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淬火水温对7B50铝合金厚板组织和强韧性的影响
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Effect of Quenching Water Temperature on Microstructure Strength and Toughness of 7B50 Aluminum Alloy Thick Plate
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    采用室温拉伸测试、断裂韧性测试并结合扫描电镜及透射电镜等组织分析方法,研究淬火水温(20~60 ℃)对7B50铝合金厚板组织和强韧性的影响,并探究不同时效处理制度对淬火水温的敏感性.研究结果表明: 7B50合金的室温拉伸性能对淬火水温不敏感,但断裂韧度随淬火水温改变变化显著,当淬火水温从60 ℃降至20 ℃时,峰时效态和过时效态合金的断裂韧性分别增加12.9%和11.4%.当淬火水温较高(40 ℃和60 ℃)时,与过时效态合金相比,峰时效态合金的断裂韧性对淬火水温更敏感.透射电镜观察揭示了晶界组织的差异导致的合金断裂韧度的变化.随着淬火水温降低,淬火态合金的晶界脱溶析出相尺寸逐渐减小,并且在时效处理后使晶界析出相尺寸减小、无沉淀析出带宽度变窄,特别是峰时效态合金的晶界析出相尺寸和晶界无沉淀析出带宽度随温度变化更为显著.

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    The effects of quenching water temperature (20~60°C) on the structure, strength and toughness of 7B50 aluminum alloy plate were investigated by using room temperature tensile test, fracture toughness test and the combination of scanning electron microscopy and transmission electron microscopy (TEM). Besides, the sensitivity of different aging treatment systems to the quenching water temperature was also studied. The results show the room temperature tensile properties of 7B50 alloy are not sensitive to the quenching water temperature. However, the fracture toughness tends to increase as the quenching water temperature decreases. When the quenching water temperature decreases from 60°C to 20°C, the fracture toughness of the peak-aged and over-aged alloys increase by 12.9% and 11.4%, respectively. The fracture toughness of the peak-aged alloy is more sensitive to the quench water temperature when the quench water temperature is higher (40 °C and 60 °C) compared with the over-aged alloy. TEM obseration results reveal the relationship of the fracture toughness change due to the grain boundary microstructure. As the quench water temperature decreases, the size of the grain boundary precipitation phase of the quenched alloy gradually decreases. Furthermore, the size of the grain boundary precipitates decreases and the width of the precipitates free zone of the aged alloy becomes narrower. Especially, the grain boundary precipitates size and the width of the grain boundary precipitates free zone of the peak-aged alloy varied more significantly with the temperature change.

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REN Weicai, YU Mingyang?,ZHANG Yongan, WEN Kai, LI Xiwu, GAO Wenli.淬火水温对7B50铝合金厚板组织和强韧性的影响[J].湖南大学学报:自然科学版,2023,(12):86~91

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  • 在线发布日期: 2024-01-02
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