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Microstructure evolution of allotropic materials during thermomechanical processing

机译:热加工过程中同素异形材料的微观结构演变

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The microstructure developed during hot deformation is the result of deformation mechanisms such as dynamic recovery and dynamic recrystallization. Hot deformation can also result in damage and flow localisation, especially in multiphase metal based materials. Several models have been proposed to correlate the parameters of the deformation process (temperature, strain and strain rate) with the flow behaviour such as the processing maps. They were developed based on the dynamic materials model (DMM) and later a modified DMM introduced some changes in the calculation of the processing maps. The correlation of the relevant microstructural changes with thermodynamic parameters are tested and discussed. The data was obtained by using the Gleeble simulator with in situ quenching facilities. Microstructural studies related to the hot deformation of metals were carried out based on alpha-beta and near beta titanium alloys and on low carbon steels. The results are correlated with the efficiency of power dissipation, and the constitutive equations. In diffusion controlled processes such as dynamic recovery, dynamic recrystallization, phase transformation and pore coarsening are related to high power efficiency, and to low n exponent. The efficiency of power dissipation is more sensitive to the deformation parameters than the constitutive equations for materials with phase transformation.
机译:热变形过程中形成的微观结构是变形机制(例如动态恢复和动态再结晶)的结果。热变形还会导致损坏和流动局部化,尤其是在多相金属基材料中。已经提出了几种模型来将变形过程的参数(温度,应变和应变率)与流动行为(例如加工图)相关联。它们是根据动态材料模型(DMM)开发的,后来经过修改的DMM在处理图的计算中引入了一些更改。测试和讨论了相关的微观结构变化与热力学参数的相关性。通过使用带有原位淬火设备的Gleeble仿真器获得数据。基于α-β和近β钛合金以及低碳钢,进行了与金属热变形有关的显微组织研究。结果与功耗效率以及本构方程相关。在扩散控制的过程中,例如动态恢复,动态再结晶,相变和孔粗化与高功率效率和低n指数有关。与具有相变材料的本构方程相比,功耗的效率对变形参数更为敏感。

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