Modular Analysis of Geometry and Stresses in Closed-Die Forging: Application to a Structural Part

Author:

Akgerman N.1,Altan T.1

Affiliation:

1. Metalworking Division, Battelle Columbus Laboratories, Columbus, Ohio

Abstract

A computerized modular method is developed for predicting shape complexity, material volume, load, stress distributions, and center of loading in forgings. The method consists of dividing a forging into standard components which can be assembled in a building-block manner to analyze a given forging. The method has been applied to a nonsymmetric rib-and-web-type aircraft part from 6061 aluminum. The flow stress during forging, in two distinct zones of the part, was calculated by estimating average forging temperatures. The predicted values of the forging variables are compared with experimental results. The predicted forging load, which varies with the tool-material interface friction, agreed well with the measured load for a friction factor of about 0.3.

Publisher

ASME International

Subject

General Medicine

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1. Modeling of Closed-Die Forging for Estimating Forging Load;Journal of The Institution of Engineers (India): Series C;2016-05-04

2. Iterative preform design technique by tracing the material flow along the deformation path;Engineering Computations;2006-01

3. Exploitation rhéométrique des résultats d'essais sur pâte d'argile obtenus à partir d'un nouvel appareil d'extrusion;Materials and Structures;2004-04

4. Analytical, numerical and experimental analyses of the closed-die forging;Journal of Materials Processing Technology;2002-09

5. Design for Hot Forging;Product Design for Manufacture and Assembly, Second Edition, Revised and Expanded;2001-09-06

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