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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Quench-induced precipitates in Al-Si alloys: Calorimetric determination of solute content and characterisation of microstructure
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Quench-induced precipitates in Al-Si alloys: Calorimetric determination of solute content and characterisation of microstructure

机译:Al-Si合金中的淬火诱发沉淀:溶质含量的量热测定和显微组织表征

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The present study introduces an experimental approach to investigate mechanical properties of well-defined non-equilibrium states of Al-Si alloys during cooling from solution annealing. The precipitation behaviour of binary Al-Si alloys during the cooling process has been investigated in a wide cooling rate range (2-0.0001 K/s) with differential scanning calorimetry (DSC). To access the low cooling rate range close to equilibrium an indirect DSC measurement method is introduced. Based on the enthalpy change measured by DSC a physically-based model for the calculation of remaining solute Si amount as function of temperature and cooling rate is presented. Microstructural analyses via light optical microscopy, scanning electron microscopy, atom probe tomography and X-ray diffraction have been performed to evaluate the introduced model and for information on cooling rate dependent precipitate formation. It was found that quench-induced particles of different morphology are formed during cooling. Thermomechanical analyses on clearly distinct undercooled Al-Si states show that flow stress during cooling is dependent on temperature as well as cooling rate. The mechanical behaviour is therefore influenced by solute Si content and quench-induced precipitates. (C) 2015 Elsevier B.V. All rights reserved.
机译:本研究引入了一种实验方法来研究固溶退火冷却过程中Al-Si合金明确定义的非平衡态的力学性能。使用差示扫描量热法(DSC)在较宽的冷却速率范围(2-0.0001 K / s)中研究了二元Al-Si合金在冷却过程中的析出行为。为了获得接近平衡的低冷却速率范围,引入了间接DSC测量方法。基于DSC测得的焓变,提出了基于物理的模型,用于计算剩余固溶Si量随温度和冷却速率的变化。通过光学显微镜,扫描电子显微镜,原子探针层析成像和X射线衍射进行了显微结构分析,以评估引入的模型并获得与冷却速率有关的沉淀形成信息。发现在冷却过程中形成了不同形态的淬火诱导的颗粒。对明显不同的过冷Al-Si态的热力学分析表明,冷却过程中的流动应力取决于温度以及冷却速率。因此,机械行为受固溶硅含量和淬火诱发的沉淀影响。 (C)2015 Elsevier B.V.保留所有权利。

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