期刊文献+

激光淬火基体对镀铬层断裂韧性的影响 被引量:5

Effect of Laser-Quenching Substrate on the Fracture Toughness of Chromium Plated Coatings
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摘要 为提高30CrNi2MoVA钢镀铬身管的寿命,采用YAG激光器对钢基体进行激光搭接淬火再镀铬的复合工艺。用多裂纹拉伸技术对经激光搭接处理的30CrNi2MoVA钢再镀铬后的铬层和普通铬层的断裂韧性进行比较。结果表明,激光淬火处理基体可以提高镀铬层的断裂韧性。力学模型分析表明,基体残余压应力以抵抗基体拉伸变形的方式提高了铬层的断裂韧性;化学去基体法研究铬层界面表明,激光处理基体以细化基体影响层的晶粒形式提高了铬层的强度和韧性。离子刻蚀横截面对拉伸结果作了进一步验证。 In order to improve the life of Cr-plating gun bore made of 30CrNi2MoVA steel, a compound process ,firstly laser overlap-quenching by YAG and then Cr-plating, was carried out for the steel substrate. By using multi-crack tensile method, the fracture toughness of Cr-eoating produced by the compound process was comparatively analyzed with that of the ordinary Cr plated coating. The results show that the fracture toughness of Cr-eoatings is improved by laser quenching substrate. The analysis of mechanical model shows that the fracture toughness is improved by residual compressive stress of substrate surface, which resists the tensile deformation of substrate. The study of Cr-eoating interface by chemically removing substrate shows that the strength and toughness effecting layer caused by laser processing substrate. The cross-section. of the Cr-eoating is improved, due to the grain refining substrate toughness improvement is further ,verified by ion etching of the cross-section.
出处 《金属热处理》 EI CAS CSCD 北大核心 2007年第3期52-55,共4页 Heat Treatment of Metals
基金 国家自然科学基金(50471087 50531060)
关键词 30CrNi2MoVA钢 激光淬火基体 镀铬 断裂韧性 30CrNi2MoVA steel laser quenching substrate chromium-plating fracture toughness
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参考文献15

  • 1Sopok S,Rickard C,Dunnb S.Thermal-chemical-mechanical gun bore erosion of an advanced artillery system part one:theories and mechanisms[J].Wear,2005,258:659-670.
  • 2Sopok S,Rickard C,Dunnb S.Thermal-chemical-mechanical gun bore erosion of an advanced artillery system part two:modeling and predictions[J].Wear,2005,258:671-283.
  • 3John H Underwood,Anthony P Parker,et al.Thermal damage,cracking and rapid erosion of cannon bore coatings[J].Journal of Pressure Vessel Technology,2003,125:299-304.
  • 4John H Underwood,Edward Troiano.Critical fracture processes in army cannons:A Review[J].Journal of Pressure Vessel Technology,2003,125:289-292.
  • 5陈光南 罗耕星 张坤.提高镀铬身管寿命的激光强化新方法.兵工学报,2003,12:6-6.
  • 6Emmanuelle Harry,Michel Ignat André.Cracking investigation of W and W(C) films deposited by physical vapor deposition on steel substrates[J].Surface and Coatings Technology,1999,111:177-183.
  • 7Hu M S,Evans A G.The cracking and decohesion of thin films on ductile substrate[J].Acta Mater,1989,37(3):917-925.
  • 8Uwe Holzwarth,Hermann Stamm.Mechanical and thermomechanical properties of commercially pure chromium and chromium alloys[J].Journal of Nuclear Materials,2002,300:161-177.
  • 9Tabor D.The hardness of metals[M].London:Oxford University press,1951:105.
  • 10SimaAo J,Aspinwall D K.Hard chromium plating of EDT mill work rolls[J].Journal of Materials Processing Technology,1999,92-93:281-287.

二级参考文献16

  • 1J. Torres-Gonzalez, P. Benaben. Study of the influence of electrolyte chemical composition on the properties of chromium electrodeposits-microstructure, crystallographic texture,residual stress, and microhardness [J]. Metal Finishing, 2003,101(6):107-116.
  • 2F. Durut, P. Benaben, B. Forest et al. Influence of temperature on the microstrueture and properties of chromium electrodeposits[J]. Metal Finishing, 1998, 96(3):52,54-60.
  • 3P. J. Cote, G. Kendall, M. E. Todaro. Laser pulse heating of gun bore coatings [J]. Surface and Coating Technology, 2001,146-147:65-69.
  • 4O. Jorgensen, A. Horsewell, B. F. Sorensen et al. The cracking and spalling of multilayered chromium coatings[J].Acta Metall. Mater,1995, 43(11):3991-4000.
  • 5Yongqiang Yang, Cuihong Zhang, Yunfei Yang et al. Laser induced self-propagating high-temperature synthesis of TiNi alloy[J]. Chin. Opt. Lett, 2005, 3(1):35-37.
  • 6F. Ebrahimi, G. R. Bourne, M. S. Kelly et al. Mechanical properties of nanocrystalline nickel produced by electrodeposition[J]. Nano Structure Materials, 1999, 11(3):343-350.
  • 7Sopok S,Rickard C,Dunn S.Thermal-chemical-mechanical gun bore erosion of an advanced artillery system part one:theories and mechanisms[ J ].Wear,2005,258:659-670.
  • 8Sopok S,Rickard C,Dunn S.Thermal-chemical-mechanical gun bore erosion of an advanced artillery system part two:modeling and predictions[ J ].Wear,2005,258:671-683.
  • 9Lawton B.Thermo-chemical erosion in gun barrel[J].Wear,2001,251:827-828.
  • 10Paul J Cote,Christopher Richard.Gas-metal reaction products in the erosion of chromium-plated gun bores[J].Wear,2001,24:17-25.

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