Krawczyk Janusz, Łukaszek-Sołek Aneta, Śleboda Tomasz, Lisiecki Łukasz, Bembenek Michał, Cieślik Jacek, Góral Tomasz, Pawlik Jan
Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology, Av. Mickiewicza 30, 30-059 Krakow, Poland.
Faculty of Mechanical Engineering and Robotics, AGH University of Science and Technology, Av. Mickiewicza 30, 30-059 Krakow, Poland.
Materials (Basel). 2023 Jan 4;16(2):471. doi: 10.3390/ma16020471.
Steel forging tools are subjected to a number of tribological wear mechanisms depending on the geometry and surface of the tool and the flow of the material. Thus, there is no single general tribological wear mechanism, and only the predominant wear mechanisms in this case can be indicated. The problem has been known for years, but due to its complexity research on it is still relevant. In this study, the various wear mechanisms of hot work tools are analyzed on the basis of original research. Moreover, the influence of the micro- and macrostructure of the material and of its mechanical, physical, and technological characteristics on susceptibility to a given type of wear is considered. Adhesive wear, wear caused by plastic deformation, mechanical fatigue, thermal fatigue, the influence of hardness, heat treatment, and impact strength on tool wear and the mechanisms causing this wear are discussed in addition to tribological wear mechanisms such as abrasive wear. The influence of thermomechanical history and the characteristics of the tool material, including structural anisotropy, on the wear of these tools is indicated. The analysis of wear mechanisms performed will enable more precise definition of the principles of tool material selection and tool material condition for the hot forging of steel.
钢锻造工具会受到多种摩擦学磨损机制的影响,这取决于工具的几何形状、表面以及材料的流动情况。因此,不存在单一通用的摩擦学磨损机制,在此情况下只能指出主要的磨损机制。这个问题已经存在多年,但由于其复杂性,相关研究仍然具有现实意义。在本研究中,基于原始研究分析了热作工具的各种磨损机制。此外,还考虑了材料的微观和宏观结构及其机械、物理和工艺特性对特定类型磨损敏感性的影响。除了磨料磨损等摩擦学磨损机制外,还讨论了粘着磨损、塑性变形引起的磨损、机械疲劳、热疲劳、硬度、热处理和冲击强度对工具磨损的影响以及导致这种磨损的机制。指出了热机械历史和工具材料特性(包括结构各向异性)对这些工具磨损的影响。对磨损机制的分析将有助于更精确地确定钢热锻时工具材料选择原则和工具材料状态。