International Journal of Fracture Mechanics and Damage Science Review Article
A Review on The Role of Nanoparticles in Modifying Mg Alloys and Composites
Abstract
Reviewing and assessing magnesium's uses in the automobile sector, which have the potential to greatly improve fuel efficiency and environmental preservation, is the goal of this study. The report provides an overview of magnesium alloys' present benefits, drawbacks, technological obstacles, and future prospects in the automobile sector. The development of magnesium matrix composites has advanced to a new level thanks to the magnesium matrix nanocomposites' exceptional mechanical qualities. Dispersing nanoparticles in metal melts is a challenging task, particularly in magnesium melts, which differ from other metal melts and pose a risk during the casting process. This indicates that it is very difficult to manufacture a magnesium matrix nanocomposite.Further, the magnesium matrix nanocomposites possess a distinctive characteristic in deformation behaviour, strengthening and toughening mechanism due to their special size effect of nanoparticles. As a result, the deformation behavior, mechanical characteristics, and strengthening and toughening procedures will be the main topics of this review. Future research ideas, development trends, and prospective applications of magnesium matrix nanocomposite are also explored.
Keywords
References (69)
- Effect of Li addition on the mechanical behavior and texture of theas-extrudedAZ31magnesiumalloy, (n.d.).
- Effect of micro alloyed Zr on the extruded microstructure of Mg–6.2Zn-based alloys, (n.d.).
- Effect of Yttrium and Cerium Addition on Microstructure and Mechanical Properties of AM50 Magnesium Alloy, (n.d.).
- A novel approach to melt purification of magnesium alloys, (n.d.).
- Magnesium and its alloys applications in automotive industry, (n.d.).
- Substitution of Ni for Zn on microstructure and mechanical properties of Mg–Gd–Y–Zn–Mn alloy, (n.d.).
- The role of Ca, Al and Zn on room temperature ductility and grain boundary cohesion of magnesium, (n.d.).
- The corrosion behaviors of Mge7Gde5Ye1Nde0.5Zr alloy under (NH4)2SO4, NaCl and Ca(NO3)2 salts spray condition, (n.d.).
- Effect of Gd and Ycontents on the microstructural evolution of long period stacking ordered phase and the corresponding mechanical properties in Mg–Gd–Y–Zn–Mn alloys, (n.d.).
- High-cycle fatigue behavior of Mg-8Li-3Al-2Zn-0.5Y alloy under different states, (n.d.).
- Effect ofLiadditiononthemechanicalbehaviorandtexture of theas-extrudedAZ31magnesiumalloy, (n.d.).
- H. Zhang , S.J. Liu , R.Z. Wu , L.G. Hou , M.L. Zhang , J. Magnes. Alloy 6 (2018) 277–291 ., (n.d.).
- Garces , K. Mathis , R. Barea , J. Medina , P. Perez , A. Stark , N. Schell , P. Adeva , Mater. Sci. Eng. A –Struct. (2019) 768 ., (n.d.).
- She , P. Peng , L. Xiao , A.T. Tang , Y. Wang , F.S. Pan , Mater. Sci. Eng. A –Struct. (2019) 765 ., (n.d.).
- W. Heng , Y. Zhang , W. Rong , Y.J. Wu , L.M. Peng , Mater. Des. (2019) 169 ., (n.d.).
- Luo , L. Zhang , G.H. Wu , W.C. Liu , W.J. Ding , J. Magnes. Alloy 7 (2019) 345–354 ., (n.d.).
- Lyu , J. Kim , H. Liao , J. She , J. Song , J. Peng , F. Pan , B. Jiang , Mater. Sci. Eng.: A 773 (2020) 138735 ., (n.d.).
- Xu , F. Gensch , Z. Ren , K.U. Kainer , N. Hort , Progr. Nat. Sci.: Mater. Int. 28 (2018) 724–730 ., (n.d.).
- Wang , J.F. Wan , S. Huang , S.Q. Gao , S.F. Guo , S.J. Liu , X.H. Chen , F.S. Pan , Mater. Sci. Eng. A –Struct. 733 (2018) 267–275 ., (n.d.).
- Avedesian , H. Baker , ASM Specialty Handbook: Magnesium and Magnesium Alloys, 1999 ., (n.d.).
- Research Scholar, Department of Mechanical Engineering, Suresh Gyan Vihar University, Jaipur, Rajasthan, India, Tiwari A, Kumar N, Banerjee MK. Effect of Hot Rolling on Microstructure and Mechanical Properties of Stir Cast AZ 61 Alloy with Minor Additions. Indian Journal Of Science And Technology. 2023;16(24):1810-1822. doi:10.17485/ijst/v16i24.302
- Tiwari A, Kumar N, Banerjee MK. Ageing Characteristics of Stir Cast AZ 61 Alloy with Minor Additions. Recent Patents on Engineering. 2024;18(6). doi:10.2174/1872212118666230609122741
- Thakur SK, Paramsothy M, Gupta M. Improving tensile and compressive strengths of magnesium by blending it with aluminium. Materials Science and Technology. 2010;26(1):115-120. doi:10.1179/174328408x389779
- S. Pan , M.B. Yang , X.H. Chen , J. Mater. Sci. Technol. 32 (2016) 1211–1221 ., (n.d.).
- H. Zhang , S.J. Liu , R.Z. Wu , L.G. Hou , M.L. Zhang , J. Magnes. Alloy 6 (2018) 277–291 ., (n.d.).
- Zhang , Z. Leng , S. Liu , J. Li , M. Zhang , R. Wu , J. Alloy Compd. 509 (2011) 7717–7722, (n.d.).
- H. Fu , L.M. Peng , H.Y. Jiang , W.J. Ding , C.Q. Zhai , China Foundry 11 (2014) 277–286 ., (n.d.).
- Wu , F.S. Pan , R.J. Cheng , S.Q. Luo , Mater. Sci. Eng. A –Struct. 726 (2018) 64–68 ., (n.d.).
- Wu , Study on Microstructure and Mechanical Properties of Cast Mg–Gd–Zn Serial Alloys, Chongqing University, 2018 ., (n.d.).
- Wang , P.H. Fu , L.M. Peng , Y.X. Wang , W.J. Ding , Mater. Charact. 153 (2019) 157–168 ., (n.d.).
- L. Li , D. Wu , R.S. Chen , E.H. Han , Acta Mater. 159 (2018) 31–45 ., (n.d.).
- Wang , H. Zhou , L. Wang , S. Zhu , S. Guan , J. Mater. Sci. Technol. 35 (2019) 1211–1217 ., (n.d.).
- Chai , B. Jiang , J. Song , Q. Wang , H. Gao , B. Liu , G. Huang , D. Zhang , F. Pan , J. Alloy Compd. 782 (2019) 1076–1086 ., (n.d.).
- Zhong , Y. Wang , Y. Dou , J. Magnes. Alloy 7 (2019) 637–647 ., (n.d.).
- Ye , Y. Liu , D.S. Zhao , Y.L. Zhuang , S.B. Gao , X.Q. Liu , J.P. Zhou , J.N. Gui , J.B. Wang , Mater. Sci. Eng.: A 724 (2018) 121–130 ., (n.d.).
- Zhao , X. Chen , F. Pan , S. Gao , D. Zhao , X. Liu , Mater. Sci. Eng.: A 713 (2018) 244–252 ., (n.d.).
- Kaviani , G.R. Ebrahimi , H.R. Ezatpour , Mater. Chem. Phys. 234 (2019) 245–258 ., (n.d.).
- Peng , X. He , J. She , A. Tang , M. Rashad , S. Zhou , G. Zhang , X. Mi , F. Pan , Mater. Sci. Eng.: A 766 (2019) 138332 ., (n.d.).
- C. Pan , C.L. Yang , Y.T. Yang , Y.Q. Dai , D.S. Zhou , L.J. Chai , Q.Y. Huang , Q.S. Yang , S.M. Liu , Y.P. Ren , G.W. Qin , Mater. Lett. 237 (2019) 65–68 ., (n.d.).
- L. He , T.J. Luo , Y.T. Liu , T. Lin , J.X. Zhou , Y.S. Yang , J. Alloy Compd. 767 (2018) 1216–1224 ., (n.d.).
- Huang , Y. Liu , A. Zhang , H. Jiang , H. Pan , X. Feng , C. Yang , T. Luo , Y. Li , Y. Yang , J. Mater. Sci. Technol. 38 (2020) 39–46 ., (n.d.).
- Zhang , H. Cui , X. Cui , E. Zhao , Y. Pan , R. Feng , Q. Jia , J. Zhao , J. Alloy Compd. 784 (2019) 1130–1138 ., (n.d.).
- Javaid , F. Czerwinski , J. Magnes. Alloy 7 (2019) 27–37 ., (n.d.).
- Wang , E. Guo , X. Wang , H. Kang , Z. Chen , Z. Cao , T. Wang , J. Magnes. Alloy 7 (2019) 456–465 ., (n.d.).
- Wang , B. Jiang , A. Tang , C. He , D. Zhang , J. Song , T. Yang , (n.d.).
- -H. Kim , S.H. Park , Mater. Sci. Eng.: A 733 (2018) 285–290 ., (n.d.).
- Chai , B. Jiang , J. Song , B. Liu , G. Huang , D. Zhang , F. Pan , Mater. Sci. Eng.: A 746 (2019) 82–93 ., (n.d.).
- Wang , J. Peng , L. Zhong , J. Alloy Compd. 744 (2018) 234–242 ., (n.d.).
- Nakata , C. Xu , R. Ajima , Y. Matsumoto , K. Shimizu , T.T. Sasaki , K. Hono , S. Kamado , Mater. Sci. Eng.: A 712 (2018) 12–19 ., (n.d.).
- Wang , F. Wei , B. Shi , Y. Ding , P. Jin ,Mater. Sci. Eng.: A 765 (2019) 138288 ., (n.d.).
- H. Zhang , S.J. Liu , R.Z. Wu , L.G. Hou , M.L. Zhang , J. Magnes. Alloy 6 (2018) 277–291 ., (n.d.).
- D. Zhang , Q. Yang , K. Guan , B.S. Li , N. Wang , P.F. Qin , B. Jiang , C. Sun , X. Qin , Z. Tian , Z.Y. Cao , J. Meng , J. Alloy Compd. (2019) 810 ., (n.d.).
- Zhang , Y. Feng , J. Zhang , S. Liu , Q. Yang , Z. Liu , R. Li , J. Meng , R. Wu , J. Mater. Sci. Technol. 35 (2019) 2365–2374 ., (n.d.).
- Yao , Z.H. Huang , H. Ma , H. Zhang , Z.M. Zhang , C.J. Xu , N. Zhou , M. Kuang , J.C. Huang , Mater. Sci. Eng. A –Struct. 747 (2019) 17–26 ., (n.d.).
- L. Bi , Y.X. Han , J. Jiang , Y.D. Li , D.Y. Zhang , D. Qiu , M. Easton , Mater. Sci. Eng. A –Struct. 760 (2019) 246–257 ., (n.d.).
- S. Li , K. Guan , Q. Yang , X.D. Niu , D.D. Zhang , S.H. Lv , F.Z. Meng , Y.D. Huang , N. Hort , J. Meng , J. Alloy Compd. 776 (2019) 666–678 ., (n.d.).
- J. Liu , K. Wang , J.F. Wang , S. Huang , S.Q. Gao , X. Peng , H. Hu , F.S. Pan , Mater. Sci. Eng. A –Struct. 758 (2019) 96–98 ., (n.d.).
- Rong , Y. Zhang , Y.J. Wu , Y.L. Chen , M. Sun , J. Chen , L.M. Peng , Mater. Sci. Eng. A –Struct. 740 (2019) 262–273 ., (n.d.).
- W. Heng , Y. Zhang , W. Rong , Y.J. Wu , L.M. Peng , Mater. Des. (2019) 169 ., (n.d.).
- You , C.M. Liu , Y.C. Wan , B. Tang , B.Z. Wang , Y.H. Gao , X.Z. Han , J. Magnes. Alloy 7 (2019) 414–418 ., (n.d.).
- B. Zheng , W.B. Du , Z.H. Wang , S.B. Li , K. Liu , X. Du , Mater Lett. 212 (2018) 155–158 ., Zn.d.).
- Xu , G.H. Fan , T. Nakata , X. Liang , Y.Q. Chi , X.G. Qiao , G.J. Cao , T.T. Zhang , M. Huang , K.S. Miao , M.Y. Zheng , S. Kamado , H.L. Xie , Metall. Mater. Trans. A 49A (2018) 1931–1947 ., (n.d.).
- Feng , J.H. Zhang , P.F. Qin , S.J. Liu , Q. Yang , J. Meng , R.Z. Wu , J.S. Xie , Mater. Charact. 155 (2019) ., (n.d.).
- K. Kang , K.B. Nie , K.K. Deng , Y.C. Guo , Mater. Charact. 151 (2019) 137–145 ., (n.d.).
- S. Nene , S. Zellner , B. Mondal , M. Komarasamy , R.S. Mishra , R.E. Brennan , K.C. Cho , Mater. Sci. Eng. A –Struct. 729 (2018) 294–299 ., (n.d.).
- P. Zhong , Y.J. Wang , Y.C. Dou , J. Magnes. Alloy 7 (2019) 637–647 ., (n.d.).
- Y. Zhang , R. Kang , L. Wu , H.C. Pan , H.B. Xie , Q.Y. Huang , Y.J. Liu , Z.R. Ai , L.F. Ma , Y.P. Ren , G.W. Qin , Mater. Sci. Eng. A –Struct. 754 (2019) 269–274 ., (n.d.).
- Wang , T. Luo , Y. Liu , T. Lin , Y. Yang , Mater. Charact. 147 (2019) 406–413 ., (n.d.).
- Aliyari , S.M. Fatemi , S.M. Miresmaeili , Trans. Nonferrous Metals Soc. China 29 (2019) 1842–1853 ., (n.d.).