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Application of DSC Method in Studies on Phase Transitions of Ni Superalloys

机译:DSC方法在镍高温合金相变研究中的应用

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The paper presents results of calorimetric studies of foundry nickel superalloys: IN100, IN713C, Mar-M247 and ?S6U. Particular attention was paid to determination of phase transitions temperatures during heating and cooling. The samples were heated to a temperature of 1500°C with a rate of 10°C?min-1 and then held at this temperature for 5 min. After a complete melting, the samples were cooled with the same rate. Argon with a purity of 99.99% constituted the protective atmosphere. The sample was placed in an alundum crucible with a capacity of 0.45 cm3. Temperature and heat calibration was carried out based on the melting point of high-purity Ni. The tests were carried out by the differential scanning calorimetry (DSC) using a Multi HTC high-temperature calorimeter from Setaram. Based on the DSC curves, the following temperatures were determined: solidus and liquidus, dissolution and precipitation of the γ’ phase, MC carbides and melting of the γ’/γ eutectic. In the temperature range of 100-1100°C, specific heat capacity of the investigated superalloys was determined. It was found that the IN713C and IN100 alloys exhibit a higher specific heat while compared to the Mar-M247 and ?S6U alloys.
机译:本文介绍了铸造镍超合金:IN100,IN713C,Mar-M247和?S6U的量热研究结果。特别注意确定加热和冷却过程中的相变温度。将样品以10℃×min-1的速率加热到1500℃,然后在该温度下保持5分钟。完全熔化后,以相同的速率冷却样品。纯度为99.99%的氩气构成保护气氛。将样品放置在容量为0.45 cm3的刚玉坩埚中。基于高纯度Ni的熔点进行温度和热校准。使用来自Setaram的Multi HTC高温量热计通过差示扫描量热法(DSC)进行测试。根据DSC曲线,确定以下温度:固相线和液相线,γ′相的溶解和沉淀,MC碳化物以及γ′/γ共晶的熔化。在100-1100°C的温度范围内,确定了所研究的高温合金的比热容。发现与Mar-M247和?S6U合金相比,IN713C和IN100合金具有更高的比热。

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