• Title/Summary/Keyword: 파손 압력

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Scoping Analysis for PWR Penetration Tube Weld Failure (중대사고시 압력용기 노즐 용접부의 파손확율)

  • 정광진;황일순
    • Proceedings of the Korean Nuclear Society Conference
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    • 1998.05a
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    • pp.818-823
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    • 1998
  • Three Mile Island Unit-2 (TMI-2)의 사고 후 OECD-NEA 주관의 연구에 의하면 압력용기 하부의 노즐이 국부열점(hot spot) 영역의 경우 거의 압력용기 바닥까지 용융되었음이 조사되었다. [1]. 이러한 재배치된 용융노심의 열속에 의하여 압력용기의 외부와 통하는 penetration tube weld(노즐 용접부)가 파손된다면 내부의 고압상태로 인해 penetration tube ejection 사고 및 이에 따르는 용융노심의 압력용기 외부로의 유출 가능성까지 배제할 수 없을 것이다. 본 연구의 출발점은 중대사고시 이러한 압력 및 열속에 따르는 노즐 용접부의 파손확률을 결정하는데 있다. 크리프 파출시 기존의 해석에서 쓰인 deterministic approach를 개선하여 probabilistic approach를 개발하였다. 또한 기존의 해석에서 쓰인 단순한 안전 여유도(margin-to-failure)의 개념과 비교하여 용접부에서의 파손확률을 계산하였다.

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Prediction of the Failure Stress of Tofu Texture Using a Delay Time of Ultrasonic Wave (초음파의 지연 시간을 이용한 두부 조직의 물성변화 예측에 관한 연구)

  • Kim, Hak-Jung;Hahm, Young-Tae;Kim, Byung-Yong
    • Applied Biological Chemistry
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    • v.38 no.4
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    • pp.325-329
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    • 1995
  • Changes in the physical properties of soybean curd upon the processing conditions such as coagulant concentration, heating temperature and molding pressure were determined by using a failure stress and residual delay time of ultrasonic wave(5 MHz). Maximum failure stress of Tofu was obtained at the 0.3% $CaCl_2$ coagulant concentration, $95^{\circ}C$ heating temperature and greater molding pressure, respectively, whereas the delay time is inverse proportion to the failure stress value. The results of the multiple regression analysis with factorial design showed that the model equation consisted with delay time and processing conditions gave the good prediction of the Tofu failure stress.

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Progressive Failure Analysis of Adhesive Joints of Filament-Wound Composite Pressure Vessel (필라멘트 와인딩 복합재 압력용기의 접착 체결부에 대한 점진적 파손 해석)

  • Kim, Junhwan;Shin, Kwangbok;Hwang, Taekyung
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.38 no.11
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    • pp.1265-1272
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    • 2014
  • This study performed the progressive failure analysis of adhesive joints of a composite pressure vessel with a separated dome by using a cohesive zone model. In order to determine the input parameters of a cohesive element for numerical analysis, the interlaminar fracture toughness values in modes I and II and in the mixed mode for the adhesive joints of the composite pressure vessel were obtained by a material test. All specimens were manufactured by the filament winding method. A mechanical test was performed on adhesively bonded double-lap joints to determine the shear strength of the adhesive joints and verify the reliability of the cohesive zone model for progressive failure analysis. The test results showed that the shear strength of the adhesive joints was 32MPa; the experiment and analysis results had an error of about 4.4%, indicating their relatively good agreement. The progressive failure analysis of a composite pressure vessel with an adhesively bonded dome performed using the cohesive zone model showed that only 5.8% of the total adhesive length was debonded and this debonded length did not affect the structural integrity of the vessel.

Reliability Evaluation of a Composite Pressure Vessel (복합재 압력 용기의 신뢰도 예측)

  • Hwang Tae-Kyung;Park Jae-Beom;Kim Hyoung-Geun;Doh Young-Dae;Moon Soon-Il
    • Composites Research
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    • v.19 no.3
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    • pp.7-14
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    • 2006
  • In this paper, an integrated probabilistic strength analysis was conducted to predict the reliability of a composite pressure vessel under inner pressure loading condition. As a probabilistic strength analysis, the probabilistic progressive failure model consisting of progressive failure model and Monte Carlo simulation was incorporated with a commercial FEA code, ABAQUS Standard, to perform the probabilistic failure analysis of composite structure which has a complex shape and boundary conditions. As design random variables, the laminar strengths of each direction were considered. Finally, from probabilistic strength analysis, the scattering of burst pressure could be explained and the reliability of composite pressure vessel could be obtained for each component. In case of composite structures in mass production, the effects of uncertainties in material and manufacturing on the performance of composite structures would apparently become larger. So, the probabilistic strength analysis is essential for the structural design of composite structures in mass production.

Probabilistic Fiber Strength of Composite Pressure Vessel (복합재 압력용기의 확률 섬유 강도)

  • 황태경;홍창선;김천곤
    • Composites Research
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    • v.16 no.6
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    • pp.1-9
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    • 2003
  • In this paper, probabilistic failure analysis based on Weibull distribution function is proposed to predict the fiber strength of composite pressure vessel. And, experimental tests were performed using fiber strand specimens, unidirectional laminate specimens and composite pressure vessels to confirm the volumetric size effect on the fiber strength. As an analytical method, the Weibull weakest link model and the sequential multi-step failure model are considered and mutually compared. The volumetric size effect shows the clearly observed tendency towards fiber strength degradation with increasing stressed volume. Good agreement of fiber strength distribution was shown between test data and predicted results for unidirectional laminate and hoop ply in pressure vessel. The site effect on fiber strength depends on material and processing factors, the reduction of fiber strength due to the stressed volume shows different values according to the variation of material and processing conditions.

Evaluation of Structural Stiffness Degradation and Burst Pressure Measurement of the FM Kick-Motor Combustion Case (킥모터 FM 규격 연소관에 대한 강성저하 평가 및 파열압력 측정)

  • Yi, Moo-Keun;Cho, In-Hyun;Kim, Joong-Suk;Lee, Won-Bok
    • Aerospace Engineering and Technology
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    • v.9 no.1
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    • pp.72-77
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    • 2010
  • A hydraulic test on a filament wound case of Kick-Motor was conducted to evaluate the structural stiffness degradation and to confirm the burst performance. Failure criteria have been defined with bursting above 150% of MEOP(Maximum Expected Operation Pressure) and failure in the cylinder. The analysis result showed that filament fiber in the cylinder should be broken at about 2088psig. From a hydraulic test it has been verified that composite case meets the failure requirements, and that the stiffness does not decrease even after a year since the manufacturing.

파이프라인 파손의 파괴역학적 해석

  • 이상록;이학주;한승우;김찬규
    • Journal of the KSME
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    • v.32 no.4
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    • pp.379-390
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    • 1992
  • 1) 수치해석 결과, 운용압력으로 인한 엘보우에서의 응력은 재료의 강도에 비해 파손을 발생시 키기에는 상대적으로 작았고, 오히려 온도차에 의한 열응력이 내압에 의한 응력보다 매우 컸다. 즉 축방향 열응력은 운용압력에 의한 것보다 두배 더 크게 나타났다. 2) 파면의 육안 검사 결과, 급격한 파손은 취성 벽개 파괴로 인한 것으로 추측된다. 3) 시험 결과 균열이 시작하여 임계 크기로 진전한 부위인 K사에서 만든 엘보우는 S사에서 만든 것보다 훨씬 더 취성적임을 보여 주었다. 4) 임계 균열크기를 계산하기 위해 파괴 역학적 해석을 사용하는데 그 결과는 파손된 면에서 관 찰한 실제 균열 크기와 상당히 일치하였다. 5) 유사한 사고를 방지하기 위하여, 플랜트를 가동하는 동안 계속적으로 파괴 역학적 개념을 적 용해야 한다. 또한 운용전과 운용중에 잘 준비된 비파괴검사법을 사용하여야 한다.

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Estimation of Failure Probability Using Boundary Conditions of Failure Pressure Model for Buried Pipelines (파손압력모델의 경계조건을 이용한 매설배관의 파손확률 평가)

  • Lee, Ouk-Sub;Kim, Eui-Sang;Kim, Dong-Hyeok
    • Proceedings of the KSME Conference
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    • 2003.04a
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    • pp.310-315
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    • 2003
  • This paper presents the effect of boundary condition of failure pressure model for buried pipelines on failure prediction by using a failure probability model. The first order Taylor series expansion of the limit state function is used in order to estimate the probability of failure associated with various corrosion defects for long exposure periods in years. A failure pressure model based on a failure function composed of failure pressure and operation pressure is adopted for the assessment of pipeline failure. The effects of random variables such as defect depth, pipe diameter, defect length, fluid pressure, corrosion rate, material yield stress, material ultimate tensile strength and pipe thickness on the failure probability of the buried pipelines are systematically studied by using a failure probability model for the corrosion pipeline.

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CANDU형 원자로 주열수송 계통에 대한 Acoustic 해석

  • 이대희;김종민;엄세윤
    • Nuclear Engineering and Technology
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    • v.27 no.6
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    • pp.932-937
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    • 1995
  • 1990년 12월 카나다의 Darlington 2호기에서 발생한 핵연료 다발의 양쪽 지지판에 있는 지지 금속판의 파손은 펌프 날개 통과 압력 충격파가 Acoustic 성격으로 중폭되어 연료봉지지판의 파손을 일으킨 것으로 추정되었고 이에 따른 주열수송계통에 대한 ABAQUS를 이용한 Acoustic 해석과 수많은 실험을 거쳐 Acoustic 압력 충격파가 핵연료 다발의 연료봉 지지판 파손 원인임이 입증되었다. 이러한 Acoustic 해석과 실험의 결과로써 Darlington 발전소의 열수송 펌프를 5 날개 펌프에서 7 날개 펌프로 교체시키게 되었으며 그 결과 핵연료 스트링의 축방향 진동을 감소시켜 연료봉 지지판의 파손을 방지하게 되었다. 이러한 사례로 인하여 최근 CANDU형 원자로 열수송 계통의 Acoustic 해석에 대한 연구가 AECL의 Chalk River Laboratory와 COG(CANDU Owners Group)에서 활발하게 진행되고 있다. 이 기고문에서는 매우 새로운 분야로써 현재 이루어지고 있는 CANDU형 원자로 열수송 계통의 Acoustic 해석을 위한 해석 이론과 해석 방법을 간단히 요약 정리하였다.

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