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Understanding the source of acoustic emission signals during the wear of stamping tools

机译:理解冲压工具磨损期间声发射信号源

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: Stamping tools are prone to wear due to the increased use of advanced high strength steels in the automotive industry. For active monitoring of the wear state of stamping tools using acoustic emission, it is important to establish a correlation between specific wear mechanisms and the acoustic emission signals. An adhesive wear mode (galling), which is commonly observed on the stamping tool, can occur in combination with multiple abrasive wear modes on the workpiece, such as ploughing and cutting. This study will establish a correlation between the sources of the acoustic emission signal to the specific surface wear mechanism observed in the stamping process. Therefore, to investigate the source of acoustic emission signal, sheet metal stamping wear tests were conducted using un-worn and worn tool steel dies (AISI D2) and advanced high strength steel sheet (DP780). Accelerated tribology tests were also conducted using a scratch tester with the same material combination, where galling, cutting and ploughing wear mechanisms were observed. By correlating the acoustic emission features, such as power spectral density from the stamping test and the scratch test, it was observed that the change inthe acoustic emission signal observed in the stamping process could be attributed to the gallingwear mechanismsThis study contributes to the fundamental understanding of different wear mechanisms in sheet metal forming process, the resulting acoustic emissions, and how these can be utilized to develop active monitoring of the tools in the future.
机译::由于汽车行业中先进的高强度钢材增加,冲压工具易于穿。用于使用声发射的冲压工具的磨损状态的主动监测,重要的是建立特定磨损机构与声发射信号之间的相关性。通常在冲压工具上观察到的粘合磨损模式(挂毯)可以与工件上的多个研磨磨损模式组合发生,例如犁和切割。该研究将在冲压过程中观察到的声发射信号的源极之间的相关性。因此,为了研究声发射信号的来源,使用未磨损和破旧的工具钢模具(AISI D2)和先进的高强度钢板(DP780)进行钣金冲压磨损试验。还使用具有相同材料组合的划痕测试仪进行加速的摩擦学检验,其中观察到绞刑,切割和犁磨损机制。通过将声发射特征(例如从冲压试验和划痕测试)相关的声发射特征,观察到在冲压过程中观察到的电压发射信号的变化可能归因于胆囊机制,这项研究有助于对此的基本理解金属板形成过程中的不同磨损机构,由此产生的声发射,以及如何利用这些原路,以在将来的工具中发育主动监测。

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