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Light but tough bio-inherited materials: Luffa sponge based nickel-plated composites

机译:光但坚韧的生物继承材料:Luffa海绵基镀镍复合材料

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Natural structural materials featuring fine hierarchical architectures often display remarkable mechanical properties. To inherit the microstructures of biological materials, nickel-plated luffa sponges were fabricated through electrochemical deposition using natural luffa sponges as templates. Four groups of samples were processed based on nickel electroless and electroplating, and then characterized by X-ray diffraction and optical/scanning electron microscopy. Axial compression tests were performed to characterize the mechanical properties of the nickel-plated samples to compare with those of the original natural sponges. Results showed that a uniform layer of nickel was formed on the luffa fibers by electroless plating; conversely, by electroplating the nickel only minimal deposits were found on the inner luffa wall due to the uneven current distribution over the surface of sponge. Accordingly, electroless plating was deemed to be far more effective for metal deposition of materials with complex structures, such as luffa sponge. Alkali treatments prior to plating were found to be critical for subsequent mechanical performance and energy absorption capacity. The mechanical properties of nickel-plated samples surpass those of original luffa sponges, with the enhancement efficiency, i.e., the ratio of specific stiffness and strength, being highest for electroless-plated samples with a prior alkali treatment. Specifically, their energy absorption capacity was far superior to that in other comparable materials. Using a power scaling law, an empirical relationship was derived which indicated that the bending-dominated behavior of the nickel plated luffa sponges was similar to that of open-cell foams. We believe that other artificially "bio-inherited materials" could be successfully processed and developed in this manner. The superior properties of bio-in-herited materials that we obtained in this work may provide inspiration for future research efforts on bio-inspired structural materials.
机译:具有精细分层架构的天然结构材料通常显示出色的机械性能。为了继承生物材料的微观结构,通过使用天然Luffa海绵作为模板来制造镀镍的Luffa海绵。基于镍化学和电镀处理四组样品,然后通过X射线衍射和光/扫描电子显微镜表征。进行轴向压缩试验以表征镀镍样品的机械性能,以与原始天然海绵的机械性能进行比较。结果表明,通过化学镀在Luffa纤维上形成均匀的镍层;相反,由于电流分布在海绵表面上的电流分布不均匀,通过电镀仅在内杆壁上发现最小沉积物。因此,被认为是对具有复杂结构的材料的金属沉积更有效,例如Luffa海绵。对电镀前的碱处理对于随后的机械性能和能量吸收能力至关重要。镀镍样品的机械性能超越原始Luffa海绵,提高效率,即特定刚度和强度的比例,具有先前碱处理的无电镀样品最高。具体而言,它们的能量吸收能力远远优于其他类似材料。使用电力缩放法,得出了一种经验关系,表明镀镍的杆状管海绵的弯曲主导行为类似于开放式细胞泡沫的弯曲行为。我们认为,可以以这种方式成功地处理和开发其他人工“生物继承材料”。我们在这项工作中获得的生物闭合材料的优异特性可以为未来的生物启发结构材料的研究努力提供灵感。

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