The effects of designing quality management technical standards on product maturity and excellence
الموضوعات :Hojjat Moeeni 1 , Mehrdad Javadi 2 , Sadigh Raissi 3
1 - Department of Mechanical Engineering, South Tehran Branch, Islamic Azad University, Tehran, Iran
2 - Department of Mechanical Engineering, South Tehran Branch, Islamic Azad University, Tehran, Iran
3 - Department of Industrial Engineering, South Tehran Branch, Islamic Azad University, Tehran, Iran
الکلمات المفتاحية: product quality, Management Systems, excellence, product development, International standards,
ملخص المقالة :
Due to the development of specialized quality management standards and the importance of product design and development in design and manufacturing organizations, the need to use them correctly and appropriately could help grow and improve the overall quality of the product. For this reason, in this article, we have focused on product design and development requirements in these technical quality management standards. Our methodology is the combination of careful study and numerical methods for analyzing the impact and overlap of the product design and development clause in technical quality management standards that have led to the proper choice of standard and the correct sequence of implementation for product excellence and maturity and the impact of each of these standards in the product’s maturity. Our most important findings are the weight of each of these standards on the maturity and quality of the product and the amount of growth resulting from the correct order of use in a defined period of time that can create up to 70% growth in product quality. Because product design is a specialized and complex process, these findings help better understand practical requirements and provide a consistent logical path to growth and overall quality based on these recommended standards that are worth using in organizations without Considering the scope of their activities.
[1] I. E. C. IEC, "IEC 61160-Design Review," IEC
publications, Geneva, 2005.
[2] L. William, J. N. Christopher, W. Ke, R. Reul and
M. Albrecht , "Conjoint Analysis and Discrete
Choice Experiments for Quality Improvement,"
Journal of Quality Technology, vol. 45, no. 1, pp.
74-99, 2013.
[3] K. Ruamchat, N. Thawesaengskulthai and C.
Pongpanich, "A method of prioritizing quality
improvement in aviation refuelling services at
airport," Advances in Mechanical Engineering,
vol. 9, no. 6, pp. 1-12, 2017.
[4] P. Blessner, T. A. Mazzuchi and S. Sark, "ISO
9000 impact on product quality in a defense
procurement environment," The TQM Journal,
vol. 25, no. 3, pp. 295-308, 2013.
[5] B. S. Institution, "Quality management systems
fundamentals and vocabulary-ISO9000," BSI,
London, 2015.
[6] R. K. Jain and A. Samrat, "A Study of Quality
Practices of Manufacturing Industries in
Gujarat," Social and Behavioral Sciences, vol.
189, pp. 320-334, 2015.
[7] B. Başaran, "The effect of ISO quality
management system standards on industrial
property rights in Turkey," World Patent
Information, vol. 45, pp. 33-46, 2016.
[8] S. Roper, P. Micheli, J. H. Love and P. Vahter,
"The roles and effectiveness of design in new
product development: A study of Irish,"
Research policy, vol. 45, no. 1, p. 319–329, 2016.
[9] D. C. Montgomery and C. M. Borror, "Systems
for modern quality and business improvement,,"
Quality Technology & Quantitative
Management, vol. 14, no. 4, pp. 343-352, 2017.
[10] L. &. D. P. Fonseca, "ISO 9001:2015 EditionManagement, Quality and Value," International
Journal for Quality Research, vol. 11, no. 1, pp.
149-158, 2017.
[11] J. &. M. A. Gruszka, "The new IATF 16949:2016
standard in the automotive supply chain,"
Research in Logistics and Production, vol. 7, pp.
311-318, 2017.
[12] I. Laskurain-Iturbe, G. Arana-Landín , I. HerasSaizarbitoria and O. Boiral, "How does IATF
16949 add value to ISO 9001? An empirical
study," Total Quality Management & Business
Excellence, vol. 32, no. 11-12, pp. 1341-1358,
2020.
[13] F. Geremia, "Quality aspects for medical devices,
quality system ,and certification process,"
Microchemical Journal, vol. 136, pp. 300-306,
2017.
[14] B. Camburn and K. Wood, "Principles of maker
and DIY fabrication: Enabling design prototypes
at low cost," Design Studies, vol. 58, pp. 63-88,
2018.
[15] X. Niu, S. Qin, H. Zhang, M. Wang and W. Rose,
"Exploring product design quality control and
assurance under both traditional and
crowdsourcing-based design environments,"
Advances in Mechanical Engineering, vol. 10,
no. 12, pp. 1-23, 2018.
[16] N. Cross, "Developing design as a discipline,"
Journal of Engineering Design, vol. 20, no. 12,
pp. 691-708, 2018.
[17] B. M. Colosimo, Q. Huang, T. Dasgup and F.
Tsung, "Opportunities and challenges of quality
engineering for additive manufacturing," Journal
of Quality Technology, vol. 50, no. 3, pp. 233-
252, 2018.
[18] I. O. f. Standardization, "Guidance to achieve
sustained success," ISO, Geneva, 2018.
J I E I
[19] C. J. Atman, "Design timelines: Concrete and
sticky," Design Studies, vol. 65, pp. 125-151,
2019.
[20] J. J. Oschman, "A conceptual framework
implementing An AS9100 quality management
system for the aerospace industry.," South
African Journal of Industrial Engineering, vol.
30, no. 2, 2019.
[21] P. Lloyd, "You make it and try it out:seeds of
design discipline futures," Design Studies, vol.
65, pp. 167-181, 2019.
[22] C.-H. Chen and C.-Y. Chou, "The integrated
quality control model with product inspection
and process improvement," Quality Technology
& Quantitative Management,, vol. 17, no. 06, pp.
646-660, 2020.
[23] K. Stylidis, C. Wickman and R. Söderberg,
"Perceived quality of products: a framework and
attributes ranking method," Journal Of
Engineering Design, vol. 31, no. 1, p. 37–67,
2020.
[24] S. Pedersen, "Staging negotiation spaces: A codesign," Design Studies, vol. 68, pp. 58-81, 2020.
[25] L. Hillersdal, A. P. Jespersen , B. Oxlund and B.
Bruun, "Affect and Effect in Interdisciplinary
Research Collaboration," Science & Technology
Studies, vol. 33, no. 2, pp. 66-82, 2020.
[26] H. Kohl, Industry-Specific Standards for
Management Systems. In: Standards for
Management Systems., Springer Nature, 2020.
[27] I. O. f. S. ISO-TC76,
"https://www.iso.org/standard/67773.html," 05
2020. [Online]. Available:
https://www.iso.org/standard/67773.html.
[28] J. Jardine and S. Writer,
"https://www.mastercontrol.com/gxplifeline/iso_13485_overview_0110/," 26 August
2020. [Online]. Available:
https://www.mastercontrol.com. [Accessed 23
01 2021].
[29] K. Savolainen and S. Hyysalo, "User
Representations as a Design Resource:
Representational Work in Achieving
Accountable Design Without Access to Users,"
Science & Technology Studies, vol. 34, no. 2, p.
25–45, 2021.
[30] K. Wang, N. Zhao, Q. He and J. Xu, "A quality
analysis method for three-dimensional model in
aircraft structural parts design," Advances in
Mechanical Engineering, vol. 13, no. 3, p. 1–16,
2021.
[31] F. Nematkhah, S. Raissi and V. Ghezavati, "An
integrated fuzzy DEMATEL-fuzzy ANP
approach to nominate diagnostic method and
measuring total predictive performance score,"
Safety and Reliability, vol. 37, no. 01, pp. 48-72,
2017.
[32] A. Al-Refaie, "Application on concurrent
product design and process planning for a
Bicycle design," Journal of Industrial
Engineering International, vol. 17, no. 2, pp. 1-
18, 2021.
[33] G. Smith, T. J. Troy and J. Summers, "Concept
Exploration Through Morphological Charts: An
Experimental Study," in 18th International
Conference on Design Theory and Methodology,
Philadelphia, 2006.
[34] I. O. f. Standardization, "Quality Management
Systems Requirements-ISO9001," ISO, Geneva,
2015.
[35] I. O. f. Standardization, "Petroleum,
petrochemical and natural gas industries-specific
quality management systems - Requirements for
product and service supply organizations," ISO,
Geneva, 2020.
[36] I. Hamimi Abdul Razak, S. Kamaruddin , I.
Abdul Azid and P. Almanar, "ISO 13485:2003:
Implementation reference model from the
Malaysian SMEs medical device industry," The
TQM Journal, vol. 21, no. 1, pp. 6-19, 2009.
[37] J. Conklin, "The Road to Quality Control: the
Industrial Application of Statistical Quality
Control," Journal of Quality Technology, vol. 53,
no. 4, pp. 438-439, 2020.
[38] I. O. f. Standardization, "Medical DevicesQuality Management Systems-Requirements for
Regulatory Purposes-ISO13485," ISO, Geneva,
2016.
[39] I. SAE, "Quality Management SystemsRequirements for Aerospace-AS9100,"
Warrendale, 2016.
[40] T. F. QuEST, "TL9000 Quality Management
System-Requirements Handbook- R6.2," QuEST
Forum, Arlinton, 2020.
[41] A. Ghasemzadeh, M. Małgorzata ter Haar, M.
Shams-bakhsh, W. Pirovano, V. Pantaleo and M.
Chiumenti, "Shannon Entropy to Evaluate
Substitution Rate Variation Among Viral
Nucleotide Positions in Datasets of Viral
siRNAs," Viral Metagenomics Methods &
Protocols, vol. 1746, pp. 187-195, 2018.
[42] K. Kumari and S. Yadav, "Linear regression
analysis study," Journal of the Practice of
Cardiovascular Sciences, vol. 4, no. 1, pp. 33-36,
2018.
[43] H. W. William , J. S. Dan , . C. M. Douglas and
G. Shilpa , "Using Control Charts to Monitor
Process and Product Quality Profiles," Journal of
Quality Technology, vol. 36, no. 3, pp. 309-320,
2004.