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Additive manufacturing of functionally graded inconel 718: Effect of heat treatment and building orientation on microstructure and fatigue behaviour

材料科学 微观结构 因科镍合金 热等静压 高温合金 复合材料 纹理(宇宙学) 粒度 弯曲 多孔性 冶金
作者
Saeede Ghorbanpour,Kaustubh Deshmukh,Saswat Sahu,Ton Riemslag,Elise Reinton,Evgenii Borisov,Anatolii Popovich,Virginia Bertolo,Quanxin Jiang,María Terol Sanchez,Marko Knezevic,Vera Popovich
出处
期刊:Journal of Materials Processing Technology [Elsevier BV]
卷期号:306: 117573-117573
标识
DOI:10.1016/j.jmatprotec.2022.117573
摘要

This paper addresses the effect of the post-process heat treatments on the microstructure and fatigue crack growth behaviour of the functionally graded (FG) laser powder bed fusion ( L -PBF) Inconel 718 (IN718) superalloy. Sets of samples were additively manufactured (AM) altering the process parameters, namely the laser power, the laser scanning speed, layer thickness, hatch distance, and beam distribution function, resulting in distinctly different microstructures. Two categories of samples underwent heat treatment (HT) and hot isostatic pressing followed by HT (HIP+HT), while one category was kept in the as-processed (AP) condition to reveal the effects of the post-treatments. Additionally, to study the effect of microstructural anisotropy, samples were printed in horizontal (H) and vertical (V) building directions. To better understand the behaviour of the FG materials, non-graded (NG) L -PBF samples and wrought material were investigated as references. Significant variations in terms of porosity, grain size and elongation, crystallographic texture, and content of the strengthening precipitates or detrimental phases were found in different AM groups. The fatigue behaviour of the NG and FG materials was also studied by conducting three-point bending tests. Findings in terms of the role of different microstructures on the fatigue-crack initiation and fatigue crack growth rate are presented and discussed for all samples. The study demonstrated that heat treatments can enhance the damage tolerance of L -PBF IN718 to the level of wrought material. Interestingly, the effect of the roughness induced crack closure was found to be a function of build orientation, especially in the low stress ratio regime. • Heat treatment improves the fatigue crack growth rate (FCGR) of the L -PBF IN718. • FCGR of the heat treated L -PBF IN718 is slightly higher than that of the heat treated wrought IN718. • HIP+HT procedure reduces FCGR of the L -PBF IN718 to even lower values than those of the wrought material. • The FCGR behaviours of the functionally graded samples after HT and HIP+HT procedures are close and remain constant in the graded sides. • The effect of the roughness induced crack closure in low stress ratio (R=0.1R = 0.1) found to be more in the H samples compared to the V specimens.

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