Preparation and Properties Research of Cu-2.3Ni-0.24Si Alloy

Article Preview

Abstract:

Research the electrical conductivity, tensile strength, elongation and microstructure of Cu-2.3Ni-0.24Si alloy in as-cast, hot rolled plate, solution treatment plate, cold rolled strip, and aging treatment strip. the results show that hot rolled at 870°C×1h, solution treatment at 850°C×1h, following 87% cold-rolled, and than aging treatment at 450°C×1h, the tensile strength, elongation and electrical conductivity are 519MPa, 8%, and 45% IACS respectively.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 399-401)

Pages:

8-12

Citation:

Online since:

November 2011

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Feng Chunxiao,Wang Dongfeng. Improvement of Aging and Cold-Rolling Techniques of Hot-Rolled and Water-Cooled Cu-Ni-Si Alloy [J].Physical Testing and Chemical Analysis(Part A:Physical Testing), 2007,43(11) :552-555.

Google Scholar

[2] Fan Li, Liu Ping. Research Progress of Lead Frame Materials of High Strength Cu-Ni-Si Alloy [J]. Hot Working Technology, 2008,37(20) :104-106.

Google Scholar

[3] Pan Zhiyong. Effect of Trace Elements on Properties of Cu-Ni-Si Alloy [J]. Materials Review, 2007,21(5) : 86-89.

Google Scholar

[4] Jiang Wei, Gan Weiping, Xiang Feng. Effect of Heat Treatment Process on Microstructure and Properties of Cu-3.0Ni-0.25Si-0.15P Alloy [J]. Material & Heat Treatmen,2009,38(4): 101-104.

Google Scholar

[5] Li Yinhua, Liu Ping, Tian Baohong. Properties of Cu-Ni-Si Based Alloy for Lead Frame [J]. Special Casting & Nonferrous Alloys,2008,28(5):403-405.

Google Scholar

[6] Wang Li Sun Yangshan Fu Xiaoqin. Microstructure and Properties of Cu-Ni-Si-Based Alloys for Lead Frame [J]. Journal of Southeast University (Natural Science Edition),2005,35(5):729-731.

Google Scholar

[7] Liu Ping, Zhao Dongmei,Tian Baohong. High-performance copper alloy and its processing technology [M].Bei Jing: The Metallurgical Industry Press,2004.

Google Scholar

[8] Ren Wei, Jia Shuguo, Liu Ping. Effect of Solution Temperature on Properties of Cu-Ni-Si Alloy [J]. Hot Working Technology,2009,38(8):121-123.

Google Scholar

[9] Wang Dongfeng ,Huo Xingming, Kang Buxi. Effect of Aging and Cold-rolling on Properties of Different Content Cu-Ni-Si Alloy [J]. Hot Working Technology, 2007,36(20): 15-17.

Google Scholar

[10] Lei Jingguo, Liu Ping, Zhao Dongmei. Study on early aging stage kinetics in a CuNiSi alloy [J]. Journal of Functional Materials, 2005,3(36):368-370.

Google Scholar

[11] Yu Zhisheng, Lliu Ping, Tian Baohong. Thermomechanical Treatment and Strengthening Mechanism of Cu-2.0Ni-0.5Si Alloy [J]. Foundry Technology,2009,30(1):38-40.

Google Scholar

[12] Wang Dongfeng,Wang Dingjiang. Research on Growing Mechanism of Precipitates of Cu-Ni-Si Alloy during Aging [J]. Hot Working Technology,2006,35(4):14-16.

Google Scholar

[13] Wang Jiheng, Xie Chunsheng, Ren He. Effect of Heat Treatment on Microstructure and Properties of CuNiCrSi Alloy [J]. Heat Treatment of Metals,2005,30(3):56-58.

Google Scholar