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A Strong, Tough, and Scalable Structural Material from Fast-Growing Bamboo

机译:快速生长的竹子制成的结实,坚韧和可扩展的结构材料

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摘要

Lightweight structural materials with high strength are desirable for advanced applications in transportation, construction, automotive, and aerospace. Bamboo is one of the fastest growing plants with a peak growth rate up to 100 cm per day. Here, a simple and effective top-down approach is designed for processing natural bamboo into a lightweight yet strong bulk structural material with a record high tensile strength of approximate to 1 GPa and toughness of 9.74 MJ m(-3). More specifically, bamboo is densified by the partial removal of its lignin and hemicellulose, followed by hot-pressing. Long, aligned cellulose nanofibrils with dramatically increased hydrogen bonds and largely reduced structural defects in the densified bamboo structure contribute to its high mechanical tensile strength, flexural strength, and toughness. The low density of lignocellulose in the densified bamboo leads to a specific strength of 777 MPa cm(3) g(-1), which is significantly greater than other reported bamboo materials and most structural materials (e.g., natural polymers, plastics, steels, and alloys). This work demonstrates a potential large-scale production of lightweight, strong bulk structural materials from abundant, fast-growing, and sustainable bamboo.
机译:具有高强度的轻质结构材料是交通,建筑,汽车和航空航天领域的高级应用所需要的。竹子是生长最快的植物之一,峰值生长速率高达每天100厘米。在这里,设计了一种简单有效的自顶向下方法,用于将天然竹加工为重量轻但强度高的块状结构材料,其记录的高拉伸强度约为1 GPa,韧性为9.74 MJ m(-3)。更具体地说,通过部分除去木质素和半纤维素,然后热压,使竹致密化。具有紧密增加的氢键和致密的竹子结构中大大减少的结构缺陷的长而对齐的纤维素纳米原纤维有助于其高机械拉伸强度,弯曲强度和韧性。致密竹中木质纤维素的低密度导致比强度为777 MPa cm(3)g(-1),明显高于其他报道的竹材料和大多数结构材料(例如,天然聚合物,塑料,钢,和合金)。这项工作证明了潜在的大规模生产轻质,坚固的散装结构材料的方法,就是用丰富,快速生长且可持续的竹子生产。

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