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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A novel mathematical model for grinding ball-end milling cutter with equal rake and clearance angle
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A novel mathematical model for grinding ball-end milling cutter with equal rake and clearance angle

机译:前角和后角相等的球头立铣刀磨削的新数学模型

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摘要

In this paper, new mathematical models and grinding methods of ball-end milling cutter were proposed based on the orthogonal spiral cutting edge curve. In order to avoid interference, a conical wheel was also designed and employed to grind the rake and rear faces of ball-end milling cutter on a five-axis grinder. Mathematical models of both rake face with equal rake angle and rear face with equal clearance angle were established to improve the machining characteristics of ball-end milling cutter. The design and simulation software of ball-end milling cutter was developed to design and optimize different shapes of both rake face and rear face. Furthermore, grinding experiment of the new ball-end milling cutter was carried out to confirm the validation of the mathematical models.
机译:提出了基于正交螺旋切削刃曲线的球头铣刀数学模型和磨削方法。为了避免干扰,还设计了一个圆锥形砂轮,并采用该砂轮在五轴磨床上磨削球头铣刀的前刀面和背面。建立了前角相等的前刀面和后间隙相等的后刀面的数学模型,以改善球头铣刀的加工性能。开发了球头铣刀的设计和仿真软件,以设计和优化前刀面和后表面的不同形状。此外,进行了新型球头铣刀的磨削实验,以验证数学模型的有效性。

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