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首页> 外文期刊>Acta polytechnica >Fatigue Crack Initiation and Early Growth in GLARE 3 Fiber-metal Laminate Subjected to Mixed Tensile and Bending Loading
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Fatigue Crack Initiation and Early Growth in GLARE 3 Fiber-metal Laminate Subjected to Mixed Tensile and Bending Loading

机译:混合拉伸和弯曲载荷作用下GLARE 3纤维金属层压板的疲劳裂纹萌生和早期生长

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摘要

A special open-hole sheet specimen of GLARE fiber-metal laminate was used to simulate mixed loading similar to the loading of a riveted hole in a real fuselage skin structure. The effect of cyclic tension and secondary bending loading was studied. The notch region was observed through a microscope in order to detect the first fatigue crack initiation during fatigue loading. The number of cycles prior to crack initiation was measured, and the crack growth rate in the surface layer of the laminate was evaluated. The specimens were subjected to fatigue damage investigation in the inner layers of the laminate after termination of the test. A significant effect of secondary bending on fatigue crack initiation and early crack growth was found. The experimental results are discussed in terms of local stress-strain conditions in the notch region evaluated by means of finite element calculation.
机译:GLARE纤维金属层压板的特殊裸眼板状试样用于模拟混合载荷,类似于真实机身蒙皮结构中铆接孔的载荷。研究了循环张力和二次弯曲载荷的影响。通过显微镜观察缺口区域,以检测疲劳载荷期间的首次疲劳裂纹萌生。测量裂纹开始之前的循环数,并且评估层压体的表面层中的裂纹扩展速率。试验结束后,在层压板的内层对样品进行疲劳损伤研究。发现二次弯曲对疲劳裂纹萌生和早期裂纹扩展具有显着影响。通过有限元计算对缺口区域的局部应力应变条件进行了讨论。

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