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Development of multi-axis numerical control program for mill-turn machine

机译:铣车床多轴数控程序的开发

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摘要

A mill-turn machine combining a lathe and machining centre can perform turning and milling operations on the same machine. It can machine a workpiece in one set-up and eliminate errors that can be produced by moving the workpiece between turning and milling machines. Since the mill-turn machine has a complex configuration in which linear and rotary movements are non-orthogonal, generating the part program manually is almost impossible. This work develops an interface called a postprocessor that converts cutter location data generated by a general commercial computer-aided design (CAD)/computer-aided manufacturing (CAM) system into the numerical control (NC) data dedicated for the mill-turn machine. The form-shaping function matrix of the mill-turn machine, which describes the motion trajectory of tool points relative to the workpiece, is derived by the homogeneous coordinate transformation matrix. The complete analytical equations for NC data are obtained through a form-shaping function matrix and inverse kinematics. A window-based postprocessor system written in Borland C++ Builder and OpenGL was developed according to the proposed algorithm. Solid cutting simulation software is utilized to verify the effectiveness of the proposed algorithm. [PUBLICATION ABSTRACT]
机译:结合了车床和加工中心的铣车床可以在同一台机器上执行车削和铣削操作。它可以以一种设置来加工工件,并消除因在车床和铣床之间移动工件而产生的误差。由于铣车床的结构复杂,线性和旋转运动不是正交的,因此几乎不可能手动生成零件程序。这项工作开发了一个称为后处理器的接口,该接口将通用商业计算机辅助设计(CAD)/计算机辅助制造(CAM)系统生成的刀具位置数据转换为专用于车铣床的数控(NC)数据。铣削车床的形状塑造函数矩阵通过齐次坐标变换矩阵得出,该矩阵描述了刀具点相对于工件的运动轨迹。通过形状函数矩阵和逆运动学获得了数控数据的完整解析方程。根据提出的算法,开发了用Borland C ++ Builder和OpenGL编写的基于窗口的后处理器系统。利用实体切削仿真软件来验证所提算法的有效性。 [出版物摘要]

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