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Microstructural Changes and Thermal Stability of A201, 319s and 2618 Aluminum Alloys during Thermal Exposure

机译:热曝光期间A201,319s和2618铝合金的微观结构变化和热稳定性

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Turbocharger compressor wheels are often made of 3XX cast aluminum alloys and forged 2618 alloy. These age hardening aluminum alloys have high strength-to-weight ratio at ambient temperature. However, the strength of the aluminum alloys decreases rapidly when applied at high temperatures, such as for turbochargers where application temperature can be above 200 °C. The major reason is that the fine precipitated phases coarsen rapidly tending to their equilibrium states. The thermal stability of the 319s-T61, A201-T71 and 2618-T6 alloys were compared in this paper. The three alloys were exposed at 200 °C for 100 h during heat treatment. Hardness, tensile tests and TEM were carried out to investigate the mechanical properties and microstructure variation of these three alloys. The results indicated that the A201 alloy exhibited the best thermal stability among the three alloys and 319s alloy is the weakest one. TEM observation showed that with the increase of the exposure time, the strengthening precipitates phase θ' in A201/319s alloys and S' in 2618 alloy coarsened and then transformed to stable θ phase and S phase, respectively, while the primary strengthening phase Ω in A201 remained stable, which may be contributed the higher thermal stability of A201 than 319s and 2618.
机译:涡轮增压器压缩机轮子通常由3xx铸铝合金和锻造2618合金制成。这些硬化铝合金在环境温度下具有高强度重量比。然而,当在高温下施加时,铝合金的强度随着涡轮增压器施用而迅速降低,其中施加温度可以高于200℃。主要原因是细沉淀的阶段粗糙倾向于其平衡状态。在本文中比较了319S-T61,A201-T71和2618-T6合金的热稳定性。在热处理期间,三种合金在200℃下暴露100小时。进行硬度,拉伸试验和TEM,以研究这三种合金的机械性能和微观结构变化。结果表明,A201合金在三种合金中表现出最佳的热稳定性,319S合金是最弱的。 TEM观察表明,随着暴露时间的增加,在2618合金中加强沉淀沉淀的沉淀沉淀,分别在2618合金中的2618个合金中的θ'分别转化为稳定的θ相和S相,而初级强化相位ω A201保持稳定,这可能导致A201至319s和2618的较高的热稳定性。

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