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首页> 外文期刊>Journal of Composite Materials >Fatigue and tensile behaviors of fiber-reinforced thermosetting composites embedded with nanoparticles
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Fatigue and tensile behaviors of fiber-reinforced thermosetting composites embedded with nanoparticles

机译:嵌入纳米粒子的纤维增强热固性复合材料的疲劳和拉伸行为

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The development of studying nanocomposites has grown up rapidly in the last decade. The objective of the current research is to study the influence of incorporating cellulose nanocrystals on the mechanical properties of polyester resins, as well as to develop continuous filament e-glass fiber-reinforced polyester nanocomposites, which combine traditional composites with the added advantages of nanocomposites. Cellulose nanocrystals were uniformly dispersed into the polyester resin by an ultrasonic processor. The incorporation and dispersion of cellulose nanocrystals were a state-of-the-art method aimed at overcoming poor dispersion problems at low weight fractions of nanoparticles. Three weight percentages of cellulose nanocrystals were prepared, which were 2%, 4% and 6%. Fatigue and tensile specimens were manufactured by resin transfer molding process. Cellulose nanocrystals were fully characterized by using X-ray diffraction, transmission electron microscopy, Fourier-transform infrared spectroscopy and zeta-sizer analysis. The optimum incorporation percentage of cellulose nanocrystals was used to prepare glass fiber-reinforced polyester specimens containing cellulose nanocrystals. Tensile and fatigue behaviors of glass fiber-reinforced polyester composites were evaluated by means of universal testing machine and rotating bending fatigue machine. A series of testing specimens for each property was examined in accordance with the corresponding ASTM and JIS standards. The experimental results showed that the addition of 4% cellulose nanocrystals to polyester matrix lead to the optimum tensile and fatigue properties. Mechanical properties were improved through the enhanced material design and proper selection of compatible nanoparticles, and adding cellulose nanocrystals in a weight fraction that does not affect the mechanical properties of glass fiber-reinforced polyester nanocomposites negatively. The presented design of material and geometry have shown promising re
机译:研究纳米复合材料的发展在过去十年中迅速发展。目前研究的目的是研究将纤维素纳米晶体掺入聚酯树脂的机械性能的影响,以及开发连续长丝E-玻璃纤维增​​强聚酯纳米复合材料,其将传统复合材料与纳米复合材料的添加优点相结合。通过超声波处理器将纤维素纳米晶体均匀地分散到聚酯树脂中。纤维素纳米晶体的掺入和分散是一种最新的方法,旨在克服纳米颗粒的低重量级分克服的不良分散问题。制备三个重量纤维素纳米晶体,其为2%,4%和6%。通过树脂转移模塑方法制造疲劳和拉伸试样。通过使用X射线衍射,透射电子显微镜,傅里叶变换红外光谱和Zeta-Sizer分析,完全表征纤维素纳米晶体。纤维素纳米晶体的最佳掺入百分比用于制备含有纤维素纳米晶体的玻璃纤维增​​强聚酯样品。通过通用试验机和旋转弯曲疲劳机评估玻璃纤维增​​强涤纶复合材料的拉伸和疲劳行为。根据相应的ASTM和JIS标准检验各种属性的一系列测试标本。实验结果表明,向聚酯基质中加入4%纤维素纳米晶体导致最佳拉伸和疲劳性能。通过增强的材料设计和适当的相容纳米颗粒选择力学性能改善了机械性能,并在负重级分中添加纤维素纳米晶体,其不会产生玻璃纤维增​​强聚酯纳米复合材料的力学性能。所提出的材料和几何设计表明有前途的重新

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