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Surface Modification and Alloying of Aluminum and Titanium Alloys with Low-Energy, High-Current Electron Beams

机译:低能大电流电子束对铝和钛合金的表面改性和合金化

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The paper reviews the results of investigations of surface modification and alloying of Al, Ti, and its alloys with a low-energy (up to ~40 keV), high-current (up to 25 J/cm2) electron beams of microsecond duration under systematically varied conditions. The microstructural evolution of the surface layers of Al alloys (Al2024 and Al6061) and Ti-6Al-4V alloy subjected to pulsed melting as well as changes in surface-sensitive properties of these alloys are considered. Phase formation and properties of Al-based and Ti-based surface alloys, synthesized by liquid-phase mixing of multilayer film-substrate systems in wide range of solid solubility, including [Al/Si]/Al, [Al/C]/Al, [Zr/Ti]/Ti-6Al-4V, and Al/Ti, are studied. In case of Ti-based substrates, this method allows to fabricate the single-phase nanocrystallineα-(TiZr) surface alloy, free of Al and V, as well as nanosized and ultrafine grain TiAl/Ti3Al-based surface alloys of thickness ≥3 μm with enhanced mechanical properties.
机译:本文综述了在低电子能量的情况下,微秒级的低能量(高达40VkeV),高电流(高达25 / J / cm2)电子束的Al,Ti及其合金的表面改性和合金化的研究结果。系统地变化的条件。考虑了经受脉冲熔融的铝合金(Al2024和Al6061)和Ti-6Al-4V合金的表面层的微观结构演变以及这些合金的表面敏感特性的变化。通过液相混合多层膜-基材体系在宽范围的固溶性(包括[Al / Si] / Al,[Al / C] / Al)中合成的Al基和Ti基表面合金的相形成和性能,[Zr / Ti] / Ti-6Al-4V和Al / Ti被研究。对于基于Ti的基底,此方法允许制造不含Al和V的单相纳米晶α-(TiZr)表面合金,以及厚度≥3μm的纳米级和超细晶粒的TiAl / Ti3Al基表面合金具有增强的机械性能。

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