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仿生分级耐冲击材料。

Bioinspired hierarchical impact tolerant materials.

机构信息

Department of Production Engineering, Universidad EAFIT, Medellín, Colombia.

出版信息

Bioinspir Biomim. 2020 Jun 8;15(4):046009. doi: 10.1088/1748-3190/ab8e9a.

Abstract

The quest for new light-weight materials with superior mechanical properties is a goal of materials scientists and engineers worldwide. A promising route in this pursuit is drawing inspiration from nature to design and develop materials with enhanced properties. By emulating the graded mineral content and hierarchical structure of fish scales of the Arapaima gigas from the nano to macro scales, we were able to develop bioinspired laminated composites with improved impact resistance. Activated by the addition of nano-particles of AlO and nano-layers of TiN to a thermoplastic fiber substrate, new energy dissipation mechanisms operating at the nanoscale enhanced the energy absorption and stiffness of the bioinspired material. Remarkably, the newly developed materials are easily transferred to the industry with minimum associated manufacturing costs.

摘要

追求具有卓越机械性能的新型轻质材料是全球材料科学家和工程师的目标。在这一追求中,一个有前途的途径是从大自然中汲取灵感,设计和开发具有增强性能的材料。通过模拟巨骨舌鱼鳞片从纳米到宏观尺度的梯度矿物含量和层次结构,我们成功地开发出了具有抗冲击性的仿生层压复合材料。通过在热塑性纤维基材中添加 AlO 纳米颗粒和 TiN 纳米层,新的纳米级能量耗散机制增强了仿生材料的能量吸收和刚度。值得注意的是,新开发的材料很容易以最低的制造成本转移到工业中。

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