Microstructure Evolution and Mechanical Properties of Al2O3/Al-10Si Composites Under High Pressure
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1.School of Material Science and Engineering,Anhui Polytechnic University,Wuhu 241000;2.School of Mechanical Engineering,Quzhou University,Quzhou 324000

Clc Number:

TG394

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    Abstract:

    Al2O3/Al-10Si composites solidified with different pressures were prepared by hot pressing and high pressure solidification.The effects of high pressure on the microstructure evolution and mechanical properties of Al2O3/Al-10Si composites were investigated.The results show that the high pressure solidified Al2O3/Al-10Si composite consists of α phase,β phase and Al2O3 strengthening phase, and α phase is cell-like.There is a small amount of fine granular β phase with a particle size of about 0.1 μm at α phase grain boundary.The solid solubility of Si in α phase and the microhardness increases with the increasing solidification pressure.The microhardness of the hot pressed sintered material is 55.3 HV.When solidification pressure is 5 GPa,the microhardness is 128 HV and has increased by 133%.The compressive strength has increased from 126 MPa to 702 MPa at 5 GPa.This is due to the high pressure causing an increase in the solid solubility of Si in α phase to form a solid solution strengthening.

    Reference
    [1] ASHWAT P,JOEL J,PRASHANTHA H G,et al. Processing and characterization of extruded 2024 series of aluminum alloy[J].Materials Today:Proceedings,2018,5(5):12479-12483.
    [2] LU J,SONG Y L,HUA L,et al.Thermal deformation behavior and processing maps of 7075 aluminum alloy sheet based on isothermal uniaxial tensile tests[J].Journal of Alloys and Compounds,2018,787(1):856-869.
    [3] 徐通,张宇飞,李咏凯.高性能亚共晶铝硅合金的研究[J].材料研究与应用,2017,11(4):236-239.XU T,ZHANG Y F,LI Y K.The study of high performance hypo-eutectic aluminum silicon alloy[J].Materials Research and Application,2017,11(4):236-239.
    [4] XU H,ZHANG G Z,CUI W,et al.Effect of Al2O(3sf) addition on the friction and wear properties of [SiCp+Al2O(3sf)]/Al2024 composites fabricated by pressure infiltration[J].International Journal of Minerals Metallurgy and Materials,2018,25(3):375-382.
    [5] 白彩盛,赵立杰.金属材料在汽车轻量化中的应用探讨[J].世界有色金属,2019,13:291-293.BAI C S,ZHAO L J.Application of metal material in automotive lightweight[J].World Nonferrous Metals,2019,13:291-293.
    [6] JOEL J.ANTHONY X M.Aluminum alloy composites and its machinability studies:a review[J].Materials Today:Proceedings,2018,5(5):13556-13562.
    [7] BI J,Zhao C C,DU B,et al.Formability and strengthening mechanism of AA6061 tubular components under solid granule medium internal high pressure forming[J].Transactions of Nonferrous Metals Society of China,2018,28(2):226-234.
    [8] 张冰,赵宇宏,王鸿,等.Al-Si合金枝晶形貌的三维相场模拟[J].稀有金属材料与工程,2019,48(9):2835-2840.ZHANG B,ZHAO H Y,WANG H,et al.Three-dimensional phase field simulation of dendritic morphology of Al-Si alloy[J].Rare Metal Materials and Engineering,2019,48(9):2835-2840.
    [9] LI R X,LI R D,BAI Y H,et al.Effect of specific pressure on microstructure and mechanical properties of squeeze casting ZA27 alloy[J].Transactions of Nonferrous Metals Society of China,2010,20(1):59-63.
    [10] 付莉超,赵鑫,郭洋,等.5 GPa超高压凝固Al-1Ni-3Y合金的凝固组织及相分析[J].铸造技术,2015,36(3): 712-715.FU L C,ZHAO X,GUO Y,et al.Microstructure and phase analysis of Al-1Ni-3Y alloy solidified at 5 GPa[J].Foundry Technology,2015,36(3):712-715.
    [11] 赵鑫,徐瑞.Al-Ni-Y三元共晶合金高压凝固组织[J].中国稀土学报,2012,30(02):181-185.ZHAO X,XU R.Solidification microstructure of ternary eutectic Al-Ni-Y alloy under high pressure[J].Journal of the Chinese Society of Rare Earths,2012,30(2):181-185.
    [12] JIAO X Y,WANG J,LIU C F,et al.Characterization of high-pressure die-cast hypereutectic Al-Si alloys based on microstructural distribution and fracture morphology[J].Journal of Materials Science and Technology,2019,35(6):1099-1107.
    [13] DONG Y,LIN X P,XU R,et al.Microstructure and compression deformation behavior in the quasicrystalreinforced Mg-8Zn-1Y alloy solidified under super-high pressure[J]. Journal of Rare Earths,2014,32(11):1048-1055.
    [14] 李全,马琰铭.高压下轻元素单质的结构相变[J]. 化学进展,2011,23(5):829-841.LI Q,MA Y M.Phase transitions in light elements under pressure[J].Progress in Chemistry,2011,23(5):829-841.
    [15] 于溪凤,张国志,肖汉杰,等.高压凝固亚共晶Al-Si合金的组织变异及生长机制[J].材料研究学报,2000,14(S1):141-144.YU X F,ZHANG G Z,XIAO H J,et al.Microstructure changes and growth mechanism of hypoeutectic Al-Si alloy solidified at high pressure[J].Chinese Journal of Materials Research,2000,14(S1):141-144.
    [16] 张国志,于溪凤,张雅静,等.Al-Si合金超高压凝固过饱和固溶体的时效组织与性能[J].材料与冶金学报,2006,5(1):61-63.ZHANG G Z,YU X F,ZHANG Y J,et al.Precipitated structure and properties of Al-Si alloy extended solution solidified at high pressure[J].Journal of Materials and Metallurgy,2006,5(1):61-63.
    [17] 朱冬冬,董多,贺庆,等.高压凝固Ti-48Al合金片层组织失稳机理[J].稀有金属材料与工程,2017,46(S1):217-220.ZHY D D,DONG D,HE Q,et al.Instability mechanism of lamellar structures of Ti-48Al alloy solidified under high pressure[J].Rare Metal Materials and Engineering,2017,46(S1):217-220.
    [18] LI L X,LI M,ZHANG L W.Effects of high pressure on the solidification microstructure of Al-Si alloy[J].Advanced Materials Research,2011,320:14-19.
    [19] MA P,WEI Z J,JIA Y D.Effect of high pressure solidification on tensile properties and strengthening mechanisms of Al-20Si[J].Journal of Alloys and Compounds,2016,688:88-93.
    [20] LIU M W,ZHENG R X,XIAO W L,et al.Concurrent enhancement of strength and ductility for Al-Si binary alloy by refining Si phase to nanoscale[J].Materials Science,2019,751: 303-310.
    [21] MA P,ZOU C M,WANG H W,et al.Effects of high pressure and SiC content on microstructure and precipitation kinetics of Al-20Si alloy[J].Journal of Alloys and Compounds, 2014,586:639-644.
    [22] KSIAZEK M,SOBCZAK N,MIKULOWSKI B,et al. Wetting and bonding strength in Al/Al2O3 system[J].Materials Science and Engineering,2002,324(1):162-167.
    [23] SARINA B,TANG K,KVITHILD A,et al.Wetting of pure aluminium on graphite,SiC and Al2O3 in aluminium filtration[J].Transactions of Nonferrous Metals Society of China,2012,22(8):1930-1938.
    [24] 徐畅,黄铎,林小娉,等.Cu对高压凝固Mg-9Al-1Zn合金显微组织及力学性能的影响[J].铸造,2019,68(8):860-866.XU C,HUANG D,LIN X P,et al.Effect of Cu addition on microstructure and mechanical properties of high pressure solidified Mg-9Al[J].Foundry,2019,68(8):860-866.
    [25] 吴建鹏,张波,王若兰.XRD在固溶体固溶度测定中的应用[J].陕西科技大学学报,2005,23(1):35-37.WU J P,ZHANG B,WANG R L.The application of XRD analysis on the measuring of the solubility of solid solution [J].Journal of Shaanxi University of Science and Technology,2005,23(1):35-37.
    [26] 王振玲,张涛,李莉,等.常压及高压凝固Al-Mg及Al-Mg-Zn合金中Al相的固溶体结构[J].中国有色金属学报,2012,22(4):1006-1012.WANG Z L,ZHANG T,LI L,et al.Solid solution structure of Al phase in Al-Mg and Al-Mg-Zn alloys solidifying under normal pressure [J].The Chinese Journal of Nonferrous Metals, 2012,22(4):1006-1012.
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History
  • Received:September 08,2019
  • Revised:August 05,2020
  • Adopted:November 14,2019
  • Online: August 12,2020
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