Tool path simulation using a virtual 5-axis milling machine

M. Munlin
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引用次数: 7

Abstract

Presents the algorithms to simulate nonlinear kinematics of a 5-axis milling machine. The simulator is based on 3D representation and employing the inverse kinematics approach to derive the corresponding rotational and translation movement of the mechanism. The simulator makes it possible to analyze the accuracy of a 3D tool-path based on a prescribed set of the cutter location (CL) points as well as a set of the cutter contact (CC) points with tool inclination angle. The resulting trajectory of the tool is not unique and depends on the initial set up of the machine which in turn is problem dependent. Furthermore, the simulator can be used to simulate the milling process, verify the final cut and estimate the errors of the actual tool-path before the real workpiece is actually being tested with the real machine. Thus, reducing the cost of iterative trial and error. Tool path simulation is verified by a series of cutting experiments performed by means of the proposed software and evaluates the accuracy of milling. It has been shown that the proposed graphical 3D software presents an efficient interactive approach to the interactive modification of a tool path based on an appropriate set of transformations as well as to verification of the tool path optimization algorithms.
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利用虚拟五轴铣床进行刀具轨迹仿真
介绍了五轴铣床非线性运动学仿真算法。该模拟器基于三维表示,采用逆运动学方法推导出相应的机构旋转和平移运动。该模拟器可以根据一组规定的刀具位置点(CL)和一组刀具接触点(CC)来分析三维刀具轨迹的精度。所得到的刀具轨迹并不是唯一的,它取决于机床的初始设置,而机床的初始设置又取决于问题。此外,该仿真器可用于模拟铣削过程,验证最终切割并估计实际刀具轨迹的误差,然后再用实际机床对实际工件进行实际测试。因此,减少了迭代试验和错误的成本。利用该软件进行了一系列的切削实验,验证了刀具轨迹的仿真结果,并对铣削精度进行了评价。结果表明,所提出的图形化三维软件提供了一种有效的交互式方法,可以基于一组适当的变换来交互式修改刀具轨迹,并验证刀具轨迹优化算法。
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