Have a personal or library account? Click to login
Experimental Evaluation of the Effects of Structural Changes on the Vibration Properties of CK35 Steel Cover

Experimental Evaluation of the Effects of Structural Changes on the Vibration Properties of CK35 Steel

Open Access
|Jun 2021

References

  1. 1. Abedrabbo N., Pourboghrat F., Carsley J. (2006), Forming of AA5182-O and AA5754-O at elevated temperatures using coupled thermo-mechanical finite element models, Internatio-nal Journal of Plasticity, 23, 841–875.10.1016/j.ijplas.2006.10.005
  2. 2. Bandara, C. S., Siriwardane, S.. C., Dissanayake, U. I., & Dissanayake, R. (2016), Full range S–N curves for fatigue life evaluation of steels using hardness measurements, International journal Journal of fatigueFatigue, 82, 325-331.10.1016/j.ijfatigue.2015.03.021
  3. 3. Akhil Bhardwaj A., Naishadh Gohil N., Amit Kumar Gupta A.K., S.S. Satheesh KumarK.S.S. (2021), An experimental investigation on the influence of elevated-temperature constrained groove pressing on the microstructure, mechanical properties and hardening behaviour of Ti6Al4V alloy, Materials Science and Engineering, Volume 802., 20 January 2021, 140651
  4. 4. Bolkowski S., Stabrowski M., Skoczylas J., Sroka J., Sikora J., Wincenciak S. (1993), Komputerowe metody analizy pola elektromagnetycznego, WNT, Warszawa.
  5. 5. Cai, W., Lu, X. L., & Zhao, L. C. (2005), Damping behavior of TiNi-based shape memory alloys, Materials Science and Engineering: A, 394 (1-2), 78-82.10.1016/j.msea.2004.11.030
  6. 6. V.H. Carneiro V.H., H. Puga. H. (2018), Solution Treatment Enhances Both Static and Damping Properties of Al–Si–Mg alloys, Metall Mater Trans, 5942–5945.10.1007/s11661-018-4961-0
  7. 7. V.H. Carneiro V.H., H. Puga. H. (2019), T6 Heat Treatment Impact on the Random Frequency Vibration Stress of Al–Si–Mg Alloys. Met. Mater. Int, 25, 880-887.
  8. 8. V.H. Carneiro V.H., H. Puga H., J. Meireles, J. (2018), Heat treatment as a route to tailor the yield-damping properties in A356 alloys, Materials Science and Engineering 729, 1-8.10.1016/j.msea.2018.05.042
  9. 9. Chandler, H. (Ed.). (1994), Heat treater’s guide: practices and procedures for irons and steels, ASM international.
  10. 10. Diehl, A., Engel, U. &, Geiger, M. (2010), Influence of microstructure on the mechanical properties and the forming behaviour of very thin metal foils, Int J Adv Manuf Technol, 47, 57-6110.1007/s00170-008-1851-4
  11. 11. El-Morsy, A. W., & Farahat, A. I. (2015), Effect of aging treatment on the damping capacity and mechanical properties of Mg-6al-1Zn alloy, The Scientific World Journal, Volume 2015, pages 1-8, https://doi.org/10.1155/2015/17045810.1155/2015/170458439699625918738
  12. 12. Fu, Z. F., & He, J. (2001), Modal analysis, Elsevier.
  13. 13. S. Ghorbanhosseini S, ., F. Fereshteh-Saniee F., A. Sonboli. A. (2020), An experimental investigation on the influence of elevated-temperature constrained groove pressing on the microstructure, mechanical properties, anisotropy and texture of 2024 Al sheets, Journal of Alloys and Compounds, 817, 15276310.1016/j.jallcom.2019.152763
  14. 14. Ghosh, S. K., & Mondal, S. (2008), High temperature ageing behaviour of a duplex stainless steel, Materials Characterization, 59(12), 1776-1783.10.1016/j.matchar.2008.04.008
  15. 15. Goshima T., Hanson M.T., Keer L.M. (1990), Three-dimensional analysis of thermal effects on surface crack propagation in rolling contact, Journal of Thermal Stresses, Vol. 13, 237-261.
  16. 16. Hamisi, M.,Torshizi, S. (2018), Experimental Study of Aging Effect on Mechanical and Vibrational Properties on Carbon Steel Sa516, Modares Mechanical Engineering, Vol 18, 50-55.
  17. 17. Korznikova, G., Kabirov, R., Nazarov, K. et al. (2020), Influence of Constrained High-Pressure Torsion on Microstructure and Mechanical Properties of an Aluminum-Based Metal Matrix Composite, JOM, (72), 2898–2911.10.1007/s11837-020-04152-1
  18. 18. Limarga, A. M., Duong, T. L., Gregori, G., & Clarke, D. R. (2007), High temperature vibration damping of thermal barrier coating materials. Surface and Coatings Technology, 202(4-7), 693-697.10.1016/j.surfcoat.2007.07.021
  19. 19. Lin, S. C., Lui, T. S., Chen, L. H., & Song, J. M. (2002), Effect of pearlite on the vibration-fracture behavior of spheroidal graphite cast irons under resonantconditions, Metallurgical and Materials Transactions A, 33(8), 2623-2634.10.1007/s11661-002-0384-y
  20. 20. Shaojun LiuL., Qunying HuangH., Lei PengP., Yanfen LiL., Chunjing Li. (2012), Microstructure and its influence on mechanical properties of CLAM stee, Fusion Engineering and Design: A, 89(9), 1628-1632.10.1016/j.fusengdes.2012.06.008
  21. 21. Totten, G. E. (2006), Steel Heat Treatment Handbook, 2 Volume Set. CRC press.10.1201/9781482293029
  22. 22. Tsai, M. H., Chen, M. S., Lin, L. H., Lin, M. H., Wu, C. Z., Ou, K. L., & Yu, C. H. (2011), Effect of heat treatment on the microstructures and damping properties of biomedical Mg–Zr alloy, Journal of Alloys and Compounds, 509(3), 813-819.10.1016/j.jallcom.2010.09.098
  23. 23. Visnapuu, A., Nash, R. W., & Turner, P. C. (1987), “Damping properties of elected steels and cast irons., UNITED STATES DEPARTMENT OF THE INTERIOR
  24. 24. Xiao-Feng Wang X-F, Tong-Ya Shi T-Y, He-Bin Wang H-B, Song-Ze Zhou S-Z, Wen-Fei Peng W-F, Yong-Gang Wang. Y-G (2020), Effects of strain rate on mechanical properties, microstructure and texture of Al—Mg—Si—Cu alloy under tensile loading,, Transactions of Nonferrous Metals Society of China, 30(1), 27-40.10.1016/S1003-6326(19)65177-0
  25. 25. Yamada, T., Okano, S., & Kuwano, H. (2006), Mechanical property andmicrostructural change by thermal aging of SCS14A cast duplex stainless steel, Journal of Nuclear Materials, 350(1), 47-55.10.1016/j.jnucmat.2005.11.008
  26. 26. Zhang, Z., Zeng, X., & Ding, W. (2005), The influence of heat treatment on damping response of AZ91D magnesium alloy, Materials Science and Engineering: A, 392(1-2), 150-155.10.1016/j.msea.2004.09.056
  27. 27. Zieliński, A., Golański, G., & Sroka, M. (2017), Influence of long-term ageing on the microstructure and mechanical properties of T24 steel, Materials Science and Engineering: A, 682, 664-672.10.1016/j.msea.2016.11.087
DOI: https://doi.org/10.2478/ama-2021-0008 | Journal eISSN: 2300-5319 | Journal ISSN: 1898-4088
Language: English
Page range: 53 - 57
Submitted on: Jan 29, 2021
Accepted on: May 12, 2021
Published on: Jun 30, 2021
Published by: Bialystok University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2021 Navid Moshtaghi Yazani, published by Bialystok University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.