论文标题
TIB2纳米颗粒的各向异性行为增强2024Al复合材料滚纸
Anisotropic behavior of TiB2 nanoparticles reinforced 2024Al composites rolling sheet
论文作者
论文摘要
板产物中存在机械性能的平面各向异性(IPA)通常是不希望的,因为它限制了工业应用并增加了材料加工的难度。因此,它是在制造高性能铝合金板期间需要严格控制的重要因素之一。本文研究了在不同热处理下TiB2/2024Al复合滚纸的各向异性行为。 T4热处理样品显示出良好的屈服强度,与传统的AL合金相比,其质地成分显着弱化。研究了T4试样微观结构的演变。亚微米TIB2颗粒增加了滚动过程中重结晶的驱动力,并刺激了静态重结晶(SRX),从而诱导质地随机化。 T3热处理后的样品中,屈服强度的各向异性行为发生。据认为,在不同的载荷方向下,滑动系统激活的差异会导致这种各向异性。
The in-plane anisotropy (IPA) of mechanical properties existed in plate products is often undesired since it limits the industrial application and increases the difficulty of material processing. It is thus one of the important factors which requires strict control during the manufacture of high-performance aluminum alloy plates. The anisotropic behavior of TiB2/2024Al composite rolling sheet under different heat treatment is studied in this article. T4 heat treated specimen shows good isotropy of yield strength and its texture components are significantly weakened compared with traditional Al alloys. The evolution of microstructures for T4 specimen was studied. The submicron TiB2 particles increase the driving force of recrystallization during rolling process and static recrystallization (SRX) is stimulated, thus induces texture randomization. Anisotropic behavior of yield strength occurs in specimen after T3 heat treatment. It is supposed that the difference in the activation of slip system under different loading direction gives rise to this anisotropy.