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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Design, Modeling, and Motion Control of the Noncircular Turning Process for Camshaft Machining
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Design, Modeling, and Motion Control of the Noncircular Turning Process for Camshaft Machining

机译:凸轮轴加工非圆车削过程的设计,建模和运动控制

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摘要

This paper presents the design, modeling, and motion control of the noncircular turning process for camshaft machining. The cam profile tracking performance requirements are first characterized to meet industry standards. Based on these requirements, a unique test fixture using state-of-the-art actuation and sensing technologies is designed for the non-circular turning process. Modeling of the electrohydraulic servo valve, actuator, and sensors is conducted based on their frequency responses. Digital motion control that achieves asymptotic cam profile tracking while maintaining system robust stability is designed and implemented on the turning test fixture. Spindle speed can be chosen depending on the required profile tracking accuracy with higher speed rendering higher machining rate for rough turning and lower speed rendering higher accuracy for finish turning. Experimental results of turning a variety of cam profiles show that the tracking error is less than 30 μm for spindle speed at 300 rpm and is less than 60 μ m for spindle speed at 600 rpm or 1200 rpm.
机译:本文介绍了用于凸轮轴加工的非圆形车削过程的设计,建模和运动控制。首先要对凸轮轮廓跟踪性能要求进行表征,以符合行业标准。基于这些要求,针对非圆形车削工艺设计了一种采用最新驱动和传感技术的独特测试夹具。基于电动液压伺服阀,执行器和传感器的频率响应进行建模。在车削测试夹具上设计并实现了可实现渐进凸轮轮廓跟踪并保持系统鲁棒稳定性的数字运动控制。可以根据所需的轮廓跟踪精度选择主轴速度,较高的速度可以提高粗加工的加工速率,而较低的速度可以提高精加工的精度。转动各种凸轮轮廓的实验结果表明,对于300 rpm的主轴转速,跟踪误差小于30μm,对于600 rpm或1200 rpm的主轴转速,跟踪误差小于60μm。

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