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Temporal leeway: can it help to reduce biomechanical load for older workers performing repetitive light assembly tasks?

机译:颞余地:它可以帮助降低旧工人进行重复灯装配任务的生物力学负荷吗?

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摘要

Current industrial production systems allow assembly of customised products which include additional elements distinguishing them from a reference model. This customisation can result in significant additional time constraints which compel workers to complete their tasks faster, which may pose problems for older workers. The objective of this laboratory study was to investigate the impact of restrictive or flexible pacing during assembly of customised products among groups of younger and older participants. The data gathered were used to analyse cycle-time, assembly performance, muscular load, and kinematic adaptations. The flexible pacing condition was found to improve production performance, increasing customised assembly cycle-time and reducing biomechanical load, for both young and older participants. However, as the task required fine manual dexterity, older participants were subjected to a higher biomechanical load, even in the flexible pacing scenario. These results should encourage assembly-line designers to allow flexible time constraints as much as possible and to be particularly attentive to the needs of older workers.
机译:目前的工业生产系统允许装配定制产品,包括与参考模型区分离出来的附加元素。此自定义可能导致重要的额外时间限制,迫使工人更快地完成其任务,这可能会对老年工人带来问题。该实验室研究的目的是调查在年轻人和较老的参与者组合的定制产品中的限制性或灵活起搏的影响。收集的数据用于分析循环时间,装配性能,肌肉载荷和运动适应。对于年轻人和较老的参与者,发现柔性起搏条件改善了生产性能,增加了定制的装配周期时间和减少生物力学负荷。然而,由于任务所需的良好手动灵巧,即使在灵活的起搏场景中,旧的参与者也会受到更高的生物力学负荷。这些结果应该鼓励装配线设计师尽可能灵活的时间限制,并特别关注老年工人的需求。

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