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Processing of AM60 magnesium alloy by hydrostatic cyclic expansion extrusion at elevated temperature as a new severe plastic deformation method

机译:升高温度下静压环状膨胀挤出加工AM60镁合金作为一种新的严重塑性变形方法

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摘要

Hydrostatic cyclic expansion extrusion (HCEE) process at elevated temperatures is proposed as a method for processing less deformable materials such as magnesium and for producing long ultrafine-grained rods. In the HCEE process at elevated temperatures, high-pressure molten linear low-density polyethylene (LLDPE) was used as a fluid to eliminate frictional forces. To study the capability of the process, AM60 magnesium rods were processed and the properties were investigated. The mechanical properties were found to improve significantly after the HCEE process. The yield and ultimate strengths increased from initial values of 138 and 221 MPa to 212 and 317 MPa, respectively. Moreover, the elongation was enhanced due to the refined grains and the existence of high hydrostatic pressure. Furthermore, the microhardness was increased from HV 55.0 to HV 72.5. The microstructural analysis revealed that ultrafine-grained structure could be produced by the HCEE process. Moreover, the size of the particles decreased, and these particles thoroughly scattered between the grains. Finite element analysis showed that the HCEE was independent of the length of the sample, which makes the process suitable for industrial applications.
机译:提出了升高温度下的静液体环状膨胀挤出(HCEE)方法作为处理较少可变形的材料,例如镁和生产长的超细颗粒棒的方法。在高温下的HCEE方法中,使用高压熔融线性低密度聚乙烯(LLDPE)作为流体以消除摩擦力。为了研究该方法的能力,加工AM60镁棒并研究了性质。发现机械性能在HCEE过程后显着改善。产量和最终强度分别从138和221MPa至212和317MPa的初始值增加。此外,由于精制的晶粒和高静水压力的存在,因此提高了伸长率。此外,显微硬度从HV 55.0增加到HV 72.5。微观结构分析表明,可以通过HCEE方法产生超细粒化结构。此外,颗粒的尺寸减小,并且这些颗粒在晶粒之间彻底散射。有限元分析表明,HCEE与样品的长度无关,这使得该过程适用于工业应用。

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