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Effect of Porosity Gradient on Mechanical Properties of Cellular Nano-Composites

机译:孔隙度梯度对多孔纳米复合材料力学性能的影响

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摘要

With their hierarchical architectures incorporating gradients in composition, porosity, and orientation, natural materials have evolved optimized balance of mechanical properties. Deciphered from the structure of bamboo, we prepared cellular solids with convex and/or concave porosity gradient and investigated their static mechanical and impact properties. Non-monotonous porosity dependences of tensile, crush, and impact strength were related to the shape of porosity gradient rather than to the properties of the wall material alone. Our results provide experimental evidence, that novel mechanically robust low density additively fabricated cellular nano-composites with convex porosity gradient satisfy the structural requirements of lightweight engineering parts. Moreover, novel functions, such as reduced flammability or electrical conductivity, can easily be introduced by selecting the type and spatial organization of nanoparticles and cellular structure of the cellular micro-particles (CMPs).
机译:凭借其在成分,孔隙度和方向上包含梯度的分层体系结构,天然材料已发展出机械性能的最佳平衡。根据竹子的结构,我们制备了具有凸起和/或凹入孔隙率梯度的多孔固体,并研究了它们的静态力学性能和冲击性能。拉伸强度,压碎强度和冲击强度的非单调孔隙率相关性与孔隙率梯度的形状有关,而不是与壁材料本身的性质有关。我们的结果提供了实验证据,即新型机械坚固的低密度叠加制造的具有凸孔率梯度的蜂窝状纳米复合材料可以满足轻质工程零件的结构要求。此外,通过选择纳米粒子的类型和空间组织以及细胞微粒(CMP)的细胞结构,可以轻松地引入新功能,例如降低可燃性或导电性。

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