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Electrohydraulic Forming of Low Volume and Prototype Parts: Process Design and Practical Examples

Title: Electrohydraulic Forming of Low Volume and Prototype Parts: Process Design and Practical Examples
Authors: Alexander V. Mamutov; Sergey F. Golovashchenko; Nicolas M. Bessonov; Viacheslav S. Mamutov
Source: Journal of Manufacturing and Materials Processing, Vol 5, Iss 47, p 47 (2021)
Publisher Information: MDPI AG
Publication Year: 2021
Collection: Directory of Open Access Journals: DOAJ Articles
Subject Terms: electro-hydraulic; pulsed forming; numerical simulation; preforming; Production capacity. Manufacturing capacity; T58.7-58.8
Description: Electro-Hydraulic Forming (EHF) is a high rate sheet metal forming process based on the electrical discharge of high voltage capacitors in a water-filled chamber. During the discharge, the pulsed pressure wave propagates from the electrodes and forms a sheet metal blank into a die. The performed literature review shows that this technology is suitable for forming parts of a broad range of dimensions and complex shapes. One of the barriers for broader implementation of this technology is the complexity of a full-scale simulation of EHF which includes the simulation of an expanding plasma channel, the propagation of waves in a fluid filled chamber, and the high-rate forming of a blank in contact with a rigid die. The objective of the presented paper is to establish methods of designing the EHF processes using simplified methods. The paper describes a numerical approach on how to define the shape of preforming pockets. The concept includes imposing principal strains from the formed blank into the initial mesh of the flat blank. The principal strains are applied with the opposite sign creating compression in the flat blank. The corresponding principal stresses in the blank are calculated based upon Hooke’s law. The blank is then virtually placed between two rigid plates. One of the plates has windows into which the material is getting bulged driven by the in-plane compressive stresses. The prediction of the shape of the bulged sheet provides the information on the shape of the preforming pockets. It is experimentally demonstrated that using these approaches, EHF forming is feasible for forming of a fragment of a decklid panel and a deep panel with complex curvature.
Document Type: article in journal/newspaper
Language: English
Relation: https://www.mdpi.com/2504-4494/5/2/47; https://doaj.org/toc/2504-4494; https://doaj.org/article/45e80859cce44baa8aeeb4094d0c444d
DOI: 10.3390/jmmp5020047
Availability: https://doi.org/10.3390/jmmp5020047; https://doaj.org/article/45e80859cce44baa8aeeb4094d0c444d
Accession Number: edsbas.E79D78D5
Database: BASE