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首页> 外文期刊>International Journal of Fatigue >Modes Ⅰ and Ⅱ interlaminar fracture toughness and fatigue delamination of CF/epoxy laminates with self-same epoxy interleaf
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Modes Ⅰ and Ⅱ interlaminar fracture toughness and fatigue delamination of CF/epoxy laminates with self-same epoxy interleaf

机译:自粘环氧树脂插层式CF /环氧树脂层压板的Ⅰ,Ⅱ型层间断裂韧性和疲劳分层

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Interlaminar fracture toughness and delamination fatigue crack growth behavior were investigated for carbon fiber (CF)/epoxy laminates with the self-same epoxy interleaf. The matrix epoxy with a thickness of 50 μm was chosen as the interleaf material in order to clarify the effect of resin-rich layer thickness on the delamination fatigue crack growth behavior. Tests under mode Ⅰ loading were carried out using double cantilever beam specimens. For tests under mode Ⅱ loading, three-point end notched flexure specimens were used for interlaminar fracture toughness tests, while four-point end notched flexure specimens were used for delamination fatigue tests. The mode Ⅰ properties (interlaminar fracture toughness and delamination fatigue threshold) of these epoxy-interleaved CFRP laminates were almost identical to those of the laminates without interleaf (base CFRP laminates). The effect of epoxy interleaf was completely different under mode Ⅱ loading. The mode Ⅱ interlaminar fracture toughness for the epoxy-interleaved laminates was 1.6 (initial value) and 3.4 (propagation value) times higher than that for the base CFRP laminates. The mode Ⅱ delamination fatigue threshold of the epoxy-interleaved laminates was 2-2.3 times higher than those of the base CFRP laminates. While the toughness of the interleaf is the key factor under mode Ⅰ, the thickness of interlayer is the key factor under mode Ⅱ. The difference in the effect of the self-same epoxy interlayer on the interlaminar fracture properties under modes Ⅰ and Ⅱ loadings was discussed on the bases of the fractographic observations and mechanism considerations.
机译:研究了具有相同环氧衬里的碳纤维/环氧树脂层压板的层间断裂韧性和分层疲劳裂纹扩展行为。为了阐明富树脂层厚度对分层疲劳裂纹扩展行为的影响,选择了厚度为50μm的基体环氧树脂作为插页材料。用双悬臂梁试样在Ⅰ型载荷下进行试验。对于Ⅱ型载荷试验,层间断裂韧性试验采用三点有端缺口挠性试样,分层疲劳试验采用四点有端缺口有挠度试样。这些环氧交错的CFRP层压板的Ⅰ型性能(层间断裂韧性和分层疲劳阈值)与没有夹层的层压板(基础CFRP层压板)几乎相同。 Ⅱ型加载下环氧插页的效果完全不同。环氧交错层压板的Ⅱ型层间断裂韧性比基础CFRP层压板高1.6倍和3.4倍(传播值)。环氧交错层压板的Ⅱ型分层疲劳阈值比基础CFRP层压板高2-2.3倍。夹层的韧性是模式Ⅰ下的关键因素,而夹层的厚度是模式Ⅱ下的关键因素。在分形观察和机理考虑的基础上,讨论了相同的环氧夹层对Ⅰ,Ⅱ型加载下层间断裂性能影响的差异。

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