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Assessment of ergonomically designed handle shapes for low-frequency vibration responses

机译:用于低频振动响应的符合人体工程学设计手柄形状的评估

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Hand-operated tool handles transmit a large magnitude of vibration to the hand-arm system during low-frequency operations. Therefore, the precise design of a hand tool is very important to overcome musculoskeletal disorders, hand-arm vibration, etc. This study was aimed at developing optimal tool handles with an increased contact area and to overcome the contact pressure, which causes discomfort and pain. Six different human hand-based optimal handles (handles B to G) and one optimal cylindrical handle (handle A) were designed and fabricated using 3D printing technology, in order to assess the effect of low-frequency vibrations. The effect of handle shapes was evaluated with objective and subjective measurements using 15 subjects. Objective measurements were performed to assess the vibration transmissibility by experimental study at the frequency range of 0-100 Hz, and subjective measurements were performed to rate the handles based on comfort descriptors and overall comfort of the handles. Root mean square vibration accelerations were recorded at the wrist, elbow, and shoulder of each subject and at the base of the handle fixture to evaluate the vibration transmissibility for each handle. The mean vibration transmissibility was found to be minimum for handle B and was rated to be more comfortable by the subjects. The results indicated that all the human hand-based handles transmit less vibration and were rated to be more comfortable than the optimal cylindrical handle.
机译:在低频操作期间,手动工具手柄向手臂系统传输大量振动。因此,手工工具的精确设计对于克服肌肉骨骼疾病,手臂振动等非常重要。该研究旨在开发具有增加的接触面积并克服接触压力的最佳工具手柄,这导致不适和疼痛。使用3D印刷技术设计和制造了六种不同的人类手基最优手柄(手柄B到G)和一个最佳圆柱形手柄(手柄A),以评估低频振动的效果。使用15个受试者利用目标和主观测量评估手柄形状的效果。通过在0-100Hz的频率范围内的实验研究进行客观测量以评估振动传动性,并进行主观测量以基于舒适描述仪和手柄的整体舒适性来评估手柄。在每个受试者的手腕,弯头和肩部和手柄夹具的肩部记录旋转平均方形振动加速度,以评估每个手柄的振动传递率。发现手柄B的平均振动传动率最小,并被受试者更舒适地额定额定。结果表明,所有人类的手柄都传递较少的振动,并且额定额定速度比最佳圆柱形手柄更舒适。

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