Quick changeover design: a new Lean methodology to support the design of machines in terms of rapid changeover capability

IF 7.3 2区 工程技术 Q1 ENGINEERING, INDUSTRIAL Journal of Manufacturing Technology Management Pub Date : 2023-07-07 DOI:10.1108/jmtm-12-2022-0430
M. Braglia, Francesco Di Paco, M. Frosolini, Leonardo Marrazzini
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Abstract

PurposeThis paper presents Quick Changeover Design (QCD), which is a structured methodological approach for Original Equipment Manufacturers to drive and support the design of machines in terms of rapid changeover capability.Design/methodology/approachTo improve the performance in terms of set up time, QCD addresses machine design from a single-minute digit exchange of die (SMED). Although conceived to aid the design of completely new machines, QCD can be adapted to support for simple design upgrades on pre-existing machines. The QCD is structured in three consecutive steps, each supported by specific tools and analysis forms to facilitate and better structure the designers' activities.FindingsQCD helps equipment manufacturers to understand the current and future needs of the manufacturers' customers to: (1) anticipate the requirements for new and different set-up process; (2) prioritize the possible technical solutions; (3) build machines and equipment that are easy and fast to set-up under variable contexts. When applied to a production system consisting of machines subject to frequent or time-consuming set-up processes, QCD enhances both responsiveness to external market demands and internal control of factory operations.Originality/valueThe QCD approach is a support system for the development of completely new machines and is also particularly effective in upgrading existing ones. QCD's practical application is demonstrated using a case study concerning a vertical spindle machine.
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快速切换设计:一种新的精益方法,支持快速切换能力方面的机器设计
本文提出了快速转换设计(QCD),这是原始设备制造商在快速转换能力方面驱动和支持机器设计的结构化方法。设计/方法/方法为了在设置时间方面提高性能,QCD从一分钟的数字交换模具(SMED)解决机器设计。尽管QCD旨在帮助设计全新的机器,但它也可以用于支持对已有机器进行简单的设计升级。QCD分为三个连续的步骤,每个步骤都由特定的工具和分析表单支持,以促进和更好地组织设计人员的活动。发现sqcd帮助设备制造商了解制造商客户当前和未来的需求,以:(1)预测新的和不同的设置过程的要求;(2)对可能的技术方案进行优先排序;(3)制造易于在各种环境下快速设置的机器和设备。当应用于由机器组成的生产系统时,需要进行频繁或耗时的设置过程,QCD提高了对外部市场需求的响应能力和工厂运营的内部控制。原创性/价值QCD方法是开发全新机器的支持系统,在升级现有机器方面也特别有效。以立式主轴机床为例,说明了QCD的实际应用。
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来源期刊
Journal of Manufacturing Technology Management
Journal of Manufacturing Technology Management Engineering-Control and Systems Engineering
CiteScore
16.30
自引率
7.90%
发文量
45
期刊介绍: The Journal of Manufacturing Technology Management (JMTM) aspires to be the premier destination for impactful manufacturing-related research. JMTM provides comprehensive international coverage of topics pertaining to the management of manufacturing technology, focusing on bridging theoretical advancements with practical applications to enhance manufacturing practices. JMTM seeks articles grounded in empirical evidence, such as surveys, case studies, and action research, to ensure relevance and applicability. All submissions should include a thorough literature review to contextualize the study within the field and clearly demonstrate how the research contributes significantly and originally by comparing and contrasting its findings with existing knowledge. Articles should directly address management of manufacturing technology and offer insights with broad applicability.
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