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Effects of Stress Relaxation Aging with Electrical Pulses on Microstructures and Properties of 2219 Aluminum Alloy

机译:电脉冲应力松弛时效对2219铝合金组织和性能的影响

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摘要

To realize the high-efficiency and high-performance manufacture of complex high-web panels, this paper introduced electric pulse current (EPC) into the stress relaxation aging forming process of 2219 aluminum alloy and systematically studied the effects of EPC, stress, and aging time upon the microstructure and properties of 2219 aluminum alloy. It is discovered that: (a) EPC greatly enhanced the mechanical properties after stress relaxation aging and reduced the sensitivity of the yield strength for the initial stress under the aging system of 165 °C/11 h; (b) compared with general aging, stress relaxation aging instead delayed the aging process of 2219 aluminum alloy and greatly increased the peak strength value; (c) EPC accelerated the aging precipitation behavior of 2219 aluminum alloy and reduced transgranular and grain-boundary energy difference, thus leading to a more diffused distribution of the transgranular precipitated phase and the absence of a significant precipitation-free zone (PFZ) and grain-boundary stable phase in the grain boundary, further improving the mechanical properties of the alloy.
机译:为了实现高效,高性能地制造复杂的高幅板,本文将脉冲电流(EPC)引入到2219铝合金的应力松弛时效形成过程中,并系统地研究了EPC,应力和时效的影响时间取决于2219铝合金的组织和性能。发现:(a)EPC在165°C / 11 h时效体系下大大增强了应力松弛时效后的力学性能,降低了屈服强度对初始应力的敏感性; (b)与一般时效相比,应力松弛时效代替了2219铝合金的时效处理,大大提高了峰值强度值; (c)EPC加速了2219铝合金的时效析出行为,并减小了跨晶和晶界能差,从而导致了跨晶析出相的分布更加分散,并且没有明显的无沉淀区(PFZ)和晶粒晶界的晶界稳定相,进一步改善了合金的机械性能。

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