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Influence of Motion Error of Translational and Rotary Axes onto Machined Surface Generated by Simultaneous Five-axis Motion

机译:平动和旋转轴运动误差对同时五轴运动产生的加工表面的影响

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In the machining process the dynamic behaviors of machine tools, such as tool vibration, vibration of mechanical structure, and motion error of feed drive systems, influence the machined surface. However, the influence of dynamic ehaviors onto the machined surface generated by simultaneous five-axis motion has not been investigated up to now. This study focuses on the influence of motion error of translational and rotary axes onto the machined surface generated by a simultaneous five-axis motion. The geometry used for the tests is the cone frustum, which is typically used for evaluating machining accuracy of five-axis controlled machine tool. A method to simulate the tool motion trajectory and tool orientation for a five-axis machine has been developed based on the modeling of he feed drive systems considering their dynamic characteristic. The machined surface of cone frustum is predicted based on the simulated results. In order to verify the validity of simulation result and the influence of motion error in each axis on the finished surface, cutting tests have been carried out. The tests have proven that the proposed simulation method can predict the machined surface. The influence of motion error in each axis on finished surface is also discussed based on the results of cutting tests and simulations. Selection and peer-review under responsibility Performance Cutting. f the International Scientific Committee of the 6th CIRP International Conference on High.
机译:在加工过程中,机床的动态行为(例如刀具振动,机械结构的振动以及进给驱动系统的运动误差)会影响加工表面。但是,迄今为止尚未研究动态行为对同时进行的五轴运动生成的加工表面的影响。这项研究的重点是平移轴和旋转轴的运动误差对同时进行的五轴运动产生的加工表面的影响。测试所用的几何形状为圆锥台,通常用于评估五轴控制机床的加工精度。基于进给驱动系统的动力学特性建模,已经开发了一种模拟五轴机床的刀具运动轨迹和刀具定向的方法。根据仿真结果对锥台的加工表面进行了预测。为了验证模拟结果的有效性以及每个轴上的运动误差对精加工表面的影响,已进行了切削测试。测试证明,所提出的仿真方法可以预测加工表面。根据切削测试和模拟的结果,还讨论了每个轴上的运动误差对精加工表面的影响。责任绩效削减下的选择和同行评审。 f第六届CIRP国际高级会议的国际科学委员会。

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