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Testing Procedure for Fatigue Characterization of Steel-CFRP Hybrid Laminate Considering Material Dependent Self-Heating

机译:考虑材料依赖性自加热的钢-CFRP杂交层压板疲劳表征的测试程序

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摘要

Combining carbon fiber reinforced polymers (CFRP) with steel offers the potential of utilizing the desired characteristics of both materials, such as specific strength/stiffness and fatigue strength of fiber reinforced polymers (FRP) and impact resistance of metals. Since in such hybrid laminates multiple material layers are combined, a gradual failure is likely that can lead to changes in mechanical properties. A failure of the metal partner leads to an increase in stress on the FRP, which under fatigue load results in increased self-heating of the FRP. Therefore, a suitable testing procedure is required and developed in this study, to enable a reproducible characterization of the mechanical properties under fatigue load. The resulting testing procedure, containing multiple frequency tests as well as load increase and constant amplitude tests, enabled characterization of the fatigue performance while never exceeding a testing induced change in temperature of 4 K. In addition to the development of the testing procedure, an insight into the manufacturing induced residual stresses occurring in such hybrid laminates, which impacts the load-bearing capacity, was established using finite element simulation. The gathered data and knowledge represents a basis for future in-depth investigations in the area of residual stress influence on the performance of hybrid laminates and highlights its importance, since not only the used testing procedure determines the measured fatigue performance.
机译:将碳纤维增强聚合物(CFRP)与钢相结合,提供了利用两种材料所需特性的潜力,例如纤维增强聚合物(FRP)和金属抗冲击性的特定强度/刚度和疲劳强度。由于在这种混合层压板中,组合多种材料层,因此可能导致机械性能变化的逐渐发生故障。金属伴侣的失败导致FRP上的应力增加,这在疲劳负荷下导致FRP的自加热增加。因此,在该研究中需要和开发合适的测试程序,以使得能够在疲劳负荷下的机械性能进行可再现表征。由此产生的测试程序,包含多个频率测试以及负载增加和恒定幅度测试,使得疲劳性能的表征,同时从未超过测试诱导的温度变化4 K.除了测试程序的开发外,还有洞察力使用有限元模拟建立了在这种混合层压板中发生的制造诱导的残余应力,这会影响承载能力。收集的数据和知识代表了对残余压力影响的未来深入调查对杂交层压板的性能的深入调查,并突出其重要性,因为不仅使用了所使用的测试程序确定测量的疲劳性能。

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