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Evaluation of Different Pneumatic Pressure Levels and Tool Types for Reducing Hand-Arm Vibration and Dust Exposures at a Foundry

机译:评估不同的气动压力水平和工具类型,以减少铸造厂的手部振动和粉尘暴露

摘要

Occupational exposures to hand-arm vibration and dust have been shown to have deleterious human health effects. Exposure to vibration from pneumatic tools can result in Hand-arm Vibration Syndrome (HAVS), which is a collection of vascular, sensorineural, and musculoskeletal disorders. Exposure to dust can result in a variety of adverse respiratory symptoms. The use of a low-frequency, high-magnitude sand rammer tool during mold-making processes at a foundry could result in significant exposure to these hazards, thus it is important to mitigate the associated risks in order to ensure worker safety. The goal of this study was to evaluate whether different pneumatic pressure levels and sand rammer types have an effect on reducing hand-arm vibration and dust exposures at a foundry. Vibration and dust measurements were obtained at three different pneumatic pressure levels (90 psi, 80 psi, 70 psi) and for three different sand rammer types (LM, SM, T). The primary concern of the study was reducing hand-arm vibration exposure. Measurements were taken in compliance with ISO 5349-1 resulting in frequency-weighted, root-mean-square (rms) acceleration values (m/s2). Significant differences in mean rms acceleration were observed across all pneumatic pressure levels and sand rammer types. At 90 psi the mean rms acceleration value was 25.53 m/s2, decreasing to 19.58 m/s2 at 80 psi, and further decreasing to 18.38 m/s2 at 70 psi. The mean rms acceleration values were 19.63 m/s2 for sand rammer LM, 21.46 m/s2 for SM, and 19.95 m/s2 for T. The results of this study indicate that reducing pneumatic pressure levels can reduce vibration exposure in the workplace when using low-frequency, high-magnitude tools. The results also indicate that the use of different sand rammer types produces differences in vibration exposure when tested across all pneumatic pressure levels. Dust measurements were taken concurrently with vibration measurements. The number of dust particles was counted for each pneumatic pressure level and sand rammer type. Overall, the mean particle count for the dust measurements was the highest at 90 psi (41,681) followed by 70 psi (33,514), and 80 psi (26,047). Sand rammer SM had the highest mean dust particle count at 35,732, followed by T at 34,460, and LM at 31, 382. The results indicate that lowering pneumatic pressure levels could potentially reduce dust exposure in the workplace when using a percussive tool such as a sand rammer. However, variability in the sampling conditions related to dust measurements weaken the association.
机译:业已表明,手臂振动和尘土的职业暴露会对人体健康产生有害影响。暴露于气动工具的振动下可能会导致手臂振动综合症(HAVS),这是血管,感觉神经和肌肉骨骼疾病的集合。接触灰尘会导致各种不利的呼吸道症状。在铸造厂的模具制造过程中使用低频,高强度的夯锤工具可能会严重暴露于这些危险之中,因此减轻相关风险以确保工人安全非常重要。这项研究的目的是评估不同的气压水平和夯锤类型是否对减少铸造厂的手臂振动和粉尘接触有影响。在三种不同的气压水平(90 psi,80 psi,70 psi)和三种不同的夯锤(LM,SM,T)下获得了振动和灰尘测量值。该研究的主要关注点是减少手臂振动暴露。根据ISO 5349-1进行测量,得出频率加权的均方根(rms)加速度值(m / s2)。在所有气压水平和夯锤类型之间均观察到均方根加速度的显着差异。在90 psi时,平均均方根加速度值为25.53 m / s2,在80 psi时降至19.58 m / s2,在70 psi时进一步降至18.38 m / s2。夯锤LM的平均均方根加速度值为19.63 m / s2,SM为21.46 m / s2,T为19.95 m / s2。这项研究结果表明,降低气压水平可以减少使用时的工作场所振动低频,高幅值工具。结果还表明,在所有气压水平下进行测试时,使用不同类型的夯锤会导致振动暴露的差异。灰尘测量与振动测量同时进行。对每种气压水平和夯锤类型计算灰尘颗粒的数量。总体而言,粉尘测量的平均颗粒数最高,为90 psi(41,681),其次是70 psi(33,514)和80 psi(26,047)。夯锤SM的平均灰尘颗粒数最高,为35,732,其次为T,为34,460,LM为31,382。结果表明,在使用诸如夯锤。但是,与粉尘测量有关的采样条件的可变性削弱了这种关联。

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    Brown Kyle;

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  • 年度 2016
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