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High-precision five-axis machine for high-speed material processing using linear motors and parallel-serial kinematics

机译:高精度五轴机床,采用直线电机和并行串行运动学技术进行高速材料加工

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摘要

The paper describes some details of the mechanical and kinematics design of a five-axis mechanism. The design has been utilized to physically realize an industrial-scale five-axis milling machine that can carry a three KW spindle. However, the mechanism could be utilized in other material processing and factory automation applications. The mechanism has five rectilinear joints/axes. Two of these axes are arranged traditionally, i.e. in series, and the other three axes utilize the concept of parallel kinematics. This combination results in a design that allows three translational and two rotational two-mode degrees of freedom (DOFs). The design provides speed, accuracy and cost advantages over traditional five-axis machines. All axes are actuated using linear motors.
机译:本文介绍了五轴机构的机械和运动学设计的一些细节。该设计已被用于实际实现可以承载3KW主轴的工业级五轴铣床。但是,该机制可以用于其他材料处理和工厂自动化应用中。该机构具有五个直线关节/轴。这些轴中的两个按传统方式排列,即串联排列,而其他三个轴则采用并联运动学的概念。这种结合导致了一种设计,该设计允许三个平移和两个旋转两模自由度(DOF)。与传统的五轴机床相比,该设计具有速度,准确性和成本优势。所有轴均使用直线电机驱动。

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