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5篇 您的检索式:作者名="F.Djavanroodi"
    题名 作者 年代 出处 被引量
1Designing of ECAP parameters based on strain distribution uniformityF.Djavanroodi B.Omranpour M.Ebrahimi M.Sedighi 2012Progress in Natural Science:Materials International2012,22,5:8
2等径角挤压7075铝合金的显微组织和织构演变(英文)显示文摘等径角挤压是一种有效的控制金属和合金显微组织和织构的技术。采用X射线衍射仪和取向成像显微镜评价通过90°模具反复等径角挤压7075铝合金的显微组织和织构。定性和定量分析结果表明,不同的路径会产生不同的织构类型。利用Labotex软件计算的织构表明,经第1道次等径角挤压后合金织构增强,而经第4道次挤压后合金织构减弱。显微组织研究表明,经过Bc和A路径等径角挤压4道次后,出现了平均尺寸分别为700 nm和1μm的细小晶粒,且大多数晶粒演化为大角度晶界排列。研究了铜管包覆对7075铝合金显微组织和织构的影响。M.H.SHAERI M.SHAERI M.T.SALEHI S.H.SEYYEDEIN F.DJAVANROODI 2015Transactions of Nonferrous Metals Society of China2015,25,5:7
3Experimental and numerical analyses of pure copper during ECFE process as a novel severe plastic deformation method显示文摘In this paper,a new severe plastic deformation method called equal channel forward extrusion(ECFE) process has been proposed and investigated by experimental and numerical approaches on the commercial pure copper billets. The experimental results indicated that the magnitudes of yield strength,ultimate tensile strength and Vickers micro-hardness have been markedly improved from 114 MPa,204 MPa and68 HV as the annealed condition to 269 MPa,285 MPa and 126 HV after the fourth pass of ECFE process,respectively. In addition,scanning electron microscopy observation of the samples showed that the average grain size of the as-received state which is about 22 μm has been reduced to 1.4 μm after the final pass. The numerical investigation suggested that although one pass ECFE process fabricates material with the mean effective strain magnitude of about 1,the level of imposed effective plastic strain gradually diminishes from the circumference to the center of the deformed billet.M.Ebrahimi F.Djavanroodi 2014Progress in Natural Science:Materials International2014,24,1:4
4Damage prediction of 7025 aluminum alloy during equal-channel angular pressing显示文摘Equal-channel angular pressing(ECAP) is a prominent technique that imposes severe plastic deformation into materials to enhance their mechanical properties. In this research, experimental and numerical approaches were utilized to investigate the mechanical properties, strain behavior, and damage prediction of ECAPed 7025 aluminum alloy in various conditions, such as die channel angle, outer corner angle, and friction coefficient. Experimental results indicate that, after the first pass, the yield strength, ultimate tensile strength, and hardness magnitude are improved by approximately 95%, 28%, and 48.5%, respectively, compared with the annealed state, mainly due to grain refinement during the deformation. Finite element analysis shows that the influence of die channel angle is more important than that of outer corner angle or friction coefficient on both the strain behavior and the damage prediction. Also, surface cracks are the main cause of damage during the ECAP process for every die channel angle except for 90°; however, the cracks initiated from the neighborhood of the central regions are the possible cause of damage in the ECAPed sample with the die channel angle of 90°.M.Ebrahimi Sh.Attarilar C.Gode F.Djavanroodi 2014International Journal of Minerals,Metallurgy and Materials2014,21,10:1
5Equal Channel Angular Pressing of Tubular Samples显示文摘A new technique to equal channel angular pressing of tubular samples has been proposed and investigated through experiments and simulations.Deformation behavior of copper tube sample was numerically analyzed during the first pass of tubular ECAP process.The investigation included the efect of various tube wall thicknesses on the efective strain magnitude and strain distribution uniformity.It is shown that tube wall thickness of 3.5 mm gives the optimum value for strain behavior.In addition,copper tube specimens with3.5 mm wall thickness have been successfully ECAPed up to four passes with the die channel angle of 90° using flexible polyurethane rubber pad.Micro-hardness measurements on both annealed and ECAPed tubes show that 33%and 57%increases in hardness value and also,50%and 70%reductions in the grain size were achieved after the first and fourth passes respectively.Furthermore,tube wall thickness measurements show that the process does not change the dimension of deformed specimens.F.Djavanroodi A.A.Zolfaghari M.Ebrahimi K.M.Nikbin 2013Acta Metallurgica Sinica(English Letters)2013,26,5:0
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