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Microstructure Corrosion and Mechanical Properties of TiC Particles/Al-5Mg Composite Fillers for Tungsten Arc Welding of 5083 Aluminum Alloy

机译:用于5083铝合金钨极电弧焊的TiC颗粒/ Al-5Mg复合填充材料的组织腐蚀和力学性能

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摘要

A semi-solid stir casting mixed multi-pass rolling process was successfully employed to manufacture TiCp/Al-5Mg composite filler wires with different contents of TiC particles. The 5083-H116 aluminum alloys were joined by tungsten inert gas (TIG) using TiCp/Al-5Mg composite weld wires. The microstructure, mechanical properties, fractography and corrosion behavior of the welds were evaluated. The results revealed that TiC particles were distributed in the welds uniformly and effectively refined the primary α-Al grains. The hardness and tensile strength of the welds were improved by increasing the TiC particle content, which could be attributed to the homogeneous distribution of TiC particles and the microstructure in the weld joints. Potentiodynamic polarization testing revealed that the corrosion resistance of the welds also increased with the addition of TiC particle contents. In addition, the stress corrosion cracking (SCC) susceptibility of the welds decreased as micro-TiC particles were introduced into the welds. The electronic structure of the Al/TiC interface was investigated by first principle calculation. The calculation showed that valence electrons tended to be localized in the region of the TiC-Al interface, corresponding to an addition of the overall work function, which hinders the participation of electrons in the composite in corrosion reactions.
机译:半固态搅拌铸造混合多道次轧制成功地用于制造具有不同TiC颗粒含量的TiCp / Al-5Mg复合填充焊丝。使用TiCp / Al-5Mg复合焊丝通过钨极惰性气体(TIG)连接5083-H116铝合金。评估了焊缝的组织,力学性能,断裂形貌和腐蚀行为。结果表明,TiC颗粒均匀地分布在焊缝中,有效地细化了初生α-Al晶粒。通过增加TiC颗粒含量可以提高焊缝的硬度和抗拉强度,这可以归因于TiC颗粒的均匀分布和焊缝中的微观结构。电位动力学极化测试表明,随着TiC颗粒含量的增加,焊缝的耐蚀性也增加。此外,随着将微型TiC颗粒引入焊缝中,焊缝的应力腐蚀开裂(SCC)敏感性降低。通过第一性原理计算研究了Al / TiC界面的电子结构。计算表明,价电子倾向于局限在TiC-Al界面区域,这与整体功函数的增加相对应,这阻碍了电子在复合物中参与腐蚀反应。

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