REVIEW PAPER |
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Current Status of Dynamic Recrystallization Control and Strengthening-Toughening Mechanisms of Spray Deposited Aluminium Matrix Composites |
HE Yiqiang1,2, QIAN Chenchen2, LI Junjie2 , ZHOU Haisheng2
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1 Jiangsu Marine Resources Development Research Institute, Lianyungang 222005; 2 College of Mechanical Engineering, Huaihai Institute of Technology, Lianyungang 222005 |
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Abstract Spray deposited Al matrix composite reinforced with particles has an extensive application prospect for its excellent performances, but its application is restricted by its poor deformability and low ductility and toughness. Controlling dynamic recrystallization behavior and revealing mechanism of strengthening and toughening of the composite during hot deformation are most important. Classification and development of densification technologies of spray deposited Al-matrix composite are introduced. Recovery and dynamic recrystallization of Al-matrix composite during deformation process are summarized. Influence factors of mechanical properties of Al-matrix composite are discussed. Developing trend of spray deposited Al-matrix composite is prospected. Effects of reinforcing particles and dispersoids on recrystallization behavior, influencing mechanism of strength and toughness of Al composite reinforced with particles and development of processing and mechanism of densification of spray deposited Al-matrix composite are discussed. Methods for improving mechanical properties and toughness of the composite are provided.
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Published: 10 September 2017
Online: 2018-05-07
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1 Chen C G, Guo L C, Luo J, et al. Aluminum powder size and microstructure effects on properties of boron nitride reinforced aluminum matrix composites fabricated by semi-solid powder metallurgy[J]. Mater Sci Eng A,2015,646:304. 2 Gao F, Xu C, Zhang H P, et al.Core-shell structure Al-matrix composite with enhanced mechanical properties[J]. Mater Sci Eng A,2016,657:64. 3 Sabbaghianrad S, Langdon T G. Developing superplasticity in an aluminum matrix composite processed by high-pressure torsion[J]. Mater Sci Eng A,2016,655:36. 4 Chen X, Yang C X, Guan L D, et al. TiB2/Al2O3 ceramic particle reinforced aluminum fabricated by spray deposition[J]. Mater Sci Eng A,2008,496(1-2):52. 5 Su B, Yan H G, Chen G, et al. Study on the preparation of the SiCP/Al-20Si-Cu functionally graded material using spray deposition[J]. Mater Sci Eng A,2010,527(24-25):6660. 6 Li W, Chen Z H, Chen D, et al. Low cycle fatigue behavior SiCP/Al-Si composites produced by spray deposition[J]. Mater Sci Eng A,2010,527(29-30):7631. 7 Mauduit D, Dusserre G, Cutard T. Probabilistic rupture analysis of a brittle spray deposited Si-Al alloy under thermal gradient: Characterization and thermoelastic[J]. Mater Design,2016:95:414. 8 Kim W, Alan A, Mohanty P S. Damping characteristics of a spray-deposited shape memory alloy beam[J]. J Sound Vibration,2014,333:3356. 9 Goudar D M, Raju K, Srivastava V C, et al. Effect of secondary processing on the microstructure and wear behavior of spray formed Al-30Mg2Si-2Cu alloy[J]. Mater Design,2013,47:489. 10 Yu H C, Wang M P, Jia Y L, et al. High strength and large ductility in spray-deposited Al-Zn-Mg-Cu alloys[J]. J Alloys Compd,2014,601:120. 11 Cai Yuanhua, Liang Ruiguang, Su Zhanpei, et al. Hot deformation behavior and microstructural stability of spray formed Al-22Si-5Fe alloy[J]. Acta Metall Sinica,2010,46(7):814(in Chinese). 蔡元华, 梁瑞光, 苏占培, 等. 喷射成形Al-22Si-5Fe合金的热变形行为及组织稳定性[J]. 金属学报,2010,46(7):814. 12 Wang F, Zhu B H, Xiong B Q, et al. An investigation on the microstructure and mechanical properties of spray-deposited Al-8.5Fe-1.1V-1.9Si alloy[J]. J Mater Process Technol,2007,183(2-3):386. 13 Jia Y D, Cao F Y, Scudino S, et al. Microstructure and thermal expansion behavior of spray-deposited Al-50Si[J]. Mater Design,2014,57:585. 14 Li H C, Cao F Y, Guo S, et al. Microstructure and properties evolution of spray-deposited Al-Zn-Mg-Cu-Zr alloys with scandium addition[J]. J Alloys Compd,2017,691:482. 15 Tang Y P, Tan D Q, Li W X, et al. Preparation of AlFeVSi alloy by spray codeposition with added its oversprayed powders[J]. J Alloys Compd,2007,439(1-2):103. 16 Yu H C, Wang M P, Jia Y L, et al. High strength and large ductility in spray-deposited Al-Zn-Mg-Cu alloys[J]. J Alloys Compd,2014,601(15):120. 17 Guo B, Ge C C, Xu Y. Flow behavior and numerical simulation of spray-formed FGH 95 superalloy under hot compression[J]. J Iron Steel Res,2013,20(12):69. 18 Mazzer E M, Afonso C R M, Bolfarini C, et al. Microstructure study of Al 7050 alloy reprocessed by spray forming and hot-extrusion and aged at 121 ℃[J]. Intermetallics,2013,43:182. 19 Zhang H, Chen D, Chen Z H. Densification of spray deposited aluminum composite sheets via ceramic rolling technique[J]. Mater Manufactur Process,2008,23(5):479. 20 Chen Z G, Chen Z H, Tang G N. Processing, microstructure, and mechanical properties of large spray-deposited hypoeutec TiC Al-Si alloy tubular preform[J]. J Mater Eng Perform,2011,20(2):238. 21 Sun Y P, Yan H G, Chen Z H, et al. Effect of a novel sequential motion compaction process on the densification of multi-layer spray deposited 7090/SiCP composite[J]. J Mater Sci,2008,43(8):6200. 22 He Y Q, Tu H, Qiao B, et al. Tensile fracture behavior of spray deposited SiCP/Al-Fe-V-Si composite sheet[J]. Adv Compos Mater,2013,22(4):227. 23 He Yiqiang, Chen Zhenhua. Microstructure and mechanical property evolution of SiCP/Al-Fe-V-Si composite during sheet forming process[J]. Chinese J Nonferrous Metals,2012,22(12):3402(in Chinese). 贺毅强, 陈振华. SiCP/Al-Fe-V-Si的板材成形过程中显微组织和力学性能的演变[J].中国有色金属学报,2012,22(12):3402. 24 He Yiqiang, Hu Jianbin, Zhang Yi, et al. Microstructure and fracture behaviour of spray-deposited SiCP/Al-Fe-V-Si sheet as-rolled after wedge pressing[J]. Chinese J Nonferrous Metals,2014,24(8):2035(in Chinese). 贺毅强, 胡建斌, 张奕, 等. 喷射沉积SiCP/Al-Fe-V-Si板坯楔形压制后轧制的显微组织与断裂行为[J]. 中国有色金属学报,2014,24(8):2035. 25 Wang Chuangwei, Yin Jiancheng, Zhou Jingbo, et al. 2A12 aluminum alloy produced by spray forming conform[J]. Chinese J Nonferrous Metals,2013,23(4):957(in Chinese). 汪创伟, 尹建成, 周静波, 等. 喷射沉积连续挤压制备2A12铝合金[J]. 中国有色金属学报,2013,23(4):957. 26 Lai L, Shi C J, Chen X G. Effects of V addition on recrystallization resistance of 7150 aluminum alloy after simulative hot deformation[J]. Mater Character,2014,96:126. 27 Call R L, Jonas J J. Solute drag effect during the dynamic recrystallization of nickel[J]. Acta Mater,1999,47:4365. 28 Ouyang Delai, Lu Shiqiang, Huang Xu, et al. Critical conditions of dynamic recrystallization during deformation of β area in TA15 titanium alloy[J]. Chinese J Nonferrous Metals,2010,20(8):1539(in Chinese). 欧阳德来, 鲁世强, 黄旭, 等. TA15 钛合金β 区变形动态再结晶的临界条件[J]. 中国有色金属学报,2010,20(8):1539. 29 Pollak E I, Jonas J J. Initiation of dynamic recrystallization in constant strain rate hot deformation[J]. ISIJ Int,2003,43(5):684. 30 Yang Zhiqiang, Liu Yong, Tian Baohong, et al. Hot deformation and dynamic recrystallization of TiC(30vol%)/Cu-Al2O3 composites[J]. Acta Mater Compos Sin,2015,32(1):117(in Chinese). 杨志强, 刘勇, 田保红, 等. TiC(30vol%)/Cu-Al2O3复合材料热变形及其动态再结晶[J]. 复合材料学报,2015,32(1):117. 31 Qiu Lili, Gao Wenli, Lu Zheng, et al. Flow behavior and microstructure of 7A85 aluminum alloy during hot compression[J]. J Mater Eng,2016,44(1):33(in Chinese). 仇琍丽, 高文理, 陆政, 等. 7A85铝合金的热压缩流变行为[J]. 材料工程,2016,44(1):33. 32 Zhang Peng, Li Fuguo. Dynamic recrystallization model of SiC particle reinforced aluminum matrix composites[J]. Rare Metal Mater Eng,2010,39(7):1166(in Chinese). 张鹏, 李付国. SiC 颗粒增强Al 基复合材料的动态再结晶模型[J]. 稀有金属材料与工程,2010,39(7):1166. 33 Sun Yali, Xie Jingpei, Hao Shiming, et al. Critical conditions of dynamic recrystallization of 30%SiCP/2024Al composite[J]. Trans Mater Heat Treatment,2015,36(9):7(in Chinese). 孙亚丽, 谢敬佩, 郝世明, 等. 30%SiCP /2024Al复合材料动态再结晶临界条件[J]. 材料热处理学报,2015,36(9):7. 34 Mao Changhui, Sun Xudong, Wang Tao, et al. Effect of thermal deformation on microstructure and mechanical properties of WCP/2024Al composites[J]. J Mater Metall,2012,11(4):292(in Chinese). 毛昌辉, 孙旭东, 王涛, 等. 热变形加工对WCP/2024Al复合材料组织结构和力学性能的影响[J].材料与冶金学报,2012,11(4):292. 35 Chen Z H, Chen Z G, Yan H G, et al. Novel method for densification of porous spray deposited Al-Fe-V-Si alloy tube performs[J]. Mater Sci Technol,2009,25(1):111. 36 Park J K, Lucas J P. Moisture effect on SiCp/6061 Al MMC: Dissolution of interfacial Al4C3[J]. Scripta Mater,1997,37(4):511. 37 Ci L J, Ryu Z Y, Jin P, et al. Investigation of the interfacial reaction between multi-walled carbon nanotubes and aluminum[J]. Acta Mater,2006,54(20):5367. 38 Tan Dunqiang, Li Wenxian, Chen Wei. Effect of melt temperature and cooling rate on microstructure and mechanical properties of Al-Fe-V-Si heat-resistant aluminum alloy[J]. J Aeronaut Mater,2006,26(5):14(in Chinese). 谭敦强, 黎文献, 陈伟. 熔体温度、冷却速率对Al-Fe-V-Si耐热铝合金组织和力学性能的影响[J]. 航空材料学报,2006,26(5):14. 39 He Y Q, Qiao B, Wang N, et al. A study on the interfacial structure of spray-deposited SiCP/Al-Fe-V-Si composite[J]. Adv Compos Lett,2009,18(3):137. 40 Yu Jingyu, Li Yulong, Zhou Hongxia, det al. Influence of particles size on the dynamic behavior of PMMCs[J]. Acta Mater Compos Sin,2005,22(5):31(in Chinese). 于敬宇,李玉龙, 周宏霞, 等. 颗粒尺寸对颗粒增强型金属基复合材料动态特性的影响[J]. 复合材料学报,2005,22(5):31. 41 El-Kady O, Fathy A. Effect of SiC particle size on the physical and mechanical properties of extruded Al matrix nanocomposites[J]. Mater Design,2014,54(2):348. 42 Tajima Y, Kingery W D. Grain-boundary segregation in aluminium-doped silicon carbide[J]. J Mater Sci,1982,17(2):2289. 43 Cao L, Geng L, Yao C K, et al. Interface in silicon carbide whisker reinforced aluminum composites[J]. Scripta Metall,1989,23(2):227. 44 He Yiqiang, Wang Na, Qiao Bin, et al. SiC/Al interface feature of Al-Fe-V-Si alloy reinforced with SiC particles[J].Chinese J Nonferrous Metals,2010,20(7):1302(in Chinese). 贺毅强, 王娜, 乔斌, 等. SiC颗粒增强Al-Fe-V-Si复合材料的SiC/Al界面形貌[J].中国有色金属学报,2010,20(7):1302. 45 Zhao Y H, Zhu Y T, LaverniaE J. Strategies for improving ductility of bulk NSM[J]. Adv Eng Mater,2010,12:769. 46 Wu G H, Wang X, Jiang L T, et al. A nanostructural design to produce high ductility of high fraction SiCP/Al composites with enhanced strength[J]. Mater Design,2014,61:141. 47 Yuan W H, An B L. Effect of heat treatment on microstructure and mechanical property of extruded 7090/SiCP composite[J]. Trans Nonferrous Metals Soc China,2012,22:2080. 48 Valiev R Z, Islamgaliev R K, Kuzmina N F, et al. Strengthing and grain reinforcement in an Al-6061 metal matrix composite through intense plastic straining[J]. Scripta Mater,1999,40:117. |
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