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Interlaminar prestressing reinforcement of epoxy/glass fiber composites

机译:环氧/玻璃纤维复合材料的InterlaMINAR预应力加固

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摘要

This paper describes an innovative through-thickness fiber reinforcement technology that employs in situ shrinking fibers to provide supplemental strength-enhancing interlaminar prestresses for fiber-reinforced polymeric laminate structures. Interlaminar stitched fibers shrink and provide prestress. The shrinkage is heat-activated and timed to coincide with epoxy-curing steps. This new technology includes the design and fabrication of in situ shrinking fibers to improve the peel strength of epoxy/glass fiber composite layers. The epoxy specimens were shrink-reinforced under four different conditions; the fibers were activated when the epoxy matrix was cured for 4, 12, and 20 h, or without having any curing time beforehand. Then, the peel strengths and flexural strengths were compared. Also, in-plane tensile tests were conducted under identical conditions to investigate whether the through-thickness shrinking fibers affect the in-plane properties. The results indicated that the maximum improvement from the fiber activation was shown when the epoxy was cured for 4 h, while there was no significant effect from the in-plane tensile test.
机译:本文介绍了一种创新的贯通厚度纤维增强技术,其采用原位收缩纤维,以提供纤维增强聚合物层压结构的补充强度增强层间预应力。 Interlaminar缝合纤维缩小并提供预应力。收缩率是热活化的,并定时以与环氧树脂固化步骤重合。这种新技术包括原位收缩纤维的设计和制造,以提高环氧/玻璃纤维复合层的剥离强度。环氧标本在四种不同条件下收缩加固;当环氧基质固化4,12和20小时时,纤维被激活,或者预先使用任何固化时间。然后,比较剥离强度和弯曲强度。而且,在相同的条件下进行在线拉伸试验,以研究通孔厚度收缩纤维是否影响面内性质。结果表明,当环氧树脂固化4小时时,显示了纤维活化的最大改善,而从面内拉伸试验没有显着影响。

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