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首页> 外文期刊>Journal of Low Frequency Noise, Vibration and Active Control >Effects of Hand-Tool Coupling Conditions on the Isolation Effectiveness of Air Bladder Anti-Vibrations Gloves
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Effects of Hand-Tool Coupling Conditions on the Isolation Effectiveness of Air Bladder Anti-Vibrations Gloves

机译:手动耦合条件对气囊防震手套隔离效果的影响

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摘要

The goals of this study were to determine the vibration isolation effectiveness of a typical (air bladder) anti-vibration glove as a function of vibration frequency, and to investigate the effects of hand-tool coupling action and applied force level on the effectiveness. Six male volunteers were used in the study. A palm adapter method similar to that recommended in the current ISO standard for anti-vibration glove testing (ISO-10819, 1996) was used to measure the transmissibility of the glove. Three different handgrip actions (grip-only, push-only and combined grip and push), three force levels (50, 75 and 100 N), and a broad-band random spectrum were used in the experiment. This study found that the effectiveness of the glove generally increased with an increase in vibration frequency, while the glove did not provide any effective vibration isolation at frequencies less than or equal to 25 Hz. Under the same force level, the push-only action produced the greatest vibration attenuation while the grip-only action resulted in the lowest glove performance among the three actions. Increasing the force tended to increase vibration transmissibility at low frequencies (< 31.5 Hz), while transmissibility decreased at the middle frequencies (63 - 250 Hz). The knowledge generated by this study can be used to augment vibration exposure risk assessments and to promote the appropriate application of anti-vibration gloves at workplaces.
机译:这项研究的目的是确定典型(气囊)防振手套作为振动频率的函数的隔振效果,并研究手动工具的耦合作用和作用力水平对效果的影响。该研究使用了六名男性志愿者。使用类似于当前ISO标准中防振手套测试推荐的手掌适配器方法(ISO-10819,1996)来测量手套的透射率。实验中使用了三种不同的握把动作(仅握把,仅按推和组合的抓握和推动),三种力水平(50、75和100 N)和宽带随机频谱。这项研究发现,手套的有效性通常随振动频率的增加而提高,而手套在小于或等于25 Hz的频率下没有提供任何有效的振动隔离。在相同的力水平下,仅推动作会产生最大的振动衰减,而仅握持动作会导致三种动作中的手套性能最低。增大力会增加低频(<31.5 Hz)时的振动传递率,而在中频(63-250 Hz)处的传递率下降。这项研究产生的知识可用于增强振动暴露风险评估,并促进在工作场所适当使用防振手套。

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