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首页> 外文期刊>European journal of wood and wood products >Active vibration control of circular saw blades
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Active vibration control of circular saw blades

机译:圆锯片的主动振动控制

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Specific conditions are very frequently established in mechanical systems that contain rotating thin disk-shaped tools, causing undesirable transverse deflections or even vibrations. The excitation mode of rotating tools is mechanical, external loads change with time and in certain cases even self-excitation can occur. The problem can be eliminated by a more rigid design of a disk tool, but because of numerous technological requirements this is unacceptable. It is necessary to combine the basic structure with a system, the operation of which reduces most of the energy produced by the rotating and transversely vibrating tool. An active electromagnetic system for damping lateral vibrations of circular saw blades is presented. This electromagnetic system consists of two electromagnets, mounted transversely to the body that carries a ferromagnetic saw blade. The current running through the two electromagnets is controlled by a robust algorithm, which takes into account the static deformation of the saw blade. An experimental model was used to test the efficiency and operation stability of this system. The results show that the developed system represents a very efficient tool for reducing lateral vibrations of rotating disk tools.
机译:在包含旋转薄盘形工具的机械系统中,经常会建立特定条件,从而导致不希望的横向偏转甚至振动。旋转工具的励磁模式是机械的,外部载荷随时间变化,在某些情况下甚至会发生自励磁。这个问题可以通过更严格的磁盘工具设计来消除,但由于许多技术要求,这是不可接受的。有必要将基本结构与系统相结合,该系统的运行减少了旋转和横向振动工具产生的大部分能量。提出了一种用于阻尼圆锯片侧向振动的主动电磁系统。该电磁系统由两个电磁铁组成,横向安装在带有铁磁锯片的主体上。流经两个电磁铁的电流由稳健的算法控制,该算法考虑了锯片的静态变形。采用实验模型测试了该系统的效率和运行稳定性。结果表明,所开发的系统是减少旋转盘式刀具横向振动的非常有效的工具。

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