• 제목/요약/키워드: High fracture toughness

검색결과 413건 처리시간 0.022초

가압기 지지대 볼트 연결부의 건전성 평가에 관한 연구 (The Assessment for Coupling Integrity of Pressurizer Support Bolting)

  • 조남진;김우창;김학중
    • 한국화재소방학회논문지
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    • 제27권5호
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    • pp.26-31
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    • 2013
  • 원전의 가압기 지지대에 사용되는 볼트는 설계 시 안전율 측면에서 충분한 경도의 볼트를 사용하지만, 현장실사를 통해 허용 경도 범위를 초과하는 볼트가 일부 확인되었다. 이러한 높은 경도의 볼트는 응력부식 및 재료의 파괴인성이 취약하고, 가압기는 부식에 취약한 환경이므로 이 부분에 대한 검토가 필요하다. 따라서 본 연구에서는 현장실사를 통해 원전 가압기 지지대에 사용되는 볼트의 경도를 측정하였고, 이를 통해 응력부식과 부재의 파괴인성에 의한 균열을 제한할 수 있는 최대 허용응력을 계산하였다. 또한 정상운전 및 사고운전 시 발생할 수 있는 지지대 볼트의 응력을 수치해석 프로그램인 ANSYS를 사용하여 예측하였고, 이 응력이 응력부식을 제한할 수 있는 최대 허용응력 내에 있는 지 검토하였다. 검토 결과 정상 및 사고운전 조건에서 볼트의 응력은 응력부식에 대해 허용응력 안전 기준치를 만족하는 것으로 나타났다. 그러나 향후 가압기 지지대의 구조물 체결방법을 체결 절차에 반영하여 정비 시 가압기의 건전성을 확보할 수 있도록 검토가 필요하다.

$Y_2O_3$$Nb_2O_5$가 첨가된 $ZrO_2$의 상 안정성 및 물리적 성질 (Phase Stability and Physical Properties of $ZrO_2$ doped with $Y_2O_3$ and $Nb_2O_5$)

  • 이득용;김대준;조경식;장주웅
    • 한국세라믹학회지
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    • 제34권6호
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    • pp.645-651
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    • 1997
  • 입성장 제어없이 정방정 니르코니아의 파괴인성과 상 안정성을 증진시키기 위해 $Y_{2}O_{3}$$Nb_{2}O_{5}$가 첨가된 정방정 지르코니아를 상압소결방법으로 제조하였다. 지르코니아 복합체는 상 안정성이 뛰어난 조성에 상변화가 우수한 조성을 중량비로 혼합 합성하였다. 상변화가 우수한 조성을 15 wt% 첨가한 복합체와 동일한 단일조성의 경우 공기중에 $1500^{\circ}C$ 10시간 소결후 9$MPam^{1/2}$의 파괴인성값과 $220^{\circ}C$에서 $1000^{\circ}C$/까지 100시간이상 agmg을 한 뒤에도 우수한 저온 및 고온 상 안정성이 관찰되었다. 복합체와 상응하는 단일조성은 90.24 mol% $ZrO_2$-5.31 mol% $Y_{2}O_{3}$ mol% $Nb_{2}O_{5}$이었다. 조직관찰 결과 결정립은 소결시간에 따라 증가하였으며 미세균열이나 twinning은 발견되지 않았다.

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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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방전플라즈마 소결 공정을 이용한 WC-Co-Mo2C 소재의 기계적 특성평가 (Mechanical Property Evaluation of WC-Co-Mo2C Hard Materials by a Spark Plasma Sintering Process)

  • 김주훈;박현국
    • 한국재료학회지
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    • 제31권7호
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    • pp.392-396
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    • 2021
  • Expensive PCBN or ceramic cutting tools are used for processing of difficult-to-cut materials such as Ti and Ni alloy materials. These tools have the problem of breaking easily due to their high hardness but low fracture toughness. To solve these problems, cutting tools that form various coating layers are used in low-cost WC-Co hard material tools, and research on various tool materials is being conducted. In this study, binderless-WC, WC-6 wt%Co, WC-6 wt%Co-1 wt% Mo2C, and WC-6 wt%Co-2.5 wt% Mo2C hard materials are densified using horizontal ball milled WC-Co, WC-Co-Mo2C powders, and spark plasma sintering process (SPS process). Each SPSed Binderless-WC, WC-6 wt%Co-1 wt% Mo2C, and WC-6 wt%Co-2.5 wt% Mo2C hard materials are almost completely dense, with relative density of up to 99.5 % after the simultaneous application of pressure of 60 MPa and almost no significant change in grain size. The average grain sizes of WC for Binderless-WC, WC-6 wt%Co-1 wt% Mo2C, and WC-6 wt%Co-2.5 wt% Mo2C hard materials are about 0.37, 0.6, 0.54, and 0.43 ㎛, respectively. Mechanical properties, microstructure, and phase analysis of SPSed Binderless-WC, WC-6 wt%Co-1 wt% Mo2C, and WC-6 wt%Co-2.5 wt% Mo2C hard materials are investigated.

Assessment of titanium alloy bolts for structural applications

  • Li, Dongxu;Uy, Brian;Wang, Jia;Song, Yuchen
    • Steel and Composite Structures
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    • 제42권4호
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    • pp.553-568
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    • 2022
  • This paper explored the viability of utilising titanium alloy bolts in the construction industry through an experimental programme, where a total of sixty-six titanium alloy (Ti/6Al/4V) bolts were tested under axial tension, pure shear and combined tension and shear. In addition, a series of Charpy V-notch specimens machined from titanium alloy bolts, conventional high-strength steel bolts, austenitic and duplex stainless steel bolts were tested for impact toughness comparisons. The obtained experimental results demonstrated that the axial tensile and pure shear capacities of titanium alloy bolts can be reasonably estimated by the current design standards for steel structures (Eurocode 3, AS 4100 and AISC 360). However, under the combined tension and shear loading conditions, significant underestimation by Eurocode 3 and unsafe predictions through AS 4100 and AISC 360 indicate that proper modifications are necessary to facilitate the safe and economic use of titanium alloy bolts. In addition, numerical models were developed to calibrate the fracture parameters of the tested titanium alloy bolts. Furthermore, a design-based selection process of titanium alloy bolts in the structural applications was proposed, in which the ultimate strength, ductility performance and corrosion resistance (including galvanic corrosion) of titanium alloy bolts was mainly considered.

구멍이 있는 고속 회전 원통용기의 파손 및 수명 해석 (Analysis of Fatigue Life and Failure of High-Speed Rotating Cylindrical Vessel with Holes)

  • 이억섭;김홍민;최혜빈
    • 대한기계학회논문집A
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    • 제34권4호
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    • pp.439-446
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    • 2010
  • 파괴역학을 적용하여 고속 회전 원통 용기의 파손 원인을 분석하였다. 파괴역학을 적용하여 고속회전 원통 용기의 파손 원인과 파손 과정을 상세하게 분석하였다. 파손 해석과 수명 해석을 수행하는데 필요한 정보인 원통 용기 제작 당시 사용한 재료의 파괴역학적인 물성치를 포함하는 피로 파손 해석 과정을 요약하였다. 원통 용기에 발생하는 이론적 원통 용기최대응력의 크기와 가동조건 하에서 발생한 결과를 비교하였다. 시편의 파면을 OM과 SEM으로 관찰하여 피로 균열 전파 개시 지점을 찾고, 균열전파의 거동을 규명한 후 피로균열전파 수명을 산정하였다. Paris model 을 적용하여 산정된 피로수명과 고속 회전 원통 용기의 실제 피로 수명을 비교하였다.

SHS법에 의한 $TiB_2-TiC$ 복합체의 소결특성에 관한 연구 (Study on Sintering Properties of $TiB_2-TiC$ Composite by Self-Propagating High Temperature Synthesis Method)

  • 이형복;조덕호;장준원
    • 한국세라믹학회지
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    • 제29권7호
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    • pp.577-585
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    • 1992
  • TiB2 and TiC were prepared from the mixture of metal titanium, boron and graphite powders in Argon atmosphere by Self-propagating High-temperature Synthesis method. The sintered properties of TiB2-TiC composite as a function of TiC content and sintering temperature were investigated in TiB2 matrix. The sintered properties were the most excellent at 10 wt% TiC content in TiB2-TiC composite. The relative density, M.O.R strength, hardness and fracture toughness of TiB2-10 wt% TiC composite sintered at 190$0^{\circ}C$ for 90 min by hot-pressing under the pressure of 30 MPa were 98.6%, 634 MPa, 2128.1 kg/$\textrm{mm}^2$ and 4.09 MN/m3/2, respectively.

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SHS 화학로에 의한 (B.Si)C 복합체의 합성 및 기계적 특성에 관한 연구 (Study on Synthesis and Mechanical Properties of (B.Si)C Composite by Self Propagating High Temperature Synthesis Chemical Furnace)

  • 이형복;조덕호;이재원
    • 한국세라믹학회지
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    • 제32권4호
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    • pp.413-418
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    • 1995
  • The (B.Si)C composite was prepared form the mixture of metal boron, silicon, and carbon powders in Ar atmosphere by Self-propagating High-temperature Synthesis Chemical Furnace. The characterization of synthesized power and sintered body were investigated. The microstructure of sintered body suggested that SiC boundary was made between B4C grains. The most excellent mechanical properties, the relative density of 95% oftheoretical value, 3 point flexural strength of 360MPa, and fracture toughness of 3.6MN/m3/2 could be obtained in 80wt% B4C-20 wt% SiC composite were obtained.

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인코넬 690 합금의 크리프거동 (Creep Behaviours of Inconel 690 Alloy)

  • 황경충;윤종호;최재하;김성청
    • 한국공작기계학회논문집
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    • 제11권4호
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    • pp.54-61
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    • 2002
  • Inconel 690 alloy has widely been used in power plant and high temperature facilities because it has high thermal resistance and toughness. But we have little design data about the creep behaviors of the alloy. Therefore, in this study, an apparatus has been designed and built for conducting creep tests under constant load conditions. A series of creep tests on Inconel 690 alloy have been performed to get the basic design data and life prediction of inconel products and we have gotten the following results. First, the stress exponents decrease as the test temperatures increase. Secondly, the creep activation energy gradually decreases as the stresses become bigger. thirdly, the constant of Larson-Miller Parameters on this alloy is estimated about 10. And last the fractographs at the creep rupture show both the ductile and the brittle fracture according to the creep conditions.

우주선용 GaAs/Ge 태양전지에 관한 연구 (Study on GaAs/Ge Solar Cell for Space Use)

  • 이만근;박이준;최영희;전흥석
    • 한국에너지공학회:학술대회논문집
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    • 한국태양에너지학회, 한국에너지공학회 1993년도 춘계 공동학술발표회 초록집
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    • pp.53-59
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    • 1993
  • The interests on GaAs solar cell grown on Ge substrates as an alternative of GaAs substrate arises from its very close lattice parameters, very small difference in thermal expansion coefficients, and much higher fracture toughness between GaAs and Ge. In addition, for many space power application, it would be a most attractive solar cell with high radiation resistance of GaAs and high reliability for the reverse current damage of Ge, and expecting the theoretical efficiency limit of the tandem GaAs/Ge solar cell is 34% under 1 Sun, AM 0, and 28$^{\circ}C$ condition. In this report, we have reviewed the performance and the manufacturing technics of GaAs/Ge solar cell, and current status of research in GaAs/Ge solar cell.

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