Publication: Modeling of 3D temperature fields for oblique machining
Program
KU-Authors
KU Authors
Co-Authors
N/A
Advisor
Publication Date
2012
Language
English
Type
Journal Article
Journal Title
Journal ISSN
Volume Title
Abstract
Fast and accurate temperature prediction for oblique cutting processes is still one of the most complex problems and challenges in the machining research community. For the first time in this article, a novel 3D temperature prediction model based on the finite difference approach for oblique cutting processes is presented. An elliptic structural grid generation method is implemented. Representing different oblique cutting geometries is straightforward now. Moreover, since the resulting equation system is algebraic, the model allows much faster calculations compared to available finite element method based machining temperature models. 3D oblique simulation results verify that temperatures are in good agreement with experimental results.
Description
Source:
Cirp Annals-Manufacturing Technology
Publisher:
Elsevier
Keywords:
Subject
Engineering, Industrial engineering, Manufacturing engineering