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Improvement of fatigue life and prevention of internal crack initiation of chopped carbon fiber reinforced plastics modified with micro glass fibers

机译:用微玻璃纤维改性切碎碳纤维增强塑料内裂纹疲劳寿命及预防疲劳寿命及预防

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The purpose of this study is to improve fatigue properties of chopped carbon fiber reinforced plastics fabricated by SMC (Sheet Molding Compound) method and to clarify the mechanism for improvement. To enhance the properties, micro glass fibers with 500nm in diameter were added directly into vinyl ester resin with 0.3wt% contents. The chopped carbon fiber reinforced plastics were fabricated and cured at room temperature for 1hour under IMPa and then at 60degree-C for 3hours. After curing, the fabricated plate was cut into the dimension of specimen. Tensile and bending strength and fatigue life of chopped carbon fiber reinforced plastics were investigated by tensile and three point bending test and cyclic tension-tension test, respectively. The behavior of strain concentration around the tips of carbon fiber were discussed with model specimen on the observations with DIC (Digital Image Correlation) method and polarizing microscope under tensile loading, in which one chopped carbon fiber was embedded into the matrix. In conclusion, when toughened vinyl ester resin modified with micro glass fibers was used as matrix, tensile and bending strength and fatigue life of chopped carbon fiber reinforced plastics were increased 56.6%, 49.8% and 14 to 23 times compared with those of unmodified specimens. It should be explained that static and dynamic properties of chopped carbon fiber reinforced plastics were improved by that crack initiation and propagation were prevented according to the prevention of the locally increasing of strain around the tip of carbon fiber, when vinyl ester resin modified with micro glass fibers was used as matrix.
机译:本研究的目的是为了提高短碳纤维的疲劳性能增强塑料制成由SMC(片状模塑料)的方法和澄清的改进的机制。为了提高性能,在直径为500nm的微玻璃纤维直接加入到与0.3重量%的含量的乙烯基酯树脂。短切碳纤维增强塑料中用于3小时制造,并在室温下IMPA然后固化1小时在60度-C。固化之后,所制造的板切成试样的尺寸。拉伸和的短切碳纤维增强塑料的弯曲强度和疲劳寿命被拉伸和三个点分别弯曲试验和循环张力拉伸试验,调查。围绕碳纤维的尖端应变集中的行为用与DIC观测模型试样在拉伸负荷下(数字图像相关)方法和偏光显微镜,其中,一个切断的碳纤维嵌入到基体中所讨论的。总之,当增韧乙烯基酯树脂与微玻璃纤维改性作为基体,拉伸强度和弯曲强度和短切碳纤维的疲劳寿命钢筋与那些未改性的试样相比,塑料分别增加56.6%,49.8%和14至23倍。它需要说明的是切断的碳纤维的静态和动态特性增强塑料用由该裂纹萌生和扩展改善根据预防的周围的碳纤维的前端的局部增加应变的,当改性的微玻璃乙烯基酯树脂被阻止纤维被用作基质。

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