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多轴加工系统闭链刚度场建模与刚度性能分析 被引量:10
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作者 闫蓉 陈威 +2 位作者 彭芳瑜 林森 李斌 《机械工程学报》 EI CAS CSCD 北大核心 2012年第1期177-184,共8页
在复杂曲面多轴加工中,刀具可以在一定范围内以不同姿态加工复杂曲面,刀具姿态的改变直接影响整体加工系统的综合刚度特性,从而影响到加工性能。建立与刀具位姿相关的综合刚度场模型,可用于分析整体加工系统的综合刚性分布规律。提出多... 在复杂曲面多轴加工中,刀具可以在一定范围内以不同姿态加工复杂曲面,刀具姿态的改变直接影响整体加工系统的综合刚度特性,从而影响到加工性能。建立与刀具位姿相关的综合刚度场模型,可用于分析整体加工系统的综合刚性分布规律。提出多轴加工系统刚度场半解析计算方法,其中针对机床运动轴及其传动部位、刀具、工件等关键部件的力学特性分别采用了雅可比矩阵法、点传递矩阵法、有限元法等方法建立相应的刚度矩阵,并根据多体小变形理论建立了多轴加工工艺系统闭链刚度场模型。根据该模型解耦得到三维空间的力椭球,从力椭球提取整体加工系统的刚度性能指标,绘制刚度性能等值线图,分析工作空间中多轴加工系统的刚度特性分布规律,可用于指导刀具运动规划。 展开更多
关键词 多轴加工 刚度 力椭球 刀具运动规划
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Kinematics constrained five-axis tool path planning for high material removal rate 被引量:8
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作者 YE Tao XIONG CalHua +1 位作者 XIONG YouLun ZHAO Can 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第12期3155-3165,共11页
Traditional five-axis tool path planning methods mostly focus on differential geometric characteristics between the cutter and the workpiece surface to increase the material removal rate(i.e.,by minimizing path length... Traditional five-axis tool path planning methods mostly focus on differential geometric characteristics between the cutter and the workpiece surface to increase the material removal rate(i.e.,by minimizing path length,improving curvature matching,maximizing local cutting width,etc.) . However,material removal rate is not only related to geometric conditions such as the local cutting width,but also constrained by feeding speed as well as the motion capacity of the five-axis machine. This research integrates machine tool kinematics and cutter-workpiece contact kinematics to present a general kinematical model for five-axis machining process. Major steps of the proposed method include:(1) to establish the forward kinematical relationship between the motion of the machine tool axes and the cutter contact point;(2) to establish a tool path optimization model for high material removal rate based on both differential geometrical property and the contact kinematics between the cutter and workpiece;(3) to convert cutter orientation and cutting direction optimization problem into a concave quadratic planning(QP) model. Tool path will finally be generated from the underlying optimal cutting direction field. Through solving the time-optimal trajectory generation problem and machining experiment,we demonstrate the validity and effectiveness of the proposed method. 展开更多
关键词 tool path material removal rate contact motion quadratic planning
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