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The Influence of Cryogenic Conditions on the Process of AA2519 Aluminum Alloy Cracking

机译:低温条件对AA2519铝合金开裂过程的影响

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摘要

This study presents the results of tests involving determining quantities used to describe fracture toughness of a heat-treated AA2519 aluminum alloy applied in, among other things, constructing American military amphibians. These quantities were determined using the J–R curve method for two temperature values, 293 K and 77 K. The low temperature was provided by putting the tested specimen into a liquid nitrogen bath and keeping it there throughout the experiment. Based on the tests results, cryogenic conditions cause an increase in the maximum experimental value of the J–JQ integral, from 66.3 to 87.3 kJ/m2 Moreover, an analysis of the fatigue fracture microstructure revealed differences between specimens tested in ambient temperature and those tested in cryogenic temperature.
机译:本研究介绍了涉及用于描述施加在其他东西的热处理AA2519铝合金的断裂韧性的测定量的试验结果,其中包括构建美国军用两栖动物。使用J-R曲线法测定这些量,用于两个温度值,293k和77k。通过将测试的样品放入液氮浴中并在整个实验中保持其来提供低温。基于测试结果,低温条件导致J-JQ积分的最大实验值增加,从66.3至87.3 kJ / m 2提供,疲劳断裂微观结构的分析显示了在环境温度和测试中测试的标本之间的差异在低温温度下。

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