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首页> 外文期刊>Journal of intelligent material systems and structures >Design and experimental analysis of a smart bearing using shape memory alloy springs
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Design and experimental analysis of a smart bearing using shape memory alloy springs

机译:使用形状记忆合金弹簧的智能轴承的设计与实验分析

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Among many rotating machinery vibration sources, there is one due to resonance, when the machine operation frequency crosses the natural frequency region. This study proposes a smart bearing that employs shape memory alloy NiTi helical springs for vibration-level reduction. This smart bearing is capable of dynamically changing its stiffness during machine acceleration or deceleration, keeping its natural frequency far from resonance. Activated by Joule effect and cooled by forced air convection, the prototype installed in horizontal rotating machinery reaches reduction of vibration amplitude of about 63% (root mean square) and 73% (Peak) at critical speed, with response time between 12–15 s. Compared with the results of the reference articles, satisfactory amplitude reduction and better response time were observed.
机译:在许多旋转机械振动源中,由于谐振,当机器操作频率穿过自然频率区域时,存在。 本研究提出了一种智能轴承,采用形状记忆合金Niti螺旋弹簧进行振动水平降低。 这种智能轴承能够在机器加速度或减速期间动态地改变其刚度,使其自然频率远离共振。 由焦耳效果激活并通过强制空气对流冷却,在水平旋转机械中安装的原型达到临界速度的振动幅度约为63%(均方根)和73%(峰值)的振动幅度,响应时间为12-15秒。 。 与参考文章的结果相比,观察到令人满意的幅度和更好的响应时间。

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