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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Tool life and surface roughness in the milling of curved hardened-steel surfaces
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Tool life and surface roughness in the milling of curved hardened-steel surfaces

机译:铣削淬硬钢表面时的刀具寿命和表面粗糙度

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摘要

The manufacturing of molds and dies requires that complex hardened-steel surfaces be milled. The deep cavities in these parts are generally cut using high-speed machining technologies and long, slender tools. Consequently, the milling cutter has a tendency to vibrate, potentially damaging the surface of the workpiece and causing the cutting tool to chip or break. This study investigates tool life, cutting forces, and surface roughness in ball-end milling of a curved, convex surface of AISI D6 tool steel with a hardness of 62 HRC. The main goal was to find cutting conditions that provide good surface quality with long tool life. Two cutting strategies (upward and downward) with three lead angles (-16A degrees, 0A degrees, and 16A degrees) were tested. Analysis of variance was used to understand the results better. Adhesion followed by chipping of the cutting edge was the main wear mechanism found. The results show a close relationship between radial components of the machining forces and surface roughness and tool life. The cutting conditions that provided the lowest radial force also generated the best surface finish and the longest tool life (an upward strategy with a lead angle of 0A degrees).
机译:模具的制造需要铣削复杂的淬硬钢表面。通常使用高速加工技术和细长的工具来切割这些零件中的深腔。因此,铣刀具有振动的趋势,可能损坏工件的表面并导致切削工具碎裂或破裂。这项研究调查了硬度为62 HRC的AISI D6工具钢的弯曲,凸面的球头铣削中的工具寿命,切削力和表面粗糙度。主要目的是找到切削条件,以提供良好的表面质量和较长的刀具寿命。测试了三个切角(-16A度,0A度和16A度)的两种切割策略(向上和向下)。使用方差分析可以更好地理解结果。发现的主要磨损机理是粘附力,然后切削刃崩刃。结果表明,加工力的径向分量与表面粗糙度和刀具寿命之间存在密切的关系。提供最低径向力的切削条件还产生了最佳的表面光洁度和最长的刀具寿命(一种向上策略,导程角为0A度)。

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