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Al_2Mo_3O_(12)/polyethylene composites with reduced coefficient of thermal expansion

机译:热膨胀系数降低的Al_2Mo_3O_(12)/聚乙烯复合材料

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摘要

Recently, polymer composites reinforced with low fractions of thermomiotic nanoceramics have triggered a lot of research. The efforts have been focused on achieving considerable reduction of the coefficient of thermal expansion (CTE) of polymeric materials without deterioration of other physical properties. In this context, polyethylene (PE) composites reinforced with different loads of Al_2Mo_3O_(12) nanofillers (0.5-4 mass %) were fabricated by micro-compounding. To enhance the interfacial interaction between the two components, chemical functionalization of Al_2Mo_3O_(12) was performed with vinyltrimethoxysilane (VTMS) prior to micro-compounding. Infrared spectroscopy and thermogravimetry demonstrated the successful grafting of VTMS on the Al_2Mo_3O_(12) surface. The composites showed strongly decreased CTEs, up to 46 % reduction for loadings of 4 mass % compared with neat PE, suggesting intimate filler-matrix interactions. The variation of CTEs of the composites in terms of the filler fraction was successfully described by Turner's model allowing calculation of the bulk modulus of monoclinic Al_2Mo_3O_(12) (13.6 ± 2.6 GPa), in agreement with the value obtained by an ultrasonic method. The thermal stability of the composites was improved, although the addition of functionalized fillers decreased the degree of crystallinity of the PE to a small extent. The Young's modulus and yield strength of the composites increased from 6.6 to 19.1 % and 4.0-6.0 %, respectively, supporting the existence of strong filler-matrix interactions, contributing to an efficient load transfer. Finite element analysis of thermal stresses indicated absence of plastic deformation of the matrix or fracture of the nanofillers, for a 100 K temperature drop.
机译:最近,用低比例的热模拟纳米陶瓷增强的聚合物复合材料引发了许多研究。努力集中在使聚合物材料的热膨胀系数(CTE)显着降低而不使其他物理性能恶化的方面上。在这种情况下,通过微配合制备了以不同负载量的Al_2Mo_3O_(12)纳米填料(0.5-4质量%)增强的聚乙烯(PE)复合材料。为了增强两种组分之间的界面相互作用,在进行微混合之前,先用乙烯基三甲氧基硅烷(VTMS)对Al_2Mo_3O_(12)进行化学官能化。红外光谱和热重分析表明,VTMS成功接枝在Al_2Mo_3O_(12)表面上。与纯PE相比,复合材料的CTE大大降低,对于4质量%的载荷,其CTE降低了46%,这表明填料与基质之间的相互作用密切。 Turner模型成功地描述了复合材料CTE随填料含量的变化,从而可以计算单斜Al_2Mo_3O_(12)(13.6±2.6 GPa)的体积模量,与超声方法获得的值一致。尽管添加了功能化填料,但在一定程度上降低了PE的结晶度,但复合材料的热稳定性得到了改善。复合材料的杨氏模量和屈服强度分别从6.6%增至19.1%和4.0-6.0%,支持了强烈的填料-基体相互作用,有助于有效的载荷传递。热应力的有限元分析表明,对于100 K的温度下降,基体没有塑性变形或纳米填料的断裂。

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