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Deformation behavior of FRP-metal composites locally reinforced with carbon fibers

机译:用碳纤维局部增强的FRP-金属复合材料的变形行为

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摘要

This study investigates variations of hybrid laminates, consisting of one aluminum sheet and a unidirectional glass fiber (GF) reinforced polyamide 6 (PA6) basic structure with partial carbon fiber (CF) reinforcement. To create these heterogeneous FRP laminates, it is necessary to design and produce semi-finished textile-based products. Moreover, a warp knitting machine in conjunction with a warp thread offset unit was used to generate bionic inspired compounds. By the variation of stacking prior to the consolidation process of the hybrid laminate, an oriented CF reinforcement at the top and middle layer of the FRP is realized. In both cases the GFRP layer prevents contact between the aluminum and carbon fibers. In so doing, the high strength of carbon fibers can be transferred to the hybrid laminate in load directions with an active prevention of contact corrosion. The interface strength between thermoplastic and metal component was improved by a thermal spray coating on the aluminum sheet. Because of the high surface roughness and porosity, mechanical interlock was used to provide high interface strength without bonding agents between both components. The resulting mechanical properties of the hybrid laminates are evaluated by three point bending tests in different load directions. The effect of local fiber orientation and layer positioning on failure and deformation mechanism is additionally investigated by digital image correlation (DIC).
机译:本研究研究了一种铝板和单向玻璃纤维(GF)增强聚酰胺6(PA6)基本结构的混合层压材料的变化,其具有部分碳纤维(CF)加强件。为了创建这些异质FRP层压板,有必要设计和生产半成品基于纺织品的产品。此外,使用与经编螺纹偏移单元结合的经编机械产生仿生型化合物。通过在混合层压板的固结过程之前堆叠的变化,实现了FRP的顶部和中间层的取向CF增强。在两种情况下,GFRP层可防止铝和碳纤维之间的接触。在这样做时,碳纤维的高强度可以通过主动预防接触腐蚀,将碳纤维的高强度转移到载荷方向上。通过铝板上的热喷涂涂层改善了热塑性和金属部件之间的界面强度。由于高表面粗糙度和孔隙率,机械互锁用于提供高界面强度而不在两个组分之间粘合剂。通过不同负载方向的三点弯曲试验评价混合层压板的所得机械性能。通过数字图像相关(DIC)还研究了局部纤维取向和层定位对故障和变形机制的影响。

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