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Influence of different plasma nitriding treatments on the wear and crack behavior of forging tools evaluated by Rockwell indentation and scratch tests

机译:通过洛氏压痕和划痕试验评估等离子氮化处理对锻造工具的磨损和裂纹行为的影响

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Forging tools are often showing short lifetimes compared to cold forming tools e.g. for sheet metal forming. This is based on the process conditions where high local surface temperatures are alternating with chilling conditions due to the spray cooling with water based cooling lubricants. The resulting thermal shock is provoking fatigue of the tool material in the near surface regions. Crack initiation and crack growth due to thermal shock exposure then causes chipping of the tool steel material in the surface regions. These are starting points for extensive wear.Hardness and wear resistance of tool surfaces at elevated temperatures can be dramatically enhanced with nitriding pretreatments. This has become state-of-the-art for hot forming tool steels in many forging applications. With inappropriate adjustments of the nitriding parameters a decrease of the ductility can occur and will reduce the crack resistance of the tool surface especially under thermal shock conditions.The hot working steel DIN-1.2367 (X38CrMoV5) is currently one of the most often used chromium-molybdenum tool steels in the field of forging. Exemplary for this material is the influence of the nitriding parameters like temperature, nitrogen supply and plasma parameters on the nitriding depth, the maximum hardness and the crack sensitivity will be discussed.Nitrided samples will be investigated with methods developed for the adhesion measurement of hard coatings. It could be shown that this is also appropriate for a qualification of the crack sensitivity of tools. Comparative application tests in the production of automotive components show the influence on the wear behavior and lifetime of forging tools in an industrial environment.
机译:与冷成形工具相比,锻造工具的寿命通常较短。用于钣金成型。这是基于工艺条件的,在这种工艺条件下,由于使用水基冷却润滑剂进行喷雾冷却,因此局部高表面温度与冷却条件交替出现。产生的热冲击在附近的表面区域引起工具材料的疲劳。由于热冲击而引起的裂纹萌生和裂纹扩展会导致工具钢材料在表面区域碎裂。这些是广泛磨损的起点。通过氮化预处理可以显着提高高温下刀具表面的硬度和耐磨性。这已成为许多锻造应用中热成型工具钢的最新技术。如果对氮化参数进行不适当的调整,则会导致延展性降低,特别是在热冲击条件下,会降低工具表面的抗裂性。热加工钢DIN-1.2367(X38CrMoV5)是目前最常用的铬合金之一。锻造领域的钼工具钢。这种材料的示例是诸如温度,供氮和等离子体参数等渗氮参数对渗氮深度,最大硬度和裂纹敏感性的影响。将使用为硬涂层附着力测量而开发的方法研究渗氮样品。可以证明,这也适用于鉴定工具的裂纹敏感性。汽车零部件生产中的比较应用测试表明,在工业环境中,该性能对锻造工具的磨损行为和寿命有影响。

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