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A postprocessor for table-tilting type five-axis machine tool based on generalized kinematics with variable feedrate implementation

机译:基于广义运动学和可变进给率实现的台式倾斜式五轴机床后处理器

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摘要

Improvements in the machine tool and the machining process technologies increased the need for generic postprocessors in order to exploit the capabilities of the machine tools. Contrary to conventional machining approach, next-generation machining technologies such as force-based feedrate scheduling and toolpath optimization requires the implementation of the variable feedrate during toolpath which constitutes the aim of this article. Therefore, this paper introduces a postprocessor for table-tilting type five-axis machine tool based on generalized kinematics with variable feedrate implementation. Furthermore, a practical yet effective method for avoiding kinematic singularities by spherical interpolation and NC data correction is presented as well. Proposed approach is validated for various five-axis machine tools with different kinematic configurations via virtual machine simulation module. Results of the verification tests show that presented postprocessing approach can accurately convert the cutter location information into NC codes and it is demonstrated that integrated virtual simulation module can simulate toolpaths with large number of blocks.
机译:为了利用机床的功能,对机床和加工工艺技术的改进增加了对通用后处理器的需求。与传统的加工方法相反,下一代加工技术(例如基于力的进给率调度和刀具路径优化)要求在刀具路径期间实现可变进给率,这构成了本文的目的。因此,本文介绍了一种基于广义运动学,可变进给率实现的台式倾斜式五轴机床后处理器。此外,还提出了一种实用有效的方法,该方法通过球面插补和NC数据校正来避免运动奇异性。通过虚拟机仿真模块,对具有不同运动学配置的各种五轴机床进行了验证。验证测试的结果表明,所提出的后处理方法可以将刀具位置信息准确地转换为NC代码,并且证明了集成的虚拟仿真模块可以仿真具有大量程序段的刀具路径。

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