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Integrated measurement of tool wear in punching processes using a pneumatic gauging system

  • Punching is an essential production process for manufacturing large volumes of uniform, cost-effective parts. Despite its widespread use, the efficiency and quality of this process are highly sensitive to numerous parameters, many of which are not fully understood. Achieving optimal, reproducible, and transparent process control, it is crucial to have a detailed understanding of the wear condition of the punching tool. Currently, direct methods for measuring tool wear are unavailable, leading to reliance on indirect measurements through physical surrogate variables. These techniques predominantly focus on indirectly monitoring the quality of the punched parts after processing. In this study, we developed an innovative pneumatic gauging system capable of periodically measuring punch wear directly. We demonstrate the feasibility of integrating a measurement nozzle into the cutting tool, which enables direct assessment of the cutting edge wear. Additionally, we have developed a dedicated measuring transducer and conducted a comparativePunching is an essential production process for manufacturing large volumes of uniform, cost-effective parts. Despite its widespread use, the efficiency and quality of this process are highly sensitive to numerous parameters, many of which are not fully understood. Achieving optimal, reproducible, and transparent process control, it is crucial to have a detailed understanding of the wear condition of the punching tool. Currently, direct methods for measuring tool wear are unavailable, leading to reliance on indirect measurements through physical surrogate variables. These techniques predominantly focus on indirectly monitoring the quality of the punched parts after processing. In this study, we developed an innovative pneumatic gauging system capable of periodically measuring punch wear directly. We demonstrate the feasibility of integrating a measurement nozzle into the cutting tool, which enables direct assessment of the cutting edge wear. Additionally, we have developed a dedicated measuring transducer and conducted a comparative analysis against an industrial standard. Our methodology includes a comprehensive calibration process within the punching operation. To validate our approach, we performed a series of tests and cross-validation to demonstrate that tool wear degradation can be effectively measured. We explored the potential of this monitoring approach for predicting tool wear. Our findings indicate that real-time measurement of the punch’s cutting edge wear in punching and blanking operations is achievable, which paves the way for advancements in process control and maintenance.show moreshow less

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Metadaten
Author:Maximilian LorenzORCiDGND, Johannes Epple, Christian DonhauserORCiDGND
Parent Title (English):Wear
Publisher:Elsevier
Place of publication:Amsterdam
Document Type:Article
Language:English
Date of Publication (online):2025/06/07
Year of first Publication:2025
Tag:Blanking; Pneumatic gauging; Predictive maintenance; Punching; Wear monitoring
Volume:Volume 570
Issue:1 June 2025
Article Number:205928
Number of pages:8 Seiten
First Page:1
Last Page:8
DOI of the original publication:10.1016/j.wear.2025.205928
ISSN:1873-2577 OPAC HS OPAC extern
Institutes:Fakultät Maschinenbau
EPT – Institut für Effiziente Produktionstechnik
Open Access:open_access
Research focus:FSP3: Produktion
Publication Lists:Donhauser, Christian
Lorenz, Maximilian
Epple, Johannes
Research Project:PneuInSta – Pneumatische Messtechnik zur Inline-Verschleißermittlung bei Stanzprozessen
DFG subject classification:4 Ingenieurwissenschaften / 41 Maschinenbau und Produktionstechnik
Dewey Decimal Classification:6 Technik, Medizin, angewandte Wissenschaften / 67 Industrielle Fertigung
Publication reviewed:peer review
Licence (German):Creative Commons - CC BY-NC-ND - Namensnennung - Nicht kommerziell - Keine Bearbeitungen 4.0 International
Release Date:2025/10/28
Frontdoor-URL:https://opus4.kobv.de/opus4-hs-kempten/3208
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