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Investigation on strengthening of 6A02 aluminum alloy sheet in hot forming-quenching integrated process with warm forming-dies

机译:热成型模具热压淬火一体化工艺中6A02铝合金薄板强化研究

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New manufacturing technology for light-weight structure materials has been used to meet the requirements for weight reduction and safety performance. In this paper, the hot forming-quenching integrated process of 6A02 aluminum alloy sheet at different forming-dies temperatures ranging from 50 ℃ to 350 ℃ was investigated. Vickers hardness test and uniaxial tensile test were carried out to reveal the strengthening effect.behavior. Microstructure evolution was observed to clarify the strengthening mechanism with electron backscattering diffraction (EBSD), transmission electron microscopy (TEM) and scanning electron microscope (SEM) methods. Results show that the Vickers hardness and tensile strength decreased with increasing forming-dies temperature. No obvious decrease in strength appeared until the forming-dies temperature reached 250 ℃ The corresponding Vickers hardness was increased to 100.6 HV from original 73 HV in rolled conditioa and the tensile and yield strengths were 303.8 MPa and 257.1 MPa, respectively. When the temperature of forming-dies rose to 350 ℃ the tensile and yield strengths dropped to 270.1 MPa and 213.7 MPa, respectively. The strengthening phase in Al matrix was the dispersed needle-shaped β’ precipitates with size about 10-50 nm Transformation of the rod-shaped β' precipitates with 150-300 nm in size at the grain boundaries and in grain interiors led to the decrease in strength. The forming-dies temperature should not be higher than 250 ℃ for the integrated forming of 6A02 aluminum alloy sheet to obtain enough strengthening effect.
机译:轻质结构材料的新制造技术已被用来满足减轻重量和安全性能的要求。本文研究了6A02铝合金薄板在50℃至350℃不同成型温度下的热成型-淬火一体化工艺。进行了维氏硬度试验和单轴拉伸试验,以揭示其增强作用。观察到微观结构的演变,以阐明通过电子反向散射衍射(EBSD),透射电子显微镜(TEM)和扫描电子显微镜(SEM)方法的强化机理。结果表明,维氏硬度和抗拉强度随着成型模具温度的升高而降低。直到成型模具温度达到250℃时,强度才没有明显降低。相应的维氏硬度在轧制条件下从原来的73 HV增加到100.6 HV,拉伸强度和屈服强度分别为303.8 MPa和257.1 MPa。当成型模温度升至350℃时,抗拉强度和屈服强度分别降至270.1 MPa和213.7 MPa。 Al基体中的强化相是分散的针状β'析出物,其尺寸约为10-50 nm,棒状β'析出物在晶界和晶粒内部的尺寸转变为150-300 nm,导致其减少。实力。为使6A02铝合金薄板整体成型,成型模温度不宜高于250℃,以获得足够的强化效果。

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