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Influence of the application of a PN plus Cr/CrN hybrid layer on the improvement of the lifetime of hot forging tools

机译:PN Plus Cr / CRN混合层应用对热锻造工具寿命改进的影响

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This article presents the results of field tests performed on forging tools in a selected lid hot forging process. The aim of the studies was to increase the durability of hot forging tools. Different coating types dedicated to hot forging tools were proposed and first tested in laboratory conditions. Based on the laboratory test results, the PN + Cr/CrN hybrid layer was selected to improve tool durability. Tools (upper punches used in second forging operation) with a PN + Cr/CrN layer applied on them were tested in comparison with gas-nitrided tools. The hybrid layer was produced on a plasma-nitrided substrate, onto which a PVD Cr/CrN coating was deposited. All the analyzed tools were tested in industrial conditions through the manufacturing of specific quantities of forgings. Next, the wear of each tool was analyzed by surface scanning and then compared to the CAD model. All the tools were checked for changes in the surface layer under an optical and a scanning electron microscope, as well as by way of a microhardness measurement. The results obtained in industrial conditions confirmed the effect of improvement of the forging tool lifetime owed to the application of the PN + Cr/CrN hybrid layer.
机译:本文介绍了在所选盖子热锻造过程中对锻造工具执行的现场测试的结果。研究的目的是增加热锻工具的耐用性。提出了专用于热锻造工具的不同涂层类型,并在实验室条件下首次进行测试。基于实验室测试结果,选择PN + Cr / CRN杂化层以提高刀具耐久性。与气体氮化工具相比,测试了应用于它们上的PN + Cr / CRN层的PN + Cr / CRN层的工具(在第二锻造操作中使用的上部冲头)。将杂化层在等离子体氮化基板上产生,沉积PVD Cr / CrN涂层。通过制造特定数量的锻件,在工业条件下测试所有分析的工具。接下来,通过表面扫描分析每个工具的磨损,然后与CAD模型进行比较。检查所有工具是否在光学和扫描电子显微镜下的表面层的变化,以及通过微硬度测量。在工业条件下获得的结果证实了改善锻造工具寿命的效果,其持续应用于施用PN + Cr / CrN杂化层。

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