Crashworthiness Response of Filament Wound Kenaf/Glass Fibre-reinforced Epoxy Composite Tubes with Influence of Stacking Sequence under Intermediate-velocity Impact Load

被引:0
作者
A. B. M. Supian
S. M. Sapuan
M. Jawaid
M. Y. M. Zuhri
R. A. Ilyas
A. Syamsir
机构
[1] Universiti Putra Malaysia,Laboratory of Biocomposite Technology, Institute of Tropical Forestry and Forest Products (INTROP)
[2] Universiti Putra Malaysia,Advanced Engineering Materials and Composites Research Centre, Department of Mechanical and Manufacturing Engineering
[3] Universiti Teknologi Malaysia,Centre for Advanced Composite Materials
[4] Universiti Tenaga Nasional,Intitute of Energy Infrastructure, College of Engineering
[5] Jalan IKRAM - UNITEN,undefined
来源
Fibers and Polymers | 2022年 / 23卷
关键词
Energy absorption tubes; Hybrid composite tubes; Intermediate-velocity impact load; Stacking sequence; Filament winding;
D O I
暂无
中图分类号
学科分类号
摘要
The composite material in energy absorption tube application have gained a tremendous function as sacrificial structure device in automotive, marine, and aerospace engineering. Due to capabilities of composite material in reinforcement structure, many researchers have explored to tailor the composite material properties to withstand into impact load condition. This present study of filament wound kenaf/glass hybrid composite tube was fabricated with three different configurations of hybrid kenaf/glass fibre placement to obtained high capabilities of crashworthiness properties under intermediate-velocity impact load condition. Therefore, this present study has identified the hybridization technique of kenaf/glass fibre which tailored with various intraply stacking sequences parameter of filament winding technique to achieve better impact crashworthiness characteristic when compared with single synthetic glass composite fibre material. The arrangement of hybrid fibres in stacking sequence parameter has found that the hybrid specimen with high kenaf fibre fraction mass have enhanced 68 % of energy absorbing value and the failure mode behaviour was more stable compare to synthetic glass composite tube specimen.
引用
收藏
页码:222 / 233
页数:11
相关论文
共 151 条
  • [1] Rabiee A(2019)undefined Thin-Walled Struct. 135 109-undefined
  • [2] Ghasemnejad H(2017)undefined Compos. Sci. Technol. 151 52-undefined
  • [3] Albahash Z F(2016)undefined Compos. Part: A 90 489-undefined
  • [4] Ansari M N M(2018)undefined Def. Technol. 14 291-undefined
  • [5] Hu D(2005)undefined J. Mater. Process Technol. 162 65-undefined
  • [6] Zhang C(2006)undefined J. Mater. Process Technol. 172 394-undefined
  • [7] Ma X(2018)undefined Compos. Struct. 191 202-undefined
  • [8] Song B(2019)undefined Compos. Part B 176 1-undefined
  • [9] Supian A B M(2003)undefined J. Mater. Process Technol. 132 49-undefined
  • [10] Sapuan S M(2019)undefined Polym. Test. 79 106082-undefined