度。预测的切削力、切削温度和刀具磨损与实验结果吻合较好。接触长度的限制减少了剪切面和刀屑界面上的切削力和热的产生,导致刀具温度的降低。因此,与使用自然接触工具干式车削这种高硬度金属相比,P20级硬质合金刀具前刀面上的凹坑磨损减少了10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a Three-Dimensional Cut-away Tool for the Turning of High Manganese Steels
A cut-away or restricted contact tool for turning operations has been proposed and successfully employed to improve the machinability of an 18%Mn-18%Cr manganese steel (HB=241). Both chip contact length on the rake face and chip flow direction can be uniquely determined by the energy method after Usui and others, when the restricted length is assumed to be proportional to the real feed in the direction of chip flow. The optimum restricted length is found to be 1.25 times as large as the real feed, which is slightly wider than that of the two-dimensional cut-away tool. The predicted cutting force, cutting temperature and tool wear are all in good agreement with experiment. The restriction of the contact length reduces cutting force and heat generation on the shear plane and at the tool-chip interface, leading to a decrease in tool temperature. As a result, crater wear on the rake face of a P20 grade carbide tool is lessened by 10 % compared with the dry turning of such a high-hardness metal using a natural contact tool.
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