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PCVN 시편 파괴인성의 균열 깊이 영향에 대한 Scaling 모델 해석
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  • PCVN 시편 파괴인성의 균열 깊이 영향에 대한 Scaling 모델 해석
저자명
박상윤,이호진,이봉상,Park. Sang-Yun,Lee. Ho-Jin,Lee. Bong-Sang
간행물명
大韓機械學會論文集. Transactions of the Korean Society of mechanical engineers. A. A
권/호정보
2009년|33권 4호|pp.409-416 (8 pages)
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대한기계학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Standard procedures for a fracture toughness testing require very severe restrictions for the specimen geometry to eliminate a size effect on the measured properties. Therefore, the used standard fracture toughness data results in the integrity assessment being irrationally conservative. However, a realistic fracture in general structures, such as in nuclear power plants, may develop under the low constraint condition of a large scale yielding with a shallow surface crack. In this paper, cleavage fracture toughness tests have been made on side-grooved PCVN (precracked charpy V-notch) type specimens (10 by 10 by 55 mm) with various crack depths. The constraint effects on the crack depth ratios were evaluated quantitatively by the developed scaling method using the 3-D finite element method. After the fracture toughness correction from scaling model, the statistical size effects were also corrected according to the standard ASTM E 1921 procedure. The results were evaluated through a comparison with the $T_0$ of the standard CT specimen. The corrected $T_0$ for all of the PCVN specimens showed a good agreement to within $5.4^{circ}C$ regardless of the crack depth, while the averaged PCVN $T_0$ was $13.4^{circ}C$ higher than the real CT test results.