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<p class="TitleMain" style="text-align: justify;"><strong>Finite element analysis of mechanical properties of 2.5D angle-interlock woven composites: Part 1— Full-cell model and its validation</strong></p><p><strong> </strong></p>

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Title Statement <p class="TitleMain" style="text-align: justify;"><strong>Finite element analysis of mechanical properties of 2.5D angle-interlock woven composites: Part 1— Full-cell model and its validation</strong></p><p><strong> </strong></p>
 
Added Entry - Uncontrolled Name Song, Jian ; Nanjing university of aeronautics and astronautics
Wen, Weidong ; Nanjing university of aeronautics and astronautics
Cui, Haitao ; Nanjing university of aeronautics and astronautics
The work was supported by Jiangsu In-novation Program for Graduate Education [grant number KYLX_0237]
 
Uncontrolled Index Term 2.5D woven composites; Carbon fibre; Finite element analysis; Full-cell model; Inner-cell model; Mechanical properties
 
Summary, etc. <strong></strong><p class="Abstract" style="text-align: justify;">A new parameterized micro-structural model of 2.5D angle-interlock woven composites, named ‘full-cell model’, has been established. In order to verify the validation of finite element model (FEM) based on the full-cell model, the effective elastic properties and the mechanical response of 2.5D woven composites are presented. Additionally, the effects of fibre aggregation density and thickness on the mechanical properties are also investigated in detail. The experimental results are compared with the values of FEM based on the full-cell model and inner-cell model.</p>
 
Publication, Distribution, Etc. Indian Journal of Fibre & Textile Research (IJFTR)
2017-05-05 14:07:17
 
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http://op.niscair.res.in/index.php/IJFTR/article/view/7044
 
Data Source Entry Indian Journal of Fibre & Textile Research (IJFTR); ##issue.vol## 42, ##issue.no## 1 (2017): Indian Journal of Fibre & Textile Research
 
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