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Conference Tools for NUMIFORM 2019: The 13th International Conference on Numerical Methods in Industrial Forming Processes
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About this Symposium
Meeting NUMIFORM 2019: The 13th International Conference on Numerical Methods in Industrial Forming Processes
Symposium S-08: Incremental Forming
Organizer(s) Anne Marie Habraken, University of Liege
Beatriz Silva, Instituto Superior Técnico
Ricardo Alves de Sousa, Universidade de Aveiro
Carpoforo Vallellano, Universidad de Sevilla
Ghulam Hussain, GIK Institute of Engineering Sciences and Technology
M Luisa Garcia-Romeu, Universitat de Girona
Scope Incremental forming is a flexible sheet metal forming process with a high potential for rapid prototyping and small batches industrial applications. The symposium will focus on all the variants of incremental sheet forming, like single point, two point, with counter tool, multistage of metals or polymers, laser, waterjet, trimming, flanging process by SPIF, among others. Target pieces are components with symmetrical or non-symmetrical shape, hole expansion, etc. Technical experimental studies or purely numerical ones are welcome, as well as life cycle analyses or cost comparisons between classical and incremental processes. Recent applications of incremental tube forming are also appreciated.

Visit the conference website, NUMIFORM 2019, for information about publication opportunities.
Abstracts Due 12/02/2018
Proceedings Plan Undecided
PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE

An Approach to Improve Thickness Distribution and Formability in Incremental Sheet Forming Process through Improved Blank Design
Analysis of Stress Triaxiality on the Formability of Hole-flanged Parts by SPIF
Bi-diectional Contour Tool Path Scheme to Eliminate Twist during Incremental Sheet Forming
Double-sided Incremental Forming of Periodic Structures with Free Edges
Effect of Feed Rate and Tool Material on the Formability of Single Point Incremental Forming of Copper
Effect of Hardening Law on Finite Element Simulation of Single Point Incremental Forming (SPIF) of 7075 Aluminum Alloy Sheet
Effect of Plastic Anisotropy on Failure Prediction during Incremental Sheet Forming of AA6061 Alloy
Experimental and Finite Element Investigation of Wrinkling during Spinning of a Thin-walled Tube
FEM Simulation for the Single Point Incremental Forming of CFRP Prepreg
Finite Element Simulation Analysis of Thermoelectric Coupling during Pure Titanium Electro-assisted Spinning
Improving the Accuracy of Finite Element Models in Double-Sided Incremental Forming by Quantifying the Effects of Mass Scaling on the Forming Mechanics
Numerical Analysis of the Complex Loading Path during Tube Flow Forming Processes
Numerical Study of Formability and Failure Prediction in Shrink and Stretch Flanging by SPIF
Revisiting Micro-mechanical Damage Characterization for Single Point Incremental Forming Process


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