Breaking the trade­off: multiscale optimization for lower cost, lower residual stress LPBF of SS316L

IF 3.4 4区 工程技术 Q1 ENGINEERING, MECHANICAL
Shakeel Dilawar, Ahsan Khan, Asif Ur Rehman, Syed Zahid Husain, S. Jaffery
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Abstract

Purpose The purpose of this study was to use bridge curvature method (BCM) to quantify stress, while multiscale modeling with adaptive coarsening predicted distortions based on experimentally validated models. Taguchi method and response surface method were used to optimize process parameters (energy density, hatch spacing, scanning speed and beam diameter). Design/methodology/approach Laser powder bed fusion (LPBF) offers significant design freedom but suffers from residual stresses due to rapid melting and solidification. This study presents a novel approach combining multiscale modeling and statistical optimization to minimize residual stress in SS316L. Findings Optimal parameters were identified through simulations and validated with experiments, achieving an 8% deviation. This approach significantly reduced printing costs compared to traditional trial-and-error methods. The analysis revealed a non-monotonic relationship between residual stress and energy density, with an initial increase followed by a decrease with increasing hatch spacing and scanning speed (both contributing to lower energy density). Additionally, beam diameter had a minimal impact compared to other energy density parameters. Originality/value This work offers a unique framework for optimizing LPBF processes by combining multiscale modeling with statistical techniques. The identified optimal parameters and insights into the individual and combined effects of energy density parameters provide valuable guidance for mitigating residual stress in SS316L, leading to improved part quality and performance.
打破取舍:多尺度优化,实现 SS316L 的低成本、低残余应力 LPBF
目的本研究的目的是使用桥式曲率法(BCM)量化应力,同时根据实验验证的模型,使用自适应粗化的多尺度建模预测变形。田口方法和响应面方法用于优化工艺参数(能量密度、舱口间距、扫描速度和光束直径)。 设计/方法/途径激光粉末床熔融(LPBF)提供了极大的设计自由度,但由于快速熔化和凝固,会产生残余应力。本研究提出了一种结合多尺度建模和统计优化的新方法,以尽量减少 SS316L 中的残余应力。研究结果通过模拟确定了最佳参数,并通过实验进行了验证,偏差达到了 8%。与传统的试错法相比,这种方法大大降低了印刷成本。分析表明,残余应力和能量密度之间存在非单调关系,随着舱口间距和扫描速度的增加(两者都会导致能量密度降低),残余应力会先增然后减。此外,与其他能量密度参数相比,光束直径的影响微乎其微。 这项工作通过将多尺度建模与统计技术相结合,为优化 LPBF 工艺提供了一个独特的框架。确定的最佳参数以及对能量密度参数的单独和综合影响的深入了解,为减轻 SS316L 的残余应力提供了宝贵的指导,从而提高了零件的质量和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Rapid Prototyping Journal
Rapid Prototyping Journal 工程技术-材料科学:综合
CiteScore
8.30
自引率
10.30%
发文量
137
审稿时长
4.6 months
期刊介绍: Rapid Prototyping Journal concentrates on development in a manufacturing environment but covers applications in other areas, such as medicine and construction. All papers published in this field are scattered over a wide range of international publications, none of which actually specializes in this particular discipline, this journal is a vital resource for anyone involved in additive manufacturing. It draws together important refereed papers on all aspects of AM from distinguished sources all over the world, to give a truly international perspective on this dynamic and exciting area. -Benchmarking – certification and qualification in AM- Mass customisation in AM- Design for AM- Materials aspects- Reviews of processes/applications- CAD and other software aspects- Enhancement of existing processes- Integration with design process- Management implications- New AM processes- Novel applications of AM parts- AM for tooling- Medical applications- Reverse engineering in relation to AM- Additive & Subtractive hybrid manufacturing- Industrialisation
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