Effect of Pre-Aging Treatment on the Mechanical Properties of Cold Rolled Cu-6 wt% Ni-1.4 wt% Si Alloy

合金 材料科学 电阻率和电导率 降水 冶金 均质化(气候) 金属间化合物 延展性(地球科学) 微观结构 电导率 极限抗拉强度 猝灭(荧光) 沉淀硬化 复合材料 化学 蠕动 生物多样性 生态学 物理 物理化学 量子力学 气象学 电气工程 荧光 生物 工程类
作者
Sang Jin Lee,Hyeon Seok Shin,Eun–Ae Choi,Jee Hyuk Ahn,Yoon Suk Choi,Sangshik Kim,Je-Hyun Lee,Seung Zeon Han
出处
期刊:Korean Journal of Metals and Materials [The Korean Institute of Metals and Materials]
卷期号:58 (7): 488-494 被引量:7
标识
DOI:10.3365/kjmm.2020.58.7.488
摘要

Cu-Ni-Si alloys were strengthened by Ni2Si intermetallic compound precipitation in a Cu matrix during aging. The Cu-6 wt% Ni-1.4wt%Si alloy was prepared by water quenching (solution treatment) or air cooling (homogenization treatment) after heating 980 <sup>o</sup>C for 2 hours and aging at 500 <sup>o</sup>C for 6 hours. After maintaining a high temperature single phase region, the structure of the precipitate in the matrix was changed significantly by varying the cooling rate. The solution treated aged alloy had discontinuous precipitation with fiber shaped precipitates throughout the specimen, however, the alloy with homogenization had normal spherical shaped particles. The aged alloy after homogenization treatment had higher strength, ductility and electrical conductivity, of 628 MPa, 18%, 48% IACS, respectively, than aged alloy after solution treatment, which had 582 MPa, 15.5% and 50 % IACS, respectively. In contrast to the tendency of values after aging, after rolling and a 75% area reduction at room temperature after homogenization treatment the alloy had lower strength, ductility and electrical conductivity, of 774 MPa, 10.5%, 48% IACS, than the alloy after solution treatment, with 885 MPa, 6.5%, and 48% IACS, respectively. The Cu-6 wt% Ni-1.4wt%Si alloy with fully discontinuous precipitation had lower strength and higher electrical conductivity than the counterpart alloy with normal precipitation. However, inversely, the strength increased compared to the alloy with normal precipitation after rolling with 75% area reduction, without sacrificing electrical conductivity.
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