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Investigation of diffusion behavior of carburized sheet metal in hot stamping

机译:热冲压渗碳金属金属扩散行为的研究

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Today, manufacturing of structural car body parts faces several challenges, like forming accuracy, passenger safety and lightweight design. One possibility to fulfill these partially rivalling demands is the application of hot stamped components. The combination of hot forming and in-die quenching reduces not only springback, but also results in tensile strengths of more than 1500 MPa. Besides conventional hot stamping, the process can be adapted to manufacture parts with tailored properties. One of the biggest issues of these state-of-the-art processes is the formation of extensive transition zones due to heat transfer. A promising approach to adjust the mechanical properties with a minimized transition zone is tailored carburization of sheet metal. Therefore, the parts are locally coated with graphite, heat treated and subsequently quenched. In this work, the time variant process of carbon diffusion is investigated. Sheets with two different thicknesses are carburized and quenched. The resulting mechanical properties are analyzed using uniaxial tensile tests and microhardness measurements. On this basis, a process window is identified. Furthermore, the applicability of EDX and WDX analysis for the measurement of carbon concentration is investigated within this work.
机译:如今,制造结构车身体部位面临着多种挑战,如形成精度,乘客安全和轻质设计。满足这些部分竞争要求的一种可能性是在烫印组件的应用。热成型和模芯淬火的组合不仅减少回弹,而且还导致抗拉强度大于1500MPa。除了传统的热冲压之外,该过程还可以适用于制造具有定制性质的零件。这些最先进过程的最大问题之一是由于传热因传热而形成了广泛的过渡区。具有可最小化过渡区调节机械性能的有希望的方法是金属板的渗碳量定制的。因此,部件局部涂覆有石墨,热处理并随后淬火。在这项工作中,研究了碳扩散的时间变体过程。具有两种不同厚度的薄片被渗碳并淬火。使用单轴拉伸试验和微硬度测量分析所得的机械性能。在此基础上,识别过程窗口。此外,在这项工作中,研究了EDX和WDX分析对碳浓度测量的适用性。

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