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Modelling the influence of carbon content on material behavior during forging

机译:建模碳含量对锻造期间材料行为的影响

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Nowadays the design of single process steps and even of whole process chains is realized by the use of numerical simulation, in particular finite element (FE) based methods. A detailed numerical simulation of hot forging processes requires realistic models, which consider the relevant material-specific parameters to characterize the material behavior, the surface phenomena, the dies as well as models for the machine kinematic. This data exists partial for several materials, but general information on steel groups depending on alloying elements are not available. In order to generate the scientific input data regarding to material modelling, it is necessary to take into account the mathematical functions for deformation behavior as well as recrystallization kinetic, which depends alloying elements, initial microstructure and reheating mode. Besides the material flow characterization, a detailed description of surface changes caused by oxide scale is gaining in importance, as these phenomena affect the material flow and the component quality. Experiments to investigate the influence of only one chemical element on the oxide scale kinetic and the inner structure at high temperatures are still not available. Most data concerning these characteristics is provided for the steel grade C45, so this steel will be used as basis for the tests. In order to identify the effect of the carbon content on the material and oxidation behavior, the steel grades C15 and C60 will be investigated. This paper gives first approaches with regard to the influence of the carbon content on the oxide scale kinetic and the flow stresses combined with the initial microstructure.
机译:如今,通过使用数值模拟,特别是基于元素(FE)的方法,实现了单个工艺步骤甚至整个过程链的设计。热锻过程的详细数值模拟需要现实模型,这考虑了相关的材料特定参数,以表征材料行为,表面现象,模具以及机器运动的模型。该数据存在若干材料部分,但根据合金元素,钢基团的一般信息不可用。为了产生关于材料建模的科学输入数据,有必要考虑到变形行为的数学函数以及重结晶动力学,这取决于合金元素,初始微观结构和再加热模式。除了材料流动表征之外,由于这些现象影响材料流动和元件质量,因此重要地对由氧化物尺度引起的表面变化的详细描述。仍然不可用研究仅研究一种化学元素对氧化物尺度动力学和高温内部结构的影响。大多数关于这些特性的数据是为钢级C45提供的,因此该钢将用作测试的基础。为了鉴定碳含量对材料和氧化行为的影响,将研究钢等级C15和C60。本文给出了关于碳含量对氧化物尺度动力学的影响的首先方法,并且流量应力与初始微观结构相结合。

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