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Identification Of A Process Window For Tailored Carburization Of Sheet Metals In Hot Stamping

机译:在热冲压中定制碳金属渗碳的过程窗口的识别

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Due to governmental regulations concerning the reduction of CO_2 emissions and increasing safety standards, hot stamping of high strength boron manganese steel sheets has evolved into a state of the art process for manufacturing structural car body parts. The combined forming and in-die quenching process enables the formation of a fully martensitic microstructure. Therefore, press hardened steels offer high strength, but low ductility. In order to further improve passenger safety, a tailored configuration of mechanical properties is desired. Besides state of the art methods, like the application of locally different heat treatment temperatures or varying quenching rates, the adjustment of mechanical properties of sheet metals by a tailored carburization is a novel approach. For the carburization process, the specimens are first coated with graphite and subsequently heat treated. Within this contribution, different coating strategies as well as heat treatment temperatures and dwell times are investigated. For the determination of a process window, mechanical properties such as tensile strength and microhardness will be analyzed and correlated with the resulting microstructure.
机译:由于政府法规有关减少CO_2排放和增加安全标准,高强度硼锰钢板的热冲压已经发展成为制造结构车身部件的最新方法。组合的形成和内模猝灭过程使得能够形成全马氏体微观结构。因此,压紧钢材提供高强度,但低延展性。为了进一步提高乘客安全性,需要定制机械性能的配置。除了现有技术的方法之外,与局部不同的热处理温度或不同淬火速率的应用相同,通过定制渗碳来调节片金属的机械性能是一种新的方法。对于渗碳过程,首先用石墨涂覆标本并随后进行热处理。在这种贡献中,研究了不同的涂层策略以及热处理温度和停留时间。为了确定过程窗口,将分析诸如拉伸强度和显微硬度的机械性能和与所得的微观结构相关。

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