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Influence of the electromagnetic stirring on globularization of primary solid phase in solid-liquid region

机译:电磁搅拌对固液区初生固相球化的影响

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摘要

Forming of alloy and composite within a solid-liquid region, i.e. thixo-forming and rheo-forming, has been recognized as a technology offering several potential advantages over casting and forging such as a low forming pressure, reduction of macrosegregation, and reduction of porosity. In this paper, a globularization for primary solid phase by a forced fluid flow in melt due to electromagnetic stirring during solidification and isothermal stirring at solid-liquid region, was examined to produce Al alloy having a globular solid phase to get a thixotropic behavior. The electromagnetic stirrer was specially designed and manufactured to create all kind of fluid flow pattern such as a circumferential, vertical, helicoidally and contra-rotating flow pattern during the solidification of a melt. The size and roundness of primary solid phase of the quenched sample after isothermal stirring at solid-liquid region were measured with respect to a stirring time and frequency. The globularization of solid phase was enhanced with incresing the stirring tune and electromagnetic flux density, i.e. stirring strength.
机译:在固液区域内形成合金和复合材料,即触变成形和流变成形,已被认为是一种技术,与铸造和锻造相比具有多种潜在优势,例如低成形压力,减少宏观偏析和降低孔隙率。在本文中,研究了固溶过程中电磁搅拌和固液区等温搅拌引起的在熔体中的强制流体流动,从而使初级固相球化,从而生产出具有球状固相并具有触变性的铝合金。电磁搅拌器经过专门设计和制造,可在熔体凝固过程中产生各种流体流动方式,例如圆周,垂直,螺旋和反向旋转流动方式。相对于搅拌时间和频率,测量了在固液区等温搅拌后的淬火样品的初级固相的大小和圆度。固相的球状化通过增加搅拌频率和电磁通量密度,即搅拌强度而增强。

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