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Improvement in the high-temperature creep properties via heat treatment of Ti-6Al-4V alloy manufactured by selective laser melting

机译:通过选择性激光熔化制备的Ti-6Al-4V合金进行热处理,可改善高温蠕变性能

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摘要

This study seeks to control the microstructure of Ti-6Al-4V alloy produced by a selective laser melting process using only heat treatment, while also improving the high temperature creep behavior. Initial microstructure observation showed a fully martensite structure for the as-fabricated specimen and a fine widmanstätten structure for the heat-treated specimen. Hardness tests indicated that the hardness of the material decreased somewhat, but the anisotropy of the mechanical properties (common in additive manufactured materials) disappeared. Compression tests at 500°C indicated that the yield strength of the as-fabricated specimen was approximately 930MPa, while in the heat-treated specimen it was approximately 557MPa. High temperature compressive creep tests showed that the heat-treated specimen had relatively low creep strain and low steady-state creep rate (superior creep resistance) in all stress ranges, which is the opposite of the compressive yield strength results. After creep deformation, the microstructural evolution of the as-fabricated and heat-treated specimens was compared, and the microstructure changed much more extensively in the as-fabricated specimen. Correlations between microstructures, hardness, strength and creep properties were discussed based on these results.
机译:本研究旨在控制仅通过热处理通过选择性激光熔化工艺生产的Ti-6Al-4V合金的微观结构,同时还改善了高温蠕变行为。最初的显微组织观察表明,加工后的试样为完全马氏体组织,热处理后的试样为微细的魏氏体组织。硬度测试表明,材料的硬度有所降低,但机械性能的各向异性(在增材制造材料中很常见)消失了。在500℃下的压缩试验表明,制成的试样的屈服强度约为930MPa,而在热处理的试样中,屈服强度约为557MPa。高温压缩蠕变试验表明,经热处理的试样在所有应力范围内均具有较低的蠕变应变和较低的稳态蠕变速率(优异的抗蠕变性),这与压缩屈服强度结果相反。在蠕变变形之后,比较了加工后和热处理后的试样的微观结构演变,并且加工后的试样的微观结构发生了更广泛的变化。基于这些结果,讨论了微观结构,硬度,强度和蠕变性能之间的相关性。

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