首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >A critical review of wire arc additive manufacturing of nickel-based alloys: principles, process parameters, microstructure, mechanical properties, heat treatment effects, and defects
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A critical review of wire arc additive manufacturing of nickel-based alloys: principles, process parameters, microstructure, mechanical properties, heat treatment effects, and defects

机译:镍基合金电弧增材制造的原理、工艺参数、组织、力学性能、热处理效果和缺陷的批判性综述

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摘要

Wire arc additive manufacturing (WAAM) is capable of fabricating medium-to-large-scale parts due to its higher deposition rates. The mechanical and metallurgical characteristics of WAAMed parts are better compared to other additive manufacturing techniques. Since the technology has grown, a wide range of metals are processed by WAAM in recent days. Nickel (Ni)-based superalloys are superior in terms of oxidation resistance, high-temperature mechanical performance, and microstructural characteristics. The selection of WAAM techniques, input parameters, resulting microstructure, post-processing treatments, and the defects can influence the final mechanical properties. The WAAMed Ni-based superalloys show inhomogeneous microstructure and mechanical properties from bottom to top layers. To obtain the homogeneous and improved mechanical properties, still there is a strong need to understand the underlying physical metallurgical mechanisms. In this context, this paper reports a present-day review on the process parameters, microstructural characteristics, mechanical properties, corrosion behaviour, and defects of WAAMed Ni-based superalloys. Adapting the strategies like interpass cooling, post-deposition heat treatment, and solution annealing improves the mechanical properties and can help to obtain homogeneous characteristics. More penetrative research works should be carried out to analyse fatigue and corrosion properties of WAAMed Ni-based superalloys for future industrial applications. Additionally, process parameters optimization and better control over quality are the other aspects to be focused by further studies.
机译:电弧增材制造 (WAAM) 由于其较高的沉积速率,能够制造中型到大型零件。与其他增材制造技术相比,WAAMed 零件的机械和冶金特性更好。随着技术的发展,WAAM最近几天加工了各种各样的金属。镍(Ni)基高温合金在抗氧化性、高温力学性能和微观组织特性方面具有优越性。WAAM技术的选择、输入参数、产生的微观结构、后处理处理和缺陷都会影响最终的机械性能。WAAMed Ni基高温合金从底层到顶层表现出不均匀的微观组织和机械性能。为了获得均匀和改进的机械性能,仍然非常需要了解潜在的物理冶金机理。在此背景下,本文报道了WAAMed Ni基高温合金的工艺参数、微观组织特征、力学性能、腐蚀行为和缺陷。采用层间冷却、沉积后热处理和固溶退火等策略可改善机械性能,并有助于获得均匀特性。应开展更多的渗透性研究工作,以分析WAAMed Ni基高温合金的疲劳和腐蚀性能,以用于未来的工业应用。此外,工艺参数优化和更好的质量控制是进一步研究需要关注的其他方面。

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