A complete characterization of THE fracture forming limits in bulk forming by means of an upset geometry sequence

Author:

Sampaio Rui FV1,Pragana João PM1,Bragança Ivo MF12,Silva Carlos MA1,Martins Paulo AF1ORCID

Affiliation:

1. IDMEC, Instituto Superior Técnico, Universidade de Lisboa, Lisboa, Portugal

2. CIMOSM, Instituto Superior de Engenharia de Lisboa, Instituto Politécnico de Lisboa, Lisboa, Portugal

Abstract

This paper presents an upset geometry sequence to determine the fracture forming limits in a wide variety of strain loading paths ranging from uniaxial compression to equibiaxial tension. The strains at fracture in principal strain space are obtained by combination of digital image correlation and experimental evolutions of the compression force versus time, and their representation in the effective strain versus stress triaxiality space is accomplished by means of a new analytical framework that uses the instantaneous slope of the strain loading paths. Modeling of the experimental strains at fracture by means of an uncoupled ductile fracture criterion built upon combination of the Cockcroft-Latham and McClintock criteria and fractography analysis using a scanning electron microscope allow understanding and characterizing the crack opening modes by shear and tension as well as the uncertainty region inside which mixed crack opening modes are observed. Results confirm that the overall philosophy and objectives underlying the new upset geometry sequence for determining the fracture forming limits in bulk forming resemble those of the Nakajima test that is commonly used in sheet forming.

Funder

Fundação para a Ciência e a Tecnologia

Fundação para a Ciência e Tecnologia of Portugal

Publisher

SAGE Publications

Subject

Applied Mathematics,Mechanical Engineering,Mechanics of Materials,Modeling and Simulation

Reference28 articles.

1. Circular Grid System — A Valuable Aid for Evaluating Sheet Metal Formability

2. Application of Strain Analysis to Sheet Metal Forming Problems in the Press Shop

3. ISO 12004-2:2008. Metallic materials - Determination of forming-limit curves for sheet and strip - Part 2: Determination of forming-limit curves in the laboratory.

4. Nakajima K, Kikuma T, Hasuka K. Study on the Formability of Steel Sheets. Yamata Technical Report, Report no. 264, Japan, 1968.

5. Fracture in forming

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