首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >MINIMUM TIME TRAJECTORY PLANNING ALONG SPECIFIED TOOL PATH WITH CONSIDERATION OF CUTTING FORCE CONSTRAINT AND FEED DRIVE DYNAMICS
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MINIMUM TIME TRAJECTORY PLANNING ALONG SPECIFIED TOOL PATH WITH CONSIDERATION OF CUTTING FORCE CONSTRAINT AND FEED DRIVE DYNAMICS

机译:考虑到切削力约束和进给驱动动力学,在指定的刀具路径上进行最短时间的轨迹规划

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This paper proposes an Optimized Feed Scheduling Strategy (OFSS). This strategy integrates the feed drive dynamics with the minimum-time trajectory planing to achieve the desired feed rate at the appropriate tool position along specified tool path. It optimizes the use of the feed drive capabilities and provides good tracking of the cutting geometry variations. The feed scheduling is applied to maintain near-constant cutting force magnitude. An integrated geometric and mechanistic force model is used to estimate the in-cut geometry and the cutting force. A methodology based on time series modeling and analysis is proposed to identify the low frequency feed drive dynamics. The resulting model is applied as an acceleration/deceleration processor (Ace/Dec) to relate the actual feed rate to the commanded feed rate specified in the G-Code file. The effectiveness of the OFSS is analyzed using ball end milling operations. Its performance in terms of productivity and machining safety is assessed based on comparison with other feed scheduling techniques where the trajectory planing does not consider the feed drive dynamics.
机译:本文提出了一种优化的饲料调度策略(OFSS)。该策略将进给驱动动力学与最短时间的轨迹规划相结合,以沿着指定的刀具路径在适当的刀具位置上实现所需的进给速度。它优化了进给驱动功能的使用,并提供了对切削几何形状变化的良好跟踪。采用进给计划以保持接近恒定的切削力大小。集成的几何力和机械力模型用于估计切入的几何形状和切削力。提出了一种基于时间序列建模和分析的方法来识别低频进给驱动动力学。结果模型用作加速/减速处理器(Ace / Dec),以将实际进给速度与G代码文件中指定的命令进给速度相关联。使用球头铣削操作分析了OFSS的有效性。根据与其他进给计划技术的比较来评估其在生产率和加工安全性方面的性能,在这些技术中,轨迹规划不考虑进给驱动动力学。

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