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Impact of the Direct Ageing Procedure on the Age Hardening Response of Al-Mg-Si 6101 Alloy

机译:直接时效工艺对Al-Mg-Si 6101合金时效硬化响应的影响

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Al-Mg-Si alloys are used not only as construction material, but also as a material for electrical conductors. For this application, it is crucial for the alloy to achieve a balance between strength and electrical properties. This is achieved in practice by a combination of strain and precipitation hardening. The current paper focuses on a heat treatment procedure in which the EN AW 6101 alloy is cooled by a flowing air stream from the solutionizing temperature down to the artificial ageing temperature. The proposed procedure, unlike the common heat treatment leading to the T6 temper, allowed for the precipitation of the coarser β” phase with the presence of relatively wide precipitate-free zones. The age hardening response was investigated by Brinell hardness measurements, eddy current testing and microstructural observations using transmission electron microscopy (TEM). The applied heat treatment resulted in slightly lower strength (compared to the T6 temper), but improved electrical performance of the alloy.
机译:Al-Mg-Si合金不仅用作建筑材料,还用作电导体的材料。对于这种应用,合金在强度和电性能之间取得平衡至关重要。实际上,这是通过应变和沉淀硬化的组合来实现的。当前的论文着重于热处理程序,其中EN AW 6101合金通过流动的气流从固溶温度降至人工时效温度进行冷却。所提出的程序与导致T6回火的普通热处理不同,它允许在较宽的无沉淀区存在的情况下沉淀较粗的β”相。通过布氏硬度测量,涡流测试和使用透射电子显微镜(TEM)的微观结构观察研究了时效硬化响应。施加的热处理导致强度略低(与T6态相比),但改善了合金的电性能。

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