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Experimental Investigations And Numerical Modelling of 210CR12 Steel in Semi-Solid State

机译:半固态210Cr12钢的实验研究与数值模型

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Experimental investigation, including hot compression and simple closed die filling was performed. Temperature range of tests was between 1225 deg C and 1320 deg C. Temperature selection was adequate with liquid fraction between 20 and 60percent, which is typical for thixoforming processes. In the die filling test, steel dies with ceramic layer was used (highly refractory air-setting mortar JM 3300 manufactured by Thermal Ceramics). Experiments were carried out on the Gleeble 3800 physical simulator with MCU unit. In the paper, methodology of experimental investigation is described. Dependency of forming forces on temperature and forming velocities is analysed. Obtained results are discussed. The second part of the paper concerns numerical modelling of semi-solid forming. Numerical models for both sets of test were developed. Structural and Computational Fluid Dynamics models are compared. Initial works in microstructural modelling of 210CR12 steel behaviour are described. Lattice Boltzman Method model for thixotropic flows is introduced. Microscale and macroscale models were integrated into multiscale simulation of semi-solid forming. Some fundamental issues related to multiscale modelling of thixoforming are discussed.
机译:实验研究,包括热压缩和简单的闭合模填充。试验温度范围为1225℃和1320℃。温度选择足以呈20至60%的液体分数,这对于抗速率工艺是典型的。在模具填充试验中,使用钢与陶瓷层的钢模具(通过热陶瓷制造的高耐火空气设定砂浆JM 3300)。用MCU单元在GLEEBLE 3800物理模拟器上进行实验。本文描述了实验研究的方法。分析了形成力对温度和形成速度的依赖性。讨论了得到的结果。本文的第二部分涉及半固体成型的数值模拟。开发了两组测试的数值模型。比较结构和计算流体动力学模型。描述了210Cr12钢行为的微观结构建模中的初始工作。介绍了触变性流动的晶格玻璃螺栓方法模型。微观和宏观模型集成到半固体成型的多尺度模拟中。讨论了与多尺度模型相关的一些基本问题。

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