Selective laser melting of aluminum-alumina powder composites obtained by hydrothermal oxidation method

被引:19
|
作者
Nalivaiko, Anton Yu. [1 ]
Ozherelkov, Dmitriy Yu. [1 ]
Arnautov, Alexey N. [2 ]
Zmanovsky, Sergey V. [2 ]
Osipenkova, Alexandra A. [1 ]
Gromov, Alexander A. [1 ]
机构
[1] Natl Univ Sci & Technol MISIS NUST MISIS, KINETICA Engn Ctr, Leninsky Ave 4, Moscow 119991, Russia
[2] UC RUSAL, Moscow, Russia
来源
基金
俄罗斯科学基金会;
关键词
Composite materials; Selective laser melting; Core-shell structure; Relative density; Areal energy density; MICROSTRUCTURE EVOLUTION; AL-AL2O3; NANOCOMPOSITES; ALSI10MG ALLOY; STRENGTH; BOEHMITE;
D O I
10.1007/s00339-020-04029-9
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Selective laser melting of Al-Al(2)O(3)core-shell composite with 10 wt.% of alumina was studied. The initial powder was obtained by hydrothermal oxidation of aluminum powder. A matrix of parameters was selected for selective laser melting of composites, including laser power from 180 to 220 W, scanning speed from 180 to 220 mm/s, and hatch spacing from 0.13 to 0.18 mm. The type of microstructure, relative density, and hardness of synthesized objects were determined. The influence of the laser's areal energy density on the properties of synthesized objects was studied. Depending on the ED(a)used, different types of microstructure were formed. The ED(a)within the range 7-8 J/mm(2)was found to be optimal for SLM of Al-10 wt.% Al(2)O(3)core-shell powder composites. Beyond this range, uncomplete powder melting as well as boiling of the aluminum leads to the low density and formation of microcracks after solidification. The hardness of the finest synthesized sample (58.3 +/- 0.9 HB) and uniform distribution of alumina was obtained at EDa = 7.69 J/mm(2)with the following SLM parameters:P = 220 W;h = 0.13;V = 220 mm/s. Based on the obtained results, further research using SLM with double exposure of the layer with a laser beam was suggested.
引用
收藏
页数:6
相关论文
共 50 条
  • [41] Synthesis of alumina through hydrothermal oxidation of aluminum powder conjugated with surfactant-directed oriented growth
    Tikhov, SE
    Potapova, YV
    Sadykov, VA
    Fenelonov, VB
    Yudaev, IV
    Lapina, OB
    Salanov, AN
    Zaikovkii, VI
    Litvak, GS
    MATERIALS RESEARCH INNOVATIONS, 2005, 9 (03) : 69 - 71
  • [42] Direct selective laser sintering/melting of high density alumina powder layers at elevated temperatures
    Deckers, J.
    Meyers, S.
    Kruth, J. P.
    Vleugels, J.
    8TH INTERNATIONAL CONFERENCE ON LASER ASSISTED NET SHAPE ENGINEERING (LANE 2014), 2014, 56 : 117 - 124
  • [43] Influence of Silicon Carbide on Direct Powder Bed Selective Laser Process (Sintering/Melting) of Alumina
    Ur Rehman, Asif
    Saleem, Muhammad Ahsan
    Liu, Tingting
    Zhang, Kai
    Pitir, Fatih
    Salamci, Metin Uymaz
    MATERIALS, 2022, 15 (02)
  • [44] Fabrication of alumina/aluminum/silicon composites by the oxidation of molten aluminum
    Watari, T
    Torikai, T
    Imaoka, Y
    Tai, WP
    Matsuda, O
    NOVEL SYNTHESIS AND PROCESSING OF CERAMICS, 1999, 159-1 : 331 - 338
  • [45] Selective laser melting of metal matrix composites: Feedstock powder preparation by electroless plating
    Li, Ming
    Fang, Alex
    Martinez-Franco, Enrique
    Alvarado-Orozco, J. M.
    Pei, Zhijian
    Ma, Chao
    MATERIALS LETTERS, 2019, 247 : 115 - 118
  • [46] Selective Laser Melting of Starbond CoS Powder
    Morozov E.A.
    Muratov K.R.
    Ablyaz T.R.
    Shafranov A.V.
    Drozdov A.A.
    Russian Engineering Research, 2021, 41 (9) : 842 - 844
  • [47] Direct selective laser melting of nitinol powder
    Shishkovsky, I
    Yadroitsev, I
    Smurov, I
    LASER ASSISTED NET SHAPE ENGINEERING 7 (LANE 2012), 2012, 39 : 447 - 454
  • [48] A review of particulate-reinforced aluminum matrix composites fabricated by selective laser melting
    Wang, Pei
    Eckert, Jurgen
    Prashanth, Konda-gokuldoss
    Wu, Ming-wei
    Kaban, Ivan
    Xi, Li-xia
    Scudino, Sergio
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2020, 30 (08) : 2001 - 2034
  • [49] Quality analysis method for powder deposited layers applicable to selective laser sintering and selective laser melting processes
    Lin, Wei
    Goncalves, Denise Albertazzi
    Pinto Pereira, Adriano de Souza
    Pereira, Milton
    Weingaertner, Walter Lindolfo
    JOURNAL OF LASER APPLICATIONS, 2019, 31 (02)
  • [50] A review of additive manufacturing of ceramics by powder bed selective laser processing (sintering / melting): Calcium phosphate, silicon carbide, zirconia, alumina, and their composites
    Grossin, David
    Monton, Alejandro
    Navarrete-Segado, Pedro
    Ozmen, Eren
    Urruth, Giovanni
    Maury, Francis
    Maury, Delphine
    Frances, Christine
    Tourbin, Mallorie
    Lenormand, Pascal
    Bertrand, Ghislaine
    OPEN CERAMICS, 2021, 5