首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Development of rheology vacuum low-pressure die casting with electromagnetic stirrer and vacuum system
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Development of rheology vacuum low-pressure die casting with electromagnetic stirrer and vacuum system

机译:带有电磁搅拌器和真空系统的流变真空低压压铸件的开发

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摘要

In this study, a rheology vacuum low-pressure die caster is developed by installing a vacuum system in the die and an electromagnetic stirrer in the rasing pipe of a low-pressure die casting system. The cavity dimensions are 130 mm in the filling direction and 110 mm in the vertical direction, with a thickness of 1 mm. The fluidity of the material inside the die cavity is improved by maintaining the vacuum state inside the die. The electromagnetic stirrer is attached to the outside of the rasing pipe, which connects the furnace to the lower die. The application of the electromagnetic stirrer enables the achievement of microstructure with fine and globular primary -Al particles by disrupting the dendrite structure. A mild filling simulation is conducted using a commercial casting analysis program prior to an experiment with the rheology vacuum low-pressure die caster. The rheological behaviour of the material inside the die is observed. A rheological thin plate is fabricated by applying a melt temperature of 615 degrees C, a vacuum of 60 Torr, and a gas pressure of 15 bar. There is little eutectic structure, with primary aluminium grains of 30 mu m or below that are mostly distributed due to the effects of stirring. The tensile strength and elongation are 120 MPa and 15%, respectively. The hardness is 61-66 HV.
机译:在这项研究中,流变真空低压压铸机是通过在低压压铸系统的模具中安装真空系统并在刮浆管中安装电磁搅拌器而开发的。空腔尺寸在填充方向上为130 mm,在垂直方向上为110 mm,厚度为1 mm。通过保持模具内部的真空状态,可以提高模具腔内部材料的流动性。电磁搅拌器安装在磨浆管的外部,磨浆管将熔炉连接到下模。电磁搅拌器的应用可以通过破坏树枝状晶体的结构来实现具有细小和球形初级Al粒子的微结构。在使用流变真空低压压铸机进行实验之前,使用商业铸造分析程序进行温和的填充模拟。观察到模具内部材料的流变行为。通过施加615摄氏度的熔融温度,60托的真空度和15巴的气压来制造流变薄板。共晶组织很少,由于搅拌的作用,主要分布在30μm或以下的原始铝晶粒。拉伸强度和伸长率分别为120MPa和15%。硬度为61-66 HV。

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