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Influence of additives on the impact toughness of Al-10.8% Si near-eutectic cast alloys

机译:添加剂对Al-10.8%Si近共晶铸造合金冲击韧性的影响

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This article investigates the effects of melt treatment and addition of alloying elements on the impact toughness of as-cast and heat-treated Al-10.8% Si near-eutectic alloys. Increasingly precise impact behaviors are discussed in the context of differentiating between initiation and propagation energies, including the ductility index, which is the ratio of the propagation to initiation energies; total energy as a useful measure is also discussed. Details concerning the evaluation of tensile properties are reported in a separate article [Mohamed AMA, Samuel FH, Samuel AM, Doty HW. Influence of additives on the microstruc-ture and tensile properties of near-eutectic Al-10.8%Si cast alloy. Mater Des, in press]. The concentration of elements in the alloys was changed to the following range: Fe 0.5-1 wt%, Mn 0.5-1 wt%, Cu 2.25-3.25 wt%, and Mg 0.3-0.5 wt%, while the impact toughness upon artificial aging in a temperature range of 155-240 ℃ for 5 h was also investigated. The results indicate that the morphology of fibrous Si in Sr-modified alloys enhances toughness because of its profound effect on crack initiation and crack propagation resistance. The combined addition of modifier and grain refiner leads to a 33% increase in the impact strength compared to the untreated alloy. In alloys containing high levels of iron, such as the RF2 (~1% Fe, ~1% Mn) and RF4 (~1% Fe, ~0.5% Mn) alloys, the addition of iron leads to an increased precipitation of sludge or p-Fe platelets, respectively; these particles also act as crack initiation sites and reduce the impact properties noticeably. In alloys already containing high levels of copper, such as the RC2 (~3.25% Cu, ~0.3% Mg) and RC5(~0.3.25% Cu, ~0.5% Mg) alloys, increasing the copper level lowers the impact properties significantly, in view of the fact that the fracture behavior is now predominantly influenced by the Al_2Cu phase rather than by the Si particles. The average crack propagation speed of impact-tested samples shows a good inverse relationship to impact energy. Crack propagation speed can thus provide a qualitative estimation of the impact energy expected for special alloy conditions.
机译:本文研究了熔融处理和添加合金元素对铸态和热处理的Al-10.8%Si近共晶合金的冲击韧性的影响。在区分初始能量和传播能量(包括延展性指数,即延展性指数,即延展性与初始能量之比)的背景下,讨论了越来越精确的撞击行为。还讨论了总能量作为一种有用的措施。关于拉伸性能评估的细节在另一篇文章中报道[Mohamed AMA,Samuel FH,Samuel AM,Doty HW。添加剂对近共晶Al-10.8%Si铸造合金的组织和拉伸性能的影响。 Mater Des,印刷中]。合金中元素的浓度更改为以下范围:Fe 0.5-1 wt%,Mn 0.5-1 wt%,Cu 2.25-3.25 wt%和Mg 0.3-0.5 wt%,而人工时效的冲击韧性还研究了在155-240℃温度下5 h的情况。结果表明,Sr改性合金中纤维状Si的形态增强了韧性,因为它对裂纹萌生和裂纹扩展阻力具有深远的影响。与未处理的合金相比,改性剂和晶粒细化剂的组合添加导致冲击强度提高33%。在含铁量很高的合金中,例如RF2(〜1%Fe,〜1%Mn)和RF4(〜1%Fe,〜0.5%Mn)合金,铁的添加会增加污泥或铁的沉淀。 p-Fe血小板;这些颗粒还充当裂纹萌生点,并显着降低冲击性能。在已经含有高含量铜的合金中,例如RC2(〜3.25%Cu,〜0.3%Mg)和RC5(〜0.3.25%Cu,〜0.5%Mg)合金,增加铜含量会显着降低冲击性能考虑到断裂行为现在主要受Al_2Cu相而不是Si颗粒影响的事实。冲击测试样品的平均裂纹扩展速度与冲击能量呈反比关系。因此,裂纹扩展速度可以对特殊合金条件下预期的冲击能进行定性估计。

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