THE IMPORTANCE AND BENEFITS OF IMPLEMENTING THE TQM CONCEPT IN AN AEROSPACE INDUSTRY ORGANIZATION

Gheorghe Ioan POP, Alina Bianca POP, Constantin OPREAN, Aurel Mihail ȚÎȚU

Abstract


This paper addresses the concept of Total Quality Management in an organization with the field of activity in the aerospace industry. The purpose of the paper is to identify the aspects that will have to be taken into account regarding the improvement of the organization, from the point of view of the application of the Total Quality Management. During this paper are addressed issues such as: SWOT analysis, setting quality objectives, activities, responsibilities and resources required; the issue of quality strategies and last but not least, aspects regarding the FMEA analysis. The last part presents the conclusions drawn from the study as well as their own views on the topic, along with the importance and benefits of implementing the concept of total quality in an organization in the aerospace industry.


Full Text:

PDF

References


Kazemzadeh, A., Manteghi, M., Tolouee Ashlaghi, A., Jodey, J., Identification and Modeling of Effective factors in Designing the Process of Developing Aerospace Complex Products, Innovation Management Journal, 9(3), pp. 37-77, 2021.

Shimin, L., Jinsong, B., Yuqian, L., Jie, L., Shanyu L., Xuemin S., Digital twin modeling method based on biomimicry for machining aerospace components, Journal of Manufacturing Systems, Volume 58, Part B, Pages 180-195, Published: 2021.

Kazemzadeh, A., Manteghi, M., Tolouee Ashlaghi, A., Jodey, J., Identification and Modeling of Effective factors in Designing the Process of Developing Aerospace Complex Products, Innovation Management Journal, 9(3), 37-77, Published: 2020.

Elsouri, M., Gao, J., Simmonds, C., Martin, N., A design for manufacturing methodology using defects knowledge for aerospace product manufacturing, Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture. Publiseh: April 2021.

Proulx, M., Gardoni, M., Methodology for Designing a Collaborative Business Model – Case Study Aerospace Cluster. In: Nyffenegger F., Ríos J., Rivest L., Bouras A. (eds) Product Lifecycle Management Enabling Smart X. PLM 2020. IFIP Advances in Information and Communication Technology, vol 594. Springer, Publiseh: 2020.

Alsaqaf, W., Daneva, M., Wieringa, R. Quality requirements challenges in the context of large-scale distributed agile: An empirical study. Information and Software Technology, 110, pp. 39-55, 2019.

Kovrigin, E., Vasiliev, V., Trends in the development of a digital quality management system in the aerospace industry, IOP Conference Series: Materials Science and Engineering, Volume 868, 18th International Conference "Aviation and Cosmonautics", Moscow, Russian Federation, Published: 2020.

Rajamani, M., Punna, E., Enhancement of Design for Manufacturing and Assembly Guidelines for Effective Application in Aerospace Part and Process Design, SAE Technical Paper 2020-01-6001, Published: 2020.

Arpentieva, M., Duvalina O., Gorelova, I., Intersubjective management in aerospace engineering, MATEC Web Conf., 102 01002, 2017.

AS9100D: Quality Management Systems - Requirements for Aviation, Space and Defense Organizations. SAE International (2016).

Morris, M., Retrieved 7 july, 2013, from Advanced Product Quality Planning: static.squarespace.com, 2012.

Munro, R. A., Future of APQP and PPAP in doubt, in Quality, 41, 28-32, 2002.

Advanced Product Quality Planning (APQP) Production Part Approval Process (PPAP), Guidance Material for International Aerospace Standard 9145, IAQG, SCMH Section 7.2.3 APQP, 2017.

Advanced Product Quality Planning (APQP) and Control Plan, Reference Manual, Copyright 1994, 1995. Chrysler Corporation, Ford Motor Company and General Motors Corporation, 1995.


Refbacks

  • There are currently no refbacks.


JOURNAL INDEXED IN :