Journal of South China University of Technology(Natural Science Edition) ›› 2025, Vol. 53 ›› Issue (1): 118-128.doi: 10.12141/j.issn.1000-565X.240108
• Materials Science & Technology • Previous Articles Next Articles
MA Guonan1,2, ZHANG Le1,3, OU Yang4, SHI Lijun1,3, LU Renyi1,3, CHENG Yingye1,3, CHEN Yue1
Received:
2024-03-11
Online:
2025-01-25
Published:
2025-01-02
About author:
马国楠(1992—),男,博士,主要从事铝基复合材料研究。E-mail: Ma_Guonan@163.com
Supported by:
CLC Number:
MA Guonan, ZHANG Le, OU Yang, SHI Lijun, LU Renyi, CHENG Yingye, CHEN Yue. Microstructure and Mechanical Properties of SiC Particle Reinforced AlMgScZr Composites by Selective Laser Melting[J]. Journal of South China University of Technology(Natural Science Edition), 2025, 53(1): 118-128.
Table 2
SLM process parameters of SiC/AlMgScZr composites"
试样 | 激光功率/W | 扫描速率/(mm·s-1) | 能量密度/(J·mm-3) | 试样 | 激光功率/W | 扫描速率/(mm·s-1) | 能量密度/(J∙mm-3) | ||
---|---|---|---|---|---|---|---|---|---|
1# | 240 | 400 | 166.7 | 19# | 300 | 400 | 208.3 | ||
2# | 240 | 600 | 111.1 | 20# | 300 | 600 | 138.9 | ||
3# | 240 | 800 | 83.3 | 21# | 300 | 800 | 104.2 | ||
4# | 240 | 1 000 | 66.7 | 22# | 300 | 1 000 | 83.3 | ||
5# | 240 | 1 200 | 55.6 | 23# | 300 | 1 200 | 69.4 | ||
6# | 240 | 1 400 | 47.6 | 24# | 300 | 1 400 | 59.5 | ||
7# | 260 | 400 | 180.6 | 25# | 320 | 400 | 222.2 | ||
8# | 260 | 600 | 120.4 | 26# | 320 | 600 | 148.2 | ||
9# | 260 | 800 | 90.3 | 27# | 320 | 800 | 111.1 | ||
10# | 260 | 1 000 | 72.2 | 28# | 320 | 1 000 | 88.9 | ||
11# | 260 | 1 200 | 60.2 | 29# | 320 | 1 200 | 74.1 | ||
12# | 260 | 1 400 | 51.6 | 30# | 320 | 1 400 | 63.5 | ||
13# | 280 | 400 | 194.4 | 31# | 340 | 400 | 236.1 | ||
14# | 280 | 600 | 129.6 | 32# | 340 | 600 | 157.4 | ||
15# | 280 | 800 | 97.2 | 33# | 340 | 800 | 118.1 | ||
16# | 280 | 1 000 | 77.8 | 34# | 340 | 1 000 | 94.4 | ||
17# | 280 | 1 200 | 64.8 | 35# | 340 | 1 200 | 78.7 | ||
18# | 280 | 1 400 | 55.6 | 36# | 340 | 1 400 | 67.5 |
Table 3
Density and relative density of SiC/AlMgScZr composite"
试样 | 密度/(g·cm-3) | 致密度/% | 试样 | 密度/(g·cm-3) | 致密度/% | ||
---|---|---|---|---|---|---|---|
1# | 2.698 6 | 99.80 | 19# | 2.632 1 | 97.34 | ||
2# | 2.698 0 | 99.78 | 20# | 2.660 4 | 98.39 | ||
3# | 2.694 0 | 99.63 | 21# | 2.676 0 | 98.96 | ||
4# | 2.691 7 | 99.55 | 22# | 2.691 3 | 99.53 | ||
5# | 2.664 6 | 98.54 | 23# | 2.694 9 | 99.66 | ||
6# | 2.635 0 | 97.45 | 24# | 2.687 8 | 99.40 | ||
7# | 2.689 3 | 99.46 | 25# | 2.584 1 | 95.57 | ||
8# | 2.693 9 | 99.63 | 26# | 2.637 2 | 97.53 | ||
9# | 2.691 7 | 99.55 | 27# | 2.665 1 | 98.56 | ||
10# | 2.698 9 | 99.81 | 28# | 2.678 8 | 99.07 | ||
11# | 2.687 4 | 99.39 | 29# | 2.677 0 | 99.00 | ||
12# | 2.667 5 | 98.65 | 30# | 2.682 5 | 99.20 | ||
13# | 2.664 7 | 98.55 | 31# | 2.496 2 | 92.32 | ||
14# | 2.677 9 | 99.03 | 32# | 2.554 2 | 94.46 | ||
15# | 2.682 5 | 99.20 | 33# | 2.604 4 | 96.32 | ||
16# | 2.686 6 | 99.36 | 34# | 2.635 9 | 97.48 | ||
17# | 2.693 8 | 99.62 | 35# | 2.656 3 | 98.24 | ||
18# | 2.687 2 | 99.38 | 36# | 2.670 5 | 98.76 |
1 | DEBROY T, WEI H L, ZUBACK J,et al .Additive manufacturing of metallic components-process,structure and properties[J].Progress in Materials Science,2018,92:112-224. |
2 | ZHANG J L, GAO J B, SONG B,et al .A novel crack-free Ti-modified Al-Cu-Mg alloy designed for selective laser melting[J].Additive Manufacturing,2020,38:101829/1-12. |
3 | WEIDMANN J, GROßMANN A, MITTELSTEDT C .Laser powder bed fusion manufacturing of aluminum honeycomb structures:theory and testing[J].International Journal of Mechanical Sciences,2020,180:105639/1-18. |
4 | OLAKANMI E O, COCHRANE R F, DALGARNO K W .A review on selective laser sintering/melting (SLS/SLM) of aluminium alloy powders:processing,microstructure,and properties[J].Progress in Materials Science,2015,74:401-477. |
5 | 王悦,王继杰,张昊,等 .热处理对激光选区熔化AlSi10Mg合金显微组织及力学性能的影响[J].金属学报,2021,57(5):613-622. |
WANG Yue, WANG Jijie, ZHANG Hao,et al .Effects of heat treatments on microstructure and mechanical properties of AlSi10Mg alloy produced by selective laser melting[J].Acta Metallurgica Sinica,2021,57(5):613-622. | |
6 | GU D D, YANG Y, XI L X,et al .Laser absorption behavior of randomly packed powder-bed during selective laser melting of SiC and TiB2 reinforced Al matrix composites[J].Optics and Laser Technology,2019,119:105600/1-9. |
7 | LI X P, JI G, CHEN Z,et al .Selective laser melting of nano-TiB2 decorated AlSi10Mg alloy with high fracture strength and ductility[J].Acta Materialia,2017,29:183-193. |
8 | XI L, GU D D, GUO S,et al .Grain refinement in laser manufactured Al-based composites with TiB2 ceramic[J].Journal of Materials Research and Technology,2020,9(3):2611-2622. |
9 | GAO C, XIAO Z, LIU Z,et al .Selective laser melting of nano-TiN modified AlSi10Mg composite powder with low laser reflectivity[J].Materials Letters,2019,236:362-365. |
10 | DAI D H, GU D D .Influence of thermodynamics within molten pool on migration and distribution state of reinforcement during selective laser melting of AlN/AlSi10Mg composites[J].International Journal of Machine Tools and Manufacture,2016,100:14-24. |
11 | XI L X, ZHANG H, WANG P,et al .Comparative investigation of microstructure,mechanical properties and strengthening mechanisms of Al-12Si/TiB2 fabricated by selective laser melting and hot pressing[J].Ceramics International,2018,44(15):17635-17642. |
12 | XI L X, DING K, ZHANG H,et al .In-situ synthesis of aluminum matrix nanocomposites by selective laser melting of carbon nanotubes modified Al-Mg-Sc-Zr alloys[J].Journal of Alloys and Compounds,2022,891:162047/1-9. |
13 | WANG J H, LIU T, LUO L S,et al .Selective laser melting of high-strength TiB2/AlMgScZr composites:microstructure,tensile deformation behavior,and mechanical properties[J].Journal of Materials Research and Technology,2022,16:786-800. |
14 | ZHAO X, GU D D, MA C L,et al .Microstructure characteristics and its formation mechanism of selective laser melting SiC reinforced Al-based composites[J].Vacuum,2019,160:189-196. |
15 | 马国楠,樊子煜,杨鹏伟,等 .选区激光熔化TiC/AlMgScZr复合材料的成形工艺研究[J].兵器材料科学与工程,2023,46(3):41-47. |
MA Guonan, FAN Ziyu, YANG Pengwei,et al .Forming process of TiC/AlMgScZr composites by selective laser melting[J].Ordnance Material Science and Engineering,2023,46(3):41-47. | |
16 | MA R L, PENG C Q, CAI Z Y,et al .Manipulating the microstructure and tensile properties of selective laser melted Al-Mg-Sc-Zr alloy through heat treatment[J].Journal of Alloys and Compounds,2020,831:154773/1-10. |
17 | ZHAO J H, XUE X, WANG B B,et al .Selective laser melting Al-3.4Mg-0.5Mn-0.8Sc-0.4Zr alloys:from melting pool to the microstructure and mechanical pro-perties[J].Materials Science and Engineering:A,2021,825:141889/1-10. |
18 | BAYOUMY D, SCHLIEPHAKE D, DIETRICH S,et al .Intensive processing optimization for achieving strong and ductile Al-Mn-Mg-Sc-Zr alloy produced by selective laser melting[J].Materials & Design,2021,198:109317/1-15. |
19 | ARUNACHALAM R, KRISHNAN P K, MURALIRAJA R .A review on the production of metal matrix composites through stir casting-furnace design,properties,challenges,and research opportunities[J].Journal of Manufacturing Processes,2019,42:213-245. |
20 | TJONG S C, MA Z Y .Microstructural and mechanical characteristics of in situ metal matrix composites[J].Materials Science & Engineering R-Reports,2000,29(3/4):49-113. |
21 | VIALA J C, FORTIER P, BOUIX J .Stable and metastable phase equilibria in the chemical interaction between aluminium and silicon carbide[J].Journal of Materials Science,1990,25:1842-1850. |
22 | GU D D, CHANG F, DAI D H .Selective laser melting additive manufacturing of novel aluminum based composites with multiple reinforcing phases[J].Journal of Manufacturing Science and Engineering,2015,137:021010-1-021010-11. |
23 | ZHOU S Y, SU Y, WANG H,et al .Selective laser melting additive manufacturing of 7xxx series Al-Zn-Mg-Cu alloy:cracking elimination by co-incorporation of Si and TiB2 [J].Additive Manufacturing,2020,36:101458/1-12. |
24 | TAN Q Y, FAN Z Q, TANG X Q,et al .A novel strategy to additively manufacture 7075 aluminium alloy with selective laser melting[J].Materials Science and Engineering:A,2021,821:141638/1-15. |
25 | ANANDKUMAR R, ALMEIDA A, COLAÇO R,et al .Microstructure and wear studies of laser clad Al-Si/SiC(p) composite coatings[J].Surface and Coatings Technology,2007,201(24):9497-9505. |
26 | SPIERINGS A B, DAWSON K, KERN K,et al .SLM-processed Sc- and Zr-modified Al-Mg alloy:mechanical properties and microstructural effects of heat treatment[J].Materials Science and Engineering A,2017,701:264-273. |
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