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Hot Tearing Susceptibility of AA3000 Aluminum Alloy Containing Cu, Ti, and Zr

机译:含Cu,Ti和Zr的AA3000铝合金的热撕裂易感性

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Severe hot tearing has been observed during DC casting of modified AA3000 alloys with additions of Cu, Ti, and Zr, although these alloys are regarded as rather easy to cast. Extensive studies have been performed on both synthetic and industrial AA2000, AA6000, and AA7000 alloys, but less data are available for AA3000 alloys. This work was thus initiated to investigate the hot tearing susceptibility of AA3000 alloys with varying alloy element content using constrained rod casting molds. The results showed that the Cu and Fe content have a major impact on hot tearing resistance, while the effects of Zr and Ti are minor. Cu in a range from 0.3 to 1.2 wtpct significantly increased the hot tearing tendency. This is due to the existence of high eutectic fractions at low temperatures, as well as porosity formation associated with bad feeding at the end of solidification. A strong cracking tendency was observed below an Fe content 0.2 wtpct owing to decreased precipitation of the Al-6(Mn, Fe) phase. It was found that primary Al-6(Mn, Fe) phases lead to early bridging between the grains, which reinforces the alloy during the vulnerable temperature range for hot tearing. Zr and Ti additions weakly enhanced or reduced hot tearing severity, respectively.
机译:在改性AA3000合金的DC浇铸期间已经观察到严重的热撕裂,并在添加Cu,Ti和Zr,尽管这些合金被认为是易于施放的。已经在合成和工业AA2000,AA6000和AA7000合金上进行了广泛的研究,但可用于AA3000合金的数据较少。因此启动了该作品,以研究使用受约束杆铸造模具的不同合金元素含量的AA3000合金的热撕裂敏感性。结果表明,Cu和Fe含量对热撕裂抗性产生重大影响,而Zr和Ti的效果是轻微的。 Cu在0.3至1.2的范围内,WTPCT显着提高了热撕裂趋势。这是由于在低温下存在高共晶馏分,以及在凝固结束时与饲喂不良相关的孔隙率形成。由于Al-6(Mn,Fe)相的沉淀降低,在Fe含量0.2 WTPCT以下观察到强烈的开裂趋势。发现主要Al-6(Mn,Fe)阶段导致晶粒之间的早期桥接,这在脆弱的温度范围内加强了合金的热撕裂。 Zr和Ti分别添加弱增强或降低的热撕裂严重程度。

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