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Microstructure Evolution and Mechanical Properties of Rheoformed YL112 Aluminum Alloy

机译:流变YL112铝合金的组织演变和力学性能。

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Rheo-die casting (RDC) based on LSPSF (low superheat pouring with a shear field) rheocasting process has been exploited. In case of secondary die casting aluminum alloy YL112, LSPSF allowed for preparation of sound semi-solid slurry in 15-20s that fully meet the production rate of HPDC, the primary α-Al exhibiting a mean equivalent diameter of 70 urn and shape factor of 0.93, without any entrapped eutectic. Compared to conventional HPDC, RDC improves microstructures in castings. Secondary solidification of semi-solid slurry takes place uniformly throughout the entire cavity, producing an extremely fine and uniform microstructure. The experimental results show the RDC 380 alloy has much improved integrity and mechanical properties, particularly elongation, and heat treatment can be used to enhance the mechanical properties.
机译:已经开发了基于LSPSF(具有剪切场的低过热度浇铸)流变铸造工艺的流变压铸件(RDC)。如果采用二次压铸铝合金YL112,则LSPSF可以在15-20s内制备出完全满足HPDC生产率的半固态半固态浆料,一次α-Al的平均当量直径为70 urn,形状因子为0。 0.93,无任何残留的共晶。与传统的HPDC相比,RDC改善了铸件的显微组织。半固体浆料的二次固化在整个腔体内均匀进行,从而产生极细且均匀的微观结构。实验结果表明,RDC 380合金具有更高的整体性和机械性能,尤其是伸长率,并且可以通过热处理来提高机械性能。

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