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Bio-Inspired Interlocking Structures for Enhancing Flexible Coatings Adhesion,SMALL. 2024, 2312037(一作,中科院一區(qū),IF=13.2)
來源:路朋朋講師個(gè)人網(wǎng)站 發(fā)布日期:2024-03-22
作者:Lu, P.; Li, X.; Xu, J.; Fan, Y.; Sun, J.; Liang, Y.; Tian, L.; Ming, W.; Ren, L.; Zhao. J
關(guān)鍵字:3D printing, bio-inspired, interlocking, magnetic, microstructure
論文來源:期刊
發(fā)表時(shí)間:2024年

The flexible protective coatings and substrates frequently exhibit unstable bonding in industrial applications. For strong interfacial adhesion of heterogeneous materials and long-lasting adhesion of flexible protective coatings even in harsh corrosive environments. Inspired by the interdigitated structures in Phloeodes diabolicus elytra, a straightforward magnetic molding technique is employed to create an interlocking microarray for reinforced heterogeneous assembly. Benefiting from this bio-inspired microarrays, the interlocking polydimethylsiloxane (PDMS) coating recorded a 270% improvement in tensile adhesion and a 520% increase in shear resistance, approaching the tensile limitation of PDMS. The elastic polyurethane-polyamide (PUPI) coating equipped with interlocking structures demonstrated a robust adhesion strength exceeding 10.8 MPa and is nearly unaffected by the corrosion immersion. In sharp contrast, its unmodified counterpart exhibited low initial adhesion and maintain ≈20% of its adhesion strength after 30 d of immersion. PUPI coating integrated with microarrays exhibits superior resistance to corrosion (30 d, |Z|0.01HZ ≈1010 ?? cm2, Rct≈108 ?? cm2), cavitation and long-term adhesion retention. These interlocking designs can also be adapted to curved surfaces by 3D printing and enhances heterogeneous assembly of non-bonded materials like polyvinylidene fluoride (PTFE) and PDMS. This bio-inspired interlocking structures offers a solution for durably bonding incompatible interfaces across varied engineering applications.


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