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镍和铜壳对先进轻质热塑性聚氨酯超材料在单轴压缩过程中力学性能的影响。

Effect of nickel and copper shells on mechanical properties of advanced lightweight TPU metamaterials during uniaxial compression.

作者信息

Rohani Nejad Salar, Hesari Sania, Mirbagheri Seyed Mohammad Hossein

机构信息

Department of Materials and Metallurgical Engineering, Amirkabir University of Technology, Tehran, 15875-4413, Iran.

Research and Development Department of Rahyaft Advanced Sciences and Technologies (Knowledge-based), Tehran, Iran.

出版信息

Sci Rep. 2024 Dec 28;14(1):31131. doi: 10.1038/s41598-024-82317-7.

Abstract

This study explores the impact of metallic shells by electroforming method on the mechanical behavior of thermoplastic polyurethane (TPU)-based lattice structures. First, the TPU lattice structures were printed by additive manufacturing technique. Then layers of Ni and Cu as a thin shell were dressed on the TPU lattice structures in the electroforming baths of Ni and Cu solutions. Finally, uniaxial compression tests achieved on the samples. Results demonstrated substantial enhancements in mechanical performance attributable to these metallic coatings. Notably, the Ni-coated lattice structure (Ni-LS) exhibited a peak yield strength of 4.55 MPa, marking a 1.08-fold improvement over the Ni-Cu-LS structures and a 1.35-fold increase relative to the Ni-Cu-Ni-LS variant. Furthermore, the energy absorption density of the coated structures was elevated by nearly sixfold compared to the uncoated TPU lattice, with multi-layer coatings providing additional gains. These results underscore the potential of Ni and Cu-coated TPU lattices to deliver exceptional strength-to-weight ratios and enhanced energy absorption capabilities.

摘要

本研究探讨了通过电铸法制备的金属壳对热塑性聚氨酯(TPU)基晶格结构力学行为的影响。首先,采用增材制造技术打印TPU晶格结构。然后,在镍和铜溶液的电铸槽中,在TPU晶格结构上镀上一层薄薄的镍和铜作为外壳。最后,对样品进行单轴压缩试验。结果表明,这些金属涂层显著提高了力学性能。值得注意的是,镀镍晶格结构(Ni-LS)的峰值屈服强度为4.55MPa,比Ni-Cu-LS结构提高了1.08倍,相对于Ni-Cu-Ni-LS变体增加了1.35倍。此外,与未涂层的TPU晶格相比,涂层结构的能量吸收密度提高了近6倍,多层涂层进一步提高了能量吸收密度。这些结果强调了镀镍和镀铜TPU晶格在提供优异的强度重量比和增强能量吸收能力方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92cf/11680965/09f569fa407d/41598_2024_82317_Fig1_HTML.jpg

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