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Workforce development: understanding task-level job demands-resources, burnout, and performance in unskilled construction workers

机译:劳动力发展:理解任务级工作要求 - 资源,倦怠和在不熟练的建筑工人中的表现

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摘要

This study examines how task demands and personal resources affect unskilled construction worker productivity and safety performance. It extends the job demands-resources (JD-R) burnout model to show how job characteristics interact with burnout to influence performance. A modified model was designed to measure burnout, with exhaustion and disengagement among unskilled construction workers taken into consideration. An observational study was conducted in a laboratory environment to test the research hypotheses and assess the prediction accuracies of outcome constructs. Twenty-two subjects participated in multiple experiments designed to expose them to varying levels of task-demands and to record their personal resources as they performed common construction material-handling tasks. Specifically, both surveys and physiological measurements using wearable sensors were used to operationalize the model constructs. Moreover, partial least squares structural equation modeling was applied to analyze data collected at the task and individual levels. Exhaustion and disengagement exhibited different relationships with productivity and safety performance outcomes as measured by unit rate productivity and ergonomic behavior, respectively. Subjects with high burnout and high engagement showed high productivity but low safety performance. Thus, exhausted workers stand a greater chance of failing to comply with safety. As the sample and the task performed in the experiment do not cover the experience and trade of all construction workers, our findings are limited in their application to entry-level and unskilled workers, whose work is mainly manual material-handling tasks.
机译:本研究审查了任务需求和个人资源如何影响非熟练建筑工人的生产力和安全性能。它扩展了作业需求 - 资源(JD-R)Burnout模型,以显示工作特性如何与倦怠相互作用以影响性能。修改后的模型旨在衡量倦怠,在考虑不熟练的建筑工人中的疲惫和脱离。在实验室环境中进行了一个观察研究,以测试研究假设并评估结果构建的预测准确性。二十二个受试者参加了多个实验,旨在使他们暴露在不同的任务需求水平,并在他们执行普通的建筑物质处理任务时记录其个人资源。具体地,使用可穿戴传感器的调查和生理测量用于运营模型构建体。此外,应用部分最小二乘结构方程建模用于分析任务和各个级别收集的数据。由于单位率生产力和人体工程学行为,疲惫和脱离表现出与生产率和安全性能结果的不同关系。具有高倦怠和高啮合的受试者显示出高生产率但安全性能低。因此,疲惫的工人无法遵守安全性的可能性。作为样本和实验中的任务不包括所有建筑工人的经验和贸易,我们的研究结果在其在入门级和非熟练工人的申请中有限,其工作主要是手动材料处理任务。

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