• 제목/요약/키워드: hot crack

검색결과 242건 처리시간 0.021초

Fatigue behavior of concrete beams reinforced with HRBF500 steel bars

  • Li, Ke;Wang, Xin-Ling;Cao, Shuang-Yin;Chen, Qing-Ping
    • Structural Engineering and Mechanics
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    • 제53권2호
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    • pp.311-324
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    • 2015
  • The purpose of this study was to investigate experimentally the fatigue performance of reinforced concrete (RC) beams with hot-rolled ribbed fine-grained steel bars of yielding strength 500MPa (HRBF500). Three rectangular and three T-section RC beams with HRBF500 bars were constructed and tested under static and constant-amplitude cyclic loading. Prior to the application of repeated loading, all beams were initially cracked under static loading. The major test variables were the steel ratio, cross-sectional shape and stress range. The stress evolution of HRBF500 bars, the information about crack growth and the deflection developments of test beams were presented and analyzed. Rapid increases in deflections and tension steel stress occured in the early stages of fatigue loading, and were followed by a relatively stable period. Test results indicate that, the concrete beams reinforced with appropriate amount of HRBF500 bars can survive 2.5 million cycles of constant-amplitude cyclic loading with no apparent signs of damage, on condition that the initial extreme tensile stress in HRBF500 steel bars was controlled less than 150 MPa. It was also found that, the initial extreme tension steel stress, stress range, and steel ratio were the main factors that affected the fatigue properties of RC beams with HRBF500 bars, whose effects on fatigue properties were fully discussed in this paper, while the cross-sectional shape had no significant influence in fatigue properties. The results provide important guidance for the fatigue design of concrete beams reinforced with HRBF500 steel bars.

Y2O3가 첨가된 Al2O3-TiC복합 소결체의 치밀화와 기계적 성질 (Sintering and Machanical Properties of Y2O3 Added Al2O3-TiC Composite)

  • 최종선;박상엽;김득중;강석중
    • 한국세라믹학회지
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    • 제26권3호
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    • pp.438-444
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    • 1989
  • The role of TiC and the effect of Y2O3 addition on the densification, microstructure and mechanical properties of Al2O3-TiC composite have been studied. The amount of Y2O3 has been varied from 0 to 2 wt.% while keeping the TiC content at 10, 20 or 30 wt.%. The powder compacts have been sintered at 1,75$0^{\circ}C$ for various times in 1 atm Ar atmosphere and hot isostatically pressed (HIPed) at 1,$600^{\circ}C$ for 0.5h under 1,500atm Ar. Considerable increase in sintered density(over 95%) has been achieved by adding 0.5 wt.% Y2O3 in specimens containing high TiC volume. More addition of Y2O3 does not affect the densification. With increasing the sintering time from 0.5 to 4h, slight increase in density results. The growth of Al2O3 grain has been enhanced by Y2O3 addition ; this tendency is reduced with increasing TiC content because of grain boundary dragging effect of TiC particles. The hardness of specimens increases considerably by an addition of 0.5wt.% Y2O3 owing to the density increase. Further addition of Y2O3 has no effect on hardness. Fracture toughness augments with TiC content by crack deflection around the particles. By adding 0.5wt.% Y2O3, all the specimens can be densified to isolated pore stage and thus can be HIPed to full densification and better mechanical property. In particular, the fracture toughness of Al2O3-30 TiC specimen increases about 50% by HIPing. Fully dense Al2O3-30 TiC with good mechanical properties can be prepared by normal Sintering/HIPing process.

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친환경 아스팔트 도로포장의 현장 공용성 분석 (An Evaluation of Field Performance of Environmentally Friendly Asphalt Pavement)

  • 김낙석
    • 한국재난정보학회 논문집
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    • 제9권1호
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    • pp.22-29
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    • 2013
  • 중온 아스팔트 포장공법은 밀입도 아스팔트 포장공법 대비 생산 및 포설온도를 낮추어 생산 및 시공이 가능한 포장공법으로 연료 소모량과 온실가스 배출량 면에서 효과가 우수하다. 본 연구에서는 중온 개질 아스팔트 포장의 장기 현장 공용성을 평가하기 위하여 시험포장이 실시 된 구간에 대해 미끄럼 저항성, 소성변형, 평탄성과 같은 현장실험을 수행하였다. 현장실험 결과 미끄럼 저항성은 공용 20개월 후에도 공용초기와 같이 S1 위험도 1기준을 만족시켰으나 소성변형, 평탄성에서는 공용기간에 따라 다소 감소추세를 보였다. 그러나 현장실험이 수행된 구간은 버스정류장으로 중차량 통행량이 많고 중차량인 버스의 출발과 정지가 반복되는 가혹한 환경조건에 노출되어 있음을 고려하였을 때 소성변형, 평탄성의 감소추세는 수용할 수 있는 정도이다. 균열의 경우 공용 11개월 후에는 관찰되지 않았으나 공용 20개월 후 에는 미세한 균열이 발생한 것을 관찰 할 수 있었는데 이는 첨가된 섬유로 인해 혼합물의 균열 저항성이 향상된 것으로 판단된다.

탄화규소계 세라믹스에서 미끄럼시의 마모 및 마모천이에 미치는 계면강도의 영향 (Effects of Interface Boundary Strength on Wear and Wear Transition during Sliding in Silicon Carbide Ceramics)

  • 김동진;박성길;류현;엄창도;조성재;김석삼
    • Tribology and Lubricants
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    • 제11권4호
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    • pp.21-27
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    • 1995
  • The effects of interface boundary strength on wear and wear transition during sliding have been investigated in silicon carbide ceramics. Three different microstructures, i.e., solid state sintered silicon carbide, liquid phase sintered silicon carbide and liquid phase sintered silicon carbide composite reinforced with TiB$_{2}$ particulates, were designed by hot pressing. Examinations of crack patterns and fracture modes indicated that interface boundaries were relatively strong between silicon carbide grains in the solid state sintered silicon carbide, intermediate in the liquid phase sintered silicon carbide and weak between silicon carbide grains and TiB$_{2}$ particles in the composite. Wear data and examinations of worn surfaces revealed that the wear behavior of these silicon carbide ceramics could be significantly affected by the interface strength. In the solid state sintered silicon carbide, the wear occurred by a grooving process. In the liquid phase sintered silicon carbide and composite, on the other hand, an abrupt transition in wear mechanism from initial grooving to grain pull-out process occurred during the test. The transition occurred significantly earlier in the composite than in the carbide.

Mg-5Bi-3Al 마그네슘 고속 압출재의 미세조직과 고주기피로 특성 (Microstructure and High-Cycle Fatigue Properties of High-Speed-Extruded Mg-5Bi-3Al Alloy)

  • 차재원;진상철;박성혁
    • 소성∙가공
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    • 제31권5호
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    • pp.253-260
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    • 2022
  • In this study, the microstructural characteristics of a high-speed-extruded Mg-5Bi-3Al (BA53) alloy and its tensile, compressive, and high-cycle fatigue properties are investigated. The BA53 alloy is successfully extruded at a die-exit speed of 16.6 m/min without any hot cracking using a large-scale extruder for mass production. The homogenized BA53 billet has a large grain size of ~900 ㎛ and it contains fine and coarse Mg3Bi2 particles. The extruded BA53 alloy has a fully recrystallized microstructure with an average grain size of 33.8 ㎛ owing to the occurrence of complete dynamic recrystallization during high-speed extrusion. In addition, the extruded BA53 alloy contains numerous fine lath-type Mg3Bi2 particles, which are formed through static precipitation during air cooling after exiting the extrusion die. The extruded BA53 alloy has a high tensile yield strength of 175.1 MPa and ultimate tensile strength of 244.4 MPa, which are mainly attributed to the relative fine grain size and numerous fine particles. The compressive yield strength (93.4 MPa) of the extruded BA53 alloy is lower than its tensile yield strength, resulting in a tension-compression yield asymmetry of 0.53. High-cycle fatigue test results reveal that the extruded BA53 alloy has a fatigue strength of 110 MPa and fatigue cracks initiate at the surface of fatigue test specimens, indicating that the Mg3Bi2 particles do not act as fatigue crack initiation sites. Furthermore, the extruded BA53 alloy exhibits a higher fatigue ratio of 0.45 than other commercial extruded Mg-Al-Zn-based alloys.

Analytical investigation of the cyclic behaviour of I-shaped steel beam with reinforced web using bonded CFRP

  • Mohabeddine, Anis I.;Eshaghi, Cyrus;Correia, Jose A.F.O.;Castro, Jose M.
    • Steel and Composite Structures
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    • 제43권4호
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    • pp.447-456
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    • 2022
  • Recent experimental studies showed that deep steel I-shaped profiles classified as high ductility class sections in seismic design international codes exhibit low deformation capacity when subjected to cyclic loading. This paper presents an innovative retrofit solution to increase the rotation capacity of beams using bonded carbon fiber reinforced polymers (CFRP) patches validated with advanced finite element analysis. This investigation focuses on the flexural cyclic behaviour of I-shaped hot rolled steel deep section used as beams in moment-resisting frames (MRF) retrofitted with CFRP patches on the web. The main goal of this CFRP reinforcement is to increase the rotation capacity of the member without increasing the overstrength in order to avoid compromising the strong column-weak beam condition in MRF. A finite element model that simulates the cyclic plasticity behavior of the steel and the damage in the adhesive layer is developed. The damage is modelled using the cohesive zone modelling (CZM) technique that is able to capture the crack initiation and propagation. Details on the modelling techniques including the mesh sensitivity near the fracture zone are presented. The effectiveness of the retrofit solution depends strongly on the selection of the appropriate adhesive. Different adhesive types are investigated where the CZM parameters are calibrated from high fidelity fracture mechanics tests that are thoroughly validated in the literature. This includes a rigid adhesive commonly found in the construction industry and two tough adhesives used in the automotive industry. The results revealed that the CFRP patch can increase the rotation capacity of a steel member considerably when using tough adhesives.

초음파 열 영상 검사를 이용한 브레이징 접합 결함 검출 (A Brazing Defect Detection Using an Ultrasonic Infrared Imaging Inspection)

  • 조재완;최영수;정승호;정현규
    • 비파괴검사학회지
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    • 제27권5호
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    • pp.426-431
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    • 2007
  • 고에너지 초음파 여기 탄성파가 물체의 균열, 박리 등의 결함 부위를 통과할 때 서로 맞닿은 결함면은 균일하게 진동하지 않는다. 초음파 입사에 따른 결함 면 사이의 마찰(friction), 문지름 (rubbing) 또는 부딪침(clapping) 에 의해 진동 에너지가 결함 부위에서 국부적인 열로 변환된다. 이를 적외선 열 영상 카메라로 관측하면 구조물의 결함을 실시간으로 검출할 수 있다. 본 논문에서는 초음파 열 영상 검사를 이용한 인코넬 합금 박판의 브레이징 접합 결함 검출에 대해 기술한다. 2 kW 의 전력과 23 kHz 대역의 가진 주파수를 갖는 초음파 펄스를 280 ms 기간 동안 인코넬 합금의 브레이징 접합 박판에 입사시켰다. 브레이징 접합부의 결함위치 부근의 인코넬 합금 박판의 양면이 맞닿은 경계선에서 아주 밝은 국부적인 발열(핫 스팟)이 적외선 열 영상 카메라에 의해 관측되었으며 브레이징 접합 결함 위치에서도 미약한 열이 관측되었다. 배경 감산 평균 및 히스토그램 평활화 처리 등의 영상처리를 통해 브레이징 접합의 결함을 확인하였다.

정방정 $ZrO_2$의 첨가가 $\alpha$-Alumina/La-\beta-Aluminate $ 복합체의 기계적 성질에 미치는 영향 (Effect of Tetragonal $ZrO_2$ Addition on the Mechanical Properties of $\alpha$-Alumina/La-\beta-Aluminate $Composite)

  • 강석원;김해두;김신;이수영;박동수
    • 한국세라믹학회지
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    • 제31권5호
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    • pp.513-519
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    • 1994
  • In-situ 반응에 의하여 형성된 La-$\beta$-aluminate (LaAl11O18)로 강화된 알루미나 복합체에 정방정 ZrO2를 첨가하여 알루미나 복합체를 제조하였다. 사용된 분말 혼합체의 조성은 (100-x)[88 Al2O3+(La2O3+11 Al2O3)]+x vol% ZrO2였으며, x는 0부터 40까지 변화시켰다. 열간가압형성에 의하여 얻어진 치밀한 소결체는 1200MPa의 곡강도값을 나타내었다. 이러한 높은 곡강도값은 첨가한 ZrO2 입자와 기존의 La-$\beta$-aluminate platelets의 기지 입자에 대한 입성장 억제 효과와 ZrO2의 응력유기 상변태 효과로부터 기인하였다. 상기 복합체의 파괴 인성도 역시 8.58.5 MPa.m1/2까지 증가하였는데, 이러한 파괴인성의 증가는 ZrO2의 상변태 강화와 미세균열 강화, 그리고 La-$\beta$-aluminate와 ZrO2 입자의 균열 deflection과 bridging의 효과로 설명되어질 수 있다.

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초정응고 형식 제어에 의한 오스테나이트계 스테인리스 신강종의 개발 (Development of the New Austenitic Stainless Steels by Controlling Primary Solidification Mode)

  • 정호신
    • 수산해양기술연구
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    • 제27권2호
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    • pp.132-140
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    • 1991
  • 오스테나이트계 스테인레스강 SUS316, SUS321 보다 용접성, 내식성 및 극저온인성이 양호하며 기존의 재료보다 고가 첨가 원소인 크롬과 니켈의 함유량을 절감한 새로운 강종의 개발을 목표로 연구를 수행한 결과, 다음과 같은 결론을 얻었다. 1) Trans-Varestraint 시험에 의하여 용해 제조강과 수입개의 고온 균열 감수성을 비교 평가한 결과, SUS321 수입재와 SuS321에 대응하여 개발한 강종 사이의 응고 균열 감수성이 거의 동등 내지는 용해 제조강의 고온 균열 저항력이 우수하였다. 따라서 Creq/Nieq의 값 1.43~1.48의 범위에서 합금 설계한 강종 M-1~M-9의 고온 균열 저항력은 기존의 문헌에 의한 테이타와 비교한 결과, 우수함을 알 수 있었다. 2) 샤르피(Charpy V notch) 표준 시험편에 의한 극저온 및 상온에서의 인성을 조사한 결과, 용해 제조강 M-1~M-9의 인성은 양호하였으며 특히 SUS321 수입재와 SUS321 대체재로서 개발한 M-7~M-9의 인성은 수입재의 그것보다 훨씬 높은 값을 나타내었다. 3) JIS G 0574에 의한 입계 부식 감수성을 조사한 결과, 입계 부식 감수성을 낮추기 위해서는 티타늄의 첨가가 매우 유효함을 알 수 있었다. 특히 SUS321 수입재와 SUS321 대응 강종(M-7~M-9)의 내식성은 수입재보다 개발 강종의 내식성이 훨씬 우수하였다. 4) 이상의 고온 균열 감수성과 극저온 및 상온에서의 인성, 내식성을 종합적으로 검토한 결과, 스테인리스강의 고가 첨가 원소인 크롬과 니켈의 첨가량을 절감할 수 있었다. 상기와 같은 관점에서 본 연구 수행에 의하여 새로운 합금 설계 개념에 의거, 새로운 강종의 개발과 생산 원가의 절감 그리고 제품의 품질 향상에 기여할 수 있는 기준을 확립할 수 있었다.

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A REVIEW ON THE ODSCC OF STEAM GENERATOR TUBES IN KOREAN NPPS

  • Chung, Hansub;Kim, Hong-Deok;Oh, Seungjin;Boo, Myung Hwan;Na, Kyung-Hwan;Yun, Eunsup;Kang, Yong-Seok;Kim, Wang-Bae;Lee, Jae Gon;Kim, Dong-Jin;Kim, Hong Pyo
    • Nuclear Engineering and Technology
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    • 제45권4호
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    • pp.513-522
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    • 2013
  • The ODSCC detected in the TSP position of Ulchin 3&4 SGs are typical ODSCC of Alloy 600MA tubes. The causative chemical environment is formed by concentration of impurities inside the occluded region formed by the tube surface, egg crate strips, and sludge deposit there. Most cracks are detected at or near the line contacts between the tube surface and the egg crate strips. The region of dense crack population, as defined as between $4^{th}$ and $9^{th}$ TSPs, and near the center of hot leg hemisphere plane, coincided well with the region of preferential sludge deposition as defined by thermal hydraulics calculation using SGAP computer code. The cracks developed homogeneously in a wide range of SGs, so that the number of cracks detected each outage increased very rapidly since the first detection in the $8^{th}$ refueling outage. The root cause assessment focused on investigation of the difference in microstructure and manufacturing residual stress in order to reveal the cause of different susceptibilities to ODSCC among identical six units. The manufacturing residual stress as measured by XRD on OD surface and by split tube method indicated that the high residual stress of Alloy 600MA tube played a critical role in developing ODSCC. The level of residual stress showed substantial variations among the six units depending on details of straightening and OD grinding processes. Youngwang 3&4 tubes are less susceptible to ODSCC than U3 and U4 tubes because semi-continuous coarse chromium carbides are formed along the grain boundary of Y3&4 tubes, while there are finer less continuous chromium carbides in U3 and U4. The different carbide morphology is caused by the difference in cooling rate after mill anneal. There is a possibility that high chromium content in the Y3&4 tubes, still within the allowable range of Alloy 600, has made some contribution to the improved resistance to ODSCC. It is anticipated that ODSCC in Y5&6 SGs will be retarded more considerably than U3 SGs since the manufacturing residual stress in Y5&6 tubes is substantially lower than in U3 tubes, while the microstructure is similar with each other.