Punching process including thickening of hole edge for improvement of fatigue strength of ultra-high strength steel sheet
Author:
Publisher
EDP Sciences
Subject
Industrial and Manufacturing Engineering
Link
http://mfr.edp-open.org/10.1051/mfreview/2014003/pdf
Reference19 articles.
1. Manufacturing of Lightweight Components by Metal Forming
2. Springback behaviour in bending of ultra-high-strength steel sheets using CNC servo press
3. Tribological testing of commercial CrN, (Ti,Al)N and CrC/C PVD coatings — Evaluation of galling and wear characteristics against different high strength steels
4. Quantitative evaluation of effects of non-metallic inclusions on fatigue strength of high strength steels. I: Basic fatigue mechanism and evaluation of correlation between the fatigue fracture stress and the size and location of non-metallic inclusions
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1. A punching process to join metal sheets and fibre reinforced polymer composites by mechanical interlocking;Composites Part A: Applied Science and Manufacturing;2023-12
2. Fatigue crack propagating behavior from inner surface crack on bent sheet of ultra-high strength steel;International Journal of Fatigue;2023-10
3. Evaluation of ductile fracture criteria in combination with a homogenous polynomial yield function for edge splitting damage of DP steels;Materials Testing;2023-05-24
4. Experimental investigation of hole expansion ratio for automotive-grade steels;Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture;2022-10-14
5. Prevention of delayed cracking of punched 1.5 GPa ultra-high strength steel sheets by ironing with punched slug;The International Journal of Advanced Manufacturing Technology;2020-08
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