使用方法-时间-测量基本系统评估自动化的适用性

Eng Pub Date : 2024-05-24 DOI:10.3390/eng5020053
Malte Jakschik, Felix Endemann, Patrick Adler, Lennart Lamers, Bernd Kuhlenkötter
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引用次数: 0

摘要

由于装配过程的高度复杂性和多样性,以人机协作(HRC)为特征的混合装配系统具有重要意义。必须有效地确定合适的使用案例,以确保成本效益和在相应装配系统中的成功部署。本文介绍了一种评估 HRC 潜力的方法,可根据现有或即将收集的时间数据推导出自动化适用性。这样就能对流程做出快速、有利的说明,从而有效地应用于潜在分析。该方法基于行业内广泛使用的方法-时间-测量基本系统 (MTM-1) 程序。这确保了在工业环境中的良好适应性。它对现有模型进行了扩展,并研究了通过在人类和机器人之间进行有效分配,可以优化多少装配活动和流程。在流程模型中,借助指定的 MTM 运动时间系统对装配流程进行了细分和分析。根据现有方法得出的标准,对各个活动和子流程是否适合自动化进行评估。使用两个四场矩阵对分析结果进行解释和分类。使用电解槽生产中的一个示例产品对流程进行了评估,该产品目前主要由手工组装。为了达到较高的报表可靠性,需要进一步开展工作,对结果进行全面分类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing the Suitability of Automation Using the Methods–Time–Measurement Basic System
Due to its high complexity and the varied assembly processes, hybrid assembly systems characterized by human–robot collaboration (HRC) are meaningful. Suitable use cases must be identified efficiently to ensure cost-effectiveness and successful deployment in the respective assembly systems. This paper presents a method for evaluating the potential of HRC to derive automation suitability based on existing or to-be-collected time data. This should enable a quick and favorable statement to be made about processes, for efficient application in potential analyses. The method is based on the Methods–Time–Measurement Basic System (MTM-1) procedure, widely used in the industry. This ensures good adaptability in an industrial context. It extends existing models and examines how much assembly activities and processes can be optimized by efficiently allocating between humans and robots. In the process model, the assembly processes are subdivided and analyzed with the help of the specified MTM motion time system. The suitability of the individual activities and sub-processes for automation are evaluated based on criteria derived from existing methods. Two four-field matrices were used to interpret and classify the analysis results. The process is assessed using an example product from electrolyzer production, which is currently mainly assembled by hand. To achieve high statement reliability, further work is required to classify the results comprehensively.
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Eng
Eng
CiteScore
2.10
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