Magnetorheological Elastomer (MRE) based Torsional Vibration Isolator for application in a Prototype Drilling Shaft

Thaer M. I. Syam, Asan Gani Bin Abdul Muthalif
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Abstract

Magnetorheological Elastomer (MRE) is a type of smart composite material consisting of a polymer matrix embedded with ferromagnetic particles. In the presence of an external magnetic field, its mechanical properties, such as stiffness, changes make it attractive in vibration isolation applications. Unwanted vibration in machines can cause severe damage and machine breakdown. In Qatar, the extraction of the natural gas from the ground requires sophisticated drilling machines. In this work, a semi-active vibration isolator using MRE is proposed for a potential application in a drilling system to isolate the torsional vibration. MRE was fabricated with a 35% mass fraction (MF) consisting of silicon rubber and iron particles. It was fitted with aluminum couplers and attached to the shaft (drill string) to study its efficiency in vibration isolation under a magnetic field. Two tests were conducted on the drilling prototype setup used in this work; the first test was a hammer impact test. The torsional transfer function TTF analysis showed that the system's natural frequency has shifted from 13.9 Hz to 17.5 Hz by the influence of increasing magnetic field around the MRE. The results showed that the continuous rotational vibration amplitude of the prototype is attenuated by more than 40%.
基于磁流变弹性体(MRE)的扭振隔振器在钻杆样机中的应用
磁流变弹性体(MRE)是一种由嵌入铁磁粒子的聚合物基体组成的智能复合材料。在存在外部磁场的情况下,其机械性能(如刚度)的变化使其在隔振应用中具有吸引力。机器中不必要的振动会导致严重的损坏和机器故障。在卡塔尔,从地下开采天然气需要复杂的钻井设备。在这项工作中,提出了一种使用MRE的半主动隔振器,用于隔离钻井系统的扭转振动。以硅橡胶和铁颗粒的质量分数(MF)为35%制备MRE。在轴(钻柱)上安装铝制耦合器,研究其在磁场作用下的隔振效果。在本工作中使用的钻井原型装置上进行了两次测试;第一次试验是锤击试验。扭转传递函数TTF分析表明,受磁极周围磁场增大的影响,系统的固有频率由13.9 Hz转变为17.5 Hz。结果表明,样机的连续旋转振动幅值衰减了40%以上。
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