Lean Manufacturing in Temperature Dependent Processes with Interruptions

A particular difficulty arises when lean manufacturing principles are applied to temperature dependent processes. Specifically, when an interruption occurs, lean manufacturing advocates stopping the production line to find the root cause of the problem. However, interruptions in temperature dependen...

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Main Authors: LEE, Wee Leong, Allwood, J. M.
Format: text
Language:English
Published: Institutional Knowledge at Singapore Management University 2003
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Online Access:https://ink.library.smu.edu.sg/sis_research/91
http://dx.doi.org/10.1108/01443570310501899
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spelling sg-smu-ink.sis_research-10902010-09-22T14:00:36Z Lean Manufacturing in Temperature Dependent Processes with Interruptions LEE, Wee Leong Allwood, J. M. A particular difficulty arises when lean manufacturing principles are applied to temperature dependent processes. Specifically, when an interruption occurs, lean manufacturing advocates stopping the production line to find the root cause of the problem. However, interruptions in temperature dependent processes will cause work-in-progress and process equipment to cool down and quality problems are likely when production restarts. This difficulty could be countered through a detailed process model, but apart from the difficulty of creating perfect process models with accurate inputs, the use of such a system would separate shop floor operators from the problem-solving process. Instead, a response to interruptions is sought in the form of a script of actions which can be used to train operators. In order to develop an appropriate script, a generic model of a set of temperature dependent processes is defined in which the states of processes and products are time dependent. A hypothetical profit function is defined for the processes and it is shown how this could be optimized by dynamic programming. The dynamic programming process is then translated into a script to guide operators in decision-making during interruptions. The script is demonstrated with a simulation model of an extrusion process, and the results suggest that the new script will result in improved throughput and reduced scrap in the presence of interruptions. [PUBLICATION ABSTRACT] 2003-01-01T08:00:00Z text https://ink.library.smu.edu.sg/sis_research/91 info:doi/10.1108/01443570310501899 http://dx.doi.org/10.1108/01443570310501899 Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University Business Computer Sciences Operations Research, Systems Engineering and Industrial Engineering
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Business
Computer Sciences
Operations Research, Systems Engineering and Industrial Engineering
spellingShingle Business
Computer Sciences
Operations Research, Systems Engineering and Industrial Engineering
LEE, Wee Leong
Allwood, J. M.
Lean Manufacturing in Temperature Dependent Processes with Interruptions
description A particular difficulty arises when lean manufacturing principles are applied to temperature dependent processes. Specifically, when an interruption occurs, lean manufacturing advocates stopping the production line to find the root cause of the problem. However, interruptions in temperature dependent processes will cause work-in-progress and process equipment to cool down and quality problems are likely when production restarts. This difficulty could be countered through a detailed process model, but apart from the difficulty of creating perfect process models with accurate inputs, the use of such a system would separate shop floor operators from the problem-solving process. Instead, a response to interruptions is sought in the form of a script of actions which can be used to train operators. In order to develop an appropriate script, a generic model of a set of temperature dependent processes is defined in which the states of processes and products are time dependent. A hypothetical profit function is defined for the processes and it is shown how this could be optimized by dynamic programming. The dynamic programming process is then translated into a script to guide operators in decision-making during interruptions. The script is demonstrated with a simulation model of an extrusion process, and the results suggest that the new script will result in improved throughput and reduced scrap in the presence of interruptions. [PUBLICATION ABSTRACT]
format text
author LEE, Wee Leong
Allwood, J. M.
author_facet LEE, Wee Leong
Allwood, J. M.
author_sort LEE, Wee Leong
title Lean Manufacturing in Temperature Dependent Processes with Interruptions
title_short Lean Manufacturing in Temperature Dependent Processes with Interruptions
title_full Lean Manufacturing in Temperature Dependent Processes with Interruptions
title_fullStr Lean Manufacturing in Temperature Dependent Processes with Interruptions
title_full_unstemmed Lean Manufacturing in Temperature Dependent Processes with Interruptions
title_sort lean manufacturing in temperature dependent processes with interruptions
publisher Institutional Knowledge at Singapore Management University
publishDate 2003
url https://ink.library.smu.edu.sg/sis_research/91
http://dx.doi.org/10.1108/01443570310501899
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