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Development of the Electromagnetic Continuous Casting Technology for of Magnesium Alloys

机译:镁合金电磁连铸技术的发展

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Currently, magnesium billets produced by ingot casting or direct chill casting process, result in low-quality surfaces and low productivity, Continuous casting technology to solve these problem has not only high-quality surface billets with fine-grained and homogeneous microstructure but also cost down. The latent heat of fusion per weight (J/g) of magnesium is similar to other metals, however, considering the heat emitted to the mold surface during continuous casting in meniscus region and converting it to the latent heat of fusion per volume, magnesium will be rapidly solidified in the mold during continuous casting, which induces subsequent surface defect formation. In this study, electromagnetic casting and stirring (EMC and EMS) techniques are proposed to control solidification process conveniently by compensating the low latent heat of solidification by volume and to fabricate magnesium billet with high-quality surface. This technique was extended to large scale billets up to 300 mm diameter and continuous casting was successfully conducted. Then magnesium billet was used for the fabrication of prototype automobile pulley.
机译:目前,通过铸锭铸造或直接冷却铸造工艺生产的镁坯,导致低质量的表面和低生产率,连续铸造技术来解决这些问题不仅具有精细颗粒和均匀的微观结构的高质量表面坯料,而且降低了。每重量(J / g)镁的静脉潜热类似于其他金属,然而,考虑到在弯月面区域的连续铸造过程中,将其发射到模具表面并将其转化为每体积融合的潜热,镁将在连续铸造期间在模具中迅速凝固,诱导后续表面缺陷形成。在该研究中,提出了通过补偿体积的凝固的低潜热和用高质量表面制造镁坯来控制凝固过程来控制凝固过程。该技术延伸到高达300毫米直径的大型坯料,连续进行连续铸造。然后镁坯用于制造原型汽车皮带轮。

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