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Comparison Vibration Amplitude for Magnetic Damping in Turning of Stainless Steel AISI 304

机译:不锈钢磁阻的比较振动振幅AISI 304

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This paper presents the improvement in chatter vibration damping using different types and arrangements of magnets, as well as comparison with normal cutting conditions in turning of stainless steel AISI 304. Chatter is defined as the self-excited violent relative motion between the cutting tool and work-piece. It is the common vibration problem that limits the productivity of machining processes, since it leads to shortened tool life, poor surface finish, breakage and premature damage of cutting tool, as well as mechanical deterioration. The occurrence of chatter during metal cutting process also causes instability of the machine tool system. Though there has been a large number of works on identifying the causes of chatter and its behavior, there is still no consensus among researchers on this very vital issue of machining. Previously, the incidence of chatter was thought to be due to forced vibration, BUE formation, cutting speed, and cracking during chip formation. Different ways to overcome this problem have been investigated, such as using piezoelectric inertia actuators, feed-forward neural network controllers, and work-piece preheating methods. In this research, permanent magnets with different size, strength, and composition are mounted around the cutting tool. A vibration sensor (accelerometer) is placed at the bottom of the tool to record the suppression of chatter amplitude in turning operation. It is shown that magnetic force can modify the frequency response function of the cutting tool resulting in improved cutting stability in turning operations. Chatter can then be effectively suppressed due to increased cutting stability.
机译:本文介绍了使用不同类型和磁体布置的颤振振动阻尼的改进,以及与不锈钢AISI 304转动时的正常切削条件的比较。喋喋不休被定义为切削工具和工作之间的自我激发猛烈相对运动-片。它是限制加工过程的生产率的常见振动问题,因为它导致缩短工具寿命,表面光洁度差,破损和切削工具的过早损坏,以及机械劣化。在金属切割过程中发生颤动的发生也导致机床系统的不稳定性。虽然在确定喋喋不休的原因及其行为上有很多作品,但研究人员仍然没有共识,这是对此非常重要的加工问题。以前,喋喋不休的发病率是由于芯片形成中强制振动,BUE形成,切割速度和开裂。已经研究了克服该问题的不同方式,例如使用压电惯性执行器,前馈神经网络控制器和工件预热方法。在本研究中,在切削工具周围安装具有不同尺寸,强度和组成的永磁体。振动传感器(加速度计)放置在工具的底部,以记录转动操作中的颤振幅度的抑制。结果表明,磁力可以改变切削工具的频率响应功能,从而改善了转动操作中的切削稳定性。然后可以通过增加的切割稳定性有效地抑制颤动。

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