首页> 外文期刊>Journal of occupational and environmental hygiene >Whole glove permeation of cyclohexanol through disposable nitrile gloves on a dextrous robot hand: Fist clenching vs. non-clenching
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Whole glove permeation of cyclohexanol through disposable nitrile gloves on a dextrous robot hand: Fist clenching vs. non-clenching

机译:环己醇通过一次性腈手套在吸食机器人手上的整体手套渗透:拳击粘合与非咬合

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摘要

The differences in permeation parameters when a gloved dextrous robot hand clenched and did not were investigated with the dynamic permeation system described in the companion paper. Increased permeation through the gloves of the present study for cyclohexanol when the gloved hand clenched depended on glove thickness and porosity for cyclohexanol permeation. The Sterling glove, the thinnest and most porous, was the least protective. Hand clenching promoted more permeation for the Sterling glove in terms of breakthrough times, steady state permeation rate, and diffusion coefficient. The Safeskin glove showed increased permeation only for the steady state permeation rate but not breakthrough times or diffusion coefficient. The Blue and Purple gloves showed no differences when the hand was clenching or not. The correlational analysis supported differences between the clenching and non-clenching situations, and the risk assessment considered the worst and best scenarios relative to one and two hydrated hands that were and were not protected by specific gloves.
机译:当一个戴着手套的灵巧机器人手握紧和不握紧时,渗透参数的差异用本文描述的动态渗透系统进行了研究。当戴手套的手握紧时,本研究手套对环己醇的渗透增加取决于手套厚度和环己醇渗透的孔隙率。斯特林手套是最薄、最多孔的,防护性最低。在穿透时间、稳态渗透速率和扩散系数方面,握紧双手促进了Sterling手套的更多渗透。Safeskin手套仅在稳态渗透速率下显示出渗透性增加,而在穿透时间或扩散系数上则没有。当手握紧与否时,蓝色和紫色手套没有任何区别。相关分析支持握紧和非握紧情况之间的差异,风险评估考虑了与一只和两只水合的手相关的最坏和最好的情况,这些手都有特定的手套保护,也没有特定的手套保护。

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