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Cross-sectional structure, microstructure and mechanical property evolutions of brass cladding pure copper stranded wire composite during drawing 被引量:8
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作者 Yan-bin JIANG Yong-shuai LI +1 位作者 Yu LEI Jian-xin XIE 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第7期1857-1872,共16页
A solid/liquid continuous casting and composite technology was used to produce d8.5 mm brass cladding pure copper stranded wire composite billet and the composite billet was then drawn. The results showed that the com... A solid/liquid continuous casting and composite technology was used to produce d8.5 mm brass cladding pure copper stranded wire composite billet and the composite billet was then drawn. The results showed that the composite billet had good surface quality, metallurgical bonding interface between brass and pure copper as well as elongation of 53.1%. Synergistic deformation degree between pure copper wire and brass cladding layer was high during drawing. With an increase of the total deformation amount, the plastic deformation of the pure copper wire reduced triangular arc gaps between the pure copper wires and the triangular arc gaps were fully filled at 50%. When the total deformation amount was increased to 63%, dislocation cells and microbands successively formed in the pure copper wire. In the brass cladding layer, planar dislocation networks, twins and shear bands formed successively, and the main deformation mechanisms were dislocation sliding, twinning and shear deformation. The tensile strength increased from 240 MPa of the composite billet to 519 MPa of the one with the deformation amount of 63%, but the elongation decreased from 53.1% to 3.2%. A process of solid/liquid continuous casting and composite forming→drawing can work as a new compact method to produce brass cladding pure copper stranded wire composite as railway through grounding wire. 展开更多
关键词 solid/liquid continuous casting composite wire deformation microstructure evolution mechanical properties
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Cu-24Pb-2Sn/1010层状复合材料中富Pb二次相凝固形态研究 被引量:1
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作者 娄术敏 董博闻 +1 位作者 接金川 李廷举 《特种铸造及有色合金》 CAS 北大核心 2022年第12期1492-1496,共5页
采用固-液连铸复合工艺制备了富Pb第二相的Cu-24Pb-2Sn/1010钢复合材料。首先基于相图计算方法计算得到了Cu-Pb-2Sn体系的伪二元相图,揭示Cu-24Pb-2Sn合金在凝固过程中的物相演变。随后,基于热力学计算得到液相的摩尔混合吉布斯自由能^(... 采用固-液连铸复合工艺制备了富Pb第二相的Cu-24Pb-2Sn/1010钢复合材料。首先基于相图计算方法计算得到了Cu-Pb-2Sn体系的伪二元相图,揭示Cu-24Pb-2Sn合金在凝固过程中的物相演变。随后,基于热力学计算得到液相的摩尔混合吉布斯自由能^(m)G^(L)_(mix)云图,发现随着体系温度降低,^(m)G^(L)_(mix)曲线由代表均匀混溶态的凹型转变为代表富Pb相和富Cu相两相分离的穹顶型,这表明富Pb相的形核驱动力随着温度降低而连续升高。进一步基于相场模拟计算得到了富Pb第二相于凝固过程中的形貌演变过程,表明随着凝固过程进行,富Pb第二相液滴开始形核长大,同时随着凝固过程延长,液滴间通过碰撞凝固并实现快速粗化。在高浇注温度下,由于体系处于单相L相区的时间较长,富Pb相的形核生长过程相对滞后,导致第二相液滴未获得足够的生长、碰撞时间,因此Cu-24Pb-2Sn合金层的第二相尺寸较小。 展开更多
关键词 固-液连铸 浇注 CALPHAD 富Pb第二相
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