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Adaptive feedrate scheduling for NC machining along curvilinear paths with improved kinematic and geometric properties

机译:沿曲线路径进行数控加工的自适应进给率调度,具有改进的运动学和几何特性

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摘要

In precision machining of free-form surfaces at high speed, it is very important to ensure part accuracy and machining properties. To achieve this, this paper develops a guide spline-based feedrate scheduling method for machining along curvilinear paths with simultaneous constraints of chord errors and ac/deceleration. Based on two metrics about feedrate scheduling from the view of geometric and kinematic properties, the nonlinear relationships between the arc-length parameter and path parameter are subsequently established with a parameter correction spline. Then a guide spline associated with the modified curvature radius of paths is constructed to the schedule feedrate. It is shown that determining the largest safe feedrate with constant chord error can be reduced to the issue of changing the feedrate proportionally with the square root of path curvature radii and ensuring the safe feed acceleration can be converted into the issue of presetting the largest slope of guide spline. The simulation results prove that the proposed feedrate scheme has potential applications in the field of finish machining.
机译:在高速加工自由曲面的过程中,确保零件精度和加工性能非常重要。为此,本文开发了一种基于样条曲线的进给率调度方法,用于沿着曲线路径进行加工,同时约束弦误差和交流/减速。从几何和运动学特性的角度出发,基于关于进给率调度的两个度量,随后使用参数校正样条建立弧长参数和路径参数之间的非线性关系。然后,将与修改后的路径曲率半径相关联的引导样条构造为计划进给率。结果表明,确定具有恒定弦误差的最大安全进给率可以简化为与轨迹曲率半径的平方根成比例地改变进给率的问题,并且可以将确保安全进给加速度转换为预设最大斜率的问题。引导样条。仿真结果表明,提出的进给率方案在精加工领域具有潜在的应用前景。

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