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Performance of magnetorheological fluid based tunable frequency boring bar in chatter control

机译:磁流变基流可调频镗杆在喋喋不握的聊天控制中的性能

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Low stiffness due to high slenderness ratio of the boring bar makes boring operation to be highly prone to machining instability. By providing increased stiffness and damping, the instability due to dynamic nature of the boring bar is successfully addressed in this paper. Maintaining the advantages of conventional viscous fluid damper, a provision to dynamically control the viscosity of the MR fluid is incorporated. Additionally, a rod is mounted as an inverse cantilever inside the primary structure of a specially designed boring bar. The rod vibrates within the MR fluid and the resistance to its movement is influenced by the viscosity of the MR fluid. The primary structure also experiences increased stiffness leading to change in natural frequency. From the dynamic characteristics obtained using impact and shaker excitation tests, stability lobe diagram (SLD) is constructed for a wide range of spindle speeds. For selected machining conditions, amplitude of vibration signals, roughness and roundness error are included in this paper and discussed further. For MR fluid filled condition with an input current of 3.5 A, amplitude of vibration is reduced by 29-44%, while surface roughness and roundness error are reduced by 14-59% and 5-41% respectively, thereby establishing the potential of MR fluid based tunable frequency boring bar for boring operation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于镗杆的高细长比而导致的低刚度使得钻孔操作能够高度容易地加工不稳定。通过提供增加的刚度和阻尼,本文成功地解决了由于镗杆的动态性质而导致的不稳定性。保持常规粘性流体阻尼器的优点,掺入了动态控制MR流体的粘度的规定。另外,杆安装在专门设计的镗杆的主要结构内部的反向悬臂。杆在MR流体内振动,并且对其运动的阻力受MR流体的粘度的影响。主要结构还经历增加的刚度导致自然频率变化。根据使用冲击和振动筛励磁试验获得的动态特性,稳定性凸角图(SLD)构造成各种主轴速度。对于所选择的加工条件,本文包括振动信号,粗糙度和圆度误差并进一步讨论。对于MR流体填充条件,输入电流为3.5A,振动幅度减少了29-44%,而表面粗糙度和圆度误差分别降低了14-59%和5-41%,从而建立了MR的潜力基于流体的可调谐镗杆,用于钻孔操作。 (c)2019年elestvier有限公司保留所有权利。

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