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首页> 外文期刊>The Journal of the Acoustical Society of America >The dynamic excitation of a granular chain: Contact mechanics finite element analysis and experimental validation
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The dynamic excitation of a granular chain: Contact mechanics finite element analysis and experimental validation

机译:粒状链的动态励磁:接触力学有限元分析和实验验证

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There is currently interest in transmitting acoustic signals along granular chains to produce waveforms of relevance to biomedical ultrasound applications. The study of such a transduction mechanism is greatly aided by the use of validated theoretical models. In view of this, a finite element analysis is presented in this paper. The dynamics of a granular chain of six, 1mm diameter chrome steel spherical beads, was excited at one end using a sinusoidal displacement signal at 73 kHz, and terminated by a rigid support. Output from this model was compared with the solution provided by the equivalent discrete dynamics model, and good agreement obtained. An experimental configuration involving the same chain, but terminated by an annular support made of a liquid photopolymer resin was also simulated and the velocity of the last sphere obtained through simulation was compared with laser vibrometer measurement, with good agreement. This model was then extended whereby the granular chain was coupled to an acoustic medium with the properties of water, via a thin vitreous carbon cylinder. Finite element predictions of the acoustic pressure indicate that, for a 73 kHz excitation frequency, harmonic rich acoustic pulses with harmonic content close to 1MHz are predicted. (C) 2017 Acoustical Society of America.
机译:目前涉及沿粒状链传输声学信号,以产生与生物医学超声应用的相关性的波形。通过使用验证的理论模型,对这种转导机构的研究得到了极大的帮助。鉴于此,本文提出了有限元分析。颗粒链的颗粒链,直径为6mm直径的铬钢球形珠子,在一端在73kHz处使用正弦位移信号在一端激发,并通过刚性支撑件终止。将该模型的输出与等同的离散动力学模型提供的解决方案进行比较,并获得良好的协议。还模拟了涉及相同链的实验配置,但是由由液体光聚合物树脂制成的环形载体终止,并将通过模拟获得的最后一个球体的速度与激光振动计测量进行比较,具有良好的一致性。然后将该模型延伸,通过薄的玻璃体碳缸,颗粒链与水的性质偶联到声介质。电声压力的有限元预测表明,对于73kHz激发频率,预测具有接近1MHz的谐波含量的谐波富力的声脉冲。 (c)2017年声学社会。

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    UCL UCL Mech Engn London WC1E 7JE England;

    Univ Warwick Sch Engn Coventry CV4 7AL W Midlands England;

    Univ Warwick Sch Engn Coventry CV4 7AL W Midlands England;

    Univ Warwick Sch Engn Coventry CV4 7AL W Midlands England;

    Univ Warwick Sch Engn Coventry CV4 7AL W Midlands England;

    Univ Leeds Sch Elect &

    Elect Engn Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Elect &

    Elect Engn Leeds LS2 9JT W Yorkshire England;

    UCL UCL Mech Engn London WC1E 7JE England;

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