Technical Diagnostics and Non-Destructive Testing #2, 2022, pp. 44-53
Use of statistical methods to support the required quality of welded products (Review)
Yu.K. Bondarenko, Yu.V. Loginova
E.O. Paton Electric Welding Institute of NASU. 11 Kazymyr Malevych str., 03150, Kyiv, Ukraine. E-mail: marjanara17@gmail.com
Дo obtain quality products in welding industry of light alloy structures, it is necessary to know the real accuracy of the existing
equipment, determine the correspondence of the selected technological process to the specified accuracy of the product, and
assess the stability of the technological process. The mentioned type of problems is solved, mainly, by mathematical processing
of empirical data, obtained by multiple measurements or actual product dimensions, or processing errors, or measurement error.
The considered seven new quality control tools are used for analysis of numerical data that corresponds to the requirements of
TQM (Total Quality Management) – to rely on operational analysis, optimization theory and statistics, when making decisions.
13 Ref., 17 Fig.
Keywords: risks, nondestructive testing, welded structures, welds, personnel, manufacturer’s terms, technological documentation,
quality control system
Received:18.03.2022 р.
References
1. Askarov, E.S. (2007) Quality management: Manual. 2nd Ed.
Almaaty, Pro servisе [in Russian].
2. Imai, M. Kaidzen (2004) The key to the success of Japanese
companies. Moscow, Alpina Business Books [in Russian].
3. Ponomaryov, S.V., Mishchenko, V.Ya. (2005) Quality management
of products. Tools and methods of quality management.
Moscow, Standarty i Kachestvo [in Russian].
4. Willer, D., Chambers, D. (2021) Statistical process management.
Moscow, Alpina Publisher [in Russian].
5. DSTU ISO 9001:2015 Quality management systems. Requirements
(ISO 9001:2015, IDT) [in Russian].
6. Gludkin, O.P., Gorbunov, N.M., Gurov, A.I., Zorin, Yu.V.
(1999) Total quality management: Manual for higher education
inst. Ed. by O.P. Gludkin. Moscow, Radio i Svyaz [in
Russian].
7. (2000) Quality management. Vol. 2: Principles and methods
of total quality management. Fundamentals of quality assurance.
Ed. by V.N. Azarov. Moscow, MGIEM (ISBN 5-8125-
0085-1).
8. Van der Veik, G. (1999) Benchmarking. Science management
in EU countries. Vol. 3. Moscow, Nauka.
9. Potapievskyi, A.G., Bondarenko, Yu.K., Loginova, Yu.V., Artyukh, K.O. (2019) Analysis of risks for technical safety of power sources and welded structures with application of NDT&TD for production. Tekh. Diahnost. ta Neruiniv. Kontrol, 4, 58-65 [in Ukrainian].
https://doi.org/10.15407/tdnk2019.04.0710. Bondarenko, Yu.K., Kovalchuk, O.V., Loginova, Yu.V.
(2020) Investigation of the impact of risk sources on the
technical safety of welded structures during operation in the
implementation of the standard DSTU ISO 9001: 2015. In:
Proc. of 20th Int. Sci.-Pract. Conf. on Quality, Standardization,
Control: Theory and Practice (Odesa, Ukraine, 2020)
[in Ukrainian].
11. Bondarenko, Yu.K., Loginova, Yu.V. (2022) Improvement of
quality by means of optimization of manufacturing process
of products or services in welding production of light alloy
structures. Svarshchik, 1, 34–45 [in Ukrainian].
12. Bondarenko, Yu.K., Kovalchuk, O.V., Loginova, Yu.V.
(2020) Investigation of the impact of risk sources on the
technical safety of welded structures during operation in the
implementation of the standard DSTU ISO 9001: 2015. Ibid,
5, 41–48 [in Russian].
13. Radko, O.V., Melnik, V.B. (2020) Processes and quality
management systems in aviation: Manual. Kyiv, NAU [in
Ukrainian].
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