Optimization on microstructure, mechanical properties and damping capacities of duplex structured Mg-8Li-4Zn-1Mn alloys

Y. Yang, X.M. Xiong, J. Chen, X.D. Peng, D.L. Chen, and F.S. Pan, Research advances in magnesium and magnesium alloys worldwide in 2020, J. Magnes. Alloys, 9(2021), No. 3, p. 705.

Article  CAS  Google Scholar 

L.X. Hong, R.X. Wang, and X.B. Zhang, Effects of Nd on microstructure and mechanical properties of as-cast Mg-12Gd-2Zn-xNd-0.4Zr alloys with stacking faults, Int. J. Miner. Metall. Mater., 29(2022), No. 8, p. 1570.

Article  CAS  Google Scholar 

J.F. Song, J. She, D.L. Chen, and F.S. Pan, Latest research advances on magnesium and magnesium alloys worldwide, J. Magnes. Alloys, 8(2020), No. 1, p. 1.

Article  CAS  Google Scholar 

J. Han, C. Wang, Y.M. Song, Z.Y. Liu, J.P. Sun, and J.Y. Zhao, Simultaneously improving mechanical properties and corrosion resistance of as-cast AZ91 Mg alloy by ultrasonic surface rolling, Int. J. Miner. Metall. Mater., 29(2022), No. 8, p. 1551.

Article  CAS  Google Scholar 

S.Y. Jin, X.C. Ma, R.Z. Wu, et al., Effect of carbonate additive on the microstructure and corrosion resistance of plasma electrolytic oxidation coating on Mg-9Li-3Al alloy, Int. J. Miner. Metall. Mater., 29(2022), No. 7, p. 1453.

Article  CAS  Google Scholar 

T.C. Chang, J.Y. Wang, C.L. Chu, and S. Lee, Mechanical properties and microstructures of various Mg-Li alloys, Mater. Lett., 60(2006), No. 27, p. 3272.

Article  CAS  Google Scholar 

Y.H. Kim, J.H. Kim, H.S. Yu, J.W. Choi, and H.T. Son, Microstructure and mechanical properties of Mg-xLi-3Al-1Sn-0.4Mn alloys (x = 5, 8 and 11wt%), J. Alloys Compd., 583(2014), p. 15.

Article  CAS  Google Scholar 

J.F. Wang, D.D. Xu, R.P. Lu, and F.S. Pan, Damping properties of as-cast Mg-xLi-1Al alloys with different phase composition, Trans. Nonferrous Met. Soc. China, 24(2014), No. 2, p. 334.

Article  Google Scholar 

R.P. Lu, K. Jiao, N.T. Li, H. Hou, J.F. Wang, and Y.H. Zhao, Microstructure and damping properties of LPSO phase dominant Mg-Ni-Y and Mg-Zn-Ni-Y alloys, J. Magnes. Alloys, (2022). DOI: https://doi.org/10.1016/j.jma.2022.06.013

X.F. Huang, W.Z. Zhang, J.F. Wang, and W.W. Wei, A transmission electron microscopy investigation of defects in an Mg-Cu-Mn-Zn-Y damping alloy, J. Alloys Compd., 516(2012), p. 186.

Article  CAS  Google Scholar 

C. Xu, J.H. Zhang, S.J. Liu, et al., Microstructure, mechanical and damping properties of Mg-Er-Gd-Zn alloy reinforced with stacking faults, Mater. Des., 79(2015), p. 53.

Article  CAS  Google Scholar 

H.S. Jiang, X.G. Qiao, M.Y. Zheng, K. Wu, C. Xu, and S. Kamado, The partial substitution of Y with Gd on microstructures and mechanical properties of as-cast and as-extruded Mg-10Zn-6Y-0.5Zr alloy, Mater. Charact., 135(2018), p. 96.

Article  CAS  Google Scholar 

H. Jafari, A.H.M. Tehrani, and M. Heydari, Effect of extrusion process on microstructure and mechanical and corrosion properties of biodegradable Mg-5Zn-1.5Y magnesium alloy, Int. J. Miner. Metall. Mater, 29(2022), No. 3, p. 490.

Article  CAS  Google Scholar 

K. Guan, D. Egusa, E. Abe, et al., Microstructures and mechanical properties of as-cast Mg-Sm-Zn-Zr alloys with varying Gd contents, J. Magnes. Alloys, 10(2022), No. 5, p. 1220.

Article  CAS  Google Scholar 

Z.Z. Jin, M. Zha, S.Q. Wang, et al., Alloying design and microstructural control strategies towards developing Mg alloys with enhanced ductility, J. Magnes. Alloys, 10(2022), No. 5, p. 1191.

Article  CAS  Google Scholar 

Y.T. Tang, C. Zhang, L.B. Ren, et al., Effects of Y content and temperature on the damping capacity of extruded Mg-Y sheets, J. Magnes. Alloys, 7(2019), No. 3, p. 522.

Article  CAS  Google Scholar 

J.F. Wang, P.F. Song, S. Gao, X.F. Huang, Z.Z. Shi, and F.S. Pan, Effects of Zn on the microstructure, mechanical properties, and damping capacity of Mg-Zn-Y-Zr alloys, Mater. Sci. Eng. A, 528(2011), No. 18, p. 5914.

Article  CAS  Google Scholar 

L.H. Li, H.S. Cao, F.G. Qi, et al., Effect of heat treatment on microstructure and mechanical properties of Mg-5Zn-1Mn alloy tube, Metals, 10(2020), No. 3, art. No. 301.

Google Scholar 

X. Ye, H.S. Cao, F.G. Qi, et al., Effect of Y addition on the microstructure and mechanical properties of ZM31 alloy, Materials, 13(2020), No. 3, art. No. 583.

Google Scholar 

C.H. Hou, F.G. Qi, Z.S. Ye, N. Zhao, D.F. Zhang, and X.P. Ouyang, Effects of Mn addition on the microstructure and mechanical properties of Mg-Zn-Sn alloys, Mater. Sci. Eng. A, 774(2020), art. No. 138933.

R.P. Lu, K. Jiao, Y.H. Zhao, K. Li, K.Y. Yao, and H. Hou, Influence of long-period-stacking ordered structure on the damping capacities and mechanical properties of Mg-Zn-Y-Mn ascast alloys, Materials, 13(2020), No. 20, art. No. 4654.

S.Q. Chen, X.P. Dong, R. Ma, L. Zhang, H. Wang, and Z.T. Fan, Effects of Cu on microstructure, mechanical properties and damping capacity of high damping Mg-1%Mn based alloy, Mater. Sci. Eng. A, 551(2012), p. 87.

Article  CAS  Google Scholar 

X.R. Meng, R.Z. Wu, M.L. Zhang, L.B. Wu, and C.L. Cui, Microstructures and properties of superlight Mg-Li-Al-Zn wrought alloys, J. Alloys Compd., 486(2009), No. 1–2, p. 722.

Article  CAS  Google Scholar 

J.F. Wang, Z.S. Wu, S. Gao, et al., Optimization of mechanical and damping properties of Mg-0.6Zr alloy by different extrusion processing, J. Magnes. Alloys, 3(2015), No. 1, p. 79.

Article  CAS  Google Scholar 

G. Zhou, Y. Yang, L. Sun, et al., Tailoring the microstructure, mechanical properties and damping capacities of Mg-4Li-3Al-0.3Mn alloy via hot extrusion, J. Mater. Res. Technol., 19(2022), p. 4197.

Article  CAS  Google Scholar 

S. Feng, W.C. Liu, J. Zhao, G.H. Wu, H.B. Zhang, W.J. Ding, Effect of extrusion ratio on microstructure and mechanical properties of Mg-8Li-3Al-2Zn-0.5Y alloy with duplex structure, Mater. Sci. Eng. A, 692(2017), p. 9.

Article  CAS  Google Scholar 

G. Zhou, Y. Yang, H.Z. Zhang, et al., Microstructure and strengthening mechanism of hot-extruded ultralight Mg-Li-Al-Sn alloys with high strength, J. Mater. Sci. Technol., 103(2022), p. 186.

Article  Google Scholar 

H. Ji, G.H. Wu, W.C. Liu, X.L. Zhang, L. Zhang, and M.X. Wang, Origin of the age-hardening and age-softening response in Mg-Li-Zn based alloys, Acta Mater., 226(2022), art. No. 117673.

H. Ji, G.H. Wu, W.C. Liu, X.L. Liang, G.L. Liao, and D.H. Ding, Microstructure characterization and mechanical properties of the as-cast and as-extruded Mg-xLi-5Zn-0.5Er (x = 8, 10 and 12 wt%) alloys, Mater. Charact., 159(2020), art. No. 110008.

H.J. Deng, Y. Yang, M.M. Li, et al., Effect of Mn content on the microstructure and mechanical properties of Mg-6Li-4Zn-xMn alloys, Prog. Nat. Sci.: Mater. Int., 31(2021), No. 4, p. 583.

Article  CAS  Google Scholar 

A. Yamamoto, T. Ashida, Y. Kouta, K.B. Kim, S. Fukumoto, and H. Tsubakino, Precipitation in Mg-(4—13)%Li-(4—5)%Zn ternary alloys, Mater. Trans., 44(2003), No. 4, p. 619.

Article  CAS  Google Scholar 

H. Ji, G.H. Wu, W.C. Liu, J.W. Sun, and W.J. Ding, Role of extrusion temperature on the microstructure evolution and tensile properties of an ultralight Mg-Li-Zn-Er alloy, J. Alloys Compd., 876(2021), art. No. 160181.

Y.J. Ma, C.M. Liu, S.N. Jiang, Y.C. Wan, and Z.Y. Chen, Microstructure, mechanical properties and damping capacity of asextruded Mg-1.5Gd alloys containing rare-earth textures, Mater. Charact., 189(2022), art. No. 111969.

H.F. Sun, C.J. Li, and W.B. Fang, Evolution of microstructure and mechanical properties of Mg-3.0Zn-0.2Ca-0.5Y alloy by extrusion at various temperatures, J. Mater. Process. Technol., 229(2016), p. 633.

Article  CAS  Google Scholar 

S.F. Luo, N. Wang, Y. Wang, et al., Texture, microstructure and mechanical properties of an extruded Mg-10Gd-1Zn-0.4Zr alloy: Role of microstructure prior to extrusion, Mater. Sci. Eng. A, 849(2022), art. No. 143476.

Z.M. Hua, B.Y. Wang, C. Wang, et al., Solute segregation assisted superplasticity in a low-alloyed Mg-Zn-Ca-Sn-Mn alloy, Materialia, 14(2020), art. No. 100918.

Q.H. Wang, H.W. Zhai, L.T. Liu, et al., Exploiting an as-extruded fine-grained Mg-Bi-Mn alloy with strength-ductility synergy via dilute Zn addition, J. Alloys Compd., 924(2022), art. No. 166337.

M. Yuan, C. He, J. Zhao, et al., Microstructure evolution and mechanical properties of the Mg-Sm-Gd-Zn-Zr alloy during extrusion, J. Mater. Res. Technol., 15(2021), p. 2518.

Article  CAS  Google Scholar 

J.F. Nie, Effects of precipitate shape and orientation on dispersion strengthening in magnesium alloys, Scripta Mater., 48(2003), No. 8, p. 1009.

Article  CAS  Google Scholar 

P.F. Qin, Q. Yang, Y.Y. He, et al., Microstructure and mechanical properties of high-strength high-pressure die-cast Mg-4Al-3La-1Ca-0.3Mn alloy, Rare Met., 40(2021), No. 10, p. 2956.

Article  CAS  Google Scholar 

Z. Zhang, J.H. Zhang, J.S. Xie, et al., Developing a low-alloyed fine-grained Mg alloy with high strength-ductility based on dislocation evolution and grain boundary segregation, Scripta Mater., 209(2022), art. No. 114414.

A. Granato and K. Lücke, Application of dislocation theory to internal friction phenomena at high frequencies, J. Appl. Phys., 27(1956), No. 7, p. 789.

Article  Google Scholar 

J.H. Jun, Damping behavior of Mg-Zn-Al casting alloys, Mater. Sci. Eng. A, 665(2016), p. 86.

Article  CAS  Google Scholar 

B.K. Sugimoto, K. Niiya, T. Okamoto, and K. Kishitake, A study of damping capacity in magnesium alloys, Trans. JIM, 18(1977), No. 3, p. 277.

Article  CAS  Google Scholar 

X.P. Zhou, H.G. Yan, J.H. Chen, et al., Effects of the β1’ precipitates on mechanical and damping properties of ZK60 magnesium alloy, Mater. Sci. Eng. A, 804(2021), art. No. 140730.

D. Wang, X.C. Ma, R.Z. Wu, et al., Effect of extrusion plus rolling on damping capacity and mechanical properties of Mg-Y-Er-Zn-Zr alloy, Mater. Sci. Eng. A, 830(2022), art. No. 142298.

X.S. Hu, K. Wu, M.Y. Zheng, W.M. Gan, and X.J. Wang, Low frequency damping capacities and mechanical properties of Mg-Si alloys, Mater. Sci. Eng. A, 452–453(2007), p. 374.

Article  Google Scholar 

D.Q. Wan, J.C. Wang, G.F. Wang, et al., Effect of Mn on damping capacities, mechanical properties, and corrosion behaviour of high damping Mg-3wt.%Ni based alloy, Mater. Sci. Eng. A, 494(2008), No. 1–2, p. 139.

Google Scholar 

J.H. Wang, Y. Jin, R.Z. Wu, et al., Simultaneous improvement of strength and damping capacities of Mg-8Li-6Y-2Zn alloy by heat treatment and hot rolling, J. Alloys Compd., 927(2022), art. No. 167027.

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