Deakin University
Browse

File(s) under permanent embargo

Failure mechanism for metal cylinder under explosive loading

journal contribution
posted on 2023-01-29, 23:23 authored by D Noh, S Seo, J Lee, M Jang, Jeong YoonJeong Yoon
This paper presents the numerical study of dynamic fracture for metal cylinder under internal explosive loading. Also, the effects of fracture models and groove designs on fracture behavior are investigated. For the dynamic hardening behavior, the Lim-Huh model including the thermal softening effect is adopted [1, 2]. Also, the Lou-Huh fracture model considering the strain rate dependency is used for fracture prediction [3]. The tensile fracture occurs first at the outer surface, and the shear fracture is observed near the inner surface. In addition, finite element analyses are performed to study the effect of various groove designs on dynamic fracture; single U-groove and V-groove at the outer surface. The tensile and shear fracture lines are predicted near the groove tip and inner surface, respectively. It is concluded that the stress triaxiality parameter is one of the critical factors in the dynamic fracture prediction of the metal cylinder.

History

Journal

Journal of Mechanical Science and Technology

Volume

36

Pagination

4463-4474

ISSN

1738-494X

eISSN

1976-3824

Language

English

Publication classification

C1 Refereed article in a scholarly journal

Issue

9

Publisher

KOREAN SOC MECHANICAL ENGINEERS