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首页> 外文期刊>Science and technology of advanced materials >Improvement of the mode II interface fracture toughness of glass fiber reinforced plastics/aluminum laminates through vapor grown carbon fiber interleaves
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Improvement of the mode II interface fracture toughness of glass fiber reinforced plastics/aluminum laminates through vapor grown carbon fiber interleaves

机译:通过气相生长碳纤维插入物改善玻璃纤维增​​强塑料/铝层压板的II型界面断裂韧性

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The effects of acid treatment, vapor grown carbon fiber (VGCF) interlayer and the angle, i.e., 0° and 90°, between the rolling stripes of an aluminum (Al) plate and the fiber direction of glass fiber reinforced plastics (GFRP) on the mode II interlaminar mechanical properties of GFRP/Al laminates were investigated. The experimental results of an end notched flexure test demonstrate that the acid treatment and the proper addition of VGCF can effectively improve the critical load and mode II fracture toughness of GFRP/Al laminates. The specimens with acid treatment and 10 g m?2 VGCF addition possess the highest mode II fracture toughness, i.e., 269% and 385% increases in the 0° and 90° specimens, respectively compared to those corresponding pristine ones. Due to the induced anisotropy by the rolling stripes on the aluminum plate, the 90° specimens possess 15.3%–73.6% higher mode II fracture toughness compared to the 0° specimens. The improvement mechanisms were explored by the observation of crack propagation path and fracture surface with optical, laser scanning and scanning electron microscopies. Moreover, finite element analyses were carried out based on the cohesive zone model to verify the experimental fracture toughness and to predict the interface shear strength between the aluminum plates and GFRP laminates.
机译:酸处理,气相生长碳纤维(VGCF)中间层以及铝(Al)板的滚动条与玻璃纤维增​​强塑料(GFRP)的纤维方向之间的夹角(即0°和90°)的影响研究了GFRP / Al层压板的II型层间力学性能。端部弯曲试验的实验结果表明,酸处理和适当添加VGCF可有效提高GFRP / Al层压板的临界载荷和II型断裂韧性。经过酸处理和添加10 gm ?2 VGCF的试样具有最高的II型断裂韧性,即与相应的原始试样相比,0°和90°试样分别增加269%和385%。那些。由于铝板上滚动条引起的各向异性,与0°试样相比,90°试样具有更高的II型断裂韧性15.3%–73.6%。通过光学,激光扫描和扫描电子显微镜观察裂纹扩展路径和断裂表面,探索了改善机理。此外,基于内聚力区域模型进行了有限元分析,以验证实验的断裂韧性并预测铝板和GFRP层压板之间的界面剪切强度。

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