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The Effect of Carbon Nanotubes on the Mechanical Properties of Wood Plastic Composites by Selective Laser Sintering

机译:碳纳米管对选择性激光烧结木塑复合材料力学性能的影响

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Wood-plastic composites (WPCs) made by selective laser sintering (SLS) approach of 3D printing offer many advantages over single polymer materials, such as low cost, sustainability, and better sintering accuracy. However, WPCs made via SLS are too weak to have widespread applications. In order to increase the mechanical properties of WPCs, a novel type of WPCs containing 0, 0.05, 0.1 and 0.15 wt % carbon nanotubes (CNT), 14 wt % wood fibers, 86 wt % polyether sulfone (PES) was manufactured via SLS. The experimental results showed that the addition of small amount of CNTs can significantly increase the mechanical properties of the wood/PES composite material. The tensile strength, bending strength, and elasticity modulus were 76.3%, 227.9%, and 128.7% higher with 0.1 wt % CNTs than those without CNTs. The mechanical properties of specimens first increased and then decreased with the addition of CNTs. The SEM results of the specimens?¢???? fracture morphology indicate that the preferable bonding interfaces between wood flour grains and PES grains were achieved by adding CNTs to the composites. There are two reasons why the composites possessed superior mechanical properties: CNTs facilitate the laser sintering process of WPCs due to their thermal conductivities, and CNTs directly reinforce WPCs.
机译:通过3D打印的选择性激光烧结(SLS)方法制成的木塑复合材料(WPC)与单一聚合物材料相比具有许多优势,例如低成本,可持续性和更好的烧结精度。但是,通过SLS制造的WPC太弱,无法广泛应用。为了提高WPC的机械性能,通过SLS生产了一种新型的WPC,其中包含0、0.05、0.1和0.15 wt%的碳纳米管(CNT),14 wt%的木纤维,86 wt%的聚醚砜(PES)。实验结果表明,少量的CNT可以显着提高木材/ PES复合材料的机械性能。含有0.1 wt%的CNT的拉伸强度,弯曲强度和弹性模量比不含CNT的拉伸强度,弯曲强度和弹性模量分别高76.3%,227.9%和128.7%。碳纳米管的加入使样品的机械性能先升高后降低。样品的SEM结果?断裂形态表明,通过向复合材料中添加碳纳米管,可以实现木粉颗粒与PES颗粒之间的最佳结合界面。复合材料具有优异的机械性能的原因有两个:CNT由于其导热性而促进WPC的激光烧结过程,而CNT直接增强WPC。

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