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Development of a postprocessor for head tilting-head rotation type five-axis machine tool with double limit rotation axis

机译:具有双限制旋转轴的头部倾斜头旋转型五轴机床的后处理器的开发

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摘要

The five-axis machine tool with special structure requires the professional postprocessor in order to exploit the capabilities of the machine tools. Compared with the standard five-axis machine, the five-axis machine tools with special structure such as double limit rotation axis (DLRA) requires the implementation of the angle optimization to achieve the process requirements of complex parts. In this paper, a rotation angle optimization algorithm for the DLRA of the head tilting-head rotation (HT-HR)-type five-axis machine tool is proposed to overcome the problem that rotation angle is limited in machining complex parts. First, the initial correction condition is determined based on the rotation range of the rotation axes, in the case that the tool contact point is fixed; the rotation angles of the correction area are optimized. Then, a post processor for HT-HR five-axis machine tool with angle optimization function is developed based on the kinematic model. Furthermore, the proposed approach is validated for simulation and practical experimental with an impeller specimen. Results of the verification tests show that the presented angle optimization algorithm can accurately revise the rotation angle in the processing so as to improve the machining scope of machine tools. This method also provides a certain reference to solve the problem of limited rotation angle for other similar machine.
机译:具有特殊结构的五轴机床需要专业的后处理器,以利用机床的功能。与标准的五轴机器相比,具有特殊结构的五轴机床,如双限制旋转轴(DLRA)需要实现角度优化,以实现复杂部件的过程要求。本文提出了一种旋转角度优化算法(HT-HR)型五轴机床的DLRA克服旋转角度在加工复杂部件中受限的问题。首先,在工具接触点固定的情况下,基于旋转轴的旋转范围确定初始校正条件;优化校正区域的旋转角度。然后,基于运动模型开发了具有角度优化功能的HT-HR五轴机床的后处理器。此外,验证了所提出的方法,用于模拟和实际实验与叶轮样本。验证测试的结果表明,所示的角度优化算法可以精确地修改处理中的旋转角度,以改善机床的加工范围。该方法还提供了一定的参考,以解决其他类似机器的有限旋转角度的问题。

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