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时效对Cu-Zn-Ni合金组织和剪切强度的影响 被引量:1

Effects of aging on microstructure and shear strength of Cu-Zn-Ni alloy
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摘要 结合截齿钎焊后的热处理工艺,对Cu-Zn-Ni合金热处理后的组织和剪切强度进行了研究。结果表明,时效后,组织是由以Cu为基的α固溶体和以Cu Zn为基的β’固溶体组成;与固溶处理相比,时效后α相变得更为细小,β’相的含量略有增多,这是由于时效时,析出相对基体的切割致使其组织更为细密。在200~450℃的时效温度范围内,随着时效温度的上升,Cu-Zn-Ni合金组织中的α相越来越细小,β’相的含量越来越少,合金的剪切强度增加。 Combined with the heat treatment process of pick, microstructure and shear strength of Cu-Zn-Ni alloy after heat treatment are studied. The results show that microstructure of the alloy is composed of α solid solution with the base of Cu and β′solid solution with the base of Cu-Zn after aging. Compared with the microstructure of the alloy after solid solution, the α-phase is finer and the content of β′-phasei s increased slightly, which is caused by the cutting interaction of precipitation phase on the base after aging. When the aging temperature is in the range of 200-450 ℃, the size of α-phase is more and more finer and the content of β′-phase is less and less with the increase of aging temperature, that result in the shear strength of the alloy increase.
出处 《金属热处理》 CAS CSCD 北大核心 2015年第6期132-134,共3页 Heat Treatment of Metals
关键词 Cu-Zn-Ni合金 时效 微观组织 剪切强度 Cu-Zn-Ni alloy aging microstructure shear strength
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  • 1邹序枚.牙轮钻齿面强化材料失效分析及齿面强化新材料研究[J].硬质合金,1995,12(3):183-186. 被引量:6
  • 2[1]S.G.Bailey and C.M.Perrott: Wear, 1974, 29, 117.
  • 3[2]Spriger Johann: U.S.Patent, 5, 012, 863, 1989.
  • 4[3]C.Z.Zhao: Welding, 1986, 8, 1.(in Chinese)
  • 5[4]X.M.Zou: Cemented Carbide, 1995, 8, 183. (in Chinese)
  • 6[5]Metals Handbook: Alloy Phase Diagrams, 10th Edn., ASM International, Metal Park, Ohio 44073, 1990, 3, 115.
  • 7[6]D.Tu, S.Chang, C.Chao and C.Lin: J. Vac. Sci. Technol. A, 1985, 3(6), 2479.
  • 8[7]A.Karimi and Ch. Verdon: Surf. Coatings Technol., 1993, 62, 493.
  • 9[8]K.T.Kembaiyan and Kesh Keshava: Wear, 1995, 186-187,487.
  • 10[9]Xianqing Z, Xinhe Y and Yuchun Z: Cemented Carbide, 1994,11(4), 193. (in Chinese)

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