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Fatigue of Closed Cell Foams

机译:闭孔泡沫的疲劳

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摘要

The static properties of foams scale with relative density and scaling can be obtained through various static tests. The same scaling appears to be valid for both crack propagation rates and fatigue properties of the foams. This implies that, once the fatigue behavior of one relative density foam is established, one can predict the fatigue behavior of all other density foams within the same class of materials. This study deals with fatigue of closed cell foams. The main idea is to use a few simple tests to predict tension-tension fatigue properties of foams. The required testing consists of crack propagation rate measurements and one tension-tension fatigue test performed at the yield stress of the foam. This data can then be combined to construct a synthetic S-N curve for the foam. Testing is performed on three densities of Divinycell H-grade and three densities of Rohacell WF-grade foam. A very simple fatigue model, based on an initial flaw approach, is used to link the crack propagation rate behavior of these foams with their unnotched fatigue life. This approach is backed up by the experimental results. The results obtained can be used to form some general conclusions about the fatigue of closed cell foams, at least of the types used herein.
机译:通过各种静态测试可以获得具有相对密度和缩放的泡沫刻度的静态特性。相同的缩放对于泡沫的裂纹传播速率和疲劳性能似乎是有效的。这意味着,一旦建立了一个相对密度泡沫的疲劳行为,就可以预测相同类材料内所有其他密度泡沫的疲劳行为。本研究涉及封闭细胞泡沫的疲劳。主要思想是使用一些简单的测试来预测泡沫的张力张力疲劳性能。所需的测试包括裂纹传播速率测量和在泡沫的屈服应力下进行的一个张力张力疲劳试验。然后可以将该数据组合以构建泡沫的合成S-N曲线。对三种密度的脱垂H级和三种密度进行测试进行测试。基于初始缺陷方法的一个非常简单的疲劳模型用于将这些泡沫的裂纹传播速率行为与其不存在的疲劳寿命联系起来。这种方法被实验结果备份。所得结果可用于形成关于封闭细胞泡沫的疲劳的一般结论,其中至少在本文使用的类型中。

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