PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
  • Sesja wygasła!
Tytuł artykułu

The use of quality management techniques to identify sources of incompatibilities in sealants

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: The effectiveness of the NDT tests is to identify the incompatibility of the products without their destruction, but NDT tests do not point out the root of incompatibility. The aim of the study was to identify the incompatibility in the product (the mechanical sealer) using the fluorescent method (FPI) and to identify the root of this incompatibility using quality management techniques (5W2H method, Ishikawa diagram, 5Why method). Design/methodology/approach: To identify the root of incompatibility in the product the quality management techniques were used, i. e. 5W2H method, Ishikawa diagram and 5Why method. The subject (the mechanical sealer) on which being incompatibility (porosity cluster) was identified, was made from 410 steel. The problem in which the porosity cluster was identified after the fluorescent method (FPI). Findings: It has been shown that integrating NDT with the selected quality management techniques is an effective way to identify the problem and the root of its creation. Practical implications: This approach can be used in enterprises to analyze different types of products and incompatibilities. Originality/value: It was proposed to integrate the NDT tests with the selected quality management techniques. This integration allows identify the root of the problem and achieving the needed quality of the product.
Rocznik
Tom
Strony
285--295
Opis fizyczny
Bibliogr. 24 poz.
Twórcy
  • Rzeszow University of Technology, Faculty of Mechanical Engineering and Aeronautics, Rzeszow, Poland
  • Rzeszow University of Technology, Faculty of Mechanical Engineering and Aeronautics, Rzeszow, Poland
Bibliografia
  • 1. Anouncia, S.M. (2018). Digital interferometry with image processing and computational techniques for NDT of composite materials. Insight, 60(12), 685-696.
  • 2. Barluenga, G., Puentes, J., Palomar, I. et al. (2018). Methodology for monitoring Cement Based Materials at Early Age combining NDT techniques. Construction And Building Materials, 193, 373-383.
  • 3. Bernieri, A., Ferrigno, L., Laracca, M. et al. (2018). Ultrasonic NDT on aluminum bars: An experimental performance comparison of excitation and processing techniques. Measurement, 128, 393-402.
  • 4. Chauveau, D. (2018). Review of NDT and process monitoring techniques usable to produce high-quality parts by welding or additive manufacturing. Welding In The World, 62(5), 1097-1118.
  • 5. Daneshvar, K., and Dogan, B. (2010). Application of quantum dots as a fluorescent-penetrant for weld crack detection. Materials at High Temperatures, 27(3), 179-182.
  • 6. Doaei, M., and Tavallali, M.S. (2018). Intelligent screening of electrofusion-polyethylene joints based on a thermal NDT method. Infrared Physics & Technology, 90, 1-7.
  • 7. Fischer, H., Karaca, F., Marx, R. (2002). Detection of microscopic cracks in dental ceramic materials by fluorescent penetrant method. Journal of Biomedical Materials Research, 1(1), 153-158.
  • 8. Guo, C., Xu, C., Xiao, D. et al. (2019). A tool centre point calibration method of a dual-robot NDT system for semi-enclosed workpiece testing. Industrial Robot-The International Journal Of Robotics Research And Application, 46(2), 202-210.
  • 9. Gurieva, T., Marushin, E., Mednikov, A. et al. (2018). NDT Status of PF1 Coil Welds. IEEE Transactions On Applied Superconductivity, 28(4).
  • 10. Joshaghani, A. (2019). Identifying the problematic areas with structural deficiencies of pavements using non-destructive tests (NDT). International Journal Of Pavement Engineering, 20(11), 1359-1369.
  • 11. Non-destructive testing. Penetration research. Part 1: General rules. PN-EN ISO 3452-1:2013-08.
  • 12. Non-destructive testing. Terminology. Terms used in penetration tests. PN-EN ISO 12706:2010.
  • 13. Pacana, A., Czerwińska, K., Siwiec, D. (2018). Narzędzia i wybrane metody zarządzania jakością. Teoria i praktyka. Częstochowa: Oficyna Wydawnicza Stowarzyszenia Menedżerów Jakości i Produkcji.
  • 14. Pacana, A., Radon-Cholewa, A., Pacana, J. et al. (2015). The study of stickiness of packaging film by Shainin method. Przemysl Chemiczny, 94(8), 1334-1336.
  • 15. Pacana, A., Siwiec, D., Bednárová, L. (2019a). Analysis of the incompatibility of the product with fluorescent method. Metalurgija, 58(3-4), 337-340.
  • 16. Pacana, A., Siwiec, D., Bednárová, L., Hajduová, Z. (2019b). Wybrane metody zarządzania jakością stosowane do oceny druku etykiet. Przemysl Chemiczny, 98(1), 110-112.
  • 17. Rentala, V.K., Mylavarapu, P., Gautam, J.P. (2018). Issues in estimating probability of detection of NDT techniques - A model assisted approach. Ultrasonics, 87, 59-70.
  • 18. Sangoju, B., Ramanjaneyulu, K., Sasmal, S. et al. (2019). NDT for condition assessment of IDCT RC walls and repair measures for long term durability. Construction And Building Materials, 218, 270-283.
  • 19. Shipway, N.J., Huthwaite, P., Lowe, M.J.S. et al. (2019). Performance Based Modifications of Random Forest to Perform Automated Defect Detection for Fluorescent Penetrant Inspection. Journal of Nondestructive Evaluation, 38(2), 1-11.
  • 20. Siwiec, D., Bednarova, L., Pacana, A., Zawada, M., Rusko, M. (2019). Wspomaganie decyzji w procesie doboru penetrantów fluorescencyjnych do przemysłowych badań nieniszczących. Przemysł Chemiczny, 98(10), 1594-1596.
  • 21. Son, M., Kim, M. (2019). Development and Validation of an NDT Based on Total Sound Signal Energy. Journal Of Testing And Evaluation, 47(1), 87-103.
  • 22. Ulewicz, R. (2003). Quality Control System in Production of the Castings from Spheroid Cast Iron. Metalurgija, 42(1), 61-63.
  • 23. Wolniak, R. (2017). Application methods for analysis car accident in industry on the example of power. Support Systems in Production Engineering, 6(4), 34-40.
  • 24. Zheng, J., Xie, W.F., Viens, M. et al. (2015). Design of an advanced automatic inspection system for aircraft parts based on fluorescent penetrant inspection analysis. Insight, 57(1), 18-34.
Uwagi
PL
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ce9ac5dc-df48-47c4-9818-c997a68ce002
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.