首页> 外文会议>Materials Science amp; Technology 2005 Conference(MSamp;T'05) vol.1; 20050925-28; Pittsburgh,PA(US) >Understanding damage accumulation upon AA7075-T651 used in airframes from a microstructural point of view
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Understanding damage accumulation upon AA7075-T651 used in airframes from a microstructural point of view

机译:从微观结构的角度了解机身上使用的AA7075-T651的损伤累积

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Corrosion and corrosion fatigue of aircraft components remains a critical issue for the service readiness of aging aircraft. The favorable mechanical properties of AA7075-T651 arise as a result of a heterogeneous microstructure that compromises the corrosion resistance of the alloy, ultimately resulting in localized corrosion. Understanding the factors that govern extent, rate and morphology of damage accumulation is essential in developing models to predict corrosion and corrosion fatigue resistance. The electrochemical properties of AA7075-T651 have recently been investigated on a phase-by-phase basis. As a result, quantitative microstructural characterization of AA7075-T651 takes on a critical importance in the understanding of corrosion damage accumulation, based on localized chemistry (and hence electrochemistry) of the alloy. This work presents results of a study using analytical microscopy (SEM, TEM, STEM, EDXS, EBKP) to reveal what phases, intermetallics and particles constitute AA7075-T651; allowing characterization and discrimination on a chemical basis. Knowledge of the type of localized chemistry that exists may be coupled with electrochemical results and used to typify damage accumulation processes on the nano and microscale.
机译:飞机部件的腐蚀和腐蚀疲劳仍然是老化飞机的服役准备的关键问题。 AA7075-T651的良好机械性能是由于组织的异质性降低了合金的耐腐蚀性,最终导致局部腐蚀。在控制模型中预测腐蚀和抗腐蚀疲劳性的过程中,了解决定损伤累积程度,速率和形态的因素至关重要。 AA7075-T651的电化学性质最近已在逐相的基础上进行了研究。结果,AA7075-T651的定量微观结构表征在基于合金的局部化学(进而是电化学)的理解中,对腐蚀损伤累积的认识至关重要。这项工作提出了使用分析显微镜(SEM,TEM,STEM,EDXS,EBKP)进行研究的结果,以揭示哪些相,金属间化合物和颗粒构成了AA7075-T651;允许在化学基础上进行表征和区分。可以将存在的局部化学类型的知识与电化学结果结合起来,并用于表征纳米级和微米级的损伤累积过程。

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