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Researches on a novel severe plastic deformation method combining direct extrusion and shearings for AZ61 magnesium alloy based on numerical simulation and experiments

机译:基于数值模拟和实验的二氧化铝镁合金直接挤压和剪切结合新型塑性变形法研究

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摘要

A new severe plastic deformation method called extrusion-shearing shorten for "ES" has been developed to fabricate the ultra-fine grained AZ61 magnesium alloys. The correlation theories of ES process have been studied which includes cumulative strain and Zener-Hollomon parameter etc. Simulations of ES process for wrought AZ61 magnesium alloy have been performed using three-dimensional finite element method. ES dies with one step shearing and two step shearings have been designed, manufactured and installed onto thermo-mechanical simulator and industrial horizontal extruder, respectively. Microstructures evolution has been observed and analysed. The influences of the ES processes on the grain refinements of AZ61magniesium alloys during multistage processes have been investigated. Based on the experimental, simulation and theoretical results, ES process could increase the cumulative strains enormously and refine grain sizes by direct extrusion and additional shearings. ES process can produce the serve plastic deformation and improve the volume fraction of dynamic recrystallization. Continuous dynamic recrystallizaion is the main reason for grain refinements during ES process.
机译:已经开发出一种称为挤出剪切缩短的新的严格塑性变形方法,以制造超细颗粒AZ61镁合金。已经研究了ES工艺的相关理论,其包括累积应变和ZENER-HOLLOMON参数等。使用三维有限元法进行锻造AZ61镁合金的ES方法的模拟。设计,制造并安装在热机械模拟器和工业卧式挤出机上,设计了一步剪切和两步剪切。已经观察和分析了微观结构演化。研究了ES过程对多级过程中AZ61magniesium合金晶粒细化的影响。基于实验,模拟和理论结果,ES过程可以通过直接挤出和额外的剪切来增加累积菌株并通过直接挤出和额外的剪切来改进晶粒尺寸。 ES工艺可以生产塑性变形并提高动态再结晶的体积分数。连续动态Recrystallizaion是ES过程中晶粒细化的主要原因。

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