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Influence of the Feed Rate in the Single-Lip Deep Hole Drilling Process on the Surface Integrity of Steel Components

机译:单唇深孔钻井过程中进料速度对钢部件表面完整性的影响

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High strength steels like AISI 4140 are commonly used in many technical areas in which the mechanical properties of materials have to meet special requirements, for example, in the case of dynamically loaded parts. In the automotive industry increasing requirements due to lightweight design or energy efficiency lead to increasing demands on the mechanical and dynamic material strength. In response to this development, optimized machining processes are capable of improving the mechanical properties like fatigue performance by influencing the surface integrity of the machined components. In this paper, the influence of the single-lip deep hole drilling process on the surface integrity of quenched and tempered AISI 4140 specimens is analyzed in detail. Under variation of one of the main process parameters, the feed rate, the process output parameters such as cutting forces and the resulting condition of the machined surface and subsurface are determined. In combination with the analysis of the resulting hardness, microstructure and surface conditions of the machined surface, a magnetic Barkhausen noise (MBN) analysis with a custom-built sensor is applied and further developed. With this non-destructive technique, the surface integrity of the bore wall and the fatigue damage over the lifecycle of the part can be analyzed. The correlation of the surface integrity produced by the single-lip deep hole drilling process with the results from the micro-magnetic measurements are used to improve the possibility of predicting a components fatigue performance.
机译:如AISI 4140等高强度钢通常用于许多技术领域,其中材料的机械性能必须满足特殊要求,例如,在动态加载的部件的情况下。在汽车行业由于轻质设计或能效导致的需求上升,导致对机械和动态材料的需求增加。响应于这种发展,优化的加工过程能够通过影响加工部件的表面完整性来改善疲劳性能的机械性能。本文详细分析了单唇深孔钻井过程对淬火和钢化AISI 4140标本的表面完整性的影响。确定在主要过程参数之一,进给速率,进料输出参数,例如切割力和加工表面的所得条件和地下的过程输出参数。结合对所产生的硬度,微观结构和机加工表面的表面条件的分析,应用具有定制传感器的磁性Barkhausen噪声(MBN)分析并进一步开发。利用这种非破坏性技术,可以分析孔壁的表面完整性和部分在部分的生命周期上造成的疲劳损伤。单唇深孔钻井过程产生的表面完整性与微磁测量结果产生的表面完整性用于提高预测部件疲劳性能的可能性。

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