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首页> 外文期刊>International Journal of Industrial Ergonomics >Ergonomic interventions for the furniture manufacturing industry part I--lift assist devices
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Ergonomic interventions for the furniture manufacturing industry part I--lift assist devices

机译:家具制造业第一部分的人体工程学干预措施-提升辅助装置

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The objectives of this intervention research project were to develop and evaluate engineering controls for the reduction of low back injury risk in workers in the furniture manufacturing industry. An analysis of injury/illness records and survey data identified upholsterers and workers in the machine room as two occupations within the industry at elevated risk for low back injury. A detailed ergonomic evaluation of the activities performed by these workers was then performed and the high risk subtasks were identified. The analysis for upholsterers revealed: (1) high forces during the loading and unloading of the furniture to and from the upholstery bucks, (2) static awkward postures (extreme flexion> 50°, lateral bending> 20°, twisting > 20°) during the upholstering of the furniture, and (3) repetitive bending and twisting throughout the operation. For machine room workers, this ergonomic evaluation revealed repetitive bending and twisting (up to 5 lifts/mm and sagittal flexion> 80250L? lateral bending> 15°, twisting > 45°) when getting wooden components from or moving them to the shop carts that are used to transport these materials. Engineering interventions were then developed and evaluated in the laboratory to document the reduction of exposure to these stressors. The height-adjustable upholstery buck system eliminated the lifting and lowering requirements and affected trunk kinematics during the upholstery operation by reducing peak sagittal angles by up to 79% (average: 52%; range: 27-79%), peak sagittal accelerations by up to 42% (average: 71%; range: 074%) and peak lateral position by up to 31% (average: 20%; range: 12-31%), and showed no impact on time to complete the task. The machine room lift reduced peak sagittal angle by up to 90% (average: 76%; range: 6490%), peak sagittal accelerations by up to 86% (average: 72%; range: 59-86%) and had a positive impact on the time to complete the task (average reduction: 19%).
机译:该干预研究项目的目标是开发和评估工程控制措施,以减少家具制造业工人的下背部受伤风险。对伤害/疾病记录的分析和调查数据确定,机修室内的装潢工人和工人是该行业中下背部受伤风险较高的两个职业。然后对这些工人进行的活动进行了详细的人体工程学评估,并确定了高风险子任务。对室内装潢人员的分析表明:(1)在家具往返于室内装饰块的装卸过程中,施加的力很大;(2)静态的尴尬姿势(最大屈曲> 50°,横向弯曲> 20°,扭转> 20°) (3)在整个操作过程中反复弯曲和扭曲。对于机房工人,此人体工程学评估表明,在将木质部件从商店中搬出或搬到商店中时,会反复弯曲和扭曲(最大5升/毫米,矢状弯曲度>80250L?横向弯曲度> 15°,扭曲度> 45°)。用于运输这些物料的推车。然后开发了工程干预措施,并在实验室中进行了评估,以证明减少了这些压力源的暴露。高度可调的座垫降压系统消除了升举和降下要求,并在座垫操作过程中降低了行李箱的运动学,通过将最大矢状角减小了79%(平均:52%;范围:27-79%),将最大矢状加速度减小了至42%(平均:71%;范围:074%)和最大横向位置最多增加31%(平均:20%;范围:12-31%),并且对完成任务的时间没有影响。机房升降机可将最大矢状角降低90%(平均:76%;范围:6490%),将最大矢状加速度降低86%(平均:72%;范围:59-86%),并具有正值。对完成任务时间的影响(平均减少:19%)。

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