Title :
Study on Polypropylene Matrix Composites Filled with Glass Fiber Recycled from Waste Printed Circuit Board
Author :
Liang, Haifeng ; Sun, Shuiyu ; Long, Laishou ; Li, Shenyong ; Zhu, Zao ; Liu, Jingyong ; Yang, Fan ; Zhong, Sheng
Author_Institution :
Fac. of Environ. Sci. & Eng., Guangdong Univ. of Technol., Guangzhou, China
Abstract :
At the first stage of this work, waste printed circuit board was pyrolyzed under vacuum in a self-made batch pilot scale fixed bed reactor, and the glass fiber (GF) was separated from the pyrolysis residues by gravity method and purified by calcination in the air. Then, the GF/polypropylene (PP) composites was prepared by means of injection molding. The influence of GF particle size, mass fraction and surface pretreatment on the properties of composites was researched respectively. The results have shown that the GF of 0.45mm pretreated by silane coupling agents can effectively improve the characteristics of GF/PP composites. The mechanical and thermal properties were increased in the range of up to 30%GF and decreased with further increase in GF dosage. The optimum properties of GF/PP composites can be obtained at the GF content of 30%. Compared to pure PP, the increment of flexural modulus, flexural strength, tensile strength and impact strength is 68.42%, 31.16%, 25.93% and 41.38%, respectively. And the Vicat softening temperature (VST) is increased by 3.2°C.
Keywords :
bending strength; glass fibre reinforced composites; impact strength; injection moulding; particle size; printed circuits; purification; pyrolysis; recycling; surface treatment; tensile strength; GF particle size; Vicat softening temprature; calcination; flexural modulus; flexural strength; glass fiber; gravity method; impact strength; injection molding; mass fraction; polypropylene matrix composites; purification; pyrolysis; self-made batch pilot- scale fixed bed reactor; silane coupling agents; surface pretreatment; tensile strength; waste printed circuit board; Computers; Distributed control; Monitoring; composites; glass fibre; polypropylene; waste printed circuit board;
Conference_Titel :
Computer Distributed Control and Intelligent Environmental Monitoring (CDCIEM), 2011 International Conference on
Conference_Location :
Changsha
Print_ISBN :
978-1-61284-278-3
Electronic_ISBN :
978-0-7695-4350-5
DOI :
10.1109/CDCIEM.2011.165