Effect of silane treatment on mechanical properties and thermal behavior of bamboo fibers reinforced polypropylene composites

Author:

Wang Qianting1234,Zhang Yu1234,Liang Weikang1234,Wang Jianjie1234,Chen Youxin5ORCID

Affiliation:

1. College of Materials Science and Engineering, Fujian University of Technology, Fuzhou, China

2. Fu Jian Provincial Key Laboratory of Advanced Materials Processing and Application, Fuzhou, China

3. Fujian Provincial Precision Processing Manufacturing Engineering Research Center, Fuzhou, China

4. Mold Engineering Research Center of Fujian Province, Fuzhou, China

5. College of Materials Science and Engineering, Fuzhou University, Fuzhou, China

Abstract

In this work, the surface of the bamboo fibers (BF) was treated with three kinds of silane coupling agents terminated with amino functional groups (KH550), epoxy functional groups (KH560), and methyl functional groups (KH570) to improve fiber–matrix adhesion. The effects of silane treatment on the mechanical properties and thermal behavior of BF/polypropylene (PP) composites were investigated. Mechanical test results showed that the order of modification effectiveness was KH570 > KH550 > KH560. KH570 treated fiber composite exhibited the best mechanical properties. The tensile strength and flexural strength of 5 wt% KH570 treatment reached to 36.1 and 54.7 MPa, which were 15.4% and 23.6% higher than those of UBF/PP composites. Simultaneously, the thermal stability increased from 467.0°C (UBF) to 470.6°C (KH-570 treated BF). An increase in crystallization temperature (1.7°C) and a decrease in crystallinity (5.8%) occurred upon the addition of 5% KH570 silanes treated bamboo fibers.

Funder

Fujian Provincial Second Batch of Special Support Talents “Double Hundred Plan” Funding Plan

Central Government Guiding Local Science and Technology Development Project

Fujian Provincial University Leadership Funding Plan

state key laboratory of material processing and die and mould technology

fujian provincial department of science and technology

Publisher

SAGE Publications

Subject

General Materials Science

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