首页> 外文期刊>Journal of Composite Materials >The mechanical and physical properties of nylon 6/glass fiber-reinforced hybrid composites manufactured by thermal and ultraviolet-cured pultrusion methods
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The mechanical and physical properties of nylon 6/glass fiber-reinforced hybrid composites manufactured by thermal and ultraviolet-cured pultrusion methods

机译:尼龙6 /玻璃纤维增强混合复合材料的机械和物理性能通过热和紫外线固化的拉挤拉伸方法制造

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摘要

In this study, the effect of hybridizing glass fiber-reinforced polymer composites with nylon 6 fibers on the physical and mechanical properties of composites was investigated experimentally. The ultraviolet-cured and thermal pultrusion methods were employed for manufacturing the glass fiber-reinforced polymer and hybrid composite rods containing different volume percentages of nylon 6 fibers at low and high temperatures. The effects of the nylon 6 fibers and the pultrusion methods were investigated on the curing degree, the void content, the diameter expansion, the surface characteristics, and the quasi-static tensile and Charpy impact properties of the composite rods. The ultraviolet-cured hybrid composites showed superior mechanical properties than the thermally cured samples indicating the sensitivity of nylon 6 fibers to high-temperature curing. Moreover, the curing speed of ultraviolet-cured pultrusion was significantly higher than the thermal pultrusion. Delamination and fiber pull-out were the dominant damage mechanisms in the hybrid composites due to the low interfacial strength between the nylon 6 fibers and matrix.
机译:在本研究中,实验研究了将玻璃纤维增​​强聚合物复合材料与尼龙6纤维杂交的效果进行了实验研究了复合材料的物理和力学性质上。采用紫外线固化和热拉挤成型方法用于制造玻璃纤维增​​强聚合物和含有不同体积百分比的尼龙6纤维在低温和高温下的杂种复合杆。研究了尼龙6纤维的效果,对复合杆的固化度,空隙含量,直径,表面特性和准静态拉伸和夏比冲击性能进行了研究。紫外线固化的混合复合材料显示出比导热样品更优异的机械性能,表明尼龙6纤维对高温固化的敏感性。此外,紫外线固化覆膜的固化速度显着高于热浆。除尼龙6纤维和基质之间的界面强度低,分层和纤维拉出是混合复合材料中的主要损伤机制。

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