Review of laser powder bed fusion (LPBF) fabricated Ti-6Al-4V: process, post-process treatment, microstructure, and property

S. Cao, Y. Zou, C. V. Lim, Xinhua Wu
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引用次数: 56

Abstract

Laser powder bed fusion (LPBF) is a timely important additive manufacturing technique that offers many opportunities for fabricating three-dimensional complex shaped components at a high resolution with short lead times. This technique has been extensively employed in manufacturing Ti-6Al-4V parts for aerospace and biomedical applications. However, many challenges, including poor surface quality, porosity, anisotropy in microstructure and property, and difficulty in tailoring microstructure, still exist. In this paper, we review the recent progress in post-process treatment and its influence on the microstructure evolution and material performance, including tensile, fatigue, fracture toughness, creep, and corrosion properties. The contradictions in simultaneously achieving high strength/ductility and strength/fracture toughness/creep resistance have been identified. Furthermore, research gaps in understanding the effects of the emerging bi-modal microstructure on fatigue properties and fracture toughness require further investigation.
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激光粉末床熔合(LPBF)制备Ti-6Al-4V的研究进展:工艺、后处理、显微组织和性能
激光粉末床熔融(LPBF)是一种重要的增材制造技术,它为在短的交货时间内以高分辨率制造三维复杂形状部件提供了许多机会。该技术已广泛应用于制造用于航空航天和生物医学应用的Ti-6Al-4V部件。但仍存在许多挑战,包括表面质量差、孔隙度、微观结构和性能各向异性、微观结构定制困难等。本文综述了后处理技术的最新进展,以及后处理对材料显微组织演变和材料性能的影响,包括拉伸、疲劳、断裂韧性、蠕变和腐蚀性能。同时实现高强度/延展性和强度/断裂韧性/抗蠕变的矛盾已经被确定。此外,在理解新出现的双峰组织对疲劳性能和断裂韧性的影响方面的研究空白需要进一步研究。
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