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Four-point-bend fatigue of AA 2026 aluminum alloys

机译:AA 2026铝合金的四点弯曲疲劳

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摘要

High-cycle fatigue tests were carried out on a newly developed high-strength AA 2026 Al alloy, which was in the form of extrusion bars with square and rectangular cross sections, using a self-aligning four-point-bend rig at room temperature, 15 Hz, and R = 0.1, in lab air. The fatigue strength of the square and rectangular bars was measured to be 85 and 90 pct of their yield strength, respectively, more than twice that of the predecessor to the 2026 alloy (the AA 2024 Al alloy). Fatigue cracks were found to be always initiated at large Θ′ (Al7Cu2(Fe,Mn)) particles and to propagate predominantly in a crystallographic mode in the AA 2026 alloy. The fatigue fractographies of the square and rectangular extrusion bars were found to be markedly different, due to their different grain structures (fibril and layered, respectively). Fracture steps on the crack face were found in both of these extrusion bars. Since the 2026 alloy was purer in terms of Fe and Si content, it contained much less coarse particles than in a 2024 alloy. This partially accounted for the superior fatigue strength of the 2026 alloy.
机译:在室温下,使用自对准四点弯曲装置对新开发的高强度AA 2026铝合金进行了高周疲劳测试,该铝合金为具有方形和矩形横截面的挤压棒形式。在实验室空气中为15 Hz,R = 0.1。测得方棒和矩形棒的疲劳强度分别为其屈服强度的85和90 pct,是2026合金(AA 2024 Al合金)以前版本的两倍。发现疲劳裂纹总是在较大的Θ'(Al7 Cu2 (Fe,Mn))颗粒上产生,并在AA 2026合金中主要以晶体学方式传播。由于方形和矩形挤压棒的晶粒结构不同(分别为原纤维和分层),其疲劳断裂形貌明显不同。在这两个挤压棒中都发现了裂纹面上的断裂台阶。由于2026合金的Fe和Si含量较纯,因此其粗颗粒比2024合金少得多。这部分地解释了2026合金的优异疲劳强度。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2005年第9期|2529-2539|共11页
  • 作者单位

    the Chemical and Materials Engineering Department University of Kentucky 40506 Lexington KY;

    the Chemical and Materials Engineering Department University of Kentucky 40506 Lexington KY;

    New Product Applications Division of Alcoa Alcoa Alcoa Center 15069 PA;

    Alcoa Technical Center Alcoa Alcoa Center 15069 PA;

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