Thermo-microstructural-mechanical modeling of the effect of wire diameters on single-bead Ti-6Al-4V wall deposits by laser wire deposition

Qi Zhang , Nejib Chekir , Mathieu Brochu
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Abstract

Six Ti-6Al-4V deposits with two geometries to extract tensile coupons from the build direction (Z) and travel direction (X), were produced by laser wire deposition (LWD) with different wire diameters. Inconsistent wall profiles were found for deposits produced with wire diameters of 1.1 and 1.6 mm due to the inhomogeneous melt pool sizes generated during the deposition process, indicating the unstable thermal history. It was found that increasing the wire diameter resulted in increased heat input, which produced coarser grains and resulted in decreased strength. Fractography analysis showed that greater amounts of defects were observed on the fracture surfaces of deposits produced with increased wire diameters, which weakened the tensile properties. The grain boundary α and the surrounding colony α facilitated crack propagation and caused early failure. This research also proposed a platform using modeling techniques to control cooling rates, microstructure (α/β phase fractions and α lath widths) and yield strength of LWD Ti-6Al-4V. The accuracy of all models was validated by comparing them with experimental data.
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激光线径对单头Ti-6Al-4V壁沉积影响的热显微结构-力学模拟
采用不同线径的激光线沉积(LWD)技术,制备了6种具有两种几何形状的Ti-6Al-4V镀层,分别从构建方向(Z)和行进方向(X)提取拉伸薄片。由于沉积过程中熔池尺寸的不均匀,导致线材直径为1.1和1.6 mm的镀层壁形不一致,表明其热历史不稳定。结果表明,增大线材直径导致热输入增大,晶粒变粗,强度下降。断口形貌分析表明,随着线材直径的增加,断口表面出现了更多的缺陷,从而削弱了镀层的拉伸性能。晶界α和周围的集落α有利于裂纹扩展,导致早期破坏。本研究还提出了一个利用建模技术控制Ti-6Al-4V随钻材料冷却速率、微观结构(α/β相分数和α板条宽度)和屈服强度的平台。通过与实验数据的比较,验证了各模型的准确性。
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