Effects of Chromium Particle on Elevated Temperature Tensile Strength of Cu-Cr Alloy

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Key Engineering Materials (Volumes 334-335)

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273-276

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March 2007

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© 2007 Trans Tech Publications Ltd. All Rights Reserved

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[1] D. Bozic, N. Ilic, M.T. Jovanovic: Aging of Cu-Cr powders produced by rotating electrode process. J Mater. Sci. Lett. 17(1998), pp.587-589.

Google Scholar

[2] Zhimin Li: Study on Cu-Cr alloy, Special Cast and Non-ferrous Metals, 3(1990), pp.18-25.

Google Scholar

[3] Hongwang Yang: Study on structures and properties of as-cast Cu-Cr alloy, MS Thesis, 2000, Xi'an University of Technology, Xi'an.

Google Scholar

[4] K Mihara�T Takeuchi and H G Suzuki: Effect of Zr on aging characteristics and strength of Cu-Cr in situ composite. J Japan Inst. Meatls, 62(1998), pp.238-245.

DOI: 10.2320/jinstmet1952.62.3_238

Google Scholar

[5] K Mihara�T Takeuchi and H G Suzuki: Effect of Ti on aging characteristics and strength of Cu-Cr in situ composite. J Japan Inst. Meatls. 62�1998�, pp.599-604.

DOI: 10.2320/jinstmet1952.62.7_599

Google Scholar

[6] A. Bell, H.A. Davies: Solid solubility extension in Cu-V and Cu-Cr alloys produced by chill block melt-spinning. Mater. Sci. Eng. A226-228 (1997), pp.1039-1041.

DOI: 10.1016/s0921-5093(96)10854-6

Google Scholar

[7] Y. Jin, K. Adachi, T.Takeuchi, and H.G. Suzuki: Correlation between the cold-working and aging treatments in a Cu-15 Wt Pct Cr in Situ composite. Metall. Mater. Trans. A. 29A(1998), pp.1998-2195.

DOI: 10.1007/s11661-998-0044-y

Google Scholar

[8] Zhikang Fan, Hongwang Yang, Shuhua Liang and Peng Xiao: Effects of extrusion on Chromium precipitation in Cu-Cr alloy, Trans Nonferr Metal Soc China. 13(2003), pp.267-270.

Google Scholar

[9] Zhikang Fan, Shuhua Liang and Xu Xue: Bond Strngth of W-Cu/CrCu Intergrated Material, T Nonferr Metal Soc.. 11(2001), pp.835-837.

Google Scholar

[10] D.L. Zhang, K. Mihara, E. Takakura and H.G. Suzuki: Effect of the amount of cold working and aging on the ductility of a Cu-15%Cr-0.2%Ti in situ composite. Mater. Sci. Eng. A266(1999), pp.99-108.

DOI: 10.1016/s0921-5093(99)00028-3

Google Scholar

[11] Yanan Chen, Sai Wang and Ji Tao: Allication and test of integrated CuW-CrCu contact by powder metallurgy, High Voltage Apparatus. 69(1998), pp.29-33.

Google Scholar

[12] Zhikang Fan, Shuhua Liang and Hongwang Yang: The effects of Cr on properties of Cu-Cr alloy and bond of W-Cu/CuCr interface, Electric Engineering Alloy. 72(1999), pp.22-23.

Google Scholar

[13] P. Liu, B.X. Kang, X.G. Cao, et al. Aging precipitation and re-crystallization of rapidly solidified Cu-Cr-Zr-Mg alloy. Mater. Sci. Eng.., A265(1999), pp.262-267. Temperature(�) 25 200 300 350 400 Elongation(%) 0 0 3 6 51 Tensile strength(MPa) 83 234 154 197 225

DOI: 10.1016/s0921-5093(98)01149-6

Google Scholar