碳/玻璃杂化热塑性复合材料棒的横向压缩性能

K. Naito, Chiemi Nagai, Yoshihisa Tanaka
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引用次数: 6

摘要

新型碳/玻璃混合热塑性复合材料棒具有不同的碳/玻璃比(24K1P, 24K2P,和24K3P)的商业制造。研究了这三种混合棒的横向压缩性能。荷载-位移曲线非线性大,形状复杂。在初始阶段,荷载通过增加变形逐渐增大。在第二阶段,荷载-位移关系几乎与位移(稳定变形区)成线性关系。随后,随着变形的进行,荷载-位移曲线呈现出明显的斜率增加趋势。用数码显微镜观察了混合棒的断裂行为。观察到的断裂路径在加载点、碳纤维束/热塑性环氧树脂截面中心以及玻璃纤维束/热塑性环氧树脂与碳纤维束/热塑性环氧树脂之间的界面处几乎形成了直线。
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Transverse Compressive Properties of Carbon/Glass Hybrid Thermoplastic Composite Rods
Novel carbon/glass hybrid thermoplastic composite rods having different carbon/glass ratios (24K1P, 24K2P, and 24K3P) are commercially fabricated. The transverse compressive properties of these three hybrid rods were investigated. The load-displacement curve showed large nonlinear behavior and a complicated shape. In the initial stage, the load gradually increased by increasing the deformation. In the second stage, the load-displacement relation was almost linearly proportional to the displacement (stable deformation region). Subsequently, the slope decreased slightly, before the load-displacement curve showed a clear slope increase as the deformation proceeded. The fracture behavior of the hybrid rods was examined using a digital microscope. The observed fracture paths formed almost straight lines running through the loading point, the center of the cross section of carbon fiber bundles/thermoplastic epoxy, as well as the interface between the glass fiber bundles/thermoplastic epoxy and the carbon fiber bundles/thermoplastic epoxy.
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