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不同温度重度变形及退火对工业纯铝组织的影响

Effect of severe deformation under different temperatures and annealing on microstructure of commercial pure aluminum

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【作者】 熊毅贺甜甜郭志强陈正阁张凌峰任凤章

【Author】 XIONG Yi1,2,HE Tian-tian1,GUO Zhi-qiang1,CHEN Zheng-ge3,ZHANG Ling-feng1,2,REN Feng-zhang1,2(1.School of Materials Science and Engineering,Henan University of Science and Technology, Luoyang 471003,China;2.Henan Key Laboratory of Advanced Non-Ferrous Metals, Luoyang 471003,China;3.No.63883 Unit of PLA,Luoyang 471000,China)

【机构】 河南科技大学材料科学与工程学院河南省有色金属材料科学与加工技术重点实验室中国人民解放军63883部队

【摘要】 采用重度冷轧及退火工艺制备超细晶工业纯铝,利用透射电镜和显微硬度实验对比研究了室温轧制和深冷轧制(液氮)及退火工艺所得到的超细晶工业纯铝组织特性和硬度。结果表明:深冷轧制细化晶粒的能力高于室温轧制,前者等轴状超细晶粒尺寸约为0.5μm,后者则约为1μm;深冷轧制试样的硬度值均高于对应状态下的室温轧制试样,温度低于200℃退火时,硬度值变化平缓,显微组织处于回复阶段;高于200℃退火时,硬度值迅速下降后趋于定值,与原始退火态相当,显微组织处于再结晶阶段。

【Abstract】 Ultra-fine grained commercial purity aluminum was produced by severe cold rolling and annealing.Microstructural characteristics and microhardness of ultra-fine grained commercial purity aluminum were investigated by means of transmission electron microscopy(TEM) and Vickers hardness test under cold rolling and cryo-rolling,respectively,and annealing.Fine grain strengthening effect of the cryo-rolled and annealed commercial purity aluminum with 0.5 μm ultra-fine grains is superior to that of the room temperature rolled and annealed with 1 μm ultra-fine grains.Rolling at liquid nitrogen temperature results in higher hardness than at room temperature under the same condition.When annealed below 200 ℃,hardness changes slightly,while annealed above 200 ℃,ultra-fine grained commercial purity aluminum structure actually is recrystallized rather than recovered and its hardness decreases rapidly,and then tends to be stable value.

【基金】 国家自然科学基金资助项目(50801021);河南科技大学人才科学研究基金资助项目(07003)
  • 【文献出处】 材料热处理学报 ,Transactions of Materials and Heat Treatment , 编辑部邮箱 ,2011年09期
  • 【分类号】TG156.2
  • 【被引频次】22
  • 【下载频次】630
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