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首页> 外文期刊>Journal of Materials Processing Technology >Structure evolution and compressive behavior of semi-solid Al-Si hypoeutectic alloy with re-melting heat treatment
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Structure evolution and compressive behavior of semi-solid Al-Si hypoeutectic alloy with re-melting heat treatment

机译:半固态Al-Si亚共晶合金的重熔热处理组织演变及压缩行为

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This paper presents a new method--a re-melting heat treatment method--to fabricate a semi-solid billet of Al-Si hypoeutectic alloy and examines the effect of re-melting temperature, holding temperature and holding time on the semi-solid structural evolution. Semi-solid compression tests are carried out to investigate the deformation behavior and deformation mechanism using a semi-solid billet fabricated by the re-melting heat treatment method. Semi-solid compressive deformation is described using a simple hexagon model. In the compression forming of a semi-solid billet the liquid flow leads to motion or rotation of solid particles, which results in the appealing of some "vacancy" among the primary phase. This makes it easy for solid particles nearby to move to the position of "vacancy" to reach a new arrangement. Semi-solid compressive deformation involves liquid flow, motion or rotation and plastic deformation of solid particles. The solid fraction will affect the practical deformation manner. For a low solid fraction the rotation or motion of solid particles and liquid flow will take a dominant role, whilst for a high solid fraction the solid particles tend to contact each other, so that plastic deformation of solid particles is the main manner. This compressive deformation model is verified by experimental results.
机译:本文提出了一种新的方法-一种重熔热处理方法-来制造Al-Si亚共晶合金的半固态坯料,并研究了重熔温度,保温温度和保温时间对半固态的影响结构演变。进行了半固态压缩试验,以研究通过重熔热处理方法制造的半固态坯料的变形行为和变形机理。使用简单的六边形模型描述了半固体压缩变形。在半固体坯料的压缩成形中,液体流动导致固体颗粒的运动或旋转,这导致在初级相中具有一些“空位”的吸引力。这使得附近的固体颗粒很容易移动到“空位”的位置以达到新的布置。半固体压缩变形涉及液体的流动,运动或旋转以及固体颗粒的塑性变形。固形分会影响实际的变形方式。对于低固体分数,固体颗粒的旋转或运动和液体流将起主要作用,而对于高固体分数,固体颗粒倾向于彼此接触,因此固体颗粒的塑性变形是主要方式。实验结果验证了该压缩变形模型的正确性。

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