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AA 2037新型连铸铝合金热轧板退火的正电子湮没研究
引用本文:吴世亮,陈叶清,吴奕初,王少阶,温熙宇,翟同广.AA 2037新型连铸铝合金热轧板退火的正电子湮没研究[J].物理学报,2006,55(11):6129-6135.
作者姓名:吴世亮  陈叶清  吴奕初  王少阶  温熙宇  翟同广
作者单位:(1)Chemical and Materials Engineering Department,University of Kentucky,Lexington,KY 40506-0046,USA; (2)武汉大学物理科学与技术学院,武汉 430072; (3)燕山大学材料工程学院,河北秦皇岛 066002
基金项目:国家自然科学基金;湖北省自然科学基金;美国USAFOS资助的研究项目
摘    要:应用正电子湮没等技术对AA 2037连铸铝合金热轧板不同温度退火下空位-溶质相互作用及沉淀相进行了研究, 研究表明:室温时效形成的主要是空位-铜复合体以及空位-镁-铜复合体;温度为200℃退火时由于过渡相的形成正电子平均寿命出现峰值,符合多普勒展宽谱的商谱中观察到锰信号的存在,表明形成了空位-镁-锰复合体或过渡相中可能存在锰;温度高于250℃时,随着过渡相变粗、溶解,锰信号消失,而铜信号增强,在350℃后铜信号达到饱和,温度为450℃左右时,稳定相形成. 关键词: 正电子湮没技术 空位-溶质复合体 沉淀 退火

关 键 词:正电子湮没技术  空位-溶质复合体  沉淀  退火
文章编号:1000-3290/2006/55(11)/6129-07
收稿时间:4/3/2006 12:00:00 AM
修稿时间:2006-04-032006-05-16

Positron annihilation study of hot band of a continuous cast AA 2037 Al alloy after annealing
Wu Shi-Liang,Chen Ye-Qing,Wu Yi-Chu,Wang Shao-Jie,Wen Xi-Yu,Zhai Tong-Guang.Positron annihilation study of hot band of a continuous cast AA 2037 Al alloy after annealing[J].Acta Physica Sinica,2006,55(11):6129-6135.
Authors:Wu Shi-Liang  Chen Ye-Qing  Wu Yi-Chu  Wang Shao-Jie  Wen Xi-Yu  Zhai Tong-Guang
Institution:1. Department of Physics, Wuhan University, Wuhan 430072, China; 2. School of Materials Engineering, Yanshan University, Qinhuangdao 066002, China ; 3. Chemical and Materials Engineering Department, University of Kentucky, Lexington, KY 40506 0046, USA
Abstract:Hot band of a continuous cast AA 2037 Al alloy was annealed at different temperatures ranging from room temperature to 500℃ for 3h. Vacancy-solute interaction and precipitates in the hot band samples during annealing were investigated by positron annihilation techniques, coincidence Doppler broadening (CDB) of positron annihilation radiation and positron lifetime spectroscopy, and other methods. The experimental results indicated that there existed V-Cu and V-Cu-Mg complexes at room temperature. At 200℃, positron mean lifetime shows a peak value because of the formation of semicoherent particles. The characteristic shape of Mn was observed in the CDB ratio curve, which indicated the formation of V-Mg-Mn complexes or the existence of Mn clusters in the semicoherent particles. Above 250℃, coarsening and dissolution of semicoherent particles resulted in the decrease of mean lifetime and disappearance of the Mn signal, but the Cu signal increased clearly with annealing temperature. After 350℃, the Cu signal tended to saturation, which reflected that the Cu dissolved might agglomerate and cluster with vacancies during cooling the sample to room temperature, while new increase of mean lifetime might be attributed to the formation of incoherent phase, which was verified by DSC curve.
Keywords:positron annihilation technique  vacancy-solute complex  precipitation  anneal
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