首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EFFECTS OF UV LIGHT AND MOISTURE ABSORPTION ON THE IMPACT RESISTANCE OF THREE DIFFERENT CARBON FIBER-REINFORCED COMPOSITES
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EFFECTS OF UV LIGHT AND MOISTURE ABSORPTION ON THE IMPACT RESISTANCE OF THREE DIFFERENT CARBON FIBER-REINFORCED COMPOSITES

机译:紫外光和吸湿对三种不同碳纤维增强复合材料抗冲击性的影响

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The purpose of this research was to determine the influence of material properties on the impact response of a laminate, whereby specimens were fabricated and cured under a vacuum and high temperature using three types of pre-impregnated (prepreg), carbon fibers, namely unidirectional fiber, plain weave woven fiber, and non-crimp fiber (NCF). Each carbon fiber panel, usually known for its low-impact properties, of 16 plies underwent impact testing using a low-velocity impactor and visual damage inspection by C-scan in order to measure the damage area and depth, before and after impact testing. These panels were treated with UV exposure and moisture conditioning for 20 days each. Water contact angles were taken into consideration to determine the hydrophobicity and hydrophillicity of the respective prepreg materials. Experimental results and damage analysis showed that UV exposure and moisture conditioning showcased the variation in impact response and behavior, such as load-carrying capacity, absorbed energy, and impact energy of the carbon fiber panels. This study illustrates that non-crimp carbon fiber laminates were far more superior relative to load capacity than woven and unidirectional laminates, with the NCF-AS laminate exhibiting the highest load capacity of 17,244 lb/in (pre-UV) with only 0.89% decrease after UV exposure. This same laminate also had a 1.54% decrease in sustaining impact and 31.4% increase in wettability of the panel. Moreover, the study shows how symmetric and asymmetric stacking sequences affect the impact behavior of non-crimp fiber laminates. These results may be useful for expanding the capacity of carbon fiber, lowering costs, and growing new markets, thus turning carbon fiber into a viable commercial product.
机译:本研究的目的是确定材料性质对层压板的影响响应的影响,由此使用三种预浸渍(预浸料坯),碳纤维,即单向纤维,在真空和高温下制造并固化标本。 ,普通编织纤维和非卷曲纤维(NCF)。每种碳纤维面板通常已知其低碰撞性能,16层的抗冲击测试使用低速冲击器和C扫描的视觉损坏检查,以测量冲击测试之前和之后的损伤区域和深度。将这些面板用UV暴露和水分调节处理20天。考虑到水接触角以确定各个预浸料材料的疏水性和热细胞。实验结果和损伤分析表明,UV暴露和水分调理展示了碳纤维板的载荷能力,吸收能量和冲击能量等冲击响应和行为的变化。本研究说明,非卷曲碳纤维层压板相对于负载能力比织造和单向层压板更优异,NCF - 作为层压板的载荷能力为17,244磅/ in(预紫外线)的载荷量,仅减少0.89%紫外线暴露后。同样的层压板也有1.54%的持续影响降低,面板润湿性增加31.4%。此外,该研究表明了对称和不对称的堆叠序列如何影响非压接光纤层压板的冲击性能。这些结果对于扩大碳纤维的能力,降低成本和生长新市场的能力可能是有用的,从而将碳纤维转化为可行的商业产品。

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