• 제목/요약/키워드: Tube-plug structure

검색결과 7건 처리시간 0.023초

Microstructure analysis of pressure resistance seal welding joint of zirconium alloy tube-plug structure

  • Gang Feng;Jian Lin;Shuai Yang;Boxuan Zhang;Jiangang Wang;Jia Yang;Zhongfeng Xu;Yongping Lei
    • Nuclear Engineering and Technology
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    • 제55권11호
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    • pp.4066-4076
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    • 2023
  • Pressure resistance welding is usually used to seal the connection between the cladding tube and the end plug made of zirconium alloy. The seal welded joint has a direct effect on the service performance of the fuel rod cladding structure. In this paper, the pressure resistance welded joints of zirconium alloy tube-plug structure were obtained by thermal-mechanical simulation experiments. The microstructure and microhardness of the joints were both analyzed. The effect of processing parameters on the microstructure was studied in detail. The results showed that there was no β-Zr phase observed in the joint, and no obvious element segregation. There were different types of Widmanstätten structure in the thermo-mechanically affected zone (TMAZ) and heat affected zone (HAZ) of the cladding tube and the end plug joint because of the low cooling rate. Some part of the grains in the joint grew up due to overheating. Its size was about 2.8 times that of the base metal grains. Due to the high dislocation density and texture evolution, the microhardnesses of TMAZ and HAZ were both significantly higher than that of the base metal, and the microhardness of the TMAZ was the highest. With the increasing of welding temperature, the proportion of recrystallization in TMAZ decreased, which was caused by the increasing of strain rate and dislocation annihilation.

경사 구조물이 침전지내 수리거동 Index에 미치는 영향 (A Study on the Effect of the Inclined Structure on the Hydraulic Behavior Index within Sedimentation basin)

  • 임성호;황준식;박노석;김성수;임경호
    • 상하수도학회지
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    • 제23권5호
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    • pp.517-526
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    • 2009
  • This research has been conducted to investigate the characteristics of hydraulic behavior within the PAC contactor, the rectangular shape sedimentation basin without inclined tube and the other one with inclined tube those are parts of demonstration plants(capacity : $2,000m^3/d$) in Korea Institute of Water and Environment. As results of tracer tests, the flow within PAC contactor was evaluated to divided into plug flow and dead space distinctly, and characteristics of dead space was close to that of CSTR(Complete/continuous Stirred Tank Reactor). Also, considering Reynolds number, Froude number, Morill, Modal, NCSTR Inex and plug flow/mixed flow fraction, in the case of the rectangular shape sedimentation basin without inclined tube, the characteristics of flow pattern was close to CSTR. On the other hand, in the case of the basin with inclined tube, the region of CSTR decreased precisely compared with the case of no-tube. Until now we have recognized that the inclined hydraulic structure just reduces the surface loading rate within a sedimentation basin. Actually besides, the inclined structure have an important effect on the hydraulic behavior within the basin.

핵연료 피복관용 다중층 SiC 복합체 튜브의 Hoop Stress 전산모사 연구 (FEA Study on Hoop Stress of Multilayered SiC Composite Tube for Nuclear Fuel Cladding)

  • 이현근;김대종;박지연;김원주
    • 한국세라믹학회지
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    • 제51권5호
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    • pp.435-441
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    • 2014
  • Silicon carbide-based ceramics and their composites have been studied for application to fusion and advanced fission energy systems. For fission reactors, $SiC_f$/SiC composites can be applied to core structural materials. Multilayered SiC composite fuel cladding, owing to its superior high temperature strength and low hydrogen generation under severe accident conditions, is a candidate for the replacement of zirconium alloy cladding. The SiC composite cladding has to retain its mechanical properties and original structure under the inner pressure caused by fission products; as such it can be applied as a cladding in fission reactor. A hoop strength test using an expandable polyurethane plug was designed in order to evaluate the mechanical properties of the fuel cladding. In this paper, a hoop strength test of the multilayered SiC composite tube for nuclear fuel cladding was simulated using FEA. The stress caused by the plug was distributed nonuniformly because of the friction coefficient difference between the inner surface of the tube and the plug. Hoop stress and shear stress at the tube was evaluated and the relationship between the concentrated stress at the inner layer of the tube and the fracture behavior of the tube was investigated.

Numerical analysis on two-phase flow-induced vibrations at different flow regimes in a spiral tube

  • Guangchao Yang;Xiaofei Yu;Yixiong Zhang;Guo Chen;Shanshan Bu;Ke Zhang;Deqi Chen
    • Nuclear Engineering and Technology
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    • 제56권5호
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    • pp.1712-1724
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    • 2024
  • Spiral tubes are used in a wide range of applications and it is significant to understand the vibration introduced by two-phase flow in spiral tubes. In this paper, the numerical method is used to study the vibration induced by the gas-liquid two-phase flow in a spiral tube with different flow regimes. The pressure fluctuation characteristics at the pipe wall and the solid vibration response characteristics are obtained. The results show that the motion of small bubbles in bubbly flow leads to small pressure fluctuations with low-frequency broadband (0-50 Hz). The motion of the gas plug in the plug flow causes small amplitude periodic pressure fluctuation with a shortened low-frequency broadband (0-15 Hz) compared to the bubbly flow. The motion of the gas slug in the slug flow causes large periodic fluctuations in pressure with a significant dominant frequency (6-7 Hz). The wavy flow is very stable and has a distinct main frequency (1-2 Hz). The vibration regime in the bubbly flow and wave flow are close to the first-order mode, and the vertical vibrating component is dominant. The plug flow and slug flow excite higher-order vibration modes, and the lateral vibration component plays more important part in the vibration response.

전자제품용 전원 플러그의 사출-구조 연계해석 (Structural Analysis in Conjunction with Injection Molding Analysis for Electrical Power Plug)

  • 박형필;최권일;이영주;이병옥;차백순;홍석관;구본흥
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2007년도 추계학술대회 논문집
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    • pp.271-274
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    • 2007
  • Housing and insulation of electrical connectors are made of plastic resin by injection molding process. The metallic inner tube is easily deformed by high pressure during the injection process. In order to prevent deformation of the inner tube, it is desirable to simulate it by structural CAE analysis. However, it takes a long time to calculate the stress- of the part by commercially available injection molding CAE software with sufficient accuracy. In this study, structural analysis in conjunction with injection molding analysis is proposed to improve accuracy of the structural analysis. Pressure distribution on the inner tube is predicted by the injection molding CAE analysis, and then mapped onto the mesh of structural analysis by a mapping algorithm developed in this study. As a result reliable result is obtained in shorter time than the conventional method. The predicted deformation of the inner tube is compared with the actual part after experiment.

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학교 현장에 적용 가능한 '샤를의 법칙' 실험방법의 분석 및 개발 (Analysis and Development of Experimental Method of Charle's Law Applicable to School)

  • 민정숙;김성희;정대홍
    • 대한화학회지
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    • 제53권2호
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    • pp.175-188
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    • 2009
  • 본 연구에서는 학교 현장에 적용 가능한 ‘샤를의 법칙’ 실험방법을 개발하였다. 교과서 및 문헌 분석을 통하여 실험 장치 및 방법을 구성하는데 필요한 요소를 분석하였다. 전체 부피를 결정하는 부분 으로 단순 구조인 주사기를 사용할 때 보다 바이알과 부피 변화를 관찰하는 부분으로 유리관을 연결한 구조를 사용하였을 때 온도 변화에 따른 기체의 부피 변화를 쉽게 측정할 수 있었고, 비커 같은 큰 부피 의 물중탕 기구 보다 눈금실린더를 이용한 물중탕 방법이 냉각 시간에 있어서 이점을 보여주었다. 부피 변화 부분에서 저항이 최소화된 형태로 액체 마개 형태가 이용되었다. 액체 마개로 물방울을 사용할 경 우 측정 초반에 증발에 의해 기체 부피변화에 큰 영향을 주는데, 글리세롤을 사용할 경우 이 같은 영향 은 거의 없었다. 제안된 실험방법으로 대략 1 시간 이내의 실험 시간을 소요하여 높은 선형 상관계수($R^2$ = 0.999)를 갖는 결과를 얻을 수 있었고, 부피가 0이 되는 온도가 $-216.7\;{^{\circ}C}$로 예측되는 정도로 매우 정확 한 결과를 보여주었다. 본 연구를 통해 개발된 샤를의 법칙 실험은 학교 급별 교육과정에 따라 수준을 조절하여 실시할 수 있을 것으로 예상한다.

E-PER 반응기를 이용한 유기성 폐기물의 혐기성 처리와 재생에너지 생산에 관한 연구 (Anaerobic Organic Wastewater Treatment and Energy Regeneration by Utilizing E-PFR System)

  • 김범식;최홍복;이재기;박주형;지덕기;최은주
    • 유기물자원화
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    • 제16권2호
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    • pp.57-65
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    • 2008
  • 일반적 중 저농도형 하수처리시설을 통해서는 처리가 힘든 고농도 유기성 폐수의 경우 재생에너지 생산이 가능한 혐기성 분해로 처리하는 것이 유리하다. 기존 호기성 처리에서 이미 그 실용성과 우수성이 입증된 E-PFR을 혐기성 처리에 적용하여 그 효용성과 재생에너지 생산 효율 증대 효과 등을 검증하고, 효율적인 재생에너지 생산을 위한 조건 등을 제시하기 위한 연구를 수행하였다. N 음식물쓰레기 처리시설에서 발생하는 탈리액을 대상으로 수행한 Pilot Plant 규모의 실험 연구에서 반응기의 구조적 특성으로 인해 혐기성 분해의 효율 향상 및 메탄가스 발생량이 증가함을 확인하였다. 이러한 처리 효율의 향상은 유체 이동관과 각단을 분리하는 격벽을 설치한 E-PFR의 구조적 특성에 기인한 원활한 혼합조건 형성과 스컴제어로 혐기성 처리에 있어서도 매우 이상적인 반응 조건을 형성시키기가 용이하였기 때문이다. E-PFR은 상향류식 폐수 유입과 각 단별로 분리된 다단형 처리로 인해 폐수 유입 구역에는 상대적으로 높은 MLSS가 유지될 수 있으므로 충격부하에 대한 내성이 강하고, 전체적으로 혐기성 최적 pH인 7.0~8.0 정도를 유지하여 상대적으로 높은 가스 발생량 및 메탄가스 함량을 유지하는 것이 가능하였다. 뿐만 아니라, 각 단별로 각기 다른 MLSS를 유지시키면서 SRT를 상대적으로 길게 유지함으로써 유기물 분해 및 가스 발생 효율을 증가시키는 효과가 있었다. 향후, 반응기의 구조적 개선과 발생가스를 이용한 교반 효과 개선 등을 통해 메탄가스 함량 70 % 수준의 안정적 혐기성 분해가 가능한 실증 플랜트 설계가 가능할 것으로 판단되며, 이를 통해 한층 향상된 재생에너지 획득 시스템 확보가 가능할 것이다.

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