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Effect of solution and modification treatments on the crack propagation behaviour of Al-7Si alloy under resonant vibration

机译:固溶和变质处理对共振振动下Al-7Si合金裂纹扩展行为的影响

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摘要

In order to investigate the influence of solution treatment and modification treatment on the crack propagation behaviour of Al-7Si alloy under resonant vibration, the unmodified and Sr-modified materials were tested. The experimental resultsindicate that the resistance to crack propagation is improved after solution treatment for both the unmodified and modified alloys. The improvement of cracking resistance of unmodified alloy is due to the change in the cracking paths from broken-throughparticles to particle/matrix interfaces. The unmodified alloy possesses better cracking resistance than does the modified alloy after solution treating at 535℃ for 2 hours. On the other hand, the modification treatment shows no obvious improvement tocracking resistance. In the modified alloy, the crack paths of the as-cast and solution-treated specimens both preferentially progress toward the interdendritic zones. The as-cast alloy shows this trend more strongly and hence its cracking trajectory ismore meandering and branching.
机译:为了研究固溶和改性处理对共振振动下Al-7Si合金裂纹扩展行为的影响,对未改性和Sr改性材料进行了测试。实验结果表明,对未改性和改性合金进行固溶处理后,裂纹扩展的抗性均得到改善。未改性合金的抗裂性的提高是由于从穿透颗粒到颗粒/基体界面的裂化路径的变化。在535℃固溶2小时后,未改性合金的抗裂性比改性合金好。另一方面,改性处理没有显示出明显的抗裂性改善。在改性合金中,铸态试样和固溶处理试样的裂纹路径都优先向枝晶间区域发展。铸态合金更强烈地显示出这种趋势,因此其开裂轨迹更加弯曲和分支。

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