Research Article

Manufacturing-Production Systems and Their Importance: Evaluation of Flexible Manufacturing Systems (FMS)

Number: 29 December 1, 2021
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Manufacturing-Production Systems and Their Importance: Evaluation of Flexible Manufacturing Systems (FMS)

Abstract

Flexible manufacturing systems (FMS), transitional or absolute customer to encounter the various requirements and preferences, helping to protect organizations which in the circumstances of competitive environment in eachother exactly known always to created, are constructed as a structure that could really keep producing various products and services with minor modifications. Computers are used to help manufacturing lines. This research provides the literature review of manufacturing-production systems, categorisation of manufacturing techniques, advanced manufacturing technologies, manufacturing process modeling, modeling definitions, and database organizational structures, data regulations and procurement for Flexible Manufacturing Systems-Techniques, and eventually the research conclusion and recommendation. Mostly with significant developments in the manufacturing sector, the database idea has become an essential and fundamental element of every type of production system. Its most fundamental tasks are the preservation and accessibility of services required to regulate industrial operations. This study also utilizes SWOT (Strengths, Weaknesses, Opportunities, and Threats) evaluation to explore the appropriateness of manufacturing techniques, FMS in industrial manufacturing automated processes. The highlighted elements indicate manufacturing systems' considerable potential to address advanced manufacturing modernization challenges.

Keywords

References

  1. Alla, H., Ladet, P., Martinez, J., and Silva, M.(1985). Modelling and Validation of complex systems by colored Petri Nets: Application to a Flexible Manufacturing System, Advances in Petri Nets", Lecture Notes in Computer Science, 188, Springer Verlag, Berlin, 15-31.
  2. Askin, Ronald G.., Charles R. Standridge, Charles R.. Standridge (1993). Modeling and Analysis of Manufacturing Systems, John Wiley and Sons Incorporated, 461 p.
  3. BaneIjee, S.K. and AI-Maliki, I. (1988). A structured approach to FMS modelling, International Journal of Computer Integrated Manufacturing, 1(2), 77-88.
  4. Banker,S. (2018). Transitioning to Flexible Assembly Lines, https://www.forbes.com/sites/stevebanker/2018/06/04/transitioning-to-flexible-assembly-lines/?sh=4a63de6541e0, Jun 4, 2018.
  5. Barad, M. (1992). Impact of some flexibility factors in FMSs - a performance evaluation approach", International Journal of Production Research, 30(2), 2587-2602.
  6. Barash, M.M. (1982). Computer Manufacturing Systems for discrete products, The Handbook of Industrial Engineering, John Wiley and Sons.
  7. Bard, Y. (1979). Some extentions to multiclass queueing network analysis, Performance of Computer Systems (M. Arato. Editor) North-Holland, Amsterdam, 1979.
  8. Barry, L.J. (1986). Introduction to Computer Numerical Control, Pitman, London, New York : Wiley, 245 p.

Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

December 1, 2021

Submission Date

November 15, 2021

Acceptance Date

December 10, 2021

Published in Issue

Year 2021 Number: 29

APA
Erdil, A. (2021). Manufacturing-Production Systems and Their Importance: Evaluation of Flexible Manufacturing Systems (FMS). Avrupa Bilim Ve Teknoloji Dergisi, 29, 331-342. https://doi.org/10.31590/ejosat.1024198

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