Polyethylene Terephthalate/Carbon Fabric/Polyurethane Foam Sandwich Composites: Flame Retardance and Mechanical Properties

被引:0
|
作者
Liwei Wu
Jingyan Ban
Qian Jiang
Ting-Ting Li
Bing-Chiuan Shiu
Shih-Yu Huang
Ching-Wen Lou
Jia-Horng Lin
机构
[1] Tianjin Polytechnic University,Innovation Platform of Intelligent and Energy
[2] Minjiang University,Saving Textiles, School of Textile Science and Engineering
[3] Feng Chia University,Fujian Key Laboratory of Novel Functional Fibers and Materials
[4] Asia University,Laboratory of Fiber Application and Manufacturing, Department of Fiber and Composite Materials
[5] China Medical University,Department of Bioinformatics and Medical Engineering
[6] Qingdao University,School of Chinese Medicine
[7] Asia University,College of Textile and Clothing
来源
Fibers and Polymers | 2019年 / 20卷
关键词
Polyethylene terephthalate (PET); Carbon fabric (CF); Polyurethane (PU); Sandwich composites; Flame retardance;
D O I
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中图分类号
学科分类号
摘要
Polyethylene terephthalate (PET) nonwoven fabrics, carbon fabrics (CF), and flexible polyurethane (PU) foams are made into novel sandwich composites using one-step molding. The flame retradance and mechanical properties of the sandwich composites are evaluated, examining the influences of the content of flame retardant agent (20, 30, 40, and 50 wt%) and areal density of PET panels (200, 300, and 400 g/m2). The test results show that the PET/CF/PU sandwich composites are rated flame retardant as V0 and do not generate melts. The failure mode of PET/CF/PU sandwich composites converts from overall fracture to layered fracture as a result of increasing the flame retardant agent. The tensile strength at break of PET/CF/PU sandwich composites with corresponding PET panels is 650 N for 200 g/m, 928 N for 300 g/m, and 1744 N for 400 g/m2, which are 42.63 %, 60.48 %, and 77.85 % greater than those of the PET/PU sandwich composites. Moreover, the bursting strength of PET/CF/PU sandwich composites with corresponding PET panels is 3322 N for 200 g/m2, 3869 N for 300 g/m2, and 4978 N for 400 g/m2, which are 195%, 180%, and 143% greater than those of the PET/PU sandwich composites.
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页码:1277 / 1283
页数:6
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