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Distributed vibration isolation and manual dexterity of anti-vibration gloves: is there a correlation?

机译:分布式隔振和防振手套的手动灵活性:是否存在相关性?

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摘要

This study focuses on the integrated performance of anti-vibration (AV) gloves in terms of manual dexterity and distributed palm and fingers' vibration transmissibility. Experiments were designed to measure vibration transmission and manual dexterity performance of 10 different gloves using 15 subjects. The results showed all gloves impeded manual dexterity, while five gloves satisfied the AV glove screening criteria. Glove type yielded a significant effect on manual dexterity (p 0.001) and vibration transmissibility (p = 0.001). Manual dexterity decreased nearly linearly with an increase in glove thickness (p 0.05), while palm and fingers' vibration transmissibility in high-frequency range was negatively correlated with glove thickness (R-2 0.70). A strong correlation was evident between glove material stiffness and the H-frequency range palm vibration transmissibility (R-2 = 0.8). While the vibration isolation of a glove is strongly related to material properties at the palm, the dexterity performance is dependent on design factors such as thickness and bulkiness. Practitioner summary Anti-vibration gloves are used to isolate hand from power tools vibration, while these may adversely affect manual dexterity. Vibration isolation was correlated with material properties and thickness, while dexterity was correlated with thickness alone. Glove thickness is a vital parameter for realising a compromise between vibration isolation and manual dexterity.
机译:本研究侧重于手动灵活和分布手掌和手指振动传递率方面的抗振(AV)手套的综合性能。实验旨在使用15个受试者测量10种不同手套的振动传输和手动灵活性。结果表明,所有手套阻碍了手动灵巧,而五个手套满足AV手套筛选标准。手套类型对手动灵活性产生显着影响(P <0.001)和振动传播性(P <= 0.001)。手动灵巧几乎线性地随着手套厚度的增加而下降(P <0.05),而手掌和手指在高频范围内的振动传动率与手套厚度(R-2> 0.70)负相关。在手套材料刚度和H频率范围棕榈振动透射性(R-2> = 0.8)之间是明显的强烈的相关性。虽然手套的振动隔离与手掌的材料性能强烈相关,但灵巧性能取决于厚度和粗糙度等设计因素。从业者总结防振手套用于隔离手动工具振动的手,而这些可能会对手动灵活性产生不利影响。振动隔离与材料性能和厚度相关,而灵活性与单独的厚度相关。手套厚度是用于实现振动隔离和手动灵活性之间的折衷的重要参数。

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