首页> 外文会议>Conference on engineering systems design and analysis;Biennial conference on engineering systems design and analysis;ESDA 2008 >THE EVALUATION OF STRAIN, MICROSTRUCTURAL ASPECTS AND SOME MECHANICAL PROPERTIES OF NANO-GRAINED ALUMINUM PROCESSED BY ACCUMULATIVE ROLL BONDING USING 2, 3 AND 4 INITIAL STRIPS
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THE EVALUATION OF STRAIN, MICROSTRUCTURAL ASPECTS AND SOME MECHANICAL PROPERTIES OF NANO-GRAINED ALUMINUM PROCESSED BY ACCUMULATIVE ROLL BONDING USING 2, 3 AND 4 INITIAL STRIPS

机译:用2、3和4初始条带累积轧制键合工艺处理纳米粒化铝的应变,微观结构和一些力学性能的评估

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The main objective of the paper is to present the refinement of grains when aluminum strips are exposed to Severe Plastic Deformation (SPD) by Accumulative Roll-Bonding (ARB). Also, the relationship between nano-grain size and the increase of some mechanical characteristics (yield stress, tensile strength) is investigated.The work presents a theoretical analysis of ARB process taking into account the effect of the initial number of strips stacked before rolling on the strain evolution. We proposed the ARB process analysis when the number of strips initially stacked is 2, 3 and 4 and the initial thickness of each strip before rolling is equal with the thickness of the laminated strip, so the thickness of initial strip is a multiple of thickness resulting from rolling. It is obvious that in the case of rolling with a multilayer initial stacked, each layer will be deformed with a bigger strain, so the bond will be realised easier, at lower working temperature and the grain refinement will be achieved by a smaller number of passes. For each case (2, 3 and 4 initial layers) the engineer and equivalent (von Mises) strain are calculated. From this analysis results that increasing the number of strips initially stacked increases the total strain and the grain size from the laminated strip achieve submicronic values after a smaller pass number.The micro-structural investigations, made with Atomic Force Microscope (AFM), show that nanometric grain appear at 5-6 equivalent strain for 2 initial stacked strips and at 3-4 equivalent strain for 4 initial stacked strips. The stress - strain curves for each case and evolution of yield stress, tensile strength and micro-hardness with the number of passes are presented.
机译:本文的主要目的是提出当铝带通过累积辊压结合(ARB)经受严重塑性变形(SPD)时的晶粒细化。另外,研究了纳米晶粒尺寸与某些机械特性(屈服应力,拉伸强度)的增加之间的关系。 这项工作提出了ARB工艺的理论分析,其中考虑了轧制之前堆叠的带钢初始数量对应变演变的影响。当初始堆叠的条带数量为2、3和4并且轧制之前每个条带的初始厚度与层压条带的厚度相等时,我们提出了ARB工艺分析。从滚动。显然,在轧制时采用多层初始堆叠时,每一层都会以较大的应变变形,因此在较低的工作温度下将更容易实现粘结,并且通过较少的道次即可实现晶粒细化。对于每种情况(2、3和4个初始层),都会计算出工程应变和等效应变(von Mises)。根据该分析结果,增加最初堆叠的条带数量会增加总应变,而层压的条带的晶粒尺寸会在通过次数越少后达到亚微米值。 用原子力显微镜(AFM)进行的微结构研究表明,纳米颗粒出现在2个初始堆叠带的5-6当量应变下,而4个初始堆叠带的3-4当量应变下出现。给出了每种情况下的应力-应变曲线,以及屈服应力,拉伸强度和显微硬度随通过次数的演变。

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