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镁合金表面激光熔覆Cu-Zr-Al非晶复合涂层 被引量:28

Laser Cladding Amorphous Composite Coating of Cu-Zr-Al on Magnesium Alloy Surface
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摘要 采用激光熔覆技术在镁合金表面制备了Cu-Zr-Al非晶复合涂层。研究结果表明,非晶复合涂层主要是由非晶及Cu10Zr7和Cu8Zr3相构成,其中非晶相的摩尔分数约为60%。涂层结合区与基体之间的结合形态为非平直晶面型;热影响区由细小的α-Mg+-βMg17Al12过饱和固溶体构成;由于高的铝含量增加了热影响区应力腐蚀敏感性,致使在金相腐蚀时其内部局部区域及与熔覆层结合处产生裂纹。在非晶相和金属间化合物复合作用下,复合涂层具有高的硬度、弹性模量、耐磨性和耐蚀性。 Cu-Zr-Al amorphous composite coating is prepared by laser cladding on the magnesium alloy surface. The results show that the coating consists of amorphous, Cu5Zr3, and Cul0Zr7 phases, of which the content of the amorphous phase is about 60%. The metallurgy bonding type between bonding and heat affected zones is zigzag interface combination. The heat-affected zone (HAZ) is composed of α-Mg+β-Mg17 Al12 supersaturated solid solution. The crack is formed during metallographic etching at the local area of the heat affected zone, as well as the interface between bonding and heat affected zones, due to increase of stress corrosion sensibility induced by high content of Al element. The hardness, Young's modulus, wear resistance, and corrosion resistance of the coating are higher due to the recombination action of amorphous and inter-metallic compounds.
出处 《中国激光》 EI CAS CSCD 北大核心 2006年第5期709-713,共5页 Chinese Journal of Lasers
关键词 激光技术 激光熔覆 复合涂层 非晶 镁合金 laser technique laser cladding composite coating amorphous magnesium alloy
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参考文献7

  • 1李宝东,申泽骥.镁合金铸件表面处理技术现状[J].材料保护,2002,35(4):1-3. 被引量:24
  • 2韦春贝,张春霞,田修波,杨士勤,Ricky Fu,Paul K.Chu.镁合金表面耐蚀改性技术[J].轻合金加工技术,2004,32(6):6-11. 被引量:18
  • 3J. Dutta Majumdar, R. Galun, B. L. Mordike et al.. Effect of laser surface melting on corrosion and wear resistance of acommercial magnesium alloy [J]. Materials Science and Engineering, 2003, A361 : 119- 121
  • 4Sorin Ignat, Pierre Sallamand, Dominique Grevey et al..Magnesium alloys laser (Nd:YAG) cladding and alloying with side injection of aluminium powder[J].Applied Surface Science, 2004, 225:124- 134
  • 5T. M. Yue, Y. X. Wu, H. C. Man et al.. Laser surface treatment of aluminium 6013/SiCp composite for corrosion resistance enhancement[J]. Surface and Coatings Technology 1999, 114:13-18
  • 6A. Inoue, W. Zhang, T. Zhang et al.. High-strength Cu-based bulk glassy alloys in Cu-Zr-Ti and Cu-Hf-Ti ternary systems[J]. Acta Mater. , 2001, 49:2645
  • 7王清,王英敏,羌建兵,张新房,王德和,董闯.Cu基Cu-Zr-Al块体非晶合金的成分设计[J].金属学报,2004,40(11):1183-1188. 被引量:16

二级参考文献54

  • 1邓志威,薛文彬,汪新福,陈如意,来永春.铝合金表面微弧氧化技术[J].材料保护,1996,29(2):15-16. 被引量:91
  • 2Hillis J E.Surface Engineering of Magnesium Alloys,ASM Hand book Volume5[M].ASM International,Materials Park,OH 1994.819~834.
  • 3Ross P,Macculloch J.New Development in Anodizing and Coloring Magnesium[C].Cincinnati Ohio:AESF Proceedings.1999:231~237.
  • 4Mobley C,Brevick J.The Effect of Coatings on Selected Mechanical Properties of Magnesium Alloy Die Casting[J].Die Casting Eengineer.2000(7/8):36~39.
  • 5Yoshikazu Hirasawa.New Surface Treatment Technology of Magnesium.IMA
  • 6.Magnesium-the Performance Material Proceedings.46th Annual World Magnesium Conference.Deurborn Michigan:1989.
  • 7Umehara H.Structure and Corrosion Behavior of Conversion Coating on Magnesium Alloys[A].Materials Science Forum (Vol 350~351)[M].Switzerland:Trans Tech Publications,2000.273~282.
  • 8Groshart Eart.Preparation of Nonferrous Metals for Paiting[J].Metal Finishing,2000,98(A):82~86.
  • 9Voytko J E.Organic Finishing & Pretreatment[J].Plating & Surface Finishing,2000,(8):54~56.
  • 10Hiroki Tateishi.Recycling of Thin Walled AZ91D Magnesium Alloy Diecasting With Paint Finishing.Journal of Japan Institute of Light Metals,1998,48(1):19~24.

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