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Microstructural and mechanical properties characterization of heat treated and overaged cast A354 alloy with various SDAS at room and elevated temperature

机译:室温和高温下具有各种SDAS的热处理和过时铸造A354合金的显微组织和力学性能表征

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摘要

The aim of the present study was to carry out a microstructural and mechanical characterization of the A354 (Al-Si-Cu-Mg) cast aluminum alloy. The effect of microstructure on the tensile behavior was evaluated by testing samples with different Secondary Dendrite Arm Spacing, (SDAS) values (20-25 μm and 50-70 μm for fine and coarse microstructure, respectively), which were produced through controlled casting conditions. The tensile behavior of the alloy was evaluated both at room and elevated temperature (200 ℃), in the heat treated and overaged (exposure at 210 ℃ for 41 h, after heat treatment) conditions. Optical, scanning electron microscopy (SEM) and scanning transmission electron microscopy (STEM) were used for microstructural investigations. Experimental data confirmed the significant role of microstructural coarseness on the tensile behavior of A354 alloy. Ultimate tensile strength and elongation to failure strongly increased with the decrease of SDAS. Moreover, solidification rate influenced other microstructural features, such as the eu-tectic silicon morphology as well as the size of the intermetallic phases, which in turn also influenced elongation to failure. Coarsening of the strengthening precipitates was induced by overaging, as observed by STEM analyses, thus leading to a strong reduction of the tensile strength of the alloy, regardless of SDAS. Tensile properties of the alloy sensibly decrease at elevated temperature (200 ℃) in all the investigated heat treatment conditions.
机译:本研究的目的是对A354(Al-Si-Cu-Mg)铸造铝合金进行显微组织和力学表征。通过测试具有不同二次枝晶臂间距(SDAS)值(精细和粗糙微观结构分别为20-25μm和50-70μm)的样品来评估微观结构对拉伸性能的影响,这些值是通过受控铸造条件生产的。在室温和高温(200℃)下,在热处理和过时效(热处理后在210℃下暴露41 h)条件下,评估合金的拉伸性能。光学,扫描电子显微镜(SEM)和扫描透射电子显微镜(STEM)用于微观结构研究。实验数据证实了显微组织粗糙度对A354合金拉伸行为的重要作用。极限抗拉强度和断裂伸长率随着SDAS的降低而大大增加。此外,凝固速率影响了其他微结构特征,例如共晶硅的形态以及金属间相的尺寸,进而也影响了断裂伸长率。如STEM分析所观察到的,由于过时效而引起强化沉淀物的粗化,因此无论SDAS如何,都会导致合金的拉伸强度大大降低。在所有研究的热处理条件下,合金的拉伸性能在高温(200℃)下均明显降低。

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  • 来源
    《Materials Science and Engineering》 |2015年第11期|340-349|共10页
  • 作者单位

    Department of Industrial Engineering (DIN), Alma Mater Studiorum - University of Bologna, Viale Risorgimento 4, 40136 Bologna, Italy,Industrial Research Centre for Advanced Mechanics and Materials (CIRI-MAM) Alma Mater Studiorum - University of Bologna, Viale Risorgimento 4, 40136 Bologna, Italy;

    Department of Industrial Engineering (DIN), Alma Mater Studiorum - University of Bologna, Viale Risorgimento 4, 40136 Bologna, Italy,Industrial Research Centre for Advanced Mechanics and Materials (CIRI-MAM) Alma Mater Studiorum - University of Bologna, Viale Risorgimento 4, 40136 Bologna, Italy;

    Department of Industrial Engineering (DIN), Alma Mater Studiorum - University of Bologna, Viale Risorgimento 4, 40136 Bologna, Italy;

    Department of Management & Engineering, Division of Engineering Materials, Linkoeping University, SE-581 83 Linkoeping, Sweden;

    Department of Materials and Manufacturing, School of Engineering - Joenkoeping University, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A354; Al-Si-Cu-Mg alloys; Tensile properties; SDAS; Elevated temperature; Overaging;

    机译:A354;Al-Si-Cu-Mg合金;拉伸性能;SDAS;温度升高;过度老化;

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