In-plane compression performance of additively manufactured honeycomb structures: a review of influencing factors and optimisation techniques

IF 3.5 Q1 ENGINEERING, MULTIDISCIPLINARY
Solomon O. Obadimu, K. Kourousis
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引用次数: 4

Abstract

PurposeHoneycombs enjoy wide use in various engineering applications. The emergence of additive manufacturing (AM) as a method of customisable of parts has enabled the reinvention of the honeycomb structure. However, research on in-plane compressive performance of both classical and new types of honeycombs fabricated via AM is still ongoing. Several important findings have emerged over the past years, with significance for the AM community and a review is considered necessary and timely. This paper aims to review the in-plane compressive performance of AM honeycomb structures.Design/methodology/approachThis paper provides a state-of-the-art review focussing on the in-plane compressive performance of AM honeycomb structures, covering both polymers and metals. Recently published studies, over the past six years, have been reviewed under the specific theme of in-plane compression properties.FindingsThe key factors influencing the AM honeycombs' in-plane compressive performance are identified, namely the geometrical features, such as topology shape, cell wall thickness, cell size and manufacturing parameters. Moreover, the techniques and configurations commonly used for geometry optimisation toward improving mechanical performance are discussed in detail. Current AM limitations applicable to AM honeycomb structures are identified and potential future directions are also discussed in this paper.Originality/valueThis work evaluates critically the primary results and findings from the published research literature associated with the in-plane compressive mechanical performance of AM honeycombs.
增材制造蜂窝结构的面内压缩性能:影响因素和优化技术综述
目的蜂窝在各种工程应用中有着广泛的用途。增材制造(AM)作为一种可定制零件的方法的出现,使蜂窝结构的重新发明成为可能。然而,对传统和新型增材制造蜂窝的面内压缩性能的研究仍在进行中。在过去几年中出现了一些重要的发现,对AM社区具有重要意义,审查被认为是必要和及时的。本文旨在对AM蜂窝结构的面内压缩性能进行综述。本文对AM蜂窝结构的平面内压缩性能进行了最新的综述,涵盖了聚合物和金属。最近发表的研究,在过去的六年里,在平面内压缩特性的特定主题下进行了回顾。研究结果确定了影响增材蜂窝平面内压缩性能的关键因素,即拓扑形状、胞壁厚度、胞壁尺寸和制造参数等几何特征。此外,还详细讨论了用于提高机械性能的几何优化的常用技术和配置。本文指出了目前适用于AM蜂窝结构的AM限制,并讨论了潜在的未来发展方向。原创性/价值本工作批判性地评估了与AM蜂窝平面内压缩力学性能相关的已发表研究文献的主要结果和发现。
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
International Journal of Structural Integrity
International Journal of Structural Integrity ENGINEERING, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
14.80%
发文量
42
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