A critical investigation of the anisotropic behavior in the WAAM-fabricated structure

IF 4.7 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-05-08 DOI:10.1108/rpj-01-2023-0005
Vishal Kumar, Amitava Mandal
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Abstract

Purpose Wire-arc-based additive manufacturing (WAAM) is a promising technology for the efficient and economical fabrication of medium-large components. However, the anisotropic behavior of the multilayered WAAM-fabricated components remains a challenging problem. Design/methodology/approach The purpose of this paper is to conduct a comprehensive study of the grain morphology, crystallographic orientation and texture in three regions of the WAAM printed component. Furthermore, the interdependence of the grain morphology in different regions of the fabricated component with their mechanical and tribological properties was established. Findings The electron back-scattered diffraction analysis of the top and bottom regions revealed fine recrystallized grains, whereas the middle regions acquired columnar grains with an average size of approximately 8.980 µm. The analysis revealed a higher misorientation angle and an intense crystallographic texture in the upper and lower regions. The investigations found a higher microhardness value of 168.93 ± 1.71 HV with superior wear resistance in the bottom region. The quantitative evaluation of the residual stress detected higher compressive stress in the upper regions. Evidence for comparable ultimate tensile strength and greater elongation (%) compared to its wrought counterpart has been observed. Originality/value The study found a good correlation between the grain morphology in different regions of the WAAM-fabricated component and their mechanical and wear properties. The Hall–Petch relationship also established good agreement between the grain morphology and tensile test results. Improved ductility compared to its wrought counterpart was observed. The anisotropy exists with improved mechanical properties along the longitudinal direction. Moreover, cylindrical components have superior tribological properties compared with cuboidal components.
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对 WAAM 制造结构中各向异性行为的重要研究
目的基于线弧的增材制造(WAAM)是一种很有前途的技术,可用于高效、经济地制造中大型部件。本文旨在对 WAAM 打印部件三个区域的晶粒形态、晶体学取向和纹理进行全面研究。结果顶部和底部区域的电子背散射衍射分析显示出细小的再结晶晶粒,而中间区域则获得了平均尺寸约为 8.980 µm 的柱状晶粒。分析表明,上部和下部区域的错位角更大,结晶纹理更密集。调查发现,底部区域的显微硬度值较高,为 168.93 ± 1.71 HV,耐磨性较好。对残余应力的定量评估发现,上部区域的压应力较高。研究发现,WAAM 制造部件不同区域的晶粒形态与其机械和磨损性能之间存在良好的相关性。霍尔-佩奇关系也确定了晶粒形态与拉伸测试结果之间的良好一致性。与锻造部件相比,该部件的延展性得到了改善。各向异性的存在改善了纵向的机械性能。此外,与立方体部件相比,圆柱形部件具有更优越的摩擦学特性。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
期刊介绍: ACS Applied Electronic Materials is an interdisciplinary journal publishing original research covering all aspects of electronic materials. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials science, engineering, optics, physics, and chemistry into important applications of electronic materials. Sample research topics that span the journal's scope are inorganic, organic, ionic and polymeric materials with properties that include conducting, semiconducting, superconducting, insulating, dielectric, magnetic, optoelectronic, piezoelectric, ferroelectric and thermoelectric. Indexed/​Abstracted: Web of Science SCIE Scopus CAS INSPEC Portico
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