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The experiment of four-point bending behaviours of helicoidally laminated CFRPs

机译:螺旋层合碳纤维增强塑料的四点弯曲性能试验

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The purpose of this study is to mitigate the brittle behaviour of CFRP. CFRP is a composite material of carbon fibre and a thermosetting resin. As a feature, it has a low density than metallic materials such as steel and aluminium, and it is excellent in specific strength, specific stiffness, and is corrosion resistant. In the civil engineering field, CFRP is expected to be utilized for durability improvement and long life achievement. However, it is necessary to be careful when using it as a primary member, because the behaviour at the time of fracture is very brittle, thereby it is necessary to set a large safety factor at the time of design. One way to achieve the purpose of the current study is to follow a biological structure, so-called biomimetics. In this study, mantis shrimp is selected. The characteristic structure of its forefoot is that chitin fibres are stacked while changing helicoidally their angles. It is said that the forefoot can withstand a thousand times the force of its own weight because of its structure. Helicoidally laminated CFRP is fabricated by processing prepreg sheets of unidirectional carbon fibres. Four laminated structures were examined in which four-point bending experiments were carried out under displacement control of 2 mm/min, and load and displacement were recorded. During the experiments, the specimens were observed until fracture with a video camera. As a result, the brittle behaviour was improved significantly as the orientation angle difference of the fibre sheets decreased.
机译:这项研究的目的是减轻CFRP的脆性行为。 CFRP是碳纤维和热固性树脂的复合材料。作为一个特征,其比钢和铝等金属材料的密度低,并且比强度,比刚度优异并且耐腐蚀。在土木工程领域,CFRP有望用于提高耐久性和延长使用寿命。但是,将其用作主要构件时必须小心,因为断裂时的行为非常脆弱,因此在设计时必须设定较大的安全系数。实现当前研究目的的一种方法是遵循生物结构,即所谓的仿生体。在这项研究中,选择了螳螂虾。它的前脚的特征结构是几丁质纤维堆叠在一起,同时螺旋状改变其角度。据说由于其结构,前脚可以承受其自重的一千倍的力。螺旋层压CFRP是通过处理单向碳纤维的预浸料片制成的。检查了四个层压结构,其中在2 mm / min的位移控制下进行了四点弯曲实验,并记录了载荷和位移。在实验过程中,观察样品直至用摄像机将其破坏。结果,随着纤维片的取向角差减小,脆性得到显着改善。

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