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Modelling of active transformation of microstructure of two-phase Ti alloys during hot working

机译:热加工过程中两相钛合金微观组织的主动转变模型

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摘要

Being very strong and of limited ductility, Ti alloys require special techniques to manufacture the parts with complex shapes. Many of these technologies are based on superplastic and near-to-superplastic deforming. In these processes the transformation of the microstructure of the material can be very significant and can lead to changes in the mechanical properties of the material during deformation. Because of this an appropriate description of the correlation between mechanical loading, changes in microstructure and mechanical behavior of material is required. A phenomenological scalar model with an internal variable based on a statistical description of microstructure is proposed and used for simulation of the high temperature deformation of Ti-6Al-4V alloy. The problems of obtaining the parameters of the model and sensitivity of the model to the accuracy of this process are discussed.
机译:钛合金非常坚固且延展性有限,因此需要特殊的技术来制造形状复杂的零件。这些技术中的许多技术都是基于超塑性和接近超塑性的变形。在这些过程中,材料的微观结构的转变可能非常重要,并可能导致变形过程中材料的机械性能发生变化。因此,需要适当描述机械载荷,材料的微观结构和机械性能之间的关系。提出了基于微观组织统计描述的具有内部变量的现象学标量模型,并将其用于模拟Ti-6Al-4V合金的高温变形。讨论了获得模型参数和模型对该过程的准确性的敏感性问题。

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