材料科学
复合材料
聚氨酯
粒径
复合数
热稳定性
流变学
抗压强度
剑麻
化学工程
工程类
作者
Nur Izzah Atirah Mat Hussain,Noor Najmi Bonnia,Radin Siti Fazlina Nazrah Hirzin,Ernie Suzana Ali,S. Ratim
出处
期刊:Jurnal teknologi
[Muhammadiyah University of Jakarta]
日期:2020-07-20
卷期号:82 (5)
被引量:2
标识
DOI:10.11113/jt.v82.14535
摘要
This research focused on the fabrication of castor-based polyurethane composite (CPUC) filled with waste carbon tyres (WCT) with particle size of 200 µm that acts as reinforcing filler. WCT was first sieved using a sieving machine to obtain uniform particle size. WCT loading was varied at 0wt%, 2wt%, 4wt% and 6wt%. The effect of WCT loading in CPUC was evaluated based on their foam reaction time, apparent density, rheology, compression strength, morphology and thermal properties. The foam reaction time of CPUC achieved was in the range of industrial PU grout’s properties. The rheology index and compression strength of CPUC decreased with increasing WCT loading. CPUC with 2wt% of WCT loading achieved the optimum compression strength where it increased from 2.58 MPa to 3.39 MPa with the improvement of 31.40% compared to neat PU. FESEM micrograph showed that CPUC consists of closed foam cell indicating the rigidity of the CPUC. The addition of 2wt% of WCT resulted in achieving the optimum thermal stability of CPUC where CPUC2 had the highest char residue content. The high residue content indicated that CPUC2 had the lowest decomposition of elements as WCT acted as heat barrier in CPUC matrix thus increasing the thermal stability of CPUC2.
科研通智能强力驱动
Strongly Powered by AbleSci AI