Kim Jong Won, Lee Joon Seok
Regional Research Institute for Fiber & Fashion Materials, Yeungnam University, Gyeongsan 712-749, Korea.
Department of Textile Engineering and Technology, Yeungnam University, Gyeongsan 712-749, Korea.
Materials (Basel). 2016 May 6;9(5):344. doi: 10.3390/ma9050344.
A laminated composite was produced using a thermoplastic prepreg by inserting an interleaved film with the same type of matrix as the prepreg during the lay-up process to improve the low interlaminar properties, which is a known weakness of laminated composites. Carbon fiber fabric (CFF) and polypropylene (PP) were used to manufacture the thermoplastic prepregs. Eight prepregs were used to produce the laminated composites. Interleaved films with different thicknesses were inserted into each prepreg. The physical properties of the composite, such as thickness, density, fiber volume fraction (), and void content (), were examined. The tensile strength, flexural strength, interlaminar shear strength (ILSS), impact property, and scanning electron microscopy (SEM) were used to characterize the mechanical properties. Compared to the composite without any inserted interleaved film, as the thickness of the inserted interleaved resin film was increased, decreased by 51.45%. At the same time, however, the tensile strength decreased by 8.75%. Flexural strength increased by 3.79% and flexural modulus decreased by 15.02%. Interlaminar shear strength increased by 11.05% and impact strength increased by 15.38%. Fracture toughness of the laminated composite was improved due to insertion of interleaved film.
通过在铺层过程中插入与热塑性预浸料具有相同类型基体的夹层薄膜,使用热塑性预浸料制备了层压复合材料,以改善层间性能较低的问题,这是层压复合材料已知的一个弱点。使用碳纤维织物(CFF)和聚丙烯(PP)制造热塑性预浸料。使用八个预浸料来生产层压复合材料。将不同厚度的夹层薄膜插入每个预浸料中。研究了复合材料的物理性能,如厚度、密度、纤维体积分数()和空隙率()。使用拉伸强度、弯曲强度、层间剪切强度(ILSS)、冲击性能和扫描电子显微镜(SEM)来表征机械性能。与未插入任何夹层薄膜的复合材料相比,随着插入的夹层树脂薄膜厚度增加, 降低了51.45%。然而,与此同时,拉伸强度下降了8.75%。弯曲强度提高了3.79%,弯曲模量下降了15.02%。层间剪切强度提高了11.05%,冲击强度提高了15.38%。由于插入了夹层薄膜,层压复合材料的断裂韧性得到了改善。