首页> 外文会议>International Conference COMAT on Recent Trends in Structural Materials >FORMING BEHAVIOR OF MANGANESE-BORON STEEL 22MNB5 WHILE COOLING ACCORDING TO ITS MICROSTRUCTURAL DEVELOPMENT
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FORMING BEHAVIOR OF MANGANESE-BORON STEEL 22MNB5 WHILE COOLING ACCORDING TO ITS MICROSTRUCTURAL DEVELOPMENT

机译:锰硼钢22MnB5的形成行为,同时冷却微观结构发展

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The press hardening belongs to state-of-the-art technology at sheet metal forming to gain high strength and crash resistant parts in automotive industry. This process could establish due to its cost- and resourceefficiency. According to ongoing developments on direct press hardening processes it is necessary to describe and understand the thermo-mechanical treatment of 22MnB5. Therefore the flow behavior and phase transformation during cooling with simultaneous forming is investigated. The experimental process considers industrial parameters in order to get industry-oriented results. In deep drawing processes the sheet metal is roped into the draw die and bended around the die edge. Thereby sheets perform different stages of compressive and tensile strain at the die oriented side and the punch oriented side of the sheet. There are different stages and values of stress and strain according to several layers of the sheet over its cross-section. The values of stress, strain and forming rate were FEcalculated for industry-relevant bending radii and sheet thicknesses of manganese-boron steel 22MnB5. According to the calculations different cooling and forming strategies were performed by dilatometric tests. The forming behavior is described by the microstructural development with regard to the cooling rate and temperature. Beside the influence of austenite forming on the phase transformation and mechanical properties is considered. A prospective view is given to illustrate ongoing examinations under compressive and combined tensional and compressive forces.
机译:该压力硬化属于金属板成型的最先进的技术,以获得汽车行业的高强度和碰撞部件。该过程可以由于其成本和资源效率而建立。根据直接压制硬化过程的持续发展,有必要描述和理解22MnB5的热机械处理。因此,研究了通过同时形成的冷却过程中的流动性能和相变。实验过程考虑了工业参数,以获得以行业为导向的结果。在深色绘制过程中,金属板材被绳索进入绘制管芯并围绕模刃弯曲。因此,片材在模具取向侧和板的冲头取向侧执行不同的压缩和拉伸应变级。根据其横截面的几层,存在不同的阶段和应力和应变值。用于工业相关弯曲半径和锰 - 硼钢22MnB5的板厚度的应力,应变和成形速率的值。根据计算,通过稀释测试进行不同的冷却和形成策略。通过关于冷却速率和温度的微观结构显影描述了形成行为。除了奥氏体形成对相变性的影响,考虑了相变性和机械性能。给出了预期视图,以说明在压缩和组合的张力和压缩力下进行的持续检查。

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