工艺与制造英文2021被引 19
纳米SiO₂增强新型M形芯体泡沫填充聚合物复合材料夹芯板的弯曲强度
Flexural strength of foam‐filled polymer composite sandwich panel with novel M‐shaped core reinforced by <scp>nano‐SiO<sub>2</sub></scp>
Himan Khaledi, Yasser Rostamiyan · Islamic Azad University, Aliabad Katoul
摘要整理
本文通过实验研究了纳米SiO₂增强碳纤维增强复合材料(CFRP)夹芯板的弯曲强度,该夹芯板采用新型M形格栅芯体结构。实验采用真空辅助树脂传递模塑(VARRTM)工艺制备碳纤维-环氧树脂夹芯板,确保层合板无缺陷。随后向夹芯板芯体注入聚氨酯泡沫(PU)。通过三点弯曲加载测试确定夹芯板的弯曲强度。研究结果表明:(1)向碳纤维中添加1~3 wt%的纳米SiO₂对夹芯板弯曲强度的增强效果最佳;(2)聚氨酯泡沫填充显著提高了夹芯板的弯曲强度;(3)新型M形芯体结构能够有效延缓复合材料夹芯结构的屈曲和失效。该研究为开发高性能轻质夹芯复合材料提供了重要参考,M形芯体与纳米增强技术的结合为航空航天、风能等领域的应用奠定了基础。
相关论文
A review of recent developments in natural fibre composites and their mechanical performance
Composites Part A Applied Science and Manufacturing · 2015
Non-invasive electrical and magnetic stimulation of the brain, spinal cord, roots and peripheral nerves: Basic principles and procedures for routine clinical and research application. An updated report from an I.F.C.N. Committee
Clinical Neurophysiology · 2015
Lignocellulosic biomass: a sustainable platform for the production of bio-based chemicals and polymers
Polymer Chemistry · 2015
Design for Additive Manufacturing: Trends, opportunities, considerations, and constraints
CIRP Annals · 2016
Nanoimprint Lithography: Methods and Material Requirements
Advanced Materials · 2007
Nanocomposites: synthesis, structure, properties and new application opportunities
Materials Research · 2009
← 返回论文库整理:复材站编辑部