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Experimental and Theoretical Investigations of Hot Isostatically Pressed–Produced Stainless Steel/High Alloy Tool Steel Compound Materials

机译:热等静压生产的不锈钢/高合金工具钢复合材料的实验和理论研究

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摘要

Consolidation of tool steel powders and simultaneous joining to a stainless 316L steel are performed by hot isostatic pressing (HIP). Two tool steel grades are considered: a high vanadium alloyed carbon tool steel, and a high vanadium and chromium alloyed nitrogen tool steel. The boundary layer arising during diffusion bonding is in focus and, in particular, the diffusion of carbon and nitrogen over the joint. Measurements of the elemental concentration profiles and corrosion tests by the double loop–electrochemical potentiokinetic reactivation (DL-EPR) method are performed. Comparative calculations with the DICTRA software are performed and are found to be in agreement with the experimental results. It is found that the carbon tool steel grade has a more critical influence on the corrosion resistance of the stainless 316L steel in comparison to the nitrogen tool steel grade.
机译:工具钢粉的固结和同时与316L不锈钢的接合是通过热等静压(HIP)进行的。考虑了两种工具钢等级:高钒合金碳工具钢,以及高钒和铬合金氮工具钢。在扩散结合过程中产生的边界层是重点,尤其是碳和氮在接头上的扩散。通过双回路电化学电位动能再活化(DL-EPR)方法进行元素浓度分布的测量和腐蚀试验。用DICTRA软件进行了比较计算,发现与实验结果一致。已经发现,与氮工具钢等级相比,碳工具钢等级对不锈钢316L钢的耐腐蚀性具有更关键的影响。

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