文章摘要
余琪,王松伟,曾延琦,等.行星轧制变形程度对TP2铜管材组织及性能的影响[J].精密成形工程,2019,11(3):111-116.
YU Qi,WANG Song-wei,ZENG Yan-qi,et al.Effects of Planetary Rolling Deformation on Microstructure and Properties of TP2 Copper Tube[J].Journal of Netshape Forming Engineering,2019,11(3):111-116.
行星轧制变形程度对TP2铜管材组织及性能的影响
Effects of Planetary Rolling Deformation on Microstructure and Properties of TP2 Copper Tube
投稿时间:2019-03-27  修订日期:2019-05-10
DOI:10.3969/j.issn.1674-6457.2019.03.012
中文关键词: TP2铜管  行星轧制  显微组织  力学性能
英文关键词: TP2 copper tube  planetary rolling  microstructure  mechanical properties
基金项目:
作者单位
余琪 1. 江西铜业加工事业部南昌 3300962. 中国科学院金属研究所沈阳 110016 
王松伟 2. 中国科学院金属研究所沈阳 110016 
曾延琦 3. 江西铜业技术研究院有限公司南昌 330096 
陈岩 2. 中国科学院金属研究所沈阳 1100163. 江西铜业技术研究院有限公司南昌 330096 
吴语 3. 江西铜业技术研究院有限公司南昌 330096 
吴礼 3. 江西铜业技术研究院有限公司南昌 330096 
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中文摘要:
      目的 研究行星轧制变形程度对TP2铜管材在轧制和联拉时的组织和性能的影响。方法 采用金相显微分析和拉伸实验,研究行星轧制变形程度对TP2铜管铸坯轧拉态以及拉拔态组织及性能的影响规律。结果 经连续铸造的TP2铸坯为柱状晶,且由外向内成长。经行星轧制、联拉后的管材晶粒纤维流线,其晶粒显著拉长,随着轧制变形程度的增加,流线减弱,晶粒更加细化。轧制变形程度为93%与90%的轧管屈服强度、抗拉强度分别降低了22.83%和7.59%,伸长率提升了4.44%,塑性变形能力增加。结论 随着轧制变形程度的增加,联拉管抗拉强度略有提高,而伸长率得到了保持。
英文摘要:
      The aim is to study effects of planetary rolling deformation on microstructure and properties of TP2 copper tube during rolling and tension. The effect law of planetary rolling deformation on microstructure and properties of TP2 copper tube during rolling and drawing were studied by optical metallographic microscope and testing machine. The results indicated that the TP2 casting of continuous casting was columnar and grew from the outside to the inside. The grain fiber streamline of the tube after planetary rolling and drawing was significantly elongated. With the increase of rolling deformation, the streamlines became weaker and the grains became more refined. The yield strength and tensile strength of rolled tubes with rolling deformation of 93% and 90% respectively were decreased by 22.83% and 7.59% respectively, their elongation was increased by 4.44%, and their plastic deformation ability was increased. The tensile strength and slightly increases and the elongation is maintained with the increase of the rolling deformation.
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