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High Temperature Fatigue Deformation Behavior of Automotive Heat Resistant Aluminum Alloys

机译:汽车耐热铝合金的高温疲劳变形行为。

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High temperature high cycle and low cycle fatigue deformation behavior of automotive heat resistant aluminum alloys (A356 and A319 based) were investigated in this study. The microstructures of both alloys were composed of primary Al-Si dendrite and eutectic Si phase. However, the size and distribution for eutectic Si phase varied: a coarse and inhomogeneous distributed was observed in alloy B (A319 based). A brittle intermetallic phase of alpha-Fe Al_(12)(Fe,Mn)_3Si_2 was detected only in B alloy. Alloy B exhibited high fatigue life only under a high stress amplitude condition in the high cycle fatigue results, whereas alloy A showed high fatigue life when stress was lowered. With regard to the low-cycle fatigue result (250°C) showing higher fatigue life as ductility increased, alloy A demonstrated higher fatigue life under all of the strain amplitude conditions. Fractographic observations showed that large porosities and pores near the outside surface could be the main factor in the formation of fatigue cracks. In alloy B, micro-cracks were formed in both the brittle intermetallic and coarse Si phases. These micro-cracks then coalesced together and provided a path for fatigue crack propagation. From the observation of the differences in microstructure and fractography of these two automotive alloys, the authors attempt to explain the high-temperature fatigue deformation behavior of heat resistant aluminum alloys.
机译:本研究研究了汽车耐热铝合金(基于A356和A319)的高温高循环和低循环疲劳变形行为。两种合金的显微组织均由原始的Al-Si枝晶和共晶Si相组成。但是,共晶Si相的尺寸和分布各不相同:在合金B(基于A319的合金)中观察到了粗大且不均匀的分布。仅在B合金中检测到α-FeAl_(12)(Fe,Mn)_3Si_2的脆性金属间相。在高循环疲劳结果中,合金B仅在高应力振幅条件下才显示高疲劳寿命,而合金A在降低应力时显示出高疲劳寿命。关于低周疲劳结果(250°C),它随着延展性的增加显示出更高的疲劳寿命,合金A在所有应变振幅条件下均表现出更高的疲劳寿命。分形观察表明,外表面附近的大孔隙和气孔可能是疲劳裂纹形成的主要因素。在合金B中,在脆性金属间相和粗晶Si相中均形成了微裂纹。这些微裂纹然后合并在一起,并为疲劳裂纹的传播提供了一条路径。通过观察这两种汽车合金的微观结构和形貌的差异,作者试图解释耐热铝合金的高温疲劳变形行为。

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