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Temperature and Moisture Effects in a Particulate Interlayered Composite:Mode I Data Reduction and Toughness

机译:颗粒夹层复合材料中的温度和湿度影响:I型数据降低和韧性

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A study was conducted to determine the mode I toughness of T800H/3900-2 graphite/ epoxy under a range of environments that are typical of aircraft and spacecraft operating conditions. Double cantilever beam tests were performed on both dry and moisture-saturated specimens at temperatures of -43,21,and 98°C,and on dry specimens only at 125°C. Under certain conditions,nonlinear behavior and permanent deformations were observed. Thus,a sub-study was performed to choose a data reduction method that could be used to accurately obtain the mode I toughness under all test conditions,from which a 'load based compliance calibration method' was selected. At a given moisture content,it was found that toughness increased with increasing temperature. Except for precracked specimens at -43°C,toughness was also found to increase with increasing moisture content. However,dramatically different behaviors were evidenced by the resistance curves from the various conditions. Aided by scanning electron microscopy,these results are explained by the mechanisms associated with crack advance,including the amount of plasticization of the matrix,matrix viscoelasticity,and the path of the growing delamination.
机译:进行了一项研究以确定T800H / 3900-2石墨/环氧树脂在各种飞机和航天器操作条件典型环境下的模式I韧性。在-43、21和98°C的温度下对干燥和湿气饱和的样品都进行了双悬臂梁测试,而在125°C的干燥样品上进行了双悬臂梁测试。在一定条件下,观察到非线性行为和永久变形。因此,进行了一项子研究,以选择一种数据缩减方法,该方法可用于在所有测试条件下准确获得模式I韧性,并从中选择了“基于负荷的依从性校准方法”。发现在给定的水分含量下,韧性随温度升高而增加。除了在-43°C下预裂解的试样外,还发现韧性随着水分含量的增加而增加。然而,各种条件下的电阻曲线证明了行为上截然不同。在扫描电子显微镜的帮助下,这些结果可以通过与裂纹扩展相关的机理来解释,包括基体的塑化量,基体粘弹性以及层离扩展的路径。

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