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Effects of up-quenching on age-hardening behaviors in Al–Mg–Si alloys

机译:淬火对Al-Mg-Si合金时效行为的影响

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摘要

Inspired by a success in applying a fluidized bed furnace to high-temperature solution treatments, the present authors have attempted to modify the age-hardening characteristics of Al–Mg–Si alloys by utilizing its superior heating rate. Two-step ageing treatments have been applied to five kinds of alloys with different Mg2Si and excess Si contents. Heating rates for the first and the second ageing treatments have been varied as well as ageing temperature for the first ageing treatment. It has been clarified that the rapid heating to the first ageing temperature enhances strength compared to the standard T6-temper for all the alloys tested, especially for a balanced alloy with a low Mg2Si content. It has been confirmed that small precipitates are formed in high density in such cases. In most cases, the improvements in hardness have been observed by adding the ageing treatment at 353 or 373 K for only 0.8 ks before the ordinary ageing at 450 K. We attribute this to the suppression of unfavorable clusters which ordinarily form below those temperatures during heating.
机译:受成功将流化床炉应用于高温固溶处理的启发,本作者试图利用其优越的加热速率来改变Al-Mg-Si合金的时效硬化特性。两步时效处理已应用于五种具有不同Mg2Si和过量Si含量的合金。第一和第二时效处理的加热速率以及第一时效处理的时效温度已经改变。已经明确的是,对于所有测试的合金,特别是对于具有低Mg2Si含量的平衡合金,与标准T6-回火相比,快速加热至第一时效温度可以提高强度。已经证实在这种情况下以高密度形成小的沉淀物。在大多数情况下,通过在353或373 K处添加时效处理仅0.8 ks,然后在450 K时进行普通时效,可以观察到硬度的改善。我们将此归因于抑制了通常在加热过程中低于此温度形成的不良团簇。 。

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