• 제목/요약/키워드: pressure fracture

검색결과 889건 처리시간 0.024초

반타원형 균열을 가정한 파괴 및 피로역학에 의한 수소 압력용기의 예상 수명 계산과 두께와 내경이 미치는 영향 분석 (Calculation of Expected Life of Hydrogen Pressure Vessels by Fracture and Fatigue Mechanics assuming Semi-elliptical Cracks and Analysis of the Effect of Thickness and Radius)

  • 김정환;이화영;이민경;이재훈;유근준
    • 한국가스학회지
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    • 제25권6호
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    • pp.53-65
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    • 2021
  • 수소충전소의 빠른 확장 및 설치와 동시에 수소충전소의 고압수소 충전 압력용기에 대한 안전 검사가 매우 중요하게 이루어져야 한다. 이 중 ASME에 따르면 일정 압력 이상의 수소를 보관하는 용기에 대해서는 수소 취성 검사를 반드시 해야 한다. 수소취성 검사의 주된 시험방법으로 고압의 수소분위기에서 파괴시험 및 피로 파괴시험을 실시해야 하며, 이를 통해 수소 분위기에서 압력용기의 내구한계를 측정하고, 사용한계를 결정하도록 되어 있다. 세부적으로 stress intensity factor(K)로부터 한계균열깊이를 계산하고, da/dN(피로성장율)로부터 사용수명을 결정할 수 있다. API579-1/ ASME FFS-1 part 9에서 crack-like flaws의 모드에 따른 계산방법을 예시하고 있으나, 플레이트, 실린더 등 다양한 형태의 형상에 대하여 균열의 형상, 위치 등에 의하여 대략 55개 모드가 있고, 상당히 복잡한 수식으로 인하여 쉽게 접근을 못한다. 본 연구에서는 엑셀 및 VBA를 통하여 수치해석적으로 파괴역학계산하는 방법을 소개하고자 한다. 또한, 이를 적용하여 압력용기의 두께와 내경이 수명에 미치는 영향을 분석해 보았다.

일방향 혼합방사형 탄소섬유/폴리아미드 6 복합재료판의 제작조건과 굽힘파괴거동 (Fabrication of unidirectional commingled-yarn-based carbon fiber/polyamide 6 composite plates and their bend fracture performances)

  • 최낙삼
    • 대한기계학회논문집A
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    • 제22권2호
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    • pp.416-427
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    • 1998
  • Unidirectional commingled-yarn-based carbon fiber(CF)/polyamide(PA) 6 composite was fabricated under molding pressures of 0.4, 0.6 and 1.0 MPa to study its flexural deformation and fracture behavior. Fiber/matrix interfacial bonding area became larger with an increase of molding pressure from 0.4 to 0.6 MPa. For molding pressures .geq. 0.6 MPa, good flexural performance of similar magnitudes was attained. For the fracture test, four kinds of notch direction were adopted : edgewise notches parallel (L) and transverse (T) to the major direction of fiber bundles, and flatwise notches parallel(ZL) and perpendicular(ZT) to this direction. Nominal bend strength for L and ZL specimens exhibited high sensitivity to notching. ZL specimens revealed the lowest values of the critical stress intensity factor $K_c$ which was slightly superior to those of unfilled PA6 matrix. Enlargement of the compression area for T specimens was analyzed by means of the rigidity reduction resulting from the fracture occurrence.

장기 사용 Cr-Mo강 열화재의 파괴 인성 평가와 수명예측 (Life Prediction and Evaluation of Fracture Toughness of a Cr-Mo Degraded Steel During Long Service)

  • 권재도
    • 대한기계학회논문집
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    • 제16권8호
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    • pp.1421-1428
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    • 1992
  • 본 연구에서는 실제 고온, 고압용기에 장기 사용하여 재료 특성이 변화된 열 화재와 열화재를 열처리하여 충격치를 회복시킨 회복재의 두 종류의 재료를 사용하여 탄소성 파괴 인성치 J$_{IC}$실험을 수행하여 장기사용에 따른 재질열화에 의한 파괴 인성치의 변화 상태를 검토해 보고, 이를 응용한 수명예측 즉, 3차원 표면 균열을 갖 인 판이 열화된 경우와 건전한 경우를 가정하여 피로 파괴 과정중 파단 특성에 어떤 차이가 일어날까에 대해 연구 검토해 보았다.

압축 충격파를 이용한 세라믹의 파괴특성에 관한 연구 (A Study on the Fracture Characteristics of Ceramics Using Compressed Shock Wave)

  • 황권태;김재훈;이영신;박종호;송기혁;윤수진
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회A
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    • pp.338-343
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    • 2008
  • Fracture characteristics of plates and dome shapes for machinable glass ceramics using compressed shock wave. Machinable glass ceramics have been considered as a promising candidate material for the dome port cover of air breathing engine. This part of the air breathing engine has an important role separating solid and liquid fuel, and needs the frangible characteristics whereby the fracture of a part should not affect the internal components of combustion. The objective of this study are to evaluate the fracture pressure and phenomena of separated membrane using a shock tunnel. The experimental apparatus consists of driver, a driven section and a dump tank. The used material is machinable glass ceramic from Corning company. Specimens are used 3, 4.5 and 6mm thickness with plates and dome shapes. It is expected that the results obtained from this study can be used in the basic data for the dome port cover design of an air breathing engine.

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삼축응력 기반의 파괴변형률 기준을 적용한 가우지 손상배관의 건전성 평가 (Structural Integrity Assessments of Pressurized Pipes with Gouge using Stress-Modified Fracture Strain Criterion)

  • 오창균;김윤재;박진무;백종현;김영표;김우식
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 추계학술대회 논문집
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    • pp.808-813
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    • 2005
  • Structural integrity assessment of defected pipe is important in fitness for service evaluation and proper engineering assessment is needed to determine whether pipelines are still fit for service. This paper present a failure prediction of gas pipes made of APIl X65 steel with gouge using stress-modified true fracture strain, which is regarded as a criterion of ductile fracture. For this purpose, API X65 pipes with gouge are simulated using elastic-plastic FE analyses with the proposed ductile failure criterion and the resulting burst pressures are compared with experimental data. Agreements are quite good, which gives confidence in the use of the proposed criteria to defect assessment fer gas pipelines. Then, further extensive finite element analyses are performed to obtain the burst pressure solution of pipes with gouge as a function of defect depth, length and pipeline geometry.

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Dynamic evolution characteristics of water inrush during tunneling through fault fracture zone

  • Jian-hua Wang;Xing Wan;Cong Mou;Jian-wen Ding
    • Geomechanics and Engineering
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    • 제37권2호
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    • pp.179-187
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    • 2024
  • In this paper, a unified time-dependent constitutive model of Darcy flow and non-Darcy flow is proposed. The influencing factors of flow velocity are discussed, which demonstrates that permeability coefficient is the most significant factor. Based on this, the dynamic evolution characteristics of water inrush during tunneling through fault fracture zone is analyzed under the constant permeability coefficient condition (CPCC). It indicates that the curves of flow velocity and hydrostatic pressure can be divided into typical three stages: approximate high-velocity zone inside the fault fracture zone, velocity-rising zone near the tunnel excavation face and attenuation-low velocity zone in the tunnel. Furthermore, given the variation of permeability coefficient of the fault fracture zone with depth and time, the dynamic evolution of water flow in the fault fracture zone under the variable permeability coefficient condition (VPCC) is also studied. The results show that the time-related factor (α) affects the dynamic evolution distribution of flow velocity with time, the depth-related factor (A) is the key factor to the dynamic evolution of hydrostatic pressure.

균열정지현상에 관한 기초적 연구 (A Basic Study on the Crack Arrest Phenomena)

  • 이억섭;김상철;송정일
    • 대한기계학회논문집
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    • 제14권1호
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    • pp.112-118
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    • 1990
  • 본 연구에서는 ASTM-E24.01.06에서 제안하고 있는 실험방법을 응용하여 균열 정지 파괴인성값을 측정하였다.즉 쐐기와 분리형 부싱(wedge and split bushing)으 로 압축하중을 가함으로 균열선 웨지하중 시편[crack line wedge loaded specimen(CL- WL시편)]에 인장력을 발생시켜서 균열정지 응력확대계수( $K_{1a}$)를 결정하였다. 그리고 균열개시 응력확대계수가 균열정지 응력확대계수에 미치는 영향들을 여러가지 재료들에 대하여 체계적으로 검토하였다.다.

정수압을 받는 carbon/epoxy 복합재의 변형률 속도 효과 (Effect of strain rate on the mechanical behavior of carbon/epoxy composites subjected to high pressure)

  • 이지훈;김만태;이경엽
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2003년도 추계학술대회 논문요약집
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    • pp.191-191
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    • 2003
  • It is well-known that the mechanical behavior of fiber-reinforced composites under hydrostatic pressure environment is different from that of atmospheric pressure environment. It is also known that the mechanical behavior of fiber-reinforced composites is affected by strain rate. In this work, we investigated the effect of strain rate on the compressional elastic modulus and fracture stress of fiber-reinforced composites under hydrostatic pressure environment. The material used in the compressional test was unidirectional carbon/epoxy composites and the hydrostatic pressures applied was 250 MPa. Compressional tests were performed applying various strain rates of 0.05 %/sec, 0.25 %/sec, 0.45 %/sec, and 0.75 %/sec. The results showed that the elastic modulus increased with increasing strain rate while the fracture stress was little affected by the strain rate.

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금속분말의 고압비틀림 성형시 나노결정화 (Nanocrystallization of Metallic Powders during High Pressure Torsion Processing)

  • 윤승채;곽은정;김택수;홍순익;김형섭
    • 소성∙가공
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    • 제16권5호통권95호
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    • pp.360-363
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    • 2007
  • Microstructure and microhardness of metallic powders of pure copper were studied after high pressure torsion(HPT) processing with 10 turns of die rotation and high pressure of 6 GPa. The grain size of copper decreases drastically after HPT and reaches nanometer size ranges. During HPT, the hardness of consolidates of copper powders increases with increasing the temperature of HPT processing. Examinations of the fracture surfaces indicated evidence of ductile fracture. The results proved that HPT of copper powders has a beneficial effect for homogeneous deformation with reducing grain size.

Pressure-Temperature Limit Curve of Reactor Vessel by ASME Code Section III and Section XI

  • M.J. Jhung;Kim, S.H.;Lee, T.J.
    • Nuclear Engineering and Technology
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    • 제33권5호
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    • pp.498-513
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    • 2001
  • Performed here is a comparative assessment study for the generation of the pressure- temperature (P/T) limit curve of the reactor vessel. Using the cooling or heating rate and vessel material properties, the stress distribution is obtained to calculate stress intensity factors, which are compared with the material fracture toughness to determine the relations between operating pressure and temperature during cool-down and heat-up. P/T limit curves are generated with respect to crack direction, clad thickness, toughness curve, cooling or heating rate and neutron fluence, and their results are compared.

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