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人工袋式码垛操作中,操作员位置、托盘方向和码垛条件对下背部负荷的影响。

The effects of operator position, pallet orientation, and palletizing condition on low back loads in manual bag palletizing operations.

作者信息

Gallagher Sean, Heberger John R

机构信息

Department of Industrial and Systems Engineering, Auburn University, 3304 Shelby Center, Auburn, AL 36849-5346, USA.

National Institute for Occupational Safety and Health (NIOSH), Office of Mine Safety and Health Research, 626 Cochrans Mill Road, Pittsburgh, PA 15236-0070, USA.

出版信息

Int J Ind Ergon. 2015 May;47:84-92. doi: 10.1016/j.ergon.2015.03.005.

Abstract

UNLABELLED

Many mining commodities are packaged and shipped using bags. Small bags are typically loaded onto pallets for transport and require a significant amount of manual handling by workers. This specific task of manual bag handling has been associated with the development of musculoskeletal disorders (MSDs), especially low back disorders. This study evaluates the biomechanical demands of different work layouts when performing manual palletizing of small bags, and evaluates the biomechanical stresses associated with different stacking techniques. Results indicate that peak forward bending moments as well as spinal compression and shear forces are higher when the pallet is situated at the side of the conveyor as opposed to the end of the conveyor. At low levels of the pallet, controlled bag placement results in higher peak forward bending moments than stacking at higher levels and when dropping the bag to lower levels. The results of this study will be used to inform the development of an audit tool for bagging operations in the mining industry.

RELEVANCE TO INDUSTRY

In many cases for workers loading small bags, compression forces exceed the NIOSH criterion of 3400 N. Orientation of the pallet has a significant impact on spinal compression, and positioning the pallet at the end of the conveyor reduces the estimated compressive loading on the lumbar spine by approximately 800 N.

摘要

未标注

许多采矿商品使用袋子进行包装和运输。小袋子通常被装载到托盘上以便运输,并且需要工人进行大量的人工搬运。这种人工搬运袋子的特定任务与肌肉骨骼疾病(MSD)的发展有关,尤其是下背部疾病。本研究评估了在对小袋子进行人工码垛时不同工作布局的生物力学需求,并评估了与不同堆叠技术相关的生物力学应力。结果表明,与托盘位于输送机末端相比,当托盘位于输送机一侧时,向前弯曲的峰值力矩以及脊柱的压缩力和剪切力更高。在托盘较低位置时,与在较高位置堆叠以及将袋子扔到较低位置相比,有控制地放置袋子会导致更高的向前弯曲峰值力矩。本研究的结果将用于为采矿业袋装作业审核工具的开发提供信息。

与行业的相关性

在许多情况下,对于装载小袋子的工人来说,压缩力超过了美国国家职业安全与健康研究所(NIOSH)3400 N的标准。托盘的方向对脊柱压缩有重大影响,将托盘放置在输送机末端可使腰椎的估计压缩负荷降低约800 N。

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本文引用的文献

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Fatigue fracture of human lumbar vertebrae.人腰椎疲劳骨折。
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