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Effect of Asymmetric Accumulative Roll-Bonding process on the Microstructure and Strength Evolution of the AA1050/AZ31/AA1050 Multilayered Composite Materials

机译:不对称累积辊粘合过程对AA1050 / AZ31 / AA1050多层复合材料的微观结构和强度演化的影响

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摘要

This paper aimed to propose the fabrication of light, Al/Mg/Al multilayered composite. Initially prepared three-layered feedstock was subjected to deformation during four rolling cycles (passes) using the conventional and modified accumulative roll bonding (ARB) processes at 400 °C, thanks to which 24-layered composite materials were produced. The modification of the ARB process was based on the application of the rotational speed asymmetry (asymmetric accumulative roll bonding, AARB). It was adopted that the initial thickness of the composite stack amounted to 3 mm (1 mm for each composite). The rolling was done in the laboratory duo D150 rolling mill with the application of the roll rotational speed asymmetry and symmetry av = 1.0 (ARB) and av = 1.25 and 1.5 (AARB). In this manuscript, it was proved that introducing the asymmetry into the ARB process for the tested Al/Mg/Al composite has an impact on the activation of additional shear bands, which results in higher fragmentation of the structure in comparison to the symmetrical process. Due to the application of the AARB, the reduction of the grain size by 17% was obtained, in comparison to the conventional ARB. Not to mention that at the same time there was an increase in strength of the fabricated multilayered composite.
机译:本文旨在提出光,Al / Mg / Al多层复合材料的制造。在400℃下使用常规和改性的累积辊键合(ARB)工艺,最初制备的三层原料在四个轧串(通过)期间进行变形,并且在400℃下工艺,非常感谢所制备的24层叠的复合材料。 ARB过程的修改基于旋转速度不对称(非对称累积辊键,AARB)的应用。采用的是,复合叠层的初始厚度为3mm(每个复合材料1mm)。轧制在实验室DUO D150轧机中进行,施加辊旋转速度不对称和对称AV = 1.0(ARB)和AV = 1.25和1.5(AARB)。在该稿件中,证明了将不对称引入测试的Al / Mg / Al复合物的Arb方法对附加剪切带的激活产生影响,这导致与对称过程相比,该结构的较高碎片化。由于AARB的施加,与常规arb相比,获得了晶粒尺寸的降低17%。更不用说,在同一时间,制造的多层复合材料的强度增加了。

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