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Microstructures and hardness of stir zone for friction stir processed and post-processed heat treatment 7B04-O aluminium alloy

机译:摩擦搅拌加工搅拌区的微观结构和硬度和加工后热处理7B04-O铝合金

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Friction stir processing (FSP) with different rotation speeds was conducted on 7B04-O aluminium alloy thin-sheet, then the post-processed heat treatment (PPHT) was carried out. The microstructures and hardness of the stir zone (SZ) under as-processed (AP) and PPHT states were investigated. The result showed that the hardness of the SZ was enhanced under the AP state, attributing to the grain refinement. The effect of PPHT on the hardness of the material was different, compared with the AP state, the hardness of the SZ with a low rotation speed under PPHT state was deteriorated while it was enhanced when high rotation speed was adopted. When FSP was conducted on the O-temper base metal (BM), the initial precipitates in the matrix were coarse and stable, reducing the dissolution rate of the precipitates. High heat input was required in order to induce sufficient dissolution of the precipitates, which was beneficial to elevating the impact of PPHT on hardness. The amount and morphology of the precipitates played important roles in the SZ of improvement in hardness.
机译:在7B04-O铝合金薄片上进行具有不同转速的摩擦搅拌处理(FSP),然后进行后处理的热处理(PPHT)。研究了搅拌区(SZ)在制备(AP)和PPHT状态下的微观结构和硬度。结果表明,在AP状态下,SZ的硬度增强,归因于晶粒细化。与AP状态相比,PPHT对材料硬度的影响是不同的,在采用高旋转速度时,在PPHT状态下具有低旋转速度的SZ的硬度劣化。当FSP在O温度碱基金属(BM)上进行时,基质中的初始沉淀物粗且稳定,降低沉淀物的溶出速率。需要高热量输入以诱导沉淀物充分溶解,这有利于升高PPHT对硬度的影响。沉淀物的量和形态在改善硬度的改善中起着重要作用。

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