Влияние состояния границ зерен на эффект пластификации в ультрамелкозернистом сплаве Al-0.4Zr

А.М. Мавлютов, Татьяна Сергеевна Орлова, М.Ю. Мурашкин, Н. А. Еникеев
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Abstract

The influence of small additional deformation by cold rolling (CR) on the microstructure and mechanical properties of ultrafine-grained (UFG) Al–0.4Zr alloy structured by high pressure torsion (HPT) has been studied. The results are compared with the application of small additional deformation by HPT, which, after low-temperature annealing, leads to a substantial increase in ductility (plasticization effect) with small decrease in strength. It is shown that, in contrast to the additional deformation of HPT, the deformation of CR after intermediate low-temperature annealing leads to a sharp drop in plasticity to ~2%, while the strength increases to ~275 MPa. The key role of the nonequilibrium state of grain boundaries in the manifestation of the plasticization effect in the UFG Al–0.4Zr alloy is revealed. A new approach is proposed for simultaneously increasing the strength and ductility of the UFG Al–0.4Zr alloy due to a small additional deformation by CR without intermediate annealing. As a result of this approach, a significant increase in strength by ~30% (ultimate tensile strength ~223 MPa) was achieved with a simultaneous increase in ductility up to ~26%, which is associated with an increase in the strain hardening rate due to an increase in the density of lattice dislocations in the UFG structure with nonequilibrium grain boundaries. The strain rate sensitivity and strain hardening coefficients have been determined for the UFG Al–0.4Zr alloy in various states.
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谷粒状态对Al-0.4Zr超细粒度合金增塑性作用的影响
研究了冷轧小附加变形对高压扭转超细晶Al-0.4Zr合金组织和力学性能的影响。结果与HPT小附加变形的应用进行了比较,后者在低温退火后,塑性(塑化效应)大幅提高,强度下降很小。结果表明,与HPT的附加变形相比,CR在中低温退火后的变形导致塑性急剧下降~2%,而强度则上升至~275 MPa。揭示了晶界非平衡态在UFG Al-0.4Zr合金塑化效应表现中的关键作用。提出了一种无需中间退火,同时提高UFG Al-0.4Zr合金附加变形小的强度和塑性的新方法。这种方法的结果是,强度显著提高了~30%(极限抗拉强度~223 MPa),同时塑性提高了~26%,这是由于具有非平衡晶界的UFG结构中晶格位错密度的增加而导致应变硬化率的增加。测定了不同状态下UFG Al-0.4Zr合金的应变率敏感性和应变硬化系数。
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