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A primer on whole through processing simulation understanding of deformation and annealing textures in low carbon Wels

机译:通过全过程模拟了解低碳Wels的变形和退火织构的基础知识

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Processing steels to achieve particular useful properties is a science as well as anrt. Many of the properties of modern steels are a successful combination of empiric andcientific knowledge. Deep drawing low carbon steels have been used and improved through:Zany decades of research and technological advance. However the micro mechanisms in-Dived in the development of particular microstructures and properties are still under discus-ion. The current paper shows an integrated attempt to obtain consistent microscopic datarom micromechanical simulations coupled with recrystallization and phase transformationodes. The simulations are performed in a way such that the information obtained from cer-in temperatures, levels or processes are used in the next steps to proceed further. The goalnot avoiding experiments but having a whole through scale and time integration for judg-ig the validity of similar parameters and assumptions during the different processing steps.'he simulations include high and low temperature deformation and recrystallization in theustenite region, phase transformation to room temperature, low temperature deformationnd recrystallization in the ferrite phase region. The results are compared with experimentsvailable in the literature.
机译:对钢进行加工以达到特定的有用性能既是科学也是一种科学。现代钢的许多特性是经验和科学知识的成功结合。深拉伸低碳钢的使用和改进经过了数十年的研究和技术进步。然而,讨论特定微观结构和性能发展中的微观机制仍处于讨论中。当前的论文显示了一种综合尝试,以获取与重结晶和相变电极耦合的一致的微观数据模拟。以某种方式执行模拟,以便从后续温度,水平或过程中获得的信息将用于下一步。目标不是避免实验,而是具有完整的量表和时间积分,以判断不同加工步骤中相似参数和假设的有效性。模拟包括奥氏体区域的高温和低温变形和再结晶,相变至室温,在铁素体相区中低温变形和再结晶。将结果与文献中可用的实验进行比较。

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