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Energy Saving in Five-Axis Machine Tools Using Synchronous and Contouring Control and Verification by Machining Experiment

机译:同步轮廓控制五轴机床的节能与机加工实验的验证

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This paper deals with a controller design for five-axis machine tools, which typically consist of three translational and two rotary axes. The flexibility to change the relative orientation between a tool and the workpiece in a five-axis machine tool offers many advantages over conventional 3-D machining. Because machine tools operate around the clock in industrial applications all over the world, there is a requirement not only for high-speed and high-precision operation but also for reduced energy consumption. This paper presents a novel controller design that aims to reduce energy consumption in five-axis machine tools. The proposed design is based on a contouring controller that has been proposed for use in high-precision machining in machine tool systems. The design also takes into consideration the relative orientation error between a tool and the workpiece in five-axis machining. The synchronous controller is used to reduce synchronous error between two parallel actuators, which is a cause of significant mechanical damage. The contouring control system has a degree of freedom (DOF) in the direction tangential to the desired contour curve because this directional error does not directly affect the contouring performance, and hence, this DOF is employed for consumed energy reduction in this study. The experimental results of feed drive motion (without machining) demonstrate the effectiveness of the proposed controller, which reduces energy consumption by 13.2%. In addition, after applying to the machining experiment, the effectiveness was increased to 27.9% because of largely reducing the control input variance caused by the machining task.
机译:本文介绍了用于五轴机床的控制器设计,该控制器通常由三个平移轴和两个旋转轴组成。相对于传统的3D加工,在五轴机床中改变刀具和工件之间的相对方向的灵活性具有许多优势。由于机床在世界各地的工业应用中全天候运行,因此不仅需要高速,高精度运行,而且还要求降低能耗。本文提出了一种新颖的控制器设计,旨在减少五轴机床的能耗。提出的设计基于轮廓控制器,该轮廓控制器已建议用于机床系统的高精度加工。该设计还考虑了五轴加工中刀具与工件之间的相对定向误差。同步控制器用于减少两个并行执行器之间的同步误差,这是造成严重机械损坏的原因。轮廓控制系统在与所需轮廓曲线相切的方向上具有自由度(DOF),因为该方向误差不会直接影响轮廓性能,因此,此DOF可用于本研究中的能耗降低。进给驱动运动(不进行机加工)的实验结果证明了所提出控制器的有效性,该控制器将能耗降低了13.2%。另外,在应用于机加工实验后,由于大大减少了由机加工任务引起的控制输入方差,因此效率提高到27.9%。

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