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Effects of Repetitive Upsetting Extrusion on the Microstructure and Texture of GWZK124 Alloy under Different Starting Temperatures

机译:重复镦镦挤出对不同起始温度下GWZK124合金微观结构和质地的影响

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摘要

The effects of repetitive upsetting extrusion under different starting temperatures on the microstructure and texture of GWZK124 alloy were investigated. The results clearly showed that the particles and second phases induced dynamic recrystallization (DRX), which can be explained by the particle-stimulated nucleation (PSN) mechanism. It was shown that grain refinement during repetitive upsetting extrusion (RUE) is dominated by a complicated combination of continuous dynamic recrystallization and discontinuous dynamic recrystallization. The RUEed alloys under different starting temperatures exhibited a bimodal microstructure comprising fine DRXed grains with weak texture and coarse deformed grains with strong texture. The DRXed grains could weaken the texture. As the RUE starting temperature decreased, the average grain size increased and the volume fraction of DRXed grains decreased.
机译:研究了重复镦粗挤出在不同的起始温度下对GWZK124合金微观结构和质地的影响。结果清楚地表明,颗粒和第二阶段诱导动态再结晶(DRX),其可以通过颗粒刺激的核(PSN)机制来解释。结果表明,在重复镦粗挤出(RUE)期间的晶粒细化通过连续动态重结晶和不连续的动态再结晶的复杂组合来支配。不同起始温度下的右侧合金表现出一种双峰组织,其包含细致的晶粒,具有弱纹理和具有强大质地的粗糙变形颗粒。 Drxed谷物可以削弱质地。随着RUE开始温度降低,平均晶粒尺寸增加,并且Drxed晶粒的体积分数降低。

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