Chinese Journal of Lasers, Volume. 40, Issue 12, 1203001(2013)
Microstructure-Property of Laser Cladding High Carbon Fe-Based Alloy
[1] [1] A Zikin, I Hussainova, C Katsich, et al.. Advanced chromium carbide-based hardfacings[J]. Surface and Coatings Technology, 2012, 206(19-20): 4270-4278.
[2] [2] R Veinthal, P Kulu, J Pirso, et al.. Characterization and prediction of abrasive wear of powder composite materials[J]. Wear, 2009, 267(12): 2216-2222.
[3] [3] J J Coronado. Effect of (Fe,Cr)7C3 carbide orientation on abrasion wear resistance and fracture toughness[J]. Wear, 2011, 270(3-4): 287-293.
[4] [4] Y F Zhou, Y L Yang, D Li, et al.. Effect of titanium content on microstructure and wear resistance of Fe-Cr-C hardfacing layers[J]. Welding Journal, 2012, 91(8): 229-235.
[5] [5] Xu Binshi, Dong Shiyun, Zhu Sheng, et al.. Prospects and developing of remanufacture forming technology[J]. Journal of Mechanical Engineering, 2012, 48(15): 96-105.
[6] [6] Wang Huaming, Zhang Lingyun, Li An, et al.. Rapid solidification laser processing and forming of advanced aeronautical metallic materials[J]. Journal of Beijing University of Aeronautics and Astronautics, 2004, 30(10): 962-967.
[7] [7] Wang Yanfang, Li Li, Lu Qinglong, et al.. Laser cladding Fe-based amorphous coatings on stainless substrate[J]. Chinese J Lasers, 2011, 38(6): 0603017.
[8] [8] Pei Yutao, Ouyang Jiahu, Lei Tingquan. Developments of laser clad composite coatings[J]. Journal of Harbin Institute of Technology, 1994, (1): 73-79.
[9] [9] X H Zhi, J D Xing, H G Fu, et al.. Effect of niobium on the as-cast microstructure of hypereutectic high chromium cast iron[J]. Materials Letters, 2008, 62(6-7): 857-860.
[10] [10] S D Carpenter, D Carpenter. X-ray diffraction study of M7C3 carbide within a high chromium white iron[J]. Materials Letters, 2003, 57(28): 4456-4459.
[11] [11] Han Bin, Li Meiyan, Wang Yong. High-temperature oxidation properties of Fe-based alloy coating prepared by laser cladding[J]. Chinese J Lasers, 2011, 38(8): 0803009.
[12] [12] Y F Zhou, Y L Yang, X W Qi, et al.. Influence of La2O3 addition on microstructure and wear resistance of Fe-Cr-C cladding formed by arc surface welding[J]. Journal of Rare Earths, 2012, 30(10): 1069-1074.
[13] [13] W Kurz, D J Fisher. Fundamentals of Solidification[M]. (4th revised edition), Switzerland: Trans Tech Publication Ltd, 1998.
[14] [14] Y F Zhou, Y L Yang, Y W Jiang, et al.. Fe-24wt.%Cr-4.1wt.%C hardfacing alloy: microstructure and carbide refinement mechanisms with ceria additive[J]. Materials Characterization, 2012, 72: 77-86.
[15] [15] C M Chang, C C Hsieh, C M Lin, et al.. Effect of carbon content on microstructure and corrosion behavior of hypereutectic Fe-Cr-C claddings[J]. Materials Chemistry and Physics, 2010, 123(1): 241-246.
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Zhou Yefei, Gao Shiyou, Wang Jingjing. Microstructure-Property of Laser Cladding High Carbon Fe-Based Alloy[J]. Chinese Journal of Lasers, 2013, 40(12): 1203001
Category: laser manufacturing
Received: Jul. 2, 2013
Accepted: --
Published Online: Nov. 19, 2013
The Author Email: Yefei Zhou (yfzhou@ysu.edu.cn)