Acta Metallurgica Sinica (English Letters) ›› 2022, Vol. 35 ›› Issue (3): 411-424.DOI: 10.1007/s40195-021-01309-y
Previous Articles Next Articles
Rong Xu1, Ruidi Li1(), Tiechui Yuan1, Hongbin Zhu2, Ping Li1
Received:
2021-04-27
Revised:
2021-07-03
Accepted:
2021-07-06
Online:
2021-09-03
Published:
2021-09-03
Contact:
Ruidi Li
About author:
Ruidi Li, liruidi@csu.edu.cnRong Xu, Ruidi Li, Tiechui Yuan, Hongbin Zhu, Ping Li. Microstructure and Mechanical Properties of TiC-Reinforced Al-Mg-Sc-Zr Composites Additively Manufactured by Laser Direct Energy Deposition[J]. Acta Metallurgica Sinica (English Letters), 2022, 35(3): 411-424.
Add to citation manager EndNote|Ris|BibTeX
Fig. 4 EBSD results of TiC/Al-Mg-Sc-Zr alloys prepared by DED: IPFs of a1 0 wt% TiC, b1 1 wt% TiC, c1 2 wt% TiC, d1 3 wt% TiC; (100) PF of a2 0 wt% TiC, b2 1 wt% TiC, c2 2 wt% TiC, d2 3 wt% TiC
Fig. 5 Grain size distributions of TiC/Al-Mg-Sc-Zr alloys: a 0 wt% TiC, b 1 wt% TiC, c 2 wt% TiC, d 3 wt% TiC based on the EBSD orientation maps and statistical data analyses as shown in Fig. 4
Specimen | YS (MPa) | UTS (MPa) | EL (%) |
---|---|---|---|
Al-Mg-Sc-Zr | 211.1 ± 3.8 | 283.25 ± 5.41 | 3.61 ± 1.28 |
+ 1 wt% TiC | 227.7 ± 4.7 | 361.51 ± 6.12 | 10.46 ± 1.19 |
+ 2 wt% TiC | 204.2 ± 3.3 | 354.95 ± 4.69 | 14.10 ± 1.37 |
+ 3 wt% TiC | 209.1 ± 5.2 | 344.98 ± 5.28 | 9.58 ± 0.93 |
Table 1 Mechanical properties of TiC/Al-Mg-Sc-Zr specimens prepared by DED
Specimen | YS (MPa) | UTS (MPa) | EL (%) |
---|---|---|---|
Al-Mg-Sc-Zr | 211.1 ± 3.8 | 283.25 ± 5.41 | 3.61 ± 1.28 |
+ 1 wt% TiC | 227.7 ± 4.7 | 361.51 ± 6.12 | 10.46 ± 1.19 |
+ 2 wt% TiC | 204.2 ± 3.3 | 354.95 ± 4.69 | 14.10 ± 1.37 |
+ 3 wt% TiC | 209.1 ± 5.2 | 344.98 ± 5.28 | 9.58 ± 0.93 |
Fig. 11 SEM images of the fracture surface morphologies of TiC/Al-Mg-Sc-Zr alloys with different TiC content: a1 0 wt%; a2 marked area of a1; b1 1 wt%; b2 marked area of b1; c1 2 wt%; c2 marked area of c1; d1 0 wt%; d2 marked area of d1
Fig. 12 a TEM diagram of TiC/Al-Mg-Sc-Zr alloy with TiC content of 2 wt%, b an enlarged view of the marked area in a, c energy spectrum analysis of the yellow marked area
[1] | P. Kürnsteiner, P. Bajaj, A. Gupta, M.B. Wilms, A. Weisheit, X. Li, C. Leinenbach, B. Gault, E.A. Jägle, D. Raabe, Addit. Manuf. 32, 100910(2020) |
[2] | D. Svetlizky, B. Zheng, T. Buta, Y. Zhou, O. Golan, U. Breiman, R. Haj-Ali, J.M. Schoenung, E.J. Lavernia, N. Eliaz, Mater. Des. 192, 108763(2020) |
[3] |
J.R. Croteau, S. Griffiths, M.D. Rossell, C. Leinenbach, C. Kenel, V. Jansen, D.N. Seidman, D.C. Dunand, N.Q. Vo, Acta Mater. 153, 35 (2018)
DOI URL |
[4] | S. Jiao, X. Cheng, S. Shen, X. Wang, B. He, D. Liu, H. Wang, J. Alloys Compd. 821, 153125(2020) |
[5] |
P. Kürnsteiner, M.B. Wilms, A. Weisheit, P. Barriobero-Vila, E.A. Jägle, D. Raabe, Acta Mater. 129, 52 (2017)
DOI URL |
[6] |
Q. Jia, P. Rometsch, P. Kürnsteiner, Q. Chao, A. Huang, M. Weyland, L. Bourgeois, X. Wu, Acta Mater. 171, 108 (2019)
DOI URL |
[7] | K. Schmidtke, F. Palm, A. Hawkins, C. Emmelmann, Phys. Procedia 12, 369 (2011) |
[8] |
N. Kang, P. Coddet, L. Dembinski, H. Liao, C. Coddet, J. Alloys Compd. 691, 316 (2017)
DOI URL |
[9] |
J. Zhang, B. Song, Q. Wei, D. Bourell, Y. Shi, J. Mater. Sci. Technol. 35, 270 (2019)
DOI URL |
[10] |
R. Li, M. Wang, T. Yuan, B. Song, C. Chen, K. Zhou, P. Cao, Powder Technol. 319, 117 (2017)
DOI URL |
[11] | J. Gu, M. Gao, S. Yang, J. Bai, J. Ding, X. Fang, Addit. Manuf. 30, 100900(2019) |
[12] | S.Z. Uddin, L.E. Murr, C.A. Terrazas, P. Morton, D.A. Roberson, R.B. Wicker, Addit. Manuf. 22, 405 (2018) |
[13] |
A.B. Spierings, K. Dawson, M. Voegtlin, F. Palm, P.J. Uggowitzer, Cirp Ann. Manuf. Technol. 65, 213 (2016)
DOI URL |
[14] |
A.B. Spierings, K. Dawson, T. Heeling, P.J. Uggowitzer, R. Schaublin, F. Palm, K. Wegener, Mater. Des. 115, 52 (2017)
DOI URL |
[15] | A.B. Spierings, K. Dawson, K. Kern, F. Palm, K. Wegener, Mater. Sci. Eng. A 701, 264 (2017) |
[16] |
R. Li, M. Wang, Z. Li, P. Cao, T. Yuan, H. Zhu, Acta Mater. 193, 83 (2020)
DOI URL |
[17] |
Z. Wang, X. Lin, Y. Tang, N. Kang, X. Gao, S. Shi, W. Huang, J. Mater. Sci. Technol. 69, 168 (2021)
DOI URL |
[18] | Z. Wang, X. Lin, N. Kang, Y. Hu, J. Chen, W. Huang, Addit. Manuf. 34, 101260 (2020) |
[19] | L.J. Zhang, F. Qiu, J.G. Wang, Q.C. Jiang, Mater. Sci. Eng. A 626, 338 (2015) |
[20] | W.S. Tian, Q.L. Zhao, Q.Q. Zhang, F. Qiu, Q.C. Jiang, Mater. Sci. Eng. A 700, 42 (2017) |
[21] |
M. Reddy, V. Manakari, G. Parande, F. Ubaid, R.A. Shakoor, J. Alloys Compd. 762, 398 (2018)
DOI URL |
[22] |
Y. Liu, F. Wang, Y. Cao, J. Nie, H. Zhou, H. Yang, X. Liu, X. An, X. Liao, Y. Zhao, Scr. Mater. 162, 316 (2019)
DOI URL |
[23] | H. Yang, K. Zhao, J. Nie, X. Liu, Mater. Sci. Eng. A 774, 138926 (2020) |
[24] | Q. Zhao, H. Zhang, X. Zhang, F. Qiu, Q. Jiang, Mater. Sci. Eng. A 718, 305 (2018) |
[25] |
X.P. Li, G. Ji, Z. Chen, A. Addad, Y. Wu, H.W. Wang, J. Vleugels, J. Van Humbeeck, J.P. Kruth, Acta Mater. 129, 183 (2017)
DOI URL |
[26] |
X. Xin, B. Chen, C.W. Tan, X.G. Song, J.C. Feng, J. Manuf. Process. 58, 763 (2020)
DOI URL |
[27] | S. Abdi, M.S. Khoshkhoo, O. Shuleshova, M.B. Nisch, M. Calin, L. Schultz, J. Eckert, M.D. Baró, J. Sort, A. Gebert, Intermetallics 46, 156 (2014) |
[28] |
M.X. Zhang, P.M. Kelly, M.A. Easton, Acta Mater. 53, 1427 (2005)
DOI URL |
[29] | D. Zhemchuzhnikova, M. Lebyodkin, T. Lebedkina, R. Kaibyshev, Mater. Sci. Forum 879, 2268 (2016) |
[30] |
H. Jin, D.J. Lloyd, Scr. Mater. 50, 1319 (2004)
DOI URL |
[31] |
Z. Lei, J. Bi, Y. Chen, X. Chen, Z. Tian, X. Qin, J. Manuf. Process. 53, 283 (2020)
DOI URL |
[32] |
J. Bi, Z.L. Lei, X. Chen, P. Li, N.N. Lu, Y.B. Chen, Ceram. Int. 45, 5680 (2019)
DOI URL |
[33] | T. Zhao, M. Dahmen, W. Cai, M. Alkhayat, J. Schaible, P. Albus, C. Zhong, C. Hong, T. Biermann, H. Zhang, D. Gu, A. Weisheit, A. Gasser, J.H. Schleifenbaum, Opt. Laser Technol. 131, 106438(2020) |
[34] |
H.T. Li, Y. Wang, Z. Fan, Acta Mater. 60, 1528 (2012)
DOI URL |
[35] | M. Li, S. Zhou, W. Wang, F. Liu, Y. Wu, Prakt. Metallogr.-Pract. Metallogr. 57, 321 (2020) |
[36] |
B.C. Zhang, G.J. Bi, S.R. Nai, C.N. Sun, J. Wei, Opt. Laser Technol. 80, 186 (2016)
DOI URL |
[37] | N.T. Aboulkhair, N.M. Everitt, I. Ashcroft, C. Tuck, Addit. Manuf. 1-4, 77(2014) |
[38] | A. Haboudou, P. Peyre, A.B. Vannes, G. Peix, Mater. Sci. Eng. A 363, 40 (2003) |
[39] |
C. Weingarten, D. Buchbinder, N. Pirch, W. Meiners, K. Wissenbach, R. Poprawe, J. Mater. Process. Technol. 221, 112 (2015)
DOI URL |
[40] |
G. Liu, G.J. Zhang, F. Jiang, X.D. Ding, Y.J. Sun, J. Sun, E. Ma, Nat. Mater. 12, 344 (2013)
DOI PMID |
[41] | L.Y. Chen, J.Q. Xu, H. Choi, M. Pozuelo, X.C. Li, Nature 528, 539 (2015) |
[42] | M. Calcagnotto, D. Ponge, E. Demir, D. Raabe, Mater. Sci. Eng. A 527, 2738 (2010) |
[43] | Z.F. Yan, D.H. Wang, X.L. He, W.X. Wang, H.X. Zhang, Mater. Sci. Eng. A 723, 212 (2018) |
[44] |
Z. Sun, X.P. Tan, M. Descoins, D. Mangelinck, S.B. Tor, C.S. Lim, Scr. Mater. 168, 129 (2019)
DOI URL |
[1] | Yueling Guo, Qifei Han, Jinlong Hu, Xinghai Yang, Pengcheng Mao, Junsheng Wang, Shaobo Sun, Zhi He, Jiping Lu, Changmeng Liu. Comparative Study on Wire-Arc Additive Manufacturing and Conventional Casting of Al-Si Alloys: Porosity, Microstructure and Mechanical Property [J]. Acta Metallurgica Sinica (English Letters), 2022, 35(3): 475-485. |
[2] | Minbo Wang, Ruidi Li, Tiechui Yuan, Haiou Yang, Pengda Niu, Chao Chen. Microstructure and Mechanical Properties of Selective Laser Melted Al-2.51Mn-2.71Mg-0.55Sc-0.29Cu-0.31Zn Alloy Designed by Supersaturated Solid Solution [J]. Acta Metallurgica Sinica (English Letters), 2022, 35(3): 354-368. |
[3] | Pei Wang, Sijie Yu, Jaskarn Shergill, Anil Chaubey, Jürgen Eckert, Konda Gokuldoss Prashanth, Sergio Scudino. Selective Laser Melting of Al-7Si-0.5 Mg-0.5Cu: Effect of Heat Treatment on Microstructure Evolution, Mechanical Properties and Wear Resistance [J]. Acta Metallurgica Sinica (English Letters), 2022, 35(3): 389-396. |
[4] | Shuaishuai Wei, Bo Song, Yuanjie Zhang, Lei Zhang, Yusheng Shi. Mechanical Response of Triply Periodic Minimal Surface Structures Manufactured by Selective Laser Melting with Composite Materials [J]. Acta Metallurgica Sinica (English Letters), 2022, 35(3): 397-410. |
[5] | Li Hu, Mingao Li, Qiang Chen, Tao Zhou, Laixin Shi, Mingbo Yang. Dependence of Microstructure Evolution and Mechanical Properties on Loading Direction for AZ31 Magnesium Alloy Sheet with Non-basal Texture During In-Plane Uniaxial Tension [J]. Acta Metallurgica Sinica (English Letters), 2022, 35(2): 223-234. |
[6] | Li-Cheng Wu, Yan-Hui Li, Xing-Jie Jia, Ai-Na He, Wei Zhang. Effects of Ribbon Thickness on Structure and Soft Magnetic Properties of a High-Cu-Content FeBCuNb Nanocrystalline Alloy [J]. Acta Metallurgica Sinica (English Letters), 2022, 35(2): 235-242. |
[7] | Yanan Wang, Sansan Shuai, Chenglin Huang, Tao Jing, Chaoyue Chen, Tao Hu, Jiang Wang, Zhongming Ren. Revealing the Diversity of Dendritic Morphology Evolution During Solidification of Magnesium Alloys using Synchrotron X-ray Imaging: A Review [J]. Acta Metallurgica Sinica (English Letters), 2022, 35(2): 177-200. |
[8] | Liangyuan Wang, Lei Shen, Yongcun Li, Yuanjie Wang, Yu Xiao, Xingyi Zhang, Feng Xu, Xiaofang Hu. In situ SR-CT Experimental Study on the Directional Sintering of High-Temperature Superconductor YBCO Materials in the Microwave Fields [J]. Acta Metallurgica Sinica (English Letters), 2022, 35(1): 67-77. |
[9] | Mehran Dadkhah, Mohammad Hossein Mosallanejad, Luca Iuliano, Abdollah Saboori. A Comprehensive Overview on the Latest Progress in the Additive Manufacturing of Metal Matrix Composites: Potential, Challenges, and Feasible Solutions [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(9): 1173-1200. |
[10] | Muhammad Rizwan, Junxia Lu, Fei Chen, Ruxia Chai, Rafi Ullah, Yuefei Zhang, Ze Zhang. Microstructure Evolution and Mechanical Behavior of Laser Melting Deposited TA15 Alloy at 500 °C under In-Situ Tension in SEM [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(9): 1201-1212. |
[11] | Wei Zhang, Zhi-Hong Dong, Hong-Wei Kang, Chen Yang, Yu-Jiang Xie, Mohamad Ebrahimnia, Xiao Peng. Enhancement of Strength-Ductility Balance of the Laser Melting Deposited 12CrNi2 Alloy Steel Via Multi-step Quenching Treatment [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(9): 1234-1244. |
[12] | Jinyang Liu, Jian Chen, Li Zhou, Bingyao Liu, Yang Lu, Shanghua Wu, Xin Deng, Zhongliang Lu, Zhipeng Xie, Wei Liu, Jianye Liu, Zhi Qu. Role of Co Content on Densification and Microstructure of WC-Co Cemented Carbides Prepared by Selective Laser Melting [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(9): 1245-1254. |
[13] | Jiafen Song, Zishu Chai, Jian Zheng, Qingfeng Wu, Feng He, Zenan Yang, Junjie Li, Jincheng Wang, Haiou Yang, Zhijun Wang. Design Fe-based Eutectic Medium-Entropy Alloys Fe2NiCrNbx [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(8): 1103-1108. |
[14] | Yulun Wu, Rui Hu, Jieren Yang, Keren Zhang, Xuyang Wang. Active Eutectoid Decomposition of α → γ + τ1 and the Morphological Evolution in a Ru-Containing TiAl Alloy [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(8): 1042-1050. |
[15] | Xuan Huang, Yong Dong, Shaomu Lu, Chuanqiang Li, Zhengrong Zhang. Effects of Homogenized Treatment on Microstructure and Mechanical Properties of AlCoCrFeNi2.2 Near-Eutectic High-Entropy Alloy [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(8): 1079-1086. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||