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Experimental verification of hematite ingot mould heat capacity and its direct utilisation in simulation of casting process

机译:赤铁矿铸模热容量的实验验证及其在铸造过程模拟中的直接利用

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摘要

Heat capacity of alloys (metals) is one of the crucial thermophysical parameters used for process behaviour prediction in many applications. Heat capacity is an input variable for many thermodynamical (e.g. Thermocalc, Pandat, MTData, …) and kinetic programs (e.g. IDS-Solidification analysis package, …). The dependences of heat capacity on common variables (temperature, pressure, ...) are also commonly used as the input data in software packages (e.g. ProCast, Magmasoft, ANSYS Fluent, …) that are applicable in the field of applied research for simulations of technological processes. It follows from the above that the heat capacities of materials, alloys in our case, play a very important role in the field of basic and applied research. Generally speaking, experimental data can be found in the literature, but corresponding (needed) data for the given alloy can very seldom be found or can differ from the tabulated ones. The knowledge of proper values of heat capacities of alloys at the corresponding temperature can be substantially used for addition to and thus towards the precision of the existing database and simulation software. This study presents the values of C p measured for the hematite ingot mould and comparison of the measured data with the C p values obtained using the software CompuTherm with respect to simulation of technological casting process.
机译:合金(金属)的热容是在许多应用中用于过程行为预测的关键热物理参数之一。热容量是许多热力学(例如Thermocalc,Pandat,MTData等)和动力学程序(例如IDS-Solidification分析软件包等)的输入变量。热容量对常见变量(温度,压力等)的依赖性也通常用作软件包(例如ProCast,Magmasoft,ANSYS Fluent等)中的输入数据,这些软件包可用于模拟的应用研究领域工艺流程。由上可知,在我们的案例中,材料,合金的热容量在基础研究和应用研究领域中起着非常重要的作用。一般来说,可以在文献中找到实验数据,但是很少找到给定合金的相应(需要)数据,或者与列表中的数据不同。合金在相应温度下的热容量的适当值的知识可以基本上用于增加现有数据库和模拟软件的精度,从而提高精度。这项研究介绍了赤铁矿铸锭模具测得的C p值,并将测得的数据与使用CompuTherm软件获得的C p值进行了比较,以模拟工艺铸造过程。

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