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室温累积叠轧技术对纯铝板材力学性能的影响 被引量:2

Effect of Accumulative Roll - Bonding at Room Temperature on the Mechanical Properties of Pure Aluminium
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摘要 利用室温累积叠轧(RT-ARB)制备超细晶纯铝,并对其金相显微组织、力学性能进行分析。实验结果表明利用室温 累积叠轧工艺可以制备性能较好的纯铝材料,其中第4道次的材料综合力学性较好,与初始态纯铝相比:抗拉强度为 215.24 MPa,是初始态(125.25 MPa)的1.72倍,并具有较高的延伸率(18.02%)。 Ultra-fine grain pure aluminum is made by room temperature ARB and the microstructure and mechanical properties are analyzed in this paper. Experimental results indicate that the pure aluminium with better properties can be achieved by Accumulative Roll-bonding at room temperature. At the fourth pass, the material has the best compositive mechanical properties compared with the anneal material. The tensile strength is 215. 24 MPa which was 1. 72 times that of anneal pure aluminium and has better elongation (18.02%).
出处 《江苏工业学院学报》 2004年第4期40-43,共4页 Journal of Jiangsu Polytechnic University
关键词 大塑性变形 累积叠轧 纯铝 力学性能 超细晶材料 severe plastic deformation accumulative roll bonding pure Aluminum mechanical properties ultra-fine grain material
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  • 1Segal V M,Reznilkov V I,Kopylov V I,et al.Processes of Plastic Transformation of Metals[M].Minsk:Navukai Teknika,1984. 被引量:1
  • 2Tsuji N,Shiotuki K,Saito Y,et al.Superplasticity of Ultra-Fine Grained Al-Mg Alloy Produced by Accumulative Roll-Bonding[J].Mater Trans,JIM,1999,40(8):765-771. 被引量:1
  • 3Tsuji N,Saito Y,Utsunomiya H,et al.Ultra-Fine Grained Bulk Steel Produced by Accumulative Roll-Bonding Process[J].Scripta Mater,1999,40(7):795-800. 被引量:1
  • 4Lee S H,Sakai T,Saito Y,et al.Strengthening of Sheath-Rolled Aluminum Based MMC by the ARB Process[J].Mater Trans,JIM,1999,40(12):1 422-1 428. 被引量:1
  • 5Iwahashi Y,Wang J,Horita Z,et al.Princile of Equal-Channel Angular Pressing for the Processing of Ultrafine Grained Materials[J].Scripta Mater,1996,35(2):143-146. 被引量:1
  • 6Huang J Y,Zhu Y T,Jiang H,et al.Microstructure and Dislocation Configurations in Nanostructured Cu Processed by Repetitive Corrugation and Straightening[J].Acta Mater,2001,49(9):1 497-1 505. 被引量:1
  • 7Valiev R Z,Islamgaliev R K,Alexandrov I V.Bulk Nanostructured Materials from Severe Plastic Deformation[J].Progress in Materials Science,2000,45(2):103-189. 被引量:1
  • 8Guo F A,Trannoy N,Lu J.Analysis of Thermal Properties by Scanning Thermal Microscopy in Nanocrystallized Iron Surface Induced by Ultrasonic Shot Peening[J].Materials Science and Engineering,2004,A369:36-42. 被引量:1
  • 9Salishchev G A,Galeyev R M,Malysheva S P,et al.Structure and Density of Sub-Microcrystalline Titanium Produced by Severe Plastic Deformation[J].Nanostructured Materials,1999,11(3):407-414. 被引量:1
  • 10Imayev V M,Salishchev G A,Shagiev M R,et al.Low Temperature Superplasticity of Submicrocrystalline Ti-48Al-2Nb-2Cr Alloy Produced by Multiple Forging[J].Scripta Mater,1999,40(2):183-190. 被引量:1

同被引文献63

  • 1李强,赖祖涵.高纯铝等通道转角挤压引起的微观组织变化[J].兵器材料科学与工程,2001,24(6):33-36. 被引量:8
  • 2上官丰收,谢季佳,洪友士.高压扭转致纯铜晶粒细化及与应变的关系[J].材料研究学报,2007,21(1):72-76. 被引量:16
  • 3刘建明,杨素媛,王鲁,谭成文.等通道转角挤压技术及其工程应用研究[J].新技术新工艺,2007(3):74-78. 被引量:9
  • 4[1]Bunge H J.Texture Analysis in Materials Science[M].Mathematic Methods,Butterworths,London,1983:10-36. 被引量:1
  • 5[2]Krieger Lessen N C,et al.,Automatic crystal orientation determination from EBSPs[J].Scanning Microscopy,1992(6),115-117. 被引量:1
  • 6[3]John A.Wert,Xiaoxu Huang,et al.Bevealing deformation microstructures[J].Materials Today,2007,9(10):24-32. 被引量:1
  • 7[5]Kuhlmann-Wilsdorf D and Hansen N.Characteristics of second generation microbands in cold-rolled copper[J],Scripta Mater,1991,25:137-142. 被引量:1
  • 8[6]Essmann U.Die statlstische beetimmung der"versetzungsanordnung aus oberfl?chengleidinienbildem"und ihre anwendung auf die berechnung der verfestigungskurve[J].Acta Metallurglca,1963(11):611-616. 被引量:1
  • 9[7]Be Jakobsen,Henning F.Poulsen,et al.Direct determination of elastic strains and dislocation densities in individual subgrains in deformation stractores[J].Acts Mater.,2007,55(10):3421-3430. 被引量:1
  • 10[8]Bo Jakobsen,Henning F.Poulsen,Pantleon W.Formation and Subdivision of Deformation Structures During Plastic Deformation[J].Science,2006,312:889-892. 被引量:1

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