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首页> 外文期刊>IJIDeM: International Journal on Interactive Design and Manufacturing >Dynamic effects on cutting forces with highly positive versus highly negative cutting edge geometries
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Dynamic effects on cutting forces with highly positive versus highly negative cutting edge geometries

机译:具有高阳性与高负切割边缘几何形状的切削力的动态效果

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Understanding the influence of the cutting edge geometry on the development of cutting forces during the milling process is of high importance in order to predict the mechanical loads on the cutting edge as well as the dynamic behavior on the milling tool. The work conducted in this study involves the force development over the entire engagement of a flute in milling, from peak force during the entry phase until the exit phase. The results show a significant difference in the behavior of the cutting process for a highly positive versus a highly negative cutting edge geometry. The negative edge geometry gives rise to larger force magnitudes and very similar developments of the tangential and radial cutting force. The positive cutting edge geometry produces considerably different developments of the tangential and radial cutting force. In case of positive cutting edge geometry, the radial cutting force increases while the uncut chip thickness decreases directly after the entry phase; reaching the peak value after a certain delay. The radial force fluctuation is significantly higher for the positive cutting edge geometry. The understanding of such behavior is important for modelling of the milling process, the design of the cutting edge and the interactive design of digital applications for the selection of the cutting parameters.
机译:了解切削刃几何形状对铣削过程中切割力的发展的影响高,重要性高,以预测切削刃上的机械负载以及铣削工具上的动态行为。本研究中进行的工作涉及从入口阶段期间的峰值力在铣削中的整个悬空中的力开发,直至出口阶段。结果表明,对于高度负极切削刃几何形状,切割过程的行为显着差异。负边缘几何形状产生较大的力幅度和与切向和径向切割力的显影性非常相似。正切削刃几何形状产生相当大的切向和径向切割力的发展。在正切削刃几何形状的情况下,径向切割力增加,而未切割芯片厚度在进入阶段之后直接降低;在一定延迟后达到峰值。正切削刃几何形状显着更高的径向力波动。对这种行为的理解对于铣削过程的建模,切削刃的设计和数字应用的交互式设计对于选择切割参数来说是重要的。

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