...
首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Off-line feedrate optimization with multiple constraints for corner milling of a cavity
【24h】

Off-line feedrate optimization with multiple constraints for corner milling of a cavity

机译:具有多个约束的离线进给率优化,用于型腔的角铣

获取原文
获取原文并翻译 | 示例

摘要

High quality and high efficiency are very important factors in the mold industry and must be considered in machining technology development. Corners are one of the typical features in a cavity mold that can cause low accuracy, tool wear, cutter defection, and vibration. Therefore, off-line feedrate optimization in a corner-milling process has been proposed as a means for avoiding these drawbacks. The corner-milling process could be divided into five stages according to the contact conditions between the cutter and workpiece. An improved chip thickness model based on the actual trajectory of the cutter was presented to predict the movement of the cutter along a curved path. Various feedrate optimizations were presented with varying control parameters. In this paper, three feedrate optimizations were implemented using three control parameters, relative volume, milling force, and cutter deflection, based on the differential element method (DEM). A corner-milling force experiment indicated that the simulation results using a modified milling force model agreed well with actual experimental milling results. Following this, a feedrate optimization with multiple constraints was built, according to a combination of three feedrate optimizations and then consider the acceleration and deceleration limitation. The simulation by using the method in this paper demonstrated that the machining time of rough milling, semi-finish milling, and finish milling could be reduced. In addition, it was found that the resulting milling force varies within a narrow range.
机译:高质量和高效率是模具工业中非常重要的因素,并且在机械加工技术发展中必须予以考虑。角部是型腔模具的典型特征之一,会导致精度低,工具磨损,刀具变形和振动。因此,已经提出了在角铣削加工中的离线进给率优化作为避免这些缺点的手段。根据铣刀和工件之间的接触条件,可将角铣削加工分为五个阶段。提出了一种基于刀具实际轨迹的改进切屑厚度模型,以预测刀具沿弯曲路径的运动。提出了具有不同控制参数的各种进给率优化。在本文中,基于微分元素方法(DEM),使用三个控制参数(相对体积,铣削力和刀具偏斜度)实现了三个进给率优化。转角铣削力实验表明,使用改进的铣削力模型进行的仿真结果与实际的实验铣削结果吻合良好。此后,根据三个进给率优化的组合,构建了具有多个约束的进给率优化,然后考虑了加速和减速限制。通过本文方法的仿真表明,可以减少粗铣,半精铣和精铣的加工时间。另外,发现所得的铣削力在狭窄范围内变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号