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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Thixoforming of an ECAPed Aluminum A356 Alloy: Microstructure Evolution, Rheological Behavior, and Mechanical Properties
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Thixoforming of an ECAPed Aluminum A356 Alloy: Microstructure Evolution, Rheological Behavior, and Mechanical Properties

机译:ECAPed铝A356合金的触变性:组织演变,流变行为和力学性能

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摘要

Thixoforming depends upon three aspects: (a) solid to liquid transformation; (b) size and morphology of the remaining solid phase in the semisolid state, and (c) the effect of both input factors on rheology of the semisolid slurry. The aluminum A356 alloy presents an ideal solid to liquid transformation, but the solidification process generates coarse aluminum dendrites surrounded by eutectic. In this regard, Equal Channel Angular Pressing (ECAP) has great potential as a method for manufacturing thixotropic raw material due to its grain refining effect. Therefore, the microstructure evolution and rheological behavior in the semisolid state of an ECAPed aluminum A356 alloy were investigated. Samples were heated up to 853 K (580 A degrees C) and held for 0, 30, 60, 90, 210, and 600 seconds at this temperature. The isothermal heat treatment caused the globularization of the solid phase without any significant microstructure coarsening. Compression tests were carried out at the same temperature and holding times using an instrumented mechanical press. Apparent viscosities values close to 250 Pa s were obtained, revealing the exceptional rheological behavior of the produced samples. The thixoformed material also presented good mechanical properties, with high yield and ultimate tensile strength values (YS = 110/122 MPa, UTS = 173/202), and good ductility (E = 6.9/7.5 pct). These results indicate that the production of the A356 alloy via the ECAP process increases its thixoformability.
机译:触变性取决于三个方面:(a)固态到液态的转变; (b)处于半固态的剩余固相的大小和形态,以及(c)两种输入因子对半固态浆体流变性的影响。铝A356合金具有理想的固液转变性能,但凝固过程中会产生被共晶包围的粗大铝枝晶。在这方面,由于其细化晶粒的效果,等通道角挤压(ECAP)作为制造触变原材料的方法具有巨大的潜力。因此,研究了ECAPed铝A356合金在半固态时的微观结构演变和流变行为。将样品加热到853 K(580 A摄氏度),并在此温度下保持0、30、60、90、210和600秒。等温热处理引起固相的球状化,而没有任何明显的微观结构粗化。使用仪器机械压力机在相同的温度和保持时间下进行压缩测试。获得的表观粘度值接近250 Pa s,表明所生产样品的异常流变行为。触变成型的材料也表现出良好的机械性能,具有高屈服和极限抗拉强度值(YS = 110/122 MPa,UTS = 173/202),以及良好的延展性(E = 6.9 / 7.5 pct)。这些结果表明,通过ECAP工艺生产A356合金可提高其触变性。

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