Have a personal or library account? Click to login
An Improvement of Quality of the Rear Cover of Bearing Turbine with the use of Selected Methods Cover

An Improvement of Quality of the Rear Cover of Bearing Turbine with the use of Selected Methods

Open Access
|Oct 2019

References

  1. Aghadavoudi-Jolfaei, M., Shen, J., Smith, A. et al. 2018. Non-destructive measurement of microstructure and tensile strength in varying thickness commercial DP steel strip using an EM sensor. JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 473, 477-483.10.1016/j.jmmm.2018.10.099
  2. Ahmad, J., Akula, A., Mulaveesala, R. et al. 2019. Barker-Coded Thermal Wave Imaging for Non-Destructive Testing and Evaluation of Steel Material. IEEE SENSORS JOURNAL, 19, 735-742.10.1109/JSEN.2018.2877726
  3. Benjamin, S., Marathamuthu, M., Murugaiah, U., 2015. The use of 5-WHYs technique to eliminate OEE's speed loss in a manufacturing firm. JOURNAL OF QUALITY IN MAINTENANCE ENGINEERING, 21, 419.10.1108/JQME-09-2013-0062
  4. Beskopylny, A., Veremeenko, A., Kadomtseva, E., et al. 2017. Non-destructive test of steel structures by conical indentation. International Conference on Modern Trends in Manufacturing Technologies and Equipment (ICMTMTE), Sevastopol, RUSSIA, SEP 11-15.10.1051/matecconf/201712902046
  5. Bilsel R. U., Lin D. K. J, 2012. Ishikawa Cause and Effect Diagrams Using Capture Recapture Techniques. QUALITY TECHNOLOGY AND QUANTITATIVE MANAGEMENT, 9, 137-152.10.1080/16843703.2012.11673282
  6. Braglia, M., Frosolini, M., Gallo, M., 2017. SMED enhanced with 5-Whys Analysis to improve set-upreduction programs: the SWAN approach. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 90, 1845-1855.10.1007/s00170-016-9477-4
  7. Chokkalingam, B., Raja, V., Anburaj, J. et al. 2017. Investigation of Shrinkage Defect in Castings by Quantitative Ishikawa Diagram. ARCHIVES OF FOUNDRY ENGINEERING 2017, 17, 174-178.10.1515/afe-2017-0032
  8. Corbett, D. Tronca, G., 2017. Non-Destructive Testing of Steel Fibre Reinforced Concrete. 9th International Conference on Fibre Reinforced Concretes (FRC), Textile Reinforced Concretes (TRC) and Ultra-High Performance Concretes (UHPC), Prague, CZECH REPUBLIC, SEP 13-16.
  9. Enrique, P. D., Jiao, Z., Zhou, N. Y., 2019. Effect of Direct Aging on Heat-Affected Zone and Tensile Properties of Electrospark-Deposited Alloy 718. METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 50A, 285-294.10.1007/s11661-018-4997-1
  10. Hong, J., Oh, S., Im, E., (2018). Stiffness and Cavity Test of Concrete Face Based on Non-Destructive Elastic Investigation. SUSTAINABILITY, 10.10.3390/su10124389
  11. Hristoforou, E., 2018. Advanced Non-Destructive Testing in Steels. METALS, 8.10.3390/met8070492
  12. Komarkova, T., Fiala, P., Steinbauer, M., et al. (2018). Testing an Impedance Non-destructive Method to Evaluate Steel-Fiber Concrete Samples, MEASUREMENT SCIENCE REVIEW, 18, 35-40.10.1515/msr-2018-0006
  13. Kong, Y. S., Yu, J., Park, Y. W. 2019. Creep Life Prediction of Alloy 718 for Automotive Engine Materials. INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, 19, 1055-1059.10.1007/s12239-018-0103-3
  14. Kumar, H., Ahmad, G. N., Singh, N. K., 2019. Activated flux TIG welding of Inconel 718 super alloy in presence of tri-component flux. MATERIALS AND MANUFACTURING PROCESSES, 34, 216-223.10.1080/10426914.2018.1532581
  15. Malindzak, D., Pacana, A., Pacaiova, H., 2017. An effective model for the quality of logistics and improvement of environmental protection in a cement plant. Pchem, 96(9), 1958-1962.
  16. Markus, S., Fox, C., Kurz, W., et al. 2018. Characterization of steel buildings by means of non-destructive testing methods. JOURNAL OF MATHEMATICS IN INDUSTRY, 8.10.1186/s13362-018-0052-5
  17. Monrrabal, G., Ramirez-Barat, B., Bautista, A., et al. 2018. Non-Destructive Electrochemical Testing for Stainless-Steel Components with Complex Geometry Using Innovative Gel Electrolytes, METALS, 8.10.3390/met8070500
  18. Pacana A., Bednarova L., Liberko I., et al. 2014. Effect of selected production factors of the stretch film on its extensibility. Przem.Chem., 93(7), 1139-1140.
  19. Pacana A., Siwiec D., Bednarova L., (2019). Analysis of the incompatibility of the product with fluorescent method. METABK, 58(3-4), 337-340.
  20. Pacana, A., Radon-Cholewa, A., Pacana, J. et al. 2015. The study of stickiness of packaging film by Shainin method. Przem.Chem., 94(8), 1334-1336.
  21. Peterka, P., Kresak, J., Vojtko, M., 2018. Experience of the Crane Steel Wire Ropes Non-Destructive Tests. ADVANCES IN SCIENCE AND TECHNOLOGY-RESEARCH JOURNAL, 12, 157-163.10.12913/22998624/100350
  22. PN-EN 1369:2013-04. Founding. Magnetic particle testing. PKN, Warszawa
  23. PN-EN ISO 9934-1:2017-02. Non-destructive testing. Magnetic particle testing. Part 1: General principles, PKN, Warszawa
  24. Rosenkrantz, E., Bottero, A., Komatitsch, D. et al. 2019. A flexible numerical approach for non-destructive ultrasonic testing based on a time-domain spectral-element method: Ultrasonic modeling of Lamb waves in immersed defective structures and of bulk waves in damaged anisotropic materials, NDT & E INTERNATIONAL, 101, 72-86.10.1016/j.ndteint.2018.10.002
  25. Salvador CG., Goldfarb N., 2004. Ishikawa cause and effect diagrams: A useful tool in designing economic analyses, VALUE IN HEALTH, 7, 301-302.10.1016/S1098-3015(10)62317-0
  26. Sorger, G. L., Oliveira, J. P., Inacio, P. L. et al. 2019. Non-destructive microstructural analysis by electrical conductivity: Comparison with hardness measurements in different materials, JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 35, 360-368.10.1016/j.jmst.2018.09.047
  27. Stone, D. J., Alexandrov, B. T., Penso, J. A., 2018. Alloy Composition and Critical Temperatures in Type 410 Steel Welds, WELDING JOURNAL, 97, 286S-300S.10.29391/2018.97.025
  28. Swiderski, W., (2019). Non-destructive testing of CFRP by laser excited thermography. COMPOSITE STRUCTURES, 209, 710-714.10.1016/j.compstruct.2018.11.013
  29. Trung K., Pham Van T., 2017. Influence of temperature on mechanical characteristics of 1018 low carbon steel estimated by ultrasonic non-destructive testing method, INDIAN JOURNAL OF PURE & APPLIED PHYSICS, 55, 431-435.
  30. Velay-Lizancos, M., Martinez-Lage, I., Azenha, M. et al. 2018. Concrete with fine and coarse recycled aggregates: E-modulus evolution, compressive strength and non-destructive testing at early ages, CONSTRUCTION AND BUILDING MATERIALS, 193, 323-331.10.1016/j.conbuildmat.2018.10.209
  31. Wolniak R., Skotnicka-Zasadzień B., 2011. Metody i narzędzia zarządzania jakością. Teoria i praktyka, Wydawnictwa Politechniki Śląskiej.
  32. Zhang, B., Liu, F., Liu, C., et al. 2017. An ultrasonic non-destructive testing method for the measurement of weld width in laser welding of stainless steel. 2nd International Conference on Materials Science, Resource and Environmental Engineering (MSREE), Wuhan, PEOPLES R CHINA, OCT 27-29.10.1016/j.msea.2016.10.034
  33. Zhong, C., Kittel, J., Gasser, A., et al. 2019. Study of nickel-based super-alloys Inconel 718 and Inconel 625 in high-deposition-rate laser metal deposition, OPTICS AND LASER TECHNOLOGY, 109, 352-360.10.1016/j.optlastec.2018.08.003
Language: English
Page range: 456 - 463
Submitted on: May 4, 2019
|
Accepted on: May 22, 2019
|
Published on: Oct 8, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2019 Andrzej Pacana, Dominika Siwiec, published by Quality and Production Managers Association
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.