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Manual Bar Bending-An Occupational Hazard for Construction Workers in Developing Nations

机译:手动钢筋弯曲-发展中国家建筑工人的职业危害

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Bar bending is the process of bending reinforcement bars to required angles in civil and construction engineering. Manual bar bending involves strenuous physical activity, which is usually performed in a poor ergonomic environment at a construction worksite. This could lead to chronic musculoskeletal disorders such as low back pain among bar benders. The aim of this study is to assess the ergonomics of manual bar bending and thereby develop a customized optimal workplace for bar bending. Biomechanical analysis was done using a three-dimensional Schultz-Andersson model to determine the influence of the diameter of the bar on the compressive force (F_c) at L_5IS_1. The effect of table height, grip arm distance, and back bend angle on F_c were also evaluated. F_c decreased up to 53%, with an increase of table height by 400 mm, and up to 41%, with an increase of grip arm distance by 500 mm; however it increased with back bend angle. F_c was higher than the NIOSH safety limit of (3.4 kN) in all cases except when bending 8 mm bars. A quick field reference for optimal table height and grip arm distance was prepared based on subjects' anthropometry and diameter, using Nash bargaining principles.
机译:钢筋弯曲是在土木和建筑工程中将钢筋弯曲到所需角度的过程。手动钢筋弯曲需要剧烈的身体活动,通常是在建筑工地的不良人体工程学环境中进行的。这可能会导致慢性肌肉骨骼疾病,例如弯曲杠中的腰痛。这项研究的目的是评估手动弯曲钢筋的人体工程学,从而开发出定制的弯曲钢筋最佳工作场所。使用三维Schultz-Andersson模型进行了生物力学分析,以确定钢筋直径对L_5IS_1处的压缩力(F_c)的影响。还评估了工作台高度,握臂距离和后弯角度对F_c的影响。 F_c降低了53%,台面高度增加了400 mm,F_c降低了41%,握臂距离增加了500 mm;但是随着后弯角度的增加而增加。在所有情况下,F_c均高于NIOSH安全极限(3.4 kN),但弯曲8 mm钢筋时除外。使用纳什议价原则,根据受试者的人体测量学和直径,为最佳工作台高度和握臂距离准备了快速参考。

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