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WEAR BEAHAVIOUR OF NITRIDED MICROSTRUCTURES OF AISI H13 DIES FOR HOT EXTRUSION OF ALUMINIUM

机译:铝热挤压用AISI H13模具氮化组织的磨损性能。

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摘要

Nitriding of bearing surfaces on dies (tools, AISI H13) for hot extrusion of aluminium is technologically a very sensitive process with regard to achieving a constant quality of the nitrided layers. This study was based on the analysis of microstructure on dies with intentionally prepared deep and narrow gaps which were nitrided by various manufacturers of equipment for gas and ionic nitriding. The manufacturers chose their own nitriding parameters in order to achieve an optimal wear resistant microstructure. The microstructures obtained showed differences with regard to the presence or absence of a compound layer (white layer), its thickness and its epsilon/gamma' phase ratio (XRD), nitriding depth and microhardness profile. The measured nitriding depths and the maximum microhardness values on nitrided surface layers were quite similar on dies of the same manufacturer, while for different manufacturers these values differed. Differences with regards to compound layer characteristics were also found on the same die. The die samples with these various nitrided microstructures were then laboratory tested for wear resistance using equipment that provides simulation of the tribological conditions during hot extrusion of aluminium. The wear testing results show differences in beahaviour of the nitrided samples. The differences in the actual structures, microstructures, hardness, etc. explain the high level of scattering in die life in actual industrial applications.
机译:在模具(工具,AISI H13)上进行轴承表面氮化以进行铝的热挤压,从技术上讲,这对于实现恒定质量的氮化层是非常敏感的过程。这项研究基于对模具的微观结构的分析,这些模具具有特意准备的深窄间隙,被各种气体和离子氮化设备制造商氮化。制造商选择了自己的氮化参数,以实现最佳的耐磨微观结构。所获得的微结构在存在或不存在化合物层(白色层),其厚度和其ε/γ′相比(XRD),渗氮深度和显微硬度分布方面显示出差异。同一制造商的模具在氮化表面层上测得的氮化深度和最大显微硬度值非常相似,而不同制造商的这些值却不同。在同一芯片上还发现了关于复合层特性的差异。然后,使用提供模拟铝热挤压过程中的摩擦学条件的设备,对具有这些氮化氮化微结构的模具样品进行实验室耐磨性测试。磨损测试结果表明氮化样品的行为差异。实际结构,微观结构,硬度等方面的差异解释了实际工业应用中模具寿命中的高水平散射。

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