Studies on Mechanical, Thermal, and Morphological Properties of Glass Fibre Reinforced Polyoxymethylene Nanocomposite

K. M. Babu, M. Mettilda
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引用次数: 8

Abstract

Polyoxymethylene is a material which has excellent mechanical properties similar to Nylon-6 filled with 30% GF. 75% POM and 25% glass fibre (POMGF) were blended with nanoclay to increase the tensile and flexural properties. Samples were extruded in twin screw extruder to blend POMGF and (1%, 3%, and 5%) Cloisite 25A nanoclay and specimens were prepared by injection moulding process. The tensile properties, flexural properties, impact strength, and hardness were investigated for the nanocomposites. The fibre pull-outs, fibre matrix adhesion, and cracks in composites were investigated by using scanning electron microscopy. 1% POMGF nanocomposite has low water absorption property. Addition of nanoclay improves the mechanical properties and thermal properties marginally. Improper blending of glass fibre and nanoclay gives low tensile strength and impact strength. SEM image shows the mixing of glass fibre and nanoclay among which 1% POMGF nanocomposite shows better properties compared to others. The thermal stability decreased marginally only with the addition of nanoclay.
玻璃纤维增强聚氧亚甲基纳米复合材料的力学、热学和形态性能研究
聚甲醛是一种具有优异机械性能的材料,类似于尼龙-6,填充30% GF。将75%聚甲醛(POM)和25%玻璃纤维(POMGF)与纳米粘土共混,提高了拉伸和弯曲性能。将POMGF和(1%、3%和5%)Cloisite 25A纳米粘土混合在双螺杆挤出机中挤出样品,并采用注射成型工艺制备样品。研究了纳米复合材料的拉伸性能、弯曲性能、冲击强度和硬度。利用扫描电镜研究了复合材料中纤维的拔出、纤维基体的粘附和裂纹的变化。1% POMGF纳米复合材料具有低吸水性能。纳米粘土的加入略微改善了材料的力学性能和热性能。玻璃纤维与纳米粘土混合不当,导致抗拉强度和冲击强度较低。SEM图像显示,玻璃纤维与纳米粘土混合后,1%的POMGF纳米复合材料性能较好。纳米粘土的加入使其热稳定性略有下降。
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