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Microstructure and Thermal Physical Parameters of Ni60-Cr_3C_2 Composite Coating by Laser Cladding 被引量:10

Microstructure and Thermal Physical Parameters of Ni60-Cr_3C_2 Composite Coating by Laser Cladding
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摘要 To satisfy performance and long life requirements for hot forging die,Ni60-Cr3C2 composite coatings were prepared on the high-speed steel W6Mo5Cr4V2 using laser cladding technology.Laser clad coatings with different ratios of Ni60:Cr3C2 were investigated by scanning electron microscopy(SEM),X-ray diffraction(XRD),energy-dispersive X-ray analysis(EDX) and micro-hardness tester,respectively.Specific heat capacity and thermal conductivity were measured by Laser Thermal Constant Meter.Thermal expansion coefficient and elastic modulus were measured by Dynamic Mechanical Thermal Analyzer and Electro-Hydraulic Servocontrolled Testing System,respectively.The results indicated that Ni60+50wt% Cr3C2 composite coating had dense and homogeneous structure,as well as a metallurgical bonding with the substrate.With the increase of Cr3C2 content,volume of chromium-containing compounds in the composite coating increased,microhardness increased and microstructure refined.The thermal physical parameters results showed that Ni60+50wt% Cr3C2 composite coating was overall worse than W6Mo5Cr4V2,but had a higher hot yield strength to alleviate hot fatigue and surface hot wear of hot forging die during hot forging and thus improve the service life of hot forging die. To satisfy performance and long life requirements for hot forging die,Ni60-Cr3C2 composite coatings were prepared on the high-speed steel W6Mo5Cr4V2 using laser cladding technology.Laser clad coatings with different ratios of Ni60:Cr3C2 were investigated by scanning electron microscopy(SEM),X-ray diffraction(XRD),energy-dispersive X-ray analysis(EDX) and micro-hardness tester,respectively.Specific heat capacity and thermal conductivity were measured by Laser Thermal Constant Meter.Thermal expansion coefficient and elastic modulus were measured by Dynamic Mechanical Thermal Analyzer and Electro-Hydraulic Servocontrolled Testing System,respectively.The results indicated that Ni60+50wt% Cr3C2 composite coating had dense and homogeneous structure,as well as a metallurgical bonding with the substrate.With the increase of Cr3C2 content,volume of chromium-containing compounds in the composite coating increased,microhardness increased and microstructure refined.The thermal physical parameters results showed that Ni60+50wt% Cr3C2 composite coating was overall worse than W6Mo5Cr4V2,but had a higher hot yield strength to alleviate hot fatigue and surface hot wear of hot forging die during hot forging and thus improve the service life of hot forging die.
作者 潘成刚
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2010年第6期991-995,共5页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National Natural Science Foundation of China (No.50675165) the Fundamental Research Funds for the Central Universities (No.2010-II-025)
关键词 laser cladding thermal physical parameters hot forging die MICROSTRUCTURE laser cladding thermal physical parameters hot forging die microstructure
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  • 1H.C. Wang,Q. Long,and H.H. Xia. Transactions of The Chinese Society of Agricultural Machinery . 1997
  • 2B. Nikolai,V. Alexey,L. Andrey,and S. Sergei. J Of American Society of Mechanical Engineers, Manufacturing Engineering Division . 2000
  • 3H.C. Wang,J.X. Yu,and Y.H. Zhu. Processings of Fifth China-Japan Joint Symposium on Precision Forging . 1996
  • 4C.A. Довнар,and Z.W. Su.Thermodynamics of Failure and Strengthening for Hot Forging Die[]..1988
  • 5L. Langlois,R. Bigot,and L. Lazzarotoo. Proceedings of the 8th International Centre for Theoretical Physics . 2005
  • 6M. Sawamura,T. Tanaka,and Y. Yogo. Proceedings of the 8th International Centre for Theoretical Physics . 2005
  • 7G.H. Farrahi,and H. Ghadbeigi. Journal of Materials Processing Technology . 2006
  • 8K.R. Stanford. Am. Ceram. Soc. Bull . 1995
  • 9Y.P. Wei. Journal of Shanghai Jiaotong University . 1994
  • 10J.H. Hu. . 2003

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