首页> 外文期刊>Archives of Metallurgy and Materials >MODELING WITH FCA-BASED MODEL OF MICROSTRUCTURE EVOLUTION OF MgCa08 ALLOY DURING DRAWING OF THIN WIRE IN HEATED DIE
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MODELING WITH FCA-BASED MODEL OF MICROSTRUCTURE EVOLUTION OF MgCa08 ALLOY DURING DRAWING OF THIN WIRE IN HEATED DIE

机译:基于FCA的加热模具薄线拉拔过程中MgCa08合金微观组织演变模型的建模

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The paper deals with a modeling of manufacturing process of thin wire of MgCa08 alloy used as biocompatible soluble threads for medical application. Some difficulties in material deformation subjected with its hexagonal structure can be solved with accurate establishment of the deformation conditions, especially temperature history of the whole process. In drawing process with heated die, wire is preheated in furnace and then deformed. The only narrow temperature range allows for multi-pass drawing without wire breaking. Diameter below 0.1 mm required for the final product makes very important the consideration of microstructure evolution because grain size is comparable with the wire dimensions. For this reason the problem is considered in the micro scale by using the frontal cellular automata (FCA)-based model. The goals of present work are the development and validation of FCA-base model of microstructure evolution of MgCa0.8 magnesium alloy. To reach this objective, plastometric and relaxation tests of MgCA08 alloy were done on physical simulator GLEEBLE 3800. Results of the experimental studies were used for parameters identification of the hardening-softening model of the material. Then, initial microstructure and its evolution during the drawing passes were simulated with FCA-based model. FCA consider dislocation density and flow stress, hardening and softening including recovery and recrystallization, grain refinement and grain rotation, as well as grain growth. It allows one to obtain structures close to real ones. Two variants of the drawing process with different temperature history were considered. The deformation scheme was the same. Simulation results with following short discussion confirm usefulness of FCA-based model for explanation and selection of rational technological condition of thin wire drawing of MgCa08 alloy.
机译:本文对用作医疗用途的生物相容性可溶性线的MgCa08合金细线的制造过程进行建模。通过精确建立变形条件,尤其是整个过程的温度历史,可以解决其六边形结构导致材料变形的一些困难。在带有加热模具的拉拔过程中,金属丝在炉子中预热然后变形。唯一狭窄的温度范围允许多道次拉伸而不会断线。最终产品所需的直径小于0.1毫米,对于微结构的演变非常重要,因为晶粒尺寸可与线材尺寸相媲美。因此,通过使用基于额叶细胞自动机(FCA)的模型,可以从微观角度考虑问题。当前工作的目标是开发和验证基于FCA的MgCa0.8镁合金组织演变模型。为了达到这个目的,在物理模拟器GLEEBLE 3800上对MgCA08合金进行了塑性和松弛测试。实验研究的结果用于确定材料的硬化-软化模型的参数。然后,使用基于FCA的模型模拟了拉伸过程中的初始微观结构及其演变。 FCA考虑位错密度和流应力,硬化和软化(包括恢复和再结晶),晶粒细化和晶粒旋转以及晶粒生长。它允许人们获得接近真实结构的结构。考虑了具有不同温度历史的拉伸过程的两个变体。变形方案相同。下面的简短讨论的仿真结果证实了基于FCA的模型对于MgCa08合金细线拉拔的合理技术条件的解释和选择的有效性。

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