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학술논문한국군사과학기술학회지2008.12 발행

입자법을 이용한 축대칭 탄자의 관통거동 수치해석 연구

A Study on Numerical Perforation Analysis of Axisymmetric Bullet by the Particle Method

김용석(국방과학연구소); 김용환(충남대학교)

11권 6호, 164~171쪽

초록

A modified generalized particle algorithm, MGPA, was suggested to improve the computational efficiency of standard SPH method in numerical analysis of high speed impact behavior. This method uses a numerical failure mechanism than material failure models to describe the target penetration. MGPA algorithm was more effective to describe the impact phenomena and new boundaries produced during the calculation process were well recognized and treated in the target penetration problem of a bullet. When bullet perforation problems were analyzed by this method, MGPA algorithm calculation gives the stable numerical solution and stress oscillation or particle penetration phenomena were not shown. The error range in ballistic velocity limit is less than 2~13% for various target thickness.

Abstract

A modified generalized particle algorithm, MGPA, was suggested to improve the computational efficiency of standard SPH method in numerical analysis of high speed impact behavior. This method uses a numerical failure mechanism than material failure models to describe the target penetration. MGPA algorithm was more effective to describe the impact phenomena and new boundaries produced during the calculation process were well recognized and treated in the target penetration problem of a bullet. When bullet perforation problems were analyzed by this method, MGPA algorithm calculation gives the stable numerical solution and stress oscillation or particle penetration phenomena were not shown. The error range in ballistic velocity limit is less than 2~13% for various target thickness.

발행기관:
한국군사과학기술학회
분류:
기타공학

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입자법을 이용한 축대칭 탄자의 관통거동 수치해석 연구 | 한국군사과학기술학회지 2008 | AskLaw | 애스크로 AI