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Compression-compression fatigue of open cell aluminum foams: macro-/micro- mechanisms and the effects of heat treatment

机译:开孔泡沫铝的压缩-压缩疲劳:宏观/微观机理和热处理效果

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This paper presents the results of an experimental study of the fatigue mechanisms of Duocel~(~R) open cell aluminum foams and the effects of heat treatment on foam fatigue behaviour. The macro-/micro-mechanisms of fatigue were studied for the foams in the as-fabricated (F), annealed (O) and T6-strengthened (T6) conditions. The effects of annealing and T6-strengthening on the stress-strain behavior and plastic-collapse strengths of foams were introduced before presenting the results of compression-compression fatigue experiments. The formation of localized deformation bands were investigated using an in-situ digital camera. Scanning electron microscopy (SEM) revealed clear evidence of the surface crack nucleation in the individual struts, prior to the abrupt strain jumps. Fractographic analysis of the failed struts also revealed fatigue striations and surface crack nucleation mechanisms in the struts. Finally, a simple compression-compression fatigue mechanism is proposed to link the observed macro- and micro-scale fatigue mechanisms in open cell aluminum foams.
机译:本文介绍了Duocel〜(〜R)开孔铝泡沫疲劳机理的实验研究结果,以及热处理对泡沫疲劳行为的影响。研究了泡沫在预制(F),退火(O)和T6强化(T6)条件下的宏观/微观疲劳机理。在介绍压缩-压缩疲劳实验的结果之前,介绍了退火和T6强化对泡沫的应力-应变行为和塑性破坏强度的影响。使用原位数码相机研究了局部变形带的形成。扫描电子显微镜(SEM)揭示了在应变突然突变之前,各个支杆表面裂纹成核的清晰证据。断裂支柱的分形分析还显示了疲劳条纹和支柱中的表面裂纹成核机制。最后,提出了一种简单的压缩-压缩疲劳机理,以链接在开孔铝泡沫中观察到的宏观和微观疲劳机理。

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