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Investigation of Fatigue Strength of Tool Steels in Sheet-Bulk Metal Forming

机译:薄膜金属成形工具钢疲劳强度研究

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To encounter trends regarding an efficient production of complex functional components in forming technology, the process class of sheet-bulk metal forming (SBMF) can be applied. SBMF is characterized by the application of bulk forming operations on sheet metal, often in combination with sheet forming operations [1]. The combination of these conventional process classes leads to locally varying load conditions. The resulting load conditions cause high tool loads, which lead to a reduced tool life, and an uncontrolled material flow. Several studies have shown that locally modified tool surfaces, so-called tailored surfaces, have the potential to control the material flow and thus to increase the die filling of functional elements [2]. A combination of these modified tool surfaces and high tool loads in SBMF is furthermore critical for the tool life and leads to fatigue. Tool fatigue is hardly predictable and due to a lack of data [3], a challenge in tool design. Thus, it is necessary to provide such data for tool steels used in SBMF. The aim of this study is the investigation of the influence of tailored surfaces on the fatigue strength of the powder metallurgical tool steel ASP2023 (1.3344, AISI M3:2), which is typically used in cold forging applications, with a hardness 60 HRC ± 1 HRC. To conduct this investigation, the rotating bending test is chosen. As tailored surfaces, a DLC-coating and a surface manufactured by a high-feed-milling process are chosen. As reference a polished surface which is typical for cold forging tools is used. Before the rotating bending test, the surface integrity is characterized by measuring topography and residual stresses. After testing, the determined values of the surface integrity are correlated with the reached fracture load cycle to derive functional relations. Based on the gained results the investigated tailored surfaces are evaluated regarding their feasibility to modify tool surfaces within SBMF.
机译:为了在成型技术中遇到有关复杂功能成分的有效生产的趋势,可以应用片状金属成形(SBMF)的过程类。 SBMF的特征在于在金属板上施加块状成型操作,通常与片材形成操作组合[1]。这些常规过程类的组合导致局部变化的负载条件。得到的负载条件导致高刀具负载,从而导致刀具寿命减小,以及不受控制的材料流动。几项研究表明,局部修改的工具表面,所谓的定制表面,具有控制材料流动的可能性,从而增加功能元件的模具填充[2]。此外,SBMF中的这些改进的工具表面和高刀具负载的组合对于刀具寿命至关重要,并导致疲劳。工具疲劳几乎无法预测,并且由于缺乏数据[3],刀具设计中的挑战。因此,有必要为SBMF中使用的工具钢提供这些数据。本研究的目的是调查粉末冶金工具钢ASP2023(1.3344,AISI M3:2)的疲劳强度对疲劳强度的影响,该粉末冶金工具钢(1.3344,AISI M3:2)通常用于冷锻造应用,硬度为60HRC±1 HRC。为了进行这一调查,选择旋转弯曲试验。作为定制的表面,选择DLC涂层和由高进料铣削过程制造的表面。作为参考,使用典型的冷锻工具的抛光表面。在旋转弯曲试验之前,表面完整性的特征在于测量地形和残余应力。在测试之后,所确定的表面完整性值与达到的裂缝载荷周期相关,以导出功能关系。基于所获得的结果,研究了调查的定制表面,关于它们在SBMF中修改工具表面的可行性。

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