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模拟增材制造工艺的快速差示扫描量热法:铝合金的比热容分析

Fast differential scanning calorimetry to mimic additive manufacturing processing: specific heat capacity analysis of aluminium alloys.

作者信息

Quick Cameron R, Dumitraschkewitz Phillip, Schawe Jürgen E K, Pogatscher Stefan

机构信息

Chair of Non-Ferrous Metallurgy, Montanuniversitaet Leoben, Leoben, Austria.

Mettler-Toledo GmbH, Analytical, 8606 Nänikon, Switzerland.

出版信息

J Therm Anal Calorim. 2023;148(3):651-662. doi: 10.1007/s10973-022-11824-4. Epub 2022 Dec 7.

Abstract

Eutectic AlSi12, commonly used in casting and in additive manufacturing, is investigated with Fast Differential Scanning Calorimetry to determine the impact of different cooling rates from the liquid state upon the apparent specific heat capacity on subsequent heating. A heat flow correction strategy is developed and refined for the reliable and precise measurement of sample heat flow using chip sensors and assessed by the evaluation of results on pure (99.999%) aluminium. That strategy is then applied to the study of the AlSi12 eutectic alloy, and rate-dependent perturbations in the measured apparent specific heat capacity are discussed in terms of Si supersaturation and precipitation. Several cooling rates were implemented from - 100 to - 30,000 K s, and subsequent heating ranged from + 1000 to + 30,000 K s. After rapid cooling, a drop in AlSi12 apparent specific heat capacity is found on heating above ~ 400 °C; even at rates of + 10,000 K s, a result which has high relevance in metal additive manufacturing where similarly fast temperature cycles are involved. The Literature data, temperature modulated DSC and CALPHAD simulations on the heat capacity of AlSi12 are used to provide comparative context to the results from Fast Differential Scanning Calorimetry.

摘要

共晶AlSi12常用于铸造和增材制造,采用快速差示扫描量热法进行研究,以确定从液态开始不同冷却速率对后续加热时表观比热容的影响。开发并完善了一种热流校正策略,用于使用芯片传感器可靠、精确地测量样品热流,并通过对纯(99.999%)铝的结果评估进行了评估。然后将该策略应用于AlSi12共晶合金的研究,并根据硅过饱和和析出情况讨论了测量的表观比热容中与速率相关的扰动。实施了从-100到-30000K/s的几种冷却速率,随后的加热速率范围为+1000到+30000K/s。快速冷却后,发现加热到约400°C以上时AlSi12的表观比热容下降;即使在+10000K/s的速率下也是如此,这一结果在涉及类似快速温度循环的金属增材制造中具有高度相关性。利用关于AlSi12比热容的文献数据、温度调制DSC和CALPHAD模拟为快速差示扫描量热法的结果提供对比背景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d907/9892126/f7a6f0214866/10973_2022_11824_Fig1_HTML.jpg

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