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首页> 外文期刊>Journal of Materials Research and Technology >Mechanically strong, cost-efficiency, and sustainable fully wood-derived structural materials by micro/nanoscale design
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Mechanically strong, cost-efficiency, and sustainable fully wood-derived structural materials by micro/nanoscale design

机译:通过微/纳米级设计机械强大,成本效率和可持续的全木材衍生的结构材料

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Sustainable structural materials with fully bio-based building blocks and great mechanical properties are vitally important for practical application. However, the challenges on how to evitable use petrochemical-based adhesive, improve their comprehensive mechanical strength, and reduce energy and time consumption still remain. Here, we report a robust and effective strategy with micro/nanoscale structure design to fabricate a mechanically strong and sustainable wood-derived structural material from fast-growing wood. Owing to the synergistic effect of aligned cellulose fiber, multi-layer structure, and hydrogen bonds, the obtained structural materials exhibited high mechanical properties of 158 MPa, high interfacial bonding strength of 1.13 MPa, and great Shore D hardness of 68.7. The role of hydrogen bonds in enhancing mechanical properties was also revealed. In addition, the adhesive and polymer are not used in the whole process, and the consumption of energy and time is reduced. The novel fully wood-derived materials provide more structural material selection and more micro/nanoscale structure design ideas.
机译:可持续的结构材料具有完全生物基础建筑块和巨大的机械性能对实际应用至关重要。然而,如何证明如何实现基于石化的粘合剂,提高其综合机械强度,降低能量和时间消耗仍然存在。在这里,我们通过微/纳米级结构设计报告了一种坚固有效的策略,从而制造了从生长的木材的机械强大和可持续的木材衍生的结构材料。由于对准纤维素纤维,多层结构和氢键的协同作用,所获得的结构材料具有158MPa的高机械性能,高界面粘合强度为1.13MPa,并且具有68.7的大椎间叶D硬度。还揭示了氢键在提高机械性能方面的作用。另外,在整个过程中不使用粘合剂和聚合物,并且减少了能量和时间的消耗。新颖的完全木材衍生材料提供了更具结构性材料选择和更多的微/纳米级结构设计思路。

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