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Effect of Process Parameters on the Microstructure of Semi-solid ZL101 Aluminum Alloy

机译:工艺参数对半固态ZL101铝合金组织的影响

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Aluminum alloy is the important alloy which has been widely used. To reduce waste, it is necessary to thixoform these alloys in near net shape. Semi-solid slurry is the key in process. In this work, the semi-solid slurry of ZL101 aluminum alloy was prepared by using serpentine channel. Effect of process parameters on the microstructure of semi-solid ZL101 aluminum alloy produced by serpentine channel was investigated. The results show that, the morphology of primary ?±-Al grains transformed from rosette to spheroid with decreasing pouring temperature. Satisfied semi-solid slurry of ZL101 aluminum alloy was prepared with pouring at 630?°C to 670?°C. Increasing curve number can improve the morphology of primary ?±-Al grain and decrease grain size with same pouring temperature. Desired slurry can be obtained with the lower pouring temperature when serpentine channel is preheated. It can make the primary nucleus gradually evolve into spherical and near-spherical grains with the effect of a??self-stirringa?? in serpentine channel and chilling.
机译:铝合金是已被广泛使用的重要合金。为了减少浪费,有必要将这些合金制成接近最终形状的触变性。半固体浆料是过程中的关键。本文利用蛇形通道制备了ZL101铝合金的半固态浆料。研究了工艺参数对蛇形通道生产的半固态ZL101铝合金组织的影响。结果表明,随着浇铸温度的降低,初生α±Al晶粒的形貌由玫瑰花状转变为球状。 ZL101铝合金的满意半固态浆料是在630°C至670°C的温度下浇铸而成的。在相同的浇铸温度下,增加曲线数可以改善初生α±Al晶粒的形貌并减小晶粒尺寸。当蛇形通道被预热时,可以以较低的浇铸温度获得所需的浆料。它可以使原核逐渐发展成球形和近球形的颗粒,并具有“自我刺激”的作用。在蜿蜒的通道和寒冷。

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