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Multibody Dynamics Approaches for Study on Good and Bad Whole-Body Vibrations

机译:多体动力学研究良好和坏全身振动研究

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Whole-body vibrations (WBV) have been used for enhancing muscle strength and bone density of human bodies, training athletes and dancers, and helping people with disabling conditions and rehabilitations. On the other hand, WBV-induced occupational diseases have been reported. Researchers in automotive, farm equipment, and heavy machinery have put forward a few models for studying harmful vibrations on human bodies. This paper will review the effects of frequencies and magnitudes of WBV on a human body. Discussion of effects of frequencies and magnitudes on a human body will provide a preliminary boundary line between good and bad whole-body vibrations. Two multibody dynamics models and associated application cases will be proposed to show how the models may be used to represent whole-body vibrations under both good and bad vibrations. Three basic vibration elements associated with whole-body vibrations of the human body are handled as follows: (1) ligaments are modeled as spring elements; (2) muscles and tendons are modeled as damping elements; (3) bones are modeled as rigid bodies with masses/inertias and connected by idealized massless joints. In such a biomechanical vibration system, the spring elements (ligaments) help hold the human body skeleton structure in a stable condition, pass spring forces and potential energy to rigid bodies (bones) for bone vibrational motions. The damping elements (muscles and tendons) play roles of a damper and absorb energy input from the whole-body vibration resource. Based on the proposed multibody dynamics models, Kane's method is then used to develop equations of motion. The equations will be further used for development of simulation algorithms to understand frequencies and magnitudes of both good and bad whole-body vibrations. The models may be utilized to understand why frequencies and magnitudes of whole-body vibrations will provide benefits to human health under one situation but cause occupational diseases under another scenario.
机译:全身振动(WBV)已被用于提高人体的肌肉力量和骨密度,培训运动员和舞者,以及帮助禁用条件和康复的人。另一方面,据报道了WBV诱导的职业病。汽车,农场设备和重型机械的研究人员提出了一些模型,用于研究人体的有害振动。本文将审查频率和大小的WBV对人体的影响。讨论频率和大小对人体的影响将在良好和坏的全身振动之间提供初步边界线。将提出两种多体动力学模型和相关的应用程序案例,以展示模型的方式如何用于在良好和不良振动下代表全身振动。与人体全体振动相关的三个基本振动元件如下处理:(1)韧带被建模为弹簧元件; (2)肌肉和肌腱被建模为阻尼元件; (3)骨骼被建模为具有质量/惯性的刚性体,并通过理想的麻布接头连接。在这种生物力学振动系统中,弹簧元件(韧带)有助于将人体骨架结构保持在稳定的状态,使弹簧力和潜在的能量与用于骨振动运动的刚体(骨骼)。阻尼元件(肌肉和肌腱)扮演阻尼器的作用并吸收来自全身振动资源的能量输入。基于所提出的多体动力学模型,然后使用Kane的方法来开发运动方程。等式将进一步用于开发模拟算法,以了解频率和良好的全身振动的频率和大小。该模型可用于理解为什么在一种情况下,全身振动的频率和大小将为人类健康提供益处,但在另一种情况下会导致职业病。

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