Influence of Mo on microstructure and nanoindentation hardness of Ti-Al-Si-xMo alloy processed by Laser Engineered Net Shaping (LENS)

S. Raji, A. Popoola, S. Pityana, OM Popool, N. Arthur, M. Tlotleng
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Abstract

In this work, the microstructure and nanoindentation hardness properties of Ti-Al-Si-xMo alloys produced through laser in-situ alloying using laser engineered net shaping (LENS) technology were investigated. The microstructures and phases present were examined by means of scanning electron microscopy (SEM) equipped with an electron dispersion spectrometer (EDS), while the mechanical properties were studied using a nanoindentation tester. The microstructures exhibited fine lamellar α2-Ti3Al/γ-TiAl colonies surrounded with ζ-Ti5Si3 and ordered β0-TiAl phase in the as-produced state; while after heat treatments coarse β0-phase was observed to be embedded within the lamellae colonies. Microstructural analysis showed that β0-phase precipitated not only at the α2/γ lamellae colony boundaries but also inside the lamellae owing to the relatively high content of the β0-phase present. Nanoindentation testing showed that the indentation hardness of this current alloy is comparable to most TiAl alloys. This study also reveals that Mo additions generally increase hardness values, but only minor effects on hardness are observed at 1400 oC heat treatment temperature. Thus, Mo additions for TiAl alloys demonstrate positive effects on mechanical properties when less than 5 at.% of the alloy composition but the mechanical properties would either reduce or remains unchanged with further increase in Mo.
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Mo对激光工程净成形Ti-Al-Si-xMo合金显微组织和纳米压痕硬度的影响
研究了激光原位合金化技术制备的Ti-Al-Si-xMo合金的显微组织和纳米压痕硬度性能。采用扫描电子显微镜(SEM)和电子色散光谱仪(EDS)对材料的微观结构和物相进行了表征,并用纳米压痕仪对材料的力学性能进行了研究。微观结构表现为细小的α2-Ti3Al/γ-TiAl片层状集落,并以ζ-Ti5Si3为中心,有序的β0-TiAl相处于生产状态;热处理后,粗β0相嵌入薄片菌落内。显微组织分析表明,由于β0相含量较高,β0相不仅在α2/γ片层集落边界析出,而且在片层内部析出。纳米压痕测试表明,该合金的压痕硬度与大多数TiAl合金相当。在1400℃热处理温度下,Mo的加入对硬度值的影响较小。因此,当Mo添加量小于5 at时,TiAl合金的力学性能表现出积极的影响。但随着Mo含量的进一步增加,合金的力学性能降低或保持不变。
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