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Environmentally Assisted Fatigue Crack Growth Rate Testing with Corrosion Prevention Compounds

机译:使用防腐化合物的环境辅助疲劳裂纹扩展速率测试

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Aging aircraft pose a serious expense to the armed forces. Many high strength aluminum alloys employed in aircraft structures are subject to stress corrosion cracking and corrosion fatigue cracking. A crack initiated by stress corrosion, may propagate under fatigue loading. Corrosion prevention compounds (CPCs) represent a quick easy means of curbing corrosion, but the effects of CPCs on fatigue crack growth rate have not been established. The University of Dayton Research Institute developed a test method that simulates an aircraft environment to screen and evaluate the performance of CPCs during fatigue crack growth. This paper describes the test method generated and test results for a few representative CPCs.
机译:老化的飞机给军队造成了沉重的代价。飞机结构中使用的许多高强度铝合金容易遭受应力腐蚀开裂和腐蚀疲劳开裂。由应力腐蚀引起的裂纹可能在疲劳载荷下传播。防腐蚀化合物(CPC)是抑制腐蚀的一种快速简便的方法,但尚未确定CPC对疲劳裂纹增长率的影响。代顿大学研究所开发了一种测试方法,该方法可以模拟飞机环境,以筛选和评估疲劳裂纹扩展过程中CPC的性能。本文介绍了几种代表性每次点击费用生成的测试方法和测试结果。

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