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학술논문소성∙가공2018.12 발행

실험계획법을 적용한 라이너 단조 공정의 유한요소해석

DOE approach in the FE Simulation of Liner Forging Process

김용관(㈜ 솔루션랩); 강경필(㈜ 솔루션랩); 서승재(풍산); 이재근((주)풍산); 윤태식(방위산업기술지원센터); 이경훈(㈜ 솔루션랩)

27권 6호, 356~362쪽

초록

A liner is a crucial component that directly affects the penetration performance of the shaped charge warhead. If the material of the liner has fine grain size and high strength, then the penetration performance can be further improved. There have been attempts to use a preform obtained by a severe plastic deformation (SPD) process. In this study, the process of minimizing the strain deviation to maintain the characteristics of material obtained by the severe plastic deformation process was investigated. The FE analysis of liner forging process was performed using the design of experiments (DOE), to optimize various shape parameters of the forming process such as shape of preform and forging die. As a result, the combination of design variables with the minimum effective strain deviation in the liner forging process were obtained.

Abstract

A liner is a crucial component that directly affects the penetration performance of the shaped charge warhead. If the material of the liner has fine grain size and high strength, then the penetration performance can be further improved. There have been attempts to use a preform obtained by a severe plastic deformation (SPD) process. In this study, the process of minimizing the strain deviation to maintain the characteristics of material obtained by the severe plastic deformation process was investigated. The FE analysis of liner forging process was performed using the design of experiments (DOE), to optimize various shape parameters of the forming process such as shape of preform and forging die. As a result, the combination of design variables with the minimum effective strain deviation in the liner forging process were obtained.

발행기관:
한국소성∙가공학회
DOI:
http://dx.doi.org/10.5228/kstp.2018.27.6.356
분류:
재료공학

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실험계획법을 적용한 라이너 단조 공정의 유한요소해석 | 소성∙가공 2018 | AskLaw | 애스크로 AI