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Rheological Characterization of a New Alloy for Thixoforming

机译:触变成形新合金的流变特性

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A new aluminum alloy (AlSi5Mg0.5Cu0.3Ag) for semisolid die-casting applications was designed, starting from computational thermodynamics calculations by Computherm Database. The goal was to obtain a combination of good castability and proper concentration of hardening elements for strengthening precipitation treatment. The predicted thixotropic properties were verified by measuring the microstructural conventional parameters, such as globule size and shape factor, and the solidification range, by means of differential scanning calorimetry. To complete the characterization of this new alloy and to evaluate its applicability in industrial production, the shear rate and time-dependent flow behavior of the alloy in the semisolid state was studied in a Searle-type rheometer. A future aim of the present research is to try to use rheology testing as the tool to optimize the chemical composition, in order to design an alloy characterized by good mechanical performances and easy processability. Considering the strong influence of the solid fraction content on semisolid alloy viscosity, the rheology tests were interrupted after a certain time and the alloy was deeply freezed using vaporized liquid nitrogen, in order to fix the microstructure and verify the correctness of the thermodynamic simulation.
机译:从Computherm数据库的计算热力学计算开始,设计了一种用于半固态压铸应用的新型铝合金(AlSi5Mg0.5Cu0.3Ag)。目标是获得良好的可铸造性和适当浓度的硬化元素,以加强沉淀处理。通过使用差示扫描量热法测量微结构常规参数(例如球尺寸和形状因子以及凝固范围)来验证预测的触变性。为了完成这种新型合金的表征并评估其在工业生产中的适用性,在Searle型流变仪中研究了半固态合金的剪切速率和随时间变化的流动行为。本研究的未来目标是尝试使用流变学测试作为优化化学成分的工具,以设计具有良好机械性能和易加工性的合金。考虑到固含量对半固态合金粘度的强烈影响,在一定时间后中断流变试验,并使用汽化液氮将合金深冻,以固定其微观结构并验证热力学模拟的正确性。

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