응력 제한조건하의 신뢰성 기반 형상 최적설계

Reliability-Based Shape Optimization Under the Stress Constraints
  • 오영규
  • 박재용
  • 임민규
  • 박재용
  • 한석영

초록

The objective of this study is to integrate reliability analysis into shape optimization problem using the evolutionary structural optimization (ESO) in the application example. Reliability-based shape optimization is formulated as volume minimization problem with probabilistic stress constraint under minimization max. von Mises stress and allow stress. Young’s modulus, external load and thickness are considered as uncertain variables. In order to compute reliability index, four methods, i.e., reliability index approach (RIA), performance measure approach (PMA), single-loop single-vector (SLSV) and adaptive-loop (ADL), are used. Reliability-based shape optimization design process is conducted to obtain optimal shape satisfying max. von Mises stress and reliability index constraints with the above four methods, and then each result is compared with respect to numerical stability and computing time.

키워드

Reliability-Based Shape Optimization(신뢰성 기반 형상 최적설계)Double-Loops Single-Vector Approach(이중루프단일벡터 방법)Single-Loop Single-Vector Approach(단일-루프 단일-벡터방법)Adaptiv-Loop Approach(적응형루프방법)Evolutionary Structural Optimization(진화적 구조 최적화)
제목
응력 제한조건하의 신뢰성 기반 형상 최적설계
제목 (타언어)
Reliability-Based Shape Optimization Under the Stress Constraints
저자
오영규박재용임민규박재용한석영
발행일
2010-08
저널명
한국생산제조학회지
19
4
페이지
469 ~ 475