首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Microstructural Evolution of Cast Hyper-Eutectic Al-18% Si Alloy during Cyclic Semi-Solid Heat Treatment
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Microstructural Evolution of Cast Hyper-Eutectic Al-18% Si Alloy during Cyclic Semi-Solid Heat Treatment

机译:铸造半共晶Al-18%Si合金在循环半固态热处理过程中的组织演变

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The cyclic semi-solid heat treatment represents a promising technique for improving microstructure and mechanical properties of a wide range of metallic alloys. In the current research the influence of cyclic semi-solid heat treatment on microstructure of Al-18% Si alloy containing 0.8% Fe has been studied. All specimens were heated in an electrically heated resistance furnace with heating rate of 10°C·min-1 to 585°C. For a complete one cycle heat treatment (5 min heating time), samples after 5 min holding at 585°C were cooled to a temperature of 550°C in still air cooling and the samples were taken out immediately for water quenching. It was found that heat treatment cycles should be limited to 3 cycles or less in order to maintain fine grain size and globular structure without agglomeration and coalescence. Cyclic semi-solid heat treatment changes morphology of iron-rich intermetallics phases to be plate-like and fine plate iron-rich intermetallics phases, in stead of needle-like iron-rich intermetallics phases that are observed in as-cast samples. Cyclic heating shows a relatively higher hardness for all heating cycles compared with as-cast one due to its finer and globular structure. Cyclic semi-solid heat treatment technique results in lower coarsening rate constant compared with isothermal heat treatment one due to coarsening discontinuous effect.
机译:循环半固体热处理代表了一种有前途的技术,可用于改善各种金属合金的微观结构和机械性能。在目前的研究中,已经研究了循环半固态热处理对铁含量为0.8%的Al-18%Si合金组织的影响。将所有样品在电阻加热炉中以10°C·min-1至585°C的加热速率加热。为了进行完整的一周期热处理(加热时间为5分钟),将在585°C下保温5分钟后的样品在静止空气冷却中冷却至550°C,并立即取出样品进行水淬。已经发现,为了保持细晶粒尺寸和球状结构而没有团聚和聚结,热处理周期应限制在3个周期或更短。循环半固体热处理将富铁金属间化合物相的形态变为板状和细板富铁金属间化合物相,而不是铸态样品中观察到的针状富铁金属间化合物相。与铸态相比,循环加热在所有加热循环中均显示出相对较高的硬度,这是由于其更细且呈球状的结构。循环半固态热处理技术由于等化粗化的不连续性,与等温热处理相比,粗化速率常数较低。

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