Chinese Journal of Lasers, Volume. 42, Issue 9, 903007(2015)

Study on Deformation Behavior in Selective Laser Melting Based on the Analysis of the Melt Pool Data

Zhang Kai*, Liu Tingting, Zhang Changdong, and Liao Wenhe
References(22)

[1] [1] Kruth J P, Levy G, Klocke F, et al.. Consolidation phenomena in laser and powder-bed based layered manufacturing[J]. Annals of the CIRP, 2007, 56(2): 730-759.

[2] [2] Yang Yongqiang, Wang Di, Wu Weihui. Research progress of direct manufacturing of metal parts by selective laser melting[J]. Chinese J Lasers, 2011, 38(6): 0601007.

[3] [3] Kruth J P, Mercelis P, Van V J, et al.. Binding mechanisms in selectivelaser sintering and selective laser melting[J]. Rapid prototyping journal, 2005, 11(1): 26-36.

[4] [4] Meiners W, Wissenbach K, Gasser A. Selective Laser Sintering at Melting Temperature: US Patent, B1, 6215093[P]. 2001-10-04.

[5] [5] Brandl E, Heckenberger U, Holzinger V, et al.. Additive manufactured AlSi10Mg samples using selective laser melting (SLM): Microstructure, high cycle fatigue, and fracture behavior[J]. Materials and Design, 2012, 34: 159-169.

[6] [6] Kempen K, Thijs L, Van H J, et al.. Mechanical properties of AlSi10Mg produced by selective laser melting[J]. Physics Procedia, 2012, 39: 439-446.

[7] [7] Shiomi M, Osakada K, Nakamura K, et al.. Residual stress within metallic model made by selective laser melting process[J]. CIRP Ann Manuf Technol, 2004, 53(1): 195-198.

[8] [8] Vrancken B, Cain V, Knutsen R, et al.. Residual stress via the contour method in compact tension specimens produced via selective laser melting[J]. Scripta Materialia, 2014, 87: 29-32.

[9] [9] Zhang Sheng, Gui Ruizhi, Wei Qingsong, et al.. Cracking behavior and formation mechanism of TC4 alloy formed by selective laser melting[J]. Journal of Mechanical Engineering, 2013, 49(23): 21-27.

[10] [10] Mercelis P, Kruth J P. Residual stresses in selective laser sintering and selective laser melting[J]. Rapid Prototyping Journal, 2006, 12(5): 254-265.

[11] [11] Nickel A H, Barnett D M, Prinz F B. Thermal stresses and deposition patterns in layered manufacturing[J]. Materials Science and Engineering: A, 2001, 317(1): 59-64.

[12] [12] Herzog F. Method for the Production of Three-dimensional Sintered Workpieces: Europe Patent, B1, 1441897[P]. 2004-08-04.

[13] [13] Kruth J P, Deckers J, Yasa E, et al.. Assessing and comparing influencing factors of residual stresses in selective laser melting using a novel analysis method[J]. Proc IMechE Part B: J Engineering Manufacture, 2012, 226(6): 980-991.

[14] [14] Craeghs T, Clijsters S, Yasa E, et al.. Online quality control of selective laser melting[C]. Proceedings of the 20th Solid Freeform Fabrication (SFF) symposium. 2011: 212-226.

[15] [15] Verhaeghe F, Craeghs T, Heulens J, et al.. A pragmatic model for selective laser melting with evaporation[J]. Acta Materialia, 2009, 57(20): 6006-6012.

[17] [17] Hussein A, Hao L, Yan C, et al.. Finite element simulation of the temperature and stress fields in single layers built without-support in selective laser melting[J]. Materials and Design, 2013, 52: 638-647.

[18] [18] Craeghs T. A Monitoring System for on-Line Control of Selective Laser Melting[D]. Belgium, Catholic University of Leuven, 2012.

[19] [19] Clijsters S, Craeghs T, Buls S, et al.. In situ quality control of the selective laser melting process using a high-speed, real-time melt pool monitoring system[J]. Int J Adv Manuf Technol, 2014, 75(5): 1089-1101.

[20] [20] Rombouts M. Selective Laser Sintering/Melting of Iron-Based Powders[D]. Belgium, Catholic University of Leuven, 2006.

[21] [21] Yasa E, Kruth J P. Microstructural investigation of selective laser melting 316L stainless steel parts exposed to laser re-melting[J]. Procedia Engineering, 2011, 19: 389-395.

[22] [22] Yasa E, Deckers J, Kruth J P. The investigation of the influence of laser remelting on density, surface quality and microstructure of selective laser melting parts[J]. Rapid Prototyping Journal, 2012, 17(5): 312-327.

CLP Journals

[1] Chen Dening, Liu Tingting, Liao Wenhe, Zhang Changdong, Zhang Kai. Temperature Field During Selective Laser Melting of Metal Powder Under Different Scanning Strategies[J]. Chinese Journal of Lasers, 2016, 43(4): 403003

[2] Liu Tingting, Zhang Changdong, Liao Wenhe, Zhang Kai, Wu Genli. Experimental Analysis of Pool Behavior in Overhang Structure Fabricated by Selective Laser Melting[J]. Chinese Journal of Lasers, 2016, 43(12): 1202004

[3] Gong Xinyong, Gao Shiyou, Xian Shiyu, Yu Runxiang. Warp Deformation in Single-Track Laser Cladding Based on Temperature Characteristics[J]. Laser & Optoelectronics Progress, 2017, 54(10): 101410

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Zhang Kai, Liu Tingting, Zhang Changdong, Liao Wenhe. Study on Deformation Behavior in Selective Laser Melting Based on the Analysis of the Melt Pool Data[J]. Chinese Journal of Lasers, 2015, 42(9): 903007

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Paper Information

Received: Mar. 30, 2015

Accepted: --

Published Online: Sep. 6, 2015

The Author Email: Kai Zhang (zhangkai_nick@163.com)

DOI:10.3788/cjl201542.0903007

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