Impact properties of silica particle modified glass fiber reinforced epoxy composite

被引:23
作者
Cao, Y [1 ]
Cameron, J [1 ]
机构
[1] Queens Univ, Dept Mech & Mat Engn, Kingston, ON K7L 3N6, Canada
关键词
silica particle; glass fiber; epoxy; modification; prestressing; composite; impact;
D O I
10.1177/0731684406063536
中图分类号
TB33 [复合材料];
学科分类号
摘要
The glass fiber (GF) reinforced epoxy composite samples used in this study are prepared by four different standardized methods, designated as Methods A, B, C, and D. The GF that is modified with silica particles and prestressed during curing in the composite system (Method D) is proved to be significantly superior as a potential candidate material for use in high impact applications. The impact property of the so-finished composite samples is compared, in turn, with other composite samples prepared by the other methods. There are clean fiber reinforced epoxy composite (Method A), modified GF reinforced epoxy composite (Method B), and prestressed clean GF reinforced epoxy composite (Method C). The results indicate that the impact property of the composites prepared by this novel Method D is greater by up to 100% in comparison with Method A and by lesser but, significant, amounts by the other two methods.
引用
收藏
页码:761 / 769
页数:9
相关论文
共 16 条
[1]  
CAO Y, 2005, J REINFORCED PLASTIC, V25, P347
[2]   Impact resistance of short fibre/particle reinforced epoxy [J].
Chang, L ;
Zhang, Z ;
Breidt, C .
APPLIED COMPOSITE MATERIALS, 2004, 11 (01) :1-15
[3]   POLYPROPYLENE COMPOSITES .2. STRUCTURE-PROPERTY RELATIONSHIPS IN 2-COMPONENT AND 3-COMPONENT POLYPROPYLENE COMPOSITES [J].
CHIANG, WY ;
YANG, WD ;
PUKANSZKY, B .
POLYMER ENGINEERING AND SCIENCE, 1992, 32 (10) :641-648
[4]   Investigation into the feasibility of viscoelastically generated pre-stress in polymeric matrix composites [J].
Fancey, KS .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2000, 279 (1-2) :36-41
[5]   Mechanical properties of poly(vinyl chloride)/wood flour/glass fiber hybrid composites [J].
Jiang, HH ;
Kamdem, DP ;
Bezubic, B ;
Ruede, P .
JOURNAL OF VINYL & ADDITIVE TECHNOLOGY, 2003, 9 (03) :138-145
[6]   FRACTURE ENERGY OF HYBRID CARBON AND GLASS-FIBER COMPOSITES [J].
KIRK, JN ;
MUNRO, M ;
BEAUMONT, PWR .
JOURNAL OF MATERIALS SCIENCE, 1978, 13 (10) :2197-2204
[7]   Carbon fiber reinforced phenolic resin/silica ceramer composites - Processing, mechanical and thermal properties [J].
Lin, JM ;
Ma, CCM ;
Tai, NH ;
Chang, WC ;
Tsai, CC .
POLYMER COMPOSITES, 2000, 21 (02) :305-311
[8]   Impact strength of fiber pre-stressed composites [J].
Motahhari, S ;
Cameron, J .
JOURNAL OF REINFORCED PLASTICS AND COMPOSITES, 1998, 17 (02) :123-130
[9]   Fibre prestressed composites: Improvement of flexural properties through fibre prestressing [J].
Motahhari, S ;
Cameron, J .
JOURNAL OF REINFORCED PLASTICS AND COMPOSITES, 1999, 18 (03) :279-288
[10]   THE ELEVATED-TEMPERATURE DEPENDENCE OF FRACTURE ENERGY MECHANISMS OF HYBRID CARBON GLASS-FIBER REINFORCED COMPOSITES [J].
MUNRO, M ;
LAI, CPZ .
JOURNAL OF MATERIALS SCIENCE, 1988, 23 (09) :3129-3136