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A study on mechanical properties of carbon fiber reinforced plastics by three-point bending testing and transverse static response

机译:碳纤维增强塑料力学性能的三点弯曲试验和横向静响应研究

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CFRP composite materials are used increasingly in various fields such as space and aviation industry, architectural structures, shipbuilding materials, sporting goods, and interior and structural materials of automobiles due to the excellence of mechanical characteristics as well as light weight, heat resistance, and control characteristics. Stacking plates of CFRP composite materials, which are used increasingly because of these unique characteristics, have the properties of uneven quality and anisotropic nature unlike general metallurgical materials as they are stacking plates of composite materials in the combination of different types of materials. Hence, specimens of stacking plates of CFRP composite materials were manufactured by changing orientation angles in three kinds of quasi-isotropic plies such as (0°/45°/90°/-45o){sub}(6S), ((0{sub}3)°/(45{sub}3)°/(90{sub}3)°/(-45{sub}3)°){sub}(2S), and ((0{sub}6)°/(45{sub}6)°/(90{sub}6)°/(-45{sub}6)°){sub}S and also in three kinds of cross plies such as (0°/90°/0°/90°){sub}(6S), ((0{sub}3)°/(90{sub}3)°/(0{sub}3)°/(90{sub}3)°){sub}(2S), and ((0{sub}6)°/(90{sub}6)°/(0{sub}6)°/(90{sub}6)°){sub}s. In this study, it was possible to obtain the following results by carrying out three-point bending testing and transverse bending test in order to find out mechanical characteristics according to orientation angles by stacking in six different types with the changes of stacking composition methods of CFRP composite materials. As interface number increases, the maximum load was increased and specimens stacked in quasi-isotropic plies had large operations in its maximum toad rather than cross plies. Therefore, it was found that it is correct to stack in quasi-isotropic plies when composing stacking of CFRP composite materials.
机译:CFRP复合材料因其优异的机械特性以及轻巧,耐热和控制性强的特性,越来越广泛地用于航天和航空工业,建筑结构,造船材料,体育用品以及汽车内部和结构材料等各个领域。特征。由于这些独特的特性而被越来越多地使用的CFRP复合材料堆垛板具有质量不均和各向异性的特性,这与一般的冶金材料不同,因为它们是不同类型材料组合而成的复合材料堆垛板。因此,通过在(0°/ 45°/ 90°/ -45o){sub}(6S),(((0 { sub} 3)°/(45 {sub} 3)°/(90 {sub} 3)°/(-45 {sub} 3)°){sub}(2S)和((0 {sub} 6) °/(45 {sub} 6)°/(90 {sub} 6)°/(-45 {sub} 6)°){sub} S以及三种交叉层,例如(0°/ 90° / 0°/ 90°){sub}(6S),((0 {sub} 3)°/(90 {sub} 3)°/(0 {sub} 3)°/(90 {sub} 3)° ){sub}(2S)和((0 {sub} 6)°/(90 {sub} 6)°/(0 {sub} 6)°/(90 {sub} 6)°){sub} s 。在本研究中,通过改变六种不同类型的CFRP的堆垛方法,通过进行六点堆垛来进行三点弯曲试验和横向弯曲试验,以便根据取向角找出机械特性,可以获得以下结果。复合材料。随着界面数量的增加,最大载荷增加,并且堆积在准各向同性层中的标本在其最大蟾蜍而不是交叉层中具有较大的操作能力。因此,发现在构成CFRP复合材料的堆叠时堆叠为准各向同性的层是正确的。

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