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This research describes effects of Si addition on microstructure and mechanical properties of the Al-Cr based alloys prepared manufactured using gas atomization and SPS (Spark Plasma Sintering) processes. The Al-Cr-Si bulks with high Cr and Si content were produced successfully using SPS sintering process without crack and obtained fully dense specimens close to nearly 100% T. D. (Theoretical Density). Microstructure of the as-atomized Al-Cr-Si alloys with high contents of Cr and Si was composed multi-phases with hard and thermally stable such as Al13Cr4Si4, AlCrSi, Al8Cr5 and Cr3Si intermetallic compounds. The average hardness values were 703 Hv for S5, 698 Hv for S10 and 824 Hv for S20 alloy. Enhancement of hardness value was resulted from the formation of the multi-intermetallic compound with hard and thermally stable and fine microstructure by the addition of high Cr and Si using rapid solidification and SPS process.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
1045--1049
Opis fizyczny
Bibliogr. 15 poz., fot., rys., tab.
Twórcy
autor
- Korea Institute of Industrial Technology, 6 Cheomdan-gwagiro 208 Beon-gil, Bul-gu, Gwangju, 61012, Republic of Korea
autor
- Korea Institute of Industrial Technology, 6 Cheomdan-gwagiro 208 Beon-gil, Bul-gu, Gwangju, 61012, Republic of Korea
autor
- Korea Institute of Industrial Technology, 6 Cheomdan-gwagiro 208 Beon-gil, Bul-gu, Gwangju, 61012, Republic of Korea
autor
- Korea Institute of Industrial Technology, 6 Cheomdan-gwagiro 208 Beon-gil, Bul-gu, Gwangju, 61012, Republic of Korea
autor
- Korea Institute of Industrial Technology, 6 Cheomdan-gwagiro 208 Beon-gil, Bul-gu, Gwangju, 61012, Republic of Korea
autor
- Korea Institute of Industrial Technology, 6 Cheomdan-gwagiro 208 Beon-gil, Bul-gu, Gwangju, 61012, Republic of Korea
Bibliografia
- [1] H. S. Kang, W. Y. Yoon, K. H. Kim, M. H. Kim, Y. P. Yoon, Mater. Sci. Eng. A 404, 117 (2005).
- [2] H. K. Feng, S. R. Yu, Y. L. Li, L. Y. Gong, J. Mater. Process. Tech. 208, 330 (2008).
- [3] L. G. Hou, H. Cui, Y. H. Cai, J. S. Zhang, Mater. Sci. Eng. A 527, 85 (2009).
- [4] S. P. Gupta, Mater. Character. 52, 355 (2004).
- [5] R. T. Li, Z. I. Dong, K. A. Khor, Scrip. Mater. 114, 88 (2016).
- [6] K. M. Chen, D. A. Tsai, H. C. Liao, In.G. Chen, J. Alloys Compd. 663, 52 (2016).
- [7] T. S. Kim, B. T. Lee, C. R. Lee, B. S. Chun, Mater. Sci. Eng. A304-306, 617 (2001).
- [8] H. S. Kim, S. J. Hong, J. Alloys Compd. 586, S428 (2014).
- [9] L. Cao, W. Zeng, Y. Xie, J. Liang, D. Zhang, Mater. Sci. Eng. A 742, 305 (2019).
- [10] D. Guan, J. Gao, J. Sharp, W. Rainforth, J. Alloys Compd. 769, 71 (2018).
- [11] S. Cui, I. H. Jung, J. Alloys Compd. 708, 887 (2017).
- [12] Z. Zhou, Z. Li, X. Wang, Y. Liu, Y. Wu, M. Zhao, F. Yin, Thermch. Acta 577, 59 (2014).
- [13] C. Tung, J. Yeh, T. Shun, S. Chen, Y. Huang, H. Chen, Mater. Lett. 61, 1 (2007).
- [14] K. Youssef, A. Zaddach, C. Nju, D. Nju, C. Koch, Mater. Res. Lett. 3, 95 (2014).
- [15] J. Sanchez, I. Vicario, J. Albizuri, T. Guraya, J. Garcia, J. Mater. Res, Technol. 8, 795 (2019).
Uwagi
EN
1. This study has been conducted with the support of the Korea Institute of Industrial Technology (No. EO200004) and supported by ‘Energy Efficiency & Resources Core Technology Program’ of the Korea Institute of Energy Technology Evaluation and Planning (KETEP) granted financial resource from the Ministry of Trade, Industry & Energy, Republic of Korea. (No. 2018201010633B).
PL
2. 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-e423141f-0d44-4f91-9132-14fd8c531314