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Presentation of an Approach on Determination of the Natural Frequency of Human Lumbar Spine Using Dynamic Finite Element Analysis

机译:动态有限元分析确定人体腰椎固有频率的方法介绍

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摘要

Occurring resonance may negatively affect the health of the human lumbar spine. Hence, vibration generated in working and living environments should be optimized to avoid resonance when identifying the natural frequency of the human lumbar spine. The range of the natural frequency of the human lumbar spine has been investigated, but its specific numerical value has not been determined yet. This study aimed at presenting an approach based on resonance for predicting the specific numerical value of the natural frequency of the human lumbar spine. The changes in the numerical fluctuation amplitudes and the cycles of lumbar mechanical parameters during resonance are greater than those during nonresonant vibration. Given that the range of the natural frequency has been identified, vibrations at different excitation frequencies within this range can be applied in a human lumbar finite element model for dynamic finite element analysis. When the excitation frequency is close to the natural frequency, resonance occurs, causing great changes in the numerical fluctuation amplitudes and the cycles of lumbar mechanical parameters. Therefore, the natural frequency of the lumbar finite element model could be back-calculated. Results showed that the natural frequency of the established model was 3.5 Hz. Meanwhile, the closer the excitation frequency was to the natural frequency, the greater the changes in the numerical fluctuation amplitudes and cycles in the parameters would be. This study presented an approach for predicting the specific numerical value of the natural frequency of the human lumbar spine. Identifying the natural frequency assists in finding preventive measures for lumbar injury caused by vibration and in designing the vibration source in working and living environments to avoid approximating to the natural frequency of the human lumbar spine.
机译:发生共振可能会对人体腰椎健康产生负面影响。因此,在确定人的腰椎自然频率时,应优化工作和生活环境中产生的振动,以避免共振。已经研究了人类腰椎的固有频率范围,但是尚未确定其具体数值。这项研究旨在提出一种基于共振的方法来预测人腰椎固有频率的特定数值。共振期间的数值波动幅度和腰部机械参数周期的变化大于非共振振动期间的变化。假定已经确定了固有频率的范围,则可以在人体腰部有限元模型中应用此范围内不同激励频率的振动以进行动态有限元分析。当激发频率接近自然频率时,会发生共振,从而导致数值波动幅度和腰部机械参数周期的巨大变化。因此,可以对腰部有限元模型的固有频率进行反算。结果表明,所建立模型的固有频率为3.5 Hz。同时,激励频率越接近自然频率,数值波动幅度和参数周期的变化越大。这项研究提出了一种预测人类腰椎自然频率的具体数值的方法。确定固有频率有助于找到预防措施,以防止因振动引起的腰椎损伤,并有助于在工作和生活环境中设计振动源,以避免接近人体腰椎的固有频率。

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