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球头铣刀数控加工表面形貌几何仿真的研究 被引量:3

Research of micro-geometric simulation for ball end milling
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摘要 几何仿真是建立铣削力预测模型的基础,而传统的几何仿真只考虑刀具的平动而忽略其转动。本文在同时考虑刀具平动和转动的基础上,利用工件Z-Map表示模型和刀刃离散表示法,提出了一种球头铣刀三轴数控铣削的微观几何仿真算法。该算法鲁棒性好、适用范围广,不仅能高效而准确地仿真铣削表面形貌,而且能准确提供切屑的轮廓,为建立精确的切削力预测模型提供了重要的几何参数。 Micro - geometric simulation is the base of force prediction model. Traditional geometric simulation just considers the cutter' s translation except its rotation. Taking both the cutter' s translation and rotation into account, based on the Z- Map workpiece model and the discrete cutter model, an algorithm for micro - geometric simulation of baU end milling is presented. The algorithm is robust and applicable. It provides not only the efficient and exact milling process simulation, but also the precise profile of the chip, which is the most important foundation of the force prediction model.
出处 《机械设计与制造》 北大核心 2006年第10期126-128,共3页 Machinery Design & Manufacture
关键词 微观几何仿真 Z—Map模型 刀刃离散表示法 球头铣刀铣削加工 Micro- geometric simulation Z- Map model Discrete cutter edge Ball endmilling
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参考文献4

  • 1Bouzakis K D, Aichouh P, Efstathiou K. Determination of the chip geom etry, cutting force and roughiness in free form surfaces finishing milling, with ball end tools. International Journal of Machine Tools & Manufacture. 2003, 43:499 - 514. 被引量:1
  • 2Martellotti, M. E., "An Analysis of the Milling Process, "Transaction of ASME, 63, pp. 677-700, 1941. 被引量:1
  • 3Martellotti, M. E.,"An Analysis of the Milling Process, Part 2: Down Milling, " Transaction of ASME, 19, pp. 32 -39, 1953. 被引量:1
  • 4Won - Soo Yun, Jeong Hoon Ko. Development of a virtual machining system, part 3: cutting process simulation in transient cuts. International Journal of Machine Tools & Manufacture 42 (2002) 1617 - 1626. 被引量:1

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