机器人和自动化作为小型制造企业健康/安全干预措施的案例研究

IF 2.2 3区 工程技术 Q3 ENGINEERING, MANUFACTURING
Brian D. Lowe, Marie Hayden, James Albers, Steven Naber
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引用次数: 0

摘要

本文回顾了63个小型企业(250名员工)的案例研究经验,这些企业通过健康/安全干预资助计划获得了制造自动化设备。审查范围包括工业机器人(n = 17)、计算机数控(CNC)加工(n = 29)或其他可编程自动化系统(n = 17)等设备技术。从拨款申请中提取了工人赔偿(WC)索赔伤害的描述和确定的促使购买设备的风险因素。从案例研究报告中总结了雇主经验的其他方面,包括对肌肉骨骼疾病(MSD)风险因素影响的定性和定量评估,对生产力的影响以及员工对干预的接受程度。与风险因素大幅降低、受影响员工人均成本降低以及生产率提高相结合的案例研究包括CNC石材切割系统、CNC/垂直加工系统、装瓶自动化系统、塑料产品制造的CNC/路由系统以及乙烯基/地毯的CNC/切割系统。工业机器人的六个案例研究报告了这些不同制造业中MSD风险因素的定量减少:休闲食品;照相胶片、纸张、底片、化学制品;机器商店;皮革制品及相关产品;塑料制品;以及钢铁锻造。对健康/安全干预案例研究的回顾表明,先进的(可编程的)制造自动化,包括工业机器人,在大多数情况下减少了工作场所肌肉骨骼危险因素,并提高了过程生产率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Case studies of robots and automation as health/safety interventions in small manufacturing enterprises

Case studies of robots and automation as health/safety interventions in small manufacturing enterprises

Case studies of robots and automation as health/safety interventions in small manufacturing enterprises

This article reviews the experiences of 63 case studies of small businesses (<250 employees) with manufacturing automation equipment acquired through a health/safety intervention grant program. The review scope included equipment technologies classified as industrial robots (n = 17), computer numerical control (CNC) machining (n = 29), or other programmable automation systems (n = 17). Descriptions of workers' compensation (WC) claim injuries and identified risk factors that motivated the acquisition of the equipment were extracted from grant applications. Other aspects of the employer experiences, including qualitative and quantitative assessment of effects on risk factors for musculoskeletal disorders (MSD), effects on productivity, and employee acceptance of the intervention were summarized from the case study reports. Case studies associated with a combination of large reduction in risk factors, lower cost per affected employee, and reported increases in productivity were CNC stone cutting system, CNC/vertical machining system, automated system for bottling, CNC/routing system for plastics products manufacturing, and a CNC/Cutting system for vinyl/carpet. Six case studies of industrial robots reported quantitative reductions in MSD risk factors in these diverse manufacturing industries: snack foods; photographic film, paper, plate, and chemical; machine shops; leather goods and allied products; plastic products; and iron and steel forging. This review of health/safety intervention case studies indicates that advanced (programmable) manufacturing automation, including industrial robots, reduced workplace musculoskeletal risk factors, and improved process productivity in most cases.

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来源期刊
CiteScore
5.20
自引率
8.30%
发文量
37
审稿时长
6.0 months
期刊介绍: The purpose of Human Factors and Ergonomics in Manufacturing & Service Industries is to facilitate discovery, integration, and application of scientific knowledge about human aspects of manufacturing, and to provide a forum for worldwide dissemination of such knowledge for its application and benefit to manufacturing industries. The journal covers a broad spectrum of ergonomics and human factors issues with a focus on the design, operation and management of contemporary manufacturing systems, both in the shop floor and office environments, in the quest for manufacturing agility, i.e. enhancement and integration of human skills with hardware performance for improved market competitiveness, management of change, product and process quality, and human-system reliability. The inter- and cross-disciplinary nature of the journal allows for a wide scope of issues relevant to manufacturing system design and engineering, human resource management, social, organizational, safety, and health issues. Examples of specific subject areas of interest include: implementation of advanced manufacturing technology, human aspects of computer-aided design and engineering, work design, compensation and appraisal, selection training and education, labor-management relations, agile manufacturing and virtual companies, human factors in total quality management, prevention of work-related musculoskeletal disorders, ergonomics of workplace, equipment and tool design, ergonomics programs, guides and standards for industry, automation safety and robot systems, human skills development and knowledge enhancing technologies, reliability, and safety and worker health issues.
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