Martensite decomposition during post-heat treatments and the aging response of near-α Ti–6Al–2Sn–4Zr–2Mo (Ti-6242) titanium alloy processed by selective laser melting (SLM)

Haiyang Fan, Yahui Liu, Shoufeng Yang
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引用次数: 16

Abstract

Ti–6Al–2Sn–4Zr–2Mo (Ti-6242), a near-[Formula: see text] titanium alloy explicitly designed for high-temperature applications, consists of a martensitic structure after selective laser melting (SLM). However, martensite is thermally unstable and thus adverse to the long-term service at high temperatures. Hence, understanding martensite decomposition is a high priority for seeking post-heat treatment for SLMed Ti-6242. Besides, compared to the room-temperature titanium alloys like Ti–6Al–4V, aging treatment is indispensable to high-temperature near-[Formula: see text] titanium alloys so that their microstructures and mechanical properties are pre-stabilized before working at elevated temperatures. Therefore, the aging response of the material is another concern of this study. To elaborate the two concerns, SLMed Ti-6242 was first isothermally annealed at 650[Formula: see text]C and then water-quenched to room temperature, followed by standard aging at 595[Formula: see text]C. The microstructure analysis revealed a temperature-dependent martensite decomposition, which proceeded sluggishly at [Formula: see text]C despite a long duration but rapidly transformed into lamellar [Formula: see text] above the martensite transition zone (770[Formula: see text]C). As heating to [Formula: see text]C), it produced a coarse microstructure containing new martensites formed in water quenching. The subsequent mechanical testing indicated that SLM-built Ti-6242 is excellent in terms of both room- and high-temperature tensile properties, with around 1400 MPa (UTS)[Formula: see text]5% elongation and 1150 MPa (UTS)[Formula: see text]10% elongation, respectively. However, the combination of water quenching and aging embrittled the as-built material severely.
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选择性激光熔化(SLM)近α Ti-6Al-2Sn-4Zr-2Mo (Ti-6242)钛合金热处理后马氏体分解及时效响应
Ti–6Al–2Sn–4Zr–2Mo(Ti-6242)是一种明确设计用于高温应用的近[公式:见正文]钛合金,在选择性激光熔化(SLM)后由马氏体结构组成。然而,马氏体是热不稳定的,因此不利于在高温下长期使用。因此,了解马氏体分解是寻求SLMed Ti-6242后热处理的高度优先事项。此外,与Ti–6Al–4V等室温钛合金相比,时效处理对于高温近[公式:见正文]钛合金来说是必不可少的,这样它们的微观结构和机械性能在高温下工作之前就得到了预稳定。因此,材料的老化反应是本研究的另一个关注点。为了详细说明这两个问题,SLMed Ti-6242首先在650[公式:见正文]C下等温退火,然后水淬至室温,然后在595[公式:参见正文]C进行标准老化。微观结构分析显示了依赖于温度的马氏体分解,尽管持续时间很长,但在[公式:见正文]C下缓慢进行,但在马氏体过渡区(770[公式:参见正文]C)上方迅速转变为层状[公式:看正文]。当加热到[公式:见正文]C)时,它产生了一种粗糙的微观结构,其中包含在水淬火中形成的新马氏体。随后的机械测试表明,SLM构建的Ti-6242在室温和高温拉伸性能方面都非常出色,分别具有约1400MPa(UTS)[公式:见正文]5%的伸长率和1150MPa(UTS,公式:见文本]10%的伸长率。然而,水淬和时效的结合使竣工材料严重脆化。
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来源期刊
Journal of Micromechanics and Molecular Physics
Journal of Micromechanics and Molecular Physics Materials Science-Polymers and Plastics
CiteScore
3.30
自引率
0.00%
发文量
27
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