材料科学
聚对苯二甲酸丁二醇酯
复合材料
硅灰石
摩擦学
石墨烯
极限抗拉强度
可燃性
氧化物
聚酯纤维
原材料
化学
有机化学
冶金
纳米技术
作者
Jia Xin Chan,Joon Fatt Wong,Azman Hassan,Norhayani Othman,Jeefferie Abd Razak,Umar Nirmal,Shahrir Hashim,Yern Chee Ching,Muhamad Zaini Yunos,Ridwan Yahaya,Thennakoon M. Sampath U. Gunathilake
摘要
Abstract Polybutylene terephthalate (PBT) composites were prepared with 1.0 phr synthetic wollastonite nanofibers (SWN), natural wollastonite (NW) and graphene oxide (GO) to study the effect of different fillers on mechanical, thermal, tribological, and flammability properties. The properties of PBT composites are related to the size, structure, and interfacial adhesion of the fillers in PBT matrix. PBT/SWN demonstrated the highest tensile strength and Young's modulus (6% and 9% increment), followed by PBT/NW (1.3% and 7% increment) and PBT/GO (2% decrement and 4% increment). PBT/SWN gave the highest degradation temperature (409°C), followed by PBT/GO (404.7°C). The maximum enhancement in wear resistance (73%) by PBT/SWN and anti‐friction performance (26%) by PBT/GO evinced the excellent load‐bearing ability of SWN and the great lubricating effect of GO. PBT/NW had the lowest peak heat release rate, smoke, and carbon dioxide production rate. This study shows that PBT composites have great potential in different automotive applications.
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