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Influence of Precipitate Microstructures on Thermal Fatigue Properties of Al-Si-Mg Cast alloys

机译:沉淀组织对Al-Si-Mg铸造合金热疲劳性能的影响

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摘要

The aging behavior of an A356+l%Cu alloy was examined using hardness, electrical conductivity measurements and transmission electron microscopy (TEM). The thermal fatigue test was also performed for the aged alloy. The hardness increases with aging time at examined temperatures of 160 to 230℃ and then decreases to show peak hardness. The corresponding electrical conductivity increases with aging time at all temperatures. The TEM microstructures show that needle-shaped precipitates are formed and grow in their elongated direction with aging time. The increase of electrical conductivity indicates that the volume fraction of precipitates increases with aging time. The thermal fatigue life of the over-aged specimen was two times longer than that at the peak-aged one. The fracture surface of the over-aged specimen was smoother than that at the peak-aged one. The tortuous by propagated path in the peak-aged specimen was originated in the predominant crack propagation through fractured eutectic Si particles. The above difference of crack propagation behavior between peak-aged and over-aged specimens is discussed based on the size difference of precipitates.
机译:使用硬度,电导率测量和透射电子显微镜(TEM)检查了A356 + 1%Cu合金的时效行为。还对时效合金进行了热疲劳试验。在160至230℃的测试温度下,硬度随老化时间的增加而增加,然后降低以显示峰值硬度。在所有温度下,相应的电导率都随着老化时间的增加而增加。 TEM显微结构表明,随着时间的流逝,形成了针状沉淀物并沿其细长方向生长。电导率的增加表明沉淀物的体积分数随老化时间而增加。过度老化的试样的热疲劳寿命是峰值老化试样的热疲劳寿命的两倍。过时效试样的断裂表面比高峰时试样的断裂表面光滑。峰值时效试样中的弯曲传播路径起源于主要的裂纹通过断裂的共晶硅颗粒的传播。基于析出物的尺寸差异,讨论了峰值时效和超时效试样之间裂纹扩展行为的上述差异。

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