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Thermomechanical Multifunctionality in 3D-Printed Polystyrene-Boron Nitride Nanotubes (BNNT) Composites

机译:三维印刷聚苯乙烯 - 氮化硼纳米管(BNNT)复合材料中的热机械多功能

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摘要

In this work, polystyrene (PS) and boron nitrides nanotubes (BNNT) composites were fabricated, prepared, and characterized using modified direct mixing and sonication processes. The polymer composites were extruded into filaments (BNNTs at 10 wt. %) for 3D printing, utilizing the fused deposition modeling (FDM) technique to fabricate parts for mechanical and thermal applications. Using a direct mixing process, we found that the thermal conductivity and the mechanical strength of the PS-BNNT composite were respectively four times and two times higher compared to the sonication method. The thermal stability and glass transition temperatures were positively affected. A 2D microstructural mechanical entanglement model captured the exact geometry of the nanotubes using the MultiMechanics software, and the performance of the additive manufactured (AM) PS-BNNT composites part for thermomechanical application was simulated in COMSOL. The modified direct mixing process for PS-BNNT, which affects morphology, proved to be effective in achieving better interfacial bonding, indicating that BNNTs are promising fillers for improving thermal and mechanical properties, and are applicable for thermal management and electronic packaging.
机译:在该工作中,使用改性的直接混合和超声处理制备,制备聚苯乙烯(PS)和氮化硼纳米管(BNNT)复合材料。将聚合物复合材料挤出成长丝(10重量%)用于3D打印,利用融合沉积建模(FDM)技术来制造用于机械和热应用的部件。使用直接混合过程,与超声处理方法相比,PS-BNNT复合材料的导热率和机械强度分别为4倍,两倍高。热稳定性和玻璃化转变温度受到正影响。 2D微结构机械纠缠模型使用多机械软件捕获纳米管的精确几何形状,并在COMSOL中模拟了制造的添加剂(AM)PS-BNNT复合材料部分进行热机械应用的性能。影响形态的PS-BNNT的改性直接混合方法证明是有效实现更好的界面粘合,表明BNNT是用于改善热和机械性能的有前途的填充物,并且适用于热管理和电子包装。

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