首页> 外文会议>Annual Meeting amp;amp;amp; Exhibition of The Minerals, Metals amp;amp;amp; Materials Society >Elevated-Temperature Low-Cycle Fatigue Behaviors of Al-Si 356 and 319 Foundry Alloys
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Elevated-Temperature Low-Cycle Fatigue Behaviors of Al-Si 356 and 319 Foundry Alloys

机译:Al-Si 356和319铸造合金的升高的低循环疲劳行为

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Al-Si foundry alloys are widely used in aerospace and automobile industries, such as the engine blocks and cylinder heads. These engine components are often exposed to cyclic mechanical stress at high operation temperature (250-350 °C) and such dynamic loading frequently results in the occurrence of fatigue failure. Hence, a fully understanding of fatigue behaviors at elevated temperature of Al-Si foundry alloys is the critical concern for safety designs. In the present study, two typical Al-Si foundry alloys, namely 356-T7 and 319-T7, were investigated to discover their low cycle fatigue (LCF) behavior at 300 °C. The LCF tests were performed in the strain-controlled compression-tension mode with the strain ratio of Rs = -1 at various strain amplitudes of 0.1-0.6%. The cyclic strain-stress response, hysteresis loops and the Masing behavior were analyzed and compared between two alloys. Fatigue parameters were calculated from experimental data for fatigue life estimation and fatigue fracture surfaces were also analyzed at various strain amplitudes. Results showed that both alloys present nearly ideal Masing behavior with symmetric hysteresis loops. The cyclic softening occurs in both alloys but the softening rate varies with alloys, which is lower in 356-T7 than 319-T7. Moreover, 356-T7 behaved more ductile while 319-T7 exhibited higher strength during cyclic deformation. 356-T7 achieved higher low-cycle fatigue life than 319-T7. The different LCF behavior of these two alloys may be attributed to the presence of various precipitates due to the variation of Mg and Cu contents.
机译:Al-Si铸造合金广泛应用于航空航天和汽车行业,如发动机块和气缸盖。这些发动机部件通常在高操作温度(250-350℃)下暴露于循环机械应力,并且这种动态负荷经常导致疲劳失效的发生。因此,在Al-Si铸造合金高温下对疲劳行为的完全理解是安全设计的关键问题。在本研究中,研究了两个典型的Al-Si铸造合金,即356-T7和319-T7,以发现它们在300℃下的低循环疲劳(LCF)行为。在应变控制的压缩张力模式下进行LCF试验,应变比在各种应变幅度为0.1-0.6%。分析了循环应力应力响应,滞后环和施用行为,并在两个合金之间进行比较。根据各种应变幅度分析疲劳寿命估计和疲劳裂缝表面的实验数据计算疲劳参数。结果表明,两种合金都存在与对称滞后环的几乎理想的口号行为。在两种合金中发生循环软化,但软化速率随合金而变化,356-T7比319-T7更低。此外,356-T7表现得更多的延展性,而319-T7在循环变形期间表现出更高的强度。 356-T7达到比319-T7更高的低循环疲劳寿命。由于Mg和Cu含量的变化,这两个合金的不同LCF行为可能归因于各种沉淀物的存在。

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