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Isothermal upset forging of AA5083 after severe plastic deformation by ECAE

机译:ECAE严重塑性变形后AA5083的等温镦锻锻造

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This work presents a study related to the achievement of forged billets using plane-shape dies from a 5083 aluminium alloy previously processed by the Severe Plastic Deformation (SPD) process known as ECAE (Equal Channel Angular Extrusion). ECAE is one of the most well-known SPD processes and in this study, it is going to be employed in order to obtain nano-structured starting material. Changes in the microhardness and in the microstructure of the isothermally upset-forged billets have been studied after having been processed by ECAE. Isothermal upsetting tests were performed at different values of strain, temperature and compression velocity. Furthermore, optical and scanning electron microscopy (SEM) techniques have been utilised in order to analyse the final microstructure. As will be shown in this present study, ECAE improves the forgeability of AA-5083 and, after the upsetting process, submicrometric grain size material is attained.
机译:这项工作提出了一种研究与使用预先通过称为ECAE(等通道角挤出)的严重塑性变形(SPD)方法的5083铝合金的平面形状的锻造坯料的研究。 ECAE是最着名的SPD过程之一,并且在该研究中,将采用以获得纳米结构的原料。在ECAE加工后,已经研究了微硬度和在等温锻造坯料的微观结构中的变化。在菌株,温度和压缩速度的不同值下进行等温镦粗试验。此外,已经利用了光学和扫描电子显微镜(SEM)技术以分析最终的微观结构。如将在本研究中显示,ECAE改善了AA-5083的易损性,并且在镦粗过程之后,达到亚模粒粒度材料。

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