退火淬火后AISI H13工具钢铣削引起的尺寸和几何偏差

J. Luiz, S. Ribeiro, Steve B. Diniz, J. Rubio, A. Abrão
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引用次数: 8

摘要

本文的主要目标是研究刀具等级、切削速度和进给速度对在退火和硬化条件下铣削AISI H13热作模锻钢后获得的尺寸(长度、直径和半径)和几何(平行度和角度)偏差的影响,使用三种可转位的刀片等级:两种涂层碳化钨刀具和一种金属陶瓷刀具。结果表明,对较软材料进行上铣削时,其外部特征的尺寸偏差较小。刀具等级似乎并没有显著影响外部尺寸误差。对淬硬钢进行上铣削时,其内部特征的尺寸偏差较小。金属陶瓷刀具在铣削退火钢时具有更严格的公差,而pvd涂层碳化钨刀具在加工硬化钢时具有最好的结果。平行度分析结果表明,使用pvd涂层硬质合金刀具铣削时可获得更严格的公差。最后,用金属陶瓷刀具下铣削退火材料时,角偏差较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dimensional and Geometric Deviations Induced by Milling of Annealed and Hardened AISI H13 Tool Steel
The principal goal of this paper was to investigate the influence of tool grade, cutting speed and feed rate on the dimensional (length, diameter and radius) and geometric (parallelism and angularity) deviations obtained after milling AISI H13 hot work die steel in both annealed and hardened conditions using three indexable insert grades: two coated tungsten carbides tools and one cermet tool. The results indicated that lower dimensional deviations were obtained for the external features when up-milling the softer material. Tool grade did not seem to drastically affect external dimensional errors. The dimensional deviations for the internal features were lower when up-milling the hardened steel. The cermet tool was re- sponsible for tighter tolerances when milling the annealed steel, whereas the PVD-coated tungsten carbide tool gave the best results when machining the hardened steel. The parallelism results indicated that tighter tolerances were obtained when milling with the PVD-coated carbide tool. Finally, the angular deviation was lower when down-milling the annealed material with the cermet tool.
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