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Fatigue crack growth analysis of different adhesive systems: Effects of mode mixity and load level

机译:不同胶粘剂体系的疲劳裂纹扩展分析:模式混合和载荷水平的影响

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The aim of this paper is to investigate the fatigue fracture behavior of three different adhesive systems (epoxy-based, acrylic, and a rubber-like adhesive). To achieve this, double cantilever beam specimens were manufactured with different adhesives and tested under several mode mixities and different load levels. Fatigue crack growth rate was evaluated through a Paris law equation. For postprocessing, the compliance-based beam method was used. Results showed that the variation of the threshold energy with load level is more pronounced for the epoxy-based adhesive. The crack propagation life is higher for the acrylic adhesive. Although, for pure mode I conditions, the normalized threshold of the rubber-like adhesive is lower, for pure mode II, it was higher than the epoxy-based adhesive. Due to the normalization by the static fracture energy, the slope of the Paris law was approximately constant for all the adhesive systems.
机译:本文的目的是研究三种不同胶粘剂体系(环氧树脂,丙烯酸和橡胶状胶粘剂)的疲劳断裂行为。为此,制造了使用不同粘合剂的双悬臂梁试样,并在几种模式混合和不同载荷水平下进行了测试。通过巴黎定律评估疲劳裂纹扩展率。对于后处理,使用了基于一致性的梁方法。结果表明,基于环氧的胶粘剂的阈值能量随负载水平的变化更为明显。丙烯酸粘合剂的裂纹扩展寿命更高。尽管在纯模式I条件下,橡胶状粘合剂的归一化阈值较低,但在纯模式II下,其阈值高于环氧基粘合剂。由于静态断裂能的归一化,巴黎定律的斜率对于所有胶粘剂系统都近似恒定。

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