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Investigation into the rapid compression of semi-solid alloy slugs

机译:半固态合金块的快速压缩研究

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The shaping of metals by thixoforming relies on the unusual flow behaviour of slurries containing non-dendritic solid, which was first studied at MIT in the early 1970s. It was discovered that if an alloy is uniformly stirred during freezing, discrete rounded particles of solid are formed rather than the normal dendrites, and the slurry is highly fluid (10 P or 1 Pa s, like machine oil) up to at least 50 percent solid. Furthermore, these slurries were found to be thixotropic, in that their apparent viscosity is dependent on shear rate and time; the more vigorously they are stirred, the more fluid they become. However, on standing without stirring they begin to stiffen and become more viscous (10~7 P or 10~6 Pa s, rather like stiff butter). Stirring again will cause a return to relatively low viscosity. It has also been shown that the alloy microstructure has an important and sensitive effect on fluidity. Ideally, rounded solid particles, without any entrapped liquid, are needed to obtain the highest fluidity.Under normal thixoforming conditions, the semi-solid slugs experience rapid compression before flowing into the die cavity. During a very short time interval, they experience intense shear thinning and their flow behaviour changes from one resembling a solid able to support its own shape, to that of a viscous liquid. Here, a technique of rapid compression testing is outlined, carried out under conditions similar to normal thixoforming, to assess the semi-solid flow behaviour.
机译:通过触变成型对金属进行成型取决于含非树突状固体的浆料的异常流动行为,该现象在1970年代初期由MIT进行了首次研究。已发现,如果在冷冻过程中均匀搅拌合金,则会形成离散的圆形固体颗粒而不是正常的树枝状晶体,并且浆料的流动性很高(10 P或1 Pa s,如机器油),至少达到50%固体。此外,发现这些浆料是触变的,因为它们的表观粘度取决于剪切速率和时间。它们搅拌得越剧烈,它们变得越流体化。然而,在不搅拌的情况下,它们开始变硬并变得更加粘稠(10〜7 P或10〜6 Pa s,就像硬黄油一样)。再次搅拌将使粘度恢复到相对较低的水平。还显示出合金的微观结构对流动性具有重要而敏感的影响。理想情况下,需要没有任何夹带液体的圆形固体颗粒以获得最高的流动性。在正常的触变性条件下,半固体块料在流入模腔之前会经历快速压缩。在很短的时间间隔内,它们会经历剧烈的剪切稀化,并且其流动行为会从类似于能够支撑其自身形状的固体变为粘性液体。在此,概述了一种快速压缩测试技术,该技术在类似于常规触变性的条件下进行,以评估半固态流动行为。

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