(1. 中南大學(xué) 材料科學(xué)與工程學(xué)院,長(zhǎng)沙 410083;
2. 中南大學(xué) 有色金屬材料科學(xué)與工程教育部重點(diǎn)實(shí)驗(yàn)室,長(zhǎng)沙 410083)
摘 要: 采用光學(xué)顯微鏡、掃描電鏡、電子探針顯微鏡、透射電鏡和常溫拉伸等測(cè)試方法研究均勻化升溫速率對(duì)7N01 鋁合金顯微組織和力學(xué)性能的影響。結(jié)果表明:與升溫速率較快的均勻化制度相比,采用升溫速率小于100℃/h 的慢速升溫均勻化制度更有利于細(xì)小彌散Al3Zr 粒子的析出,使Al3Zr 粒子分布均勻;細(xì)小彌散的Al3Zr 粒子能有效地阻止再結(jié)晶晶界的遷移,抑制再結(jié)晶的發(fā)生。隨著均勻化升溫速率由500 ℃/h 降低到20 ℃/h,析出的Al3Zr 粒子數(shù)量增加,尺寸減小,析出相體積分?jǐn)?shù)和半徑的比值φ/r 由75.8 μm-1 增大到359.1 μm-1,使得Al3Zr粒子對(duì)晶界的釘扎力增大,因此合金的再結(jié)晶分?jǐn)?shù)相應(yīng)地由31.92%逐漸降低到1.32%;保留下來(lái)的大量位錯(cuò)和未再結(jié)晶組織提高了合金的綜合力學(xué)性能。
關(guān)鍵字: 7N01 鋁合金;Al3Zr;均勻化;升溫速率;再結(jié)晶;力學(xué)性能
(1. School of Materials Science and Engineering,Central South University,Changsha 410083,China;
2. Key Laboratory of Nonferrous Materials Science and Engineering,Ministry of Education,
Central South University,Changsha 410083,China)
Abstract:The effects of homogenization heating rate on the microstructure and mechanical properties of 7N01 aluminum alloy were investigated by optical microscopy (OM),scanning electron microcopy (SEM),electron probe microanalyzer (EPMA),transmission electron microcopy (TEM) and tensile test. The results show that using a slow homogenization heating rate less than 100 ℃/h is favorable for the precipitation of fine and uniformly distributed Al3Zr particles compared with fast homogenization heating rate. The dispersion distribution of fine Al3Zr particles can decrease the recrystallized fraction since the Al3Zr particles can effectively prevent the migration of recrystallization grain boundary. When the homogenization heating rate decreases from 500 ℃/h to 20 ℃/h,the average dispersoid number increases,the particle size decreases,and the ratio of volume fraction (φ) to radius (r) of the precipitate (φ/r) increases from 75.8 μm-1 to 359.1 μm-1,which improves the dragging effect of Al3Zr particles on the grain boundaries and leads to a reduction in the recrystallized fraction from 31.92% to 1.32%. Meanwhile,the unrecrystallized microstructures containing profuse dislocations enhance the comprehensive mechanical properties of the studied alloy.
Key words: 7N01 aluminum alloy; Al3Zr; homogenization; heating rate; recrystallization; mechanical property


