标题: | 应变率对纤维复合材料侧向抗压强度影响之探讨 Investigating Strain Rate Effect on Transverse Compressive Strength of Fiber Composites |
作者: | 郭浚清 Jui-Ching Kuo 蔡佳霖 Jia-Lin Tsai 机械工程学系 |
关键字: | 应变率;侧向抗压强度;纤维复合材料;面外剪力强度;偏轴;奈米复合材料;面内剪力强度;扫描式电子显微镜;Strain Rate;Transverse Compressive Strength;Fiber Composites;Out-of-plane shear strength;off-axis;nanocomposite;In-plane shear strength;SEM |
公开日期: | 2004 |
摘要: | 本论文主要研究应变率对纤维复合材料侧向抗压强度的影响。玻璃纤维/环氧树脂与碳纤维/环氧树脂之复合材料在本研究中一并探讨。为了证明解应变率的影响,制造完成的复材块状试片,将以每秒10-4至 700的应变率,在侧向方向测试直到破坏。实验观察发现抗压强度对应变率非常敏感,因而可利用一个半对数函数来描述侧向抗压强度对应变率的灵敏度。并且,将发现试片的主要破坏过程,是由于跟受力方向夹角约32度之平面上的剪力破坏。由此,将抗压破坏应力籍由莫耳圆之强度分析,可得到没有侧向方向正向力时的面外剪力强度。碳纤维/环氧树脂的明显破坏机制为纤维与基材间的剥离,然而,玻璃纤维/环氧树脂,其破坏机制变成基材的破坏。为提高侧向抗压强度,制造出含有机黏土的玻璃纤维/环氧树脂奈米复合材料以用于侧向方向测试。可以发现复合材料包含有机黏土时,其相对玻璃纤维/环氧树脂的侧向抗压强度是增大的,其归因于纤维与基材间界面黏着力的提升。 This research aims to investigate strain rate effect on transverse compressive strength of unidirectional fiber composites. Both glass/epoxy and graphite/epoxy composites were considered in this study. To demonstrate strain rate effect, composite brick specimens were fabricated and tested to failure in the transverse direction at strain ranges from 10-4/s to 700/s. Experimental observations reveal that the compressive strength is sensitive to the strain rates. A semi-logarithmic function was employed to describe the rate sensitivity of the transverse compressive strength. Moreover, it was found that the main failure mechanism of the specimens is the shear failure on the plane with around 32 degree to the loading direction. As a result, the out-of-plane shear strength without the transverse normal stresses was obtained from the compressive failure stress through Mohr’s strength analysis. The dominant failure mechanism for the graphite/epoxy composites is fiber and matrix debonding, however, for glass/epoxy composites, it becomes the matrix failure. To improve the transverse compressive strength, glass/epoxy nanocomposites with organoclay were fabricated, and then tested in the transverse direction. It was found the composites with the presence of the organoclay, the corresponding transverse compressive strength of glass/epoxy is enhanced, which could be attributed to the improved interfacial bonding between the fiber and matrix. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009214580 http://hdl.handle.net/11536/71780 |
显示于类别: | Thesis |
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