• 제목/요약/키워드: Cause of deformation

검색결과 483건 처리시간 0.029초

Al 첨가 TWIP강에서의 지연파괴에 대한 변형유기 마르텐사이트 변태의 영향 (Effects of the Strain Induced Martensite Transformation on the Delayed Fracture for Al-added TWIP Steel)

  • 김영우;강남현;박영도;최일동;김교성;김성규;조경목
    • 대한금속재료학회지
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    • 제46권12호
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    • pp.780-787
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    • 2008
  • For the advanced high strength steels (AHSS), high-manganese TWIP (twinning induced plasticity) steels exhibit high tensile strength (800-1000 MPa) and high elongation (50-60%). However, the TWIP steels need to be understood of delayed fracture following the cup drawing test. Among the factors to cause delayed fracture, i.e, martensite transformation, hydrogen embrittlement and residual stress, the effects of martensite transformation (${\gamma}{\rightarrow}{\varepsilon}$ or ${\gamma}{\rightarrow}{\alpha}^{\prime}$) were investigated on the delayed fracture phenomenon. Microstructural phase analysis was conducted for cold rolled (20, 60, 80% reduction ratio) steels and tensile deformed (20, 40, 60% strain) steels. For the Al-added TWIP steels, no martensite phase was found in the cold rolled and tensile deformed specimen. But, the TWIP steels with no Al addition indicated the martensite transformation. The cup drawing specimens showed the martensite transformation irrespective of the Al-addition to the TWIP steel. However, the TWIP steel with no Al exhibited the larger amount of martensite than the case of the TWIP steel with Al addition. For the reason, it was possible to conclude that the Al addition suppressed the martensite transformation in TWIP steels, therefore preventing the delayed fracture effectively. However, it was interesting to note that the mechanism of delayed fracture should be incorporated with hydrogen embrittlement and/or residual stress as well as the martensite transformation.

Coupled irradiation-thermal-mechanical analysis of the solid-state core in a heat pipe cooled reactor

  • Ma, Yugao;Liu, Jiusong;Yu, Hongxing;Tian, Changqing;Huang, Shanfang;Deng, Jian;Chai, Xiaoming;Liu, Yu;He, Xiaoqiang
    • Nuclear Engineering and Technology
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    • 제54권6호
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    • pp.2094-2106
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    • 2022
  • The solid-state core of a heat pipe cooled reactor operates at high temperatures over 1000 K with thermal and irradiation-induced expansion during burnup. The expansion changes the gap thickness between the solid components and the material properties, and may even cause the gap closure, which then significantly influences the thermal and mechanical characteristics of the reactor core. This study developed an irradiation behavior model for HPRTRAN, a heat pipe reactor system analysis code, to introduce the irradiation effects such as swelling and creep. The megawatt heat pipe reactor MegaPower was chosen as an application case. The coupled irradiation-thermal-mechanical model was developed to simulate the irradiation effects on the heat transfer and stresses of the whole reactor core. The results show that the irradiation deformation effect is significant, with the irradiation-induced strains up to 2.82% for fuel and 0.30% for monolith at the end of the reactor lifetime. The peak temperatures during the lifetime are 1027:3 K for the fuel and 956:2 K for monolith. The gap closure enhances the heat transfer but caused high stresses exceeding the yield strength in the monolith.

가스 하이드레이트 부존 퇴적토의 지반공학적 물성 (Geotechnical properties of gas hydrate bearing sediments)

  • 김학성;조계춘;이주용
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 춘계학술대회 초록집
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    • pp.151-151
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    • 2011
  • Large amounts of natural gas, mainly methane, in the form of hydrates are stored on continental margins. When gas hydrates are dissociated by any environmental trigger, generation of excess pore pressure due to released free gas may cause sediment deformation and weakening. Hence, damage on offshore structures or submarine landslide can occur by gas hydrate dissociation. Therefore, geotechnical stability of gas hydrate bearing sediments is in need to be securely assessed. However, geotechnical characteristics of gas hydrates bearing sediments including small-strain elastic moduli have been poorly identified. Synthesizing gas hydrate in natural seabed sediment specimen, which is mainly composed of silty-to-clayey soils, has been hardly attempted due to their low permeability. Moreover, it has been known that hydrate loci in pore spaces and heterogeneity of hydrate growth in specimen scale play a critical role in determining physical properties of hydrate bearing sediments. In the presented study, we synthesized gas hydrate containing sediments in an instrumented oedometric cell. Geotechnical and geophysical properties of gas hydrate bearing sediments including compressibility, small-strain elastic moduli, elastic wave, and electrical resistivity are determined by wave-based techniques during loading and unloading processes. Significant changes in volume change, elastic wave, and electrical resistivity have been observed during formation and dissociation of gas hydrate. Experimental results and analyses reveal that geotechnical properties of gas hydrates bearing sediments are highly governed by hydrate saturation, effective stress, void ratio, and soil types as well as morphological feature of hydrate formation in sediments.

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과실의 충격특성에 관한 연구 (Mechanical Behavior of Fruits under Impact Loading)

  • 홍지향;명병수;최중섭;김창수;김태욱;정종훈;박장우
    • Journal of Biosystems Engineering
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    • 제30권5호
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    • pp.274-279
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    • 2005
  • Impact is one of the major cause of damage to fruits druing varios processes from the production on the farm to the consumer. The tissue of fruits are ruptured in a very short period time less than 10ms by impact loading. Mechanical behavior of fruits under impact loading can be analyzed better with high speed sampling data acquisition system and one of them is a digital storage oscilloscope. A impact test system was developed to test the physical properties of fruits including apple, pear, and peach which may lead to a better understanding of the physical laws. The test system consisted of a digital storage oscilloscope and simple mechanism which can apply impact force to fresh produce. Rupture force, energy, and deffrmation were measured at the five levels of drop heights from 4 to 24cm fur each internal and external tissues. Rupture forces for apple and pear were in the range of 72.9 to 87.7 N and 70.8 to 84.1 N for external and internal tissues, respectively. Rupture forces far peach external tissues were in the range of 43.4 to 65.0 N.

CAD/CAM 세라믹 인레이로 수복한 치아의 응력분포에 관한 유한요소법적 연구 (FINITE ELEMENT STRESS ANALYSIS OF A TOOTH RESTORED WITH CAD/CAM CERAMIC INLAY)

  • 송보경;엄정문
    • Restorative Dentistry and Endodontics
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    • 제26권6호
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    • pp.464-484
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    • 2001
  • When restoring a tooth, the dentist tries to choose the ideal material for existing situation. One criterion that is considered is its suitability for restoring coronal strength. As more tooth structure is removed, the cusps are weakened and susceptible to fracture. Further, this increased deformation may cause the formation of intermittent gaps at the margin between the hard tissue and the restoration, facilitating marginal leakage. The improvements in ceramic materials now make it possible for alternatives to amalgams, composites, and cast metal to be of offered for posterior teeth. Of the materials used, ceramics most closely approximates the properties of enamel. The introduction of computer-aided design/computer-aided manufacture(CAD/CAM) systems to restorative dentistry represents a major technological breakthrough. It is possible to design and fabricate ceramic restorations at a single appointment. Additionally, CAD/CAM systems eliminate certain errors and inaccuracies that are inherent to the indirect method and provide an esthetic restoration. The aim of this investigation was to study the loading characteristics of CAD/CAM ceramic inlay and to compare the stress distribution and displacement associated with different designs of cavity(the isthmus width and cavity depth). A human maxillary left first premolar was prepared with standard mesio-occlusal cavity preparation, as recommended by the manufacturer Ceramic inlay was fabricated with CEREC 2 CAD/CIM equipment and cemented into the prepared cavity. Three dimensional model was made by the serial photographic method. The cavity width was varied $\frac{1}{3}$, $\frac{1}{2}$ and $\frac{2}{3}$ of intercuspal distance between buccal and lingual cusp tip. The cavity depth was varied 1.5mm and 2.3mm. So six models were constructed to simulate six conditions. A point load of 500N was applied vertically onto the first node of the lingual slope from the buccal cusp tip. The stress distribution and displacement were solved using ANSYS finite element program(Swanson Analysis System). (omitted)

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LED칩 제조용 다이 본더의 전산 설계 및 해석에 대한 연구 (A Study on the Computational Design and Analysis of a Die Bonder for LED Chip Fabrication)

  • 조용규;이정원;하석재;조명우;최원호
    • 한국산학기술학회논문지
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    • 제13권8호
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    • pp.3301-3306
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    • 2012
  • LED 칩 패키징에서 다이 본딩은 분할된 칩을 리드 프레임에 고정시켜 칩이 이후 공정을 견딜 수 있도록 충분한 강도를 제공하는 중요한 공정이다. 기존의 다이 본더의 픽업 장치는 단순히 콜렛의 하강 동작과 이젝터 핀의 상승 동작만으로 구동되어 픽업 장치와 다이가 접촉하는 순간 충격에 의한 다이의 손상과 위치 정렬 오차에 대한 문제점이 발생한다. 본 연구에서는 위치 정렬 에러 및 다이의 손상을 최소화시키기 위하여 고정밀, 고속 이송이 가능한 픽업 헤드를 사용한 다이 본더 시스템을 개발하였다. 구조적 안정성을 평가하기 위해 다이 본더의 유한요소모델을 생성하였고 구조 해석을 수행하였다. 그다음, 다이 본더의 작동 주파수에 대해 픽업 헤드의 유한요소모델을 이용하여 진동해석을 수행하였다. 해석 결과, 다이 본더에 작용하는 응력 및 변위, 고유진동수에 대해 분석하였고 개발된 시스템의 구조적 안정성에 대해 확인하였다.

황령산 사면 계측관리 분석에 관한 연구 (Study on Analysis for the Slope Monitoring Performance at the Whangryeong Mountain Site)

  • 라원진;최정찬;김경수;조용찬
    • 지질공학
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    • 제14권4호
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    • pp.429-442
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    • 2004
  • 1999년 부산광역시에서 발생한 황령산 산사태는 평면파괴 형태였다 그 후, 황령산 절개사면은 재시공 되었으며 최종 구배는 1:2.0이었다. 수평변위, 간극수압 및 축력을 측정하기위하여 공사중인 2000년 8월부터 2002년 2월까지 파괴사면에 대한 계측이 실시되었다. 계측결과를 종합 고려하면, 강우량에 비례해서 간극수압이 증가되지만 강우 후 지반의 압력수두가 신속히 감소하여, 지표에서 유입된 강우가 사면을 따라 신속히 배출되는 것으로 사료된다. 또한, 경사계 및 하중계 계측자료의 분석결과, 지반의 거동은 거의 없으므로, 사면도 안정된 것으로 사료된다. 특히 본 연구지역과 같이 강우와 관련된 산사태 지역의 경우 자동화 계측을 통해서 간극수압의 신속한 증감을 알 수 있었으며, 추후 이러한 주요 시설 사면에서 자동화 방식에 의한 계측관리가 사면의 안정성을 판단하는데 더욱 효과적일 것으로 사료된다.

교차롤압연된 Ni-Cr 합금의 기계적 특성 발달 (Improved Mechanical Properties of Cross Roll Rolled Ni-Cr Alloy)

  • 송국현;김대근;손현택;이해진;김한솔;김원용
    • 한국재료학회지
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    • 제21권10호
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    • pp.556-562
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    • 2011
  • We carried out this study to evaluate the grain refining in and the mechanical properties of alloys that undergo severe plastic deformation (SPD). Conventional rolling (CR) and cross-roll rolling (CRR) as SPD methods were used with Ni-20Cr alloy as the experimental material. The materials were cold rolled to a thickness reduction of 90% and subsequently annealed at $700^{\circ}C$ for 30 min to obtain a fully recrystallized microstructure. For the annealed materials after the cold rolling, electron back-scattered diffraction (EBSD) analysis was carried out to investigate the grain boundary characteristic distributions (GBCDs). The CRR process was more effective when used to develop the grain refinement relative to the CR process; as a result, the grain size was refined from $70{\mu}m$ in the initial material to $4.2{\mu}m$ (CR) and $2.4{\mu}m$ (CRR). These grain refinements have a direct effect on improving the mechanical properties; in this case, the microhardness, yield and tensile strength showed significant increases compared to the initial material. In particular, the CRR-processed material showed more effective values relative to the CR-processed materials. The different texture distributions in the CR (001//ND) and CRR (111//ND) were likely the cause of the increase in the mechanical properties. These findings suggest that CRR can result in materials with a smaller grain size, improved texture development and improved mechanical properties after recrystallization by a subsequent annealing process.

Padding plate 용접구조의 인장 정하중 이력에 의한 용접잔류응력 변화 및 피로강도에의 영향 (Re-distribution of Welding Residual Stress Due to Tensile Pre-load and Its Effects on Fatigue Strength in Padding Plate Weldment)

  • 강성원;김영욱;김화수;김도현
    • 대한조선학회논문집
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    • 제38권4호
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    • pp.75-82
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    • 2001
  • 건조 후 수행하는 수압시험 또는 화물의 적재 등과 같은 정하중은 파랑변동하중에 비하여 선체구조물에 상당히 큰 응력을 유발한다. 이러한 정하중이력에 의하여, 선체구조물의 응력집중으로 인해 피로강도가 문제되는 용접이음부에서는, 재료의 탄소성 거동에 의하여 초기용접잔류응력이 상당히 이완될 것으로 예상된다. 따라서, 이러한 용접이음부의 피로강도를 평가할 때에는 이완된 잔류응력의 영향을 고려하는 것이 보다 합리적이다. 본 연구에서는 선체구조물의 여러 가지 용접형태 중 Padding plate가 용접된 형태에 대하여 정하중이력($0.5{\sigma}Y,\;0.85{\sigma}Y$)에 의한 초기 용접잔류응력의 변화를 측정하며, 잔류응력의 변화가 피로강도에 미치는 영향을 검토한다.

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레일표면 측정장치의 설계변수가 음향조도 스펙트럼 분석에 미치는 영향 (Effect of Design variables of Rail Surface Measuring Device on Acoustic Roughness and Spectral Analysis)

  • 정우태;전승우;정다해;최한신
    • 한국철도학회논문집
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    • 제20권4호
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    • pp.440-447
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    • 2017
  • 철도차량의 전동소음(Rolling noise)을 줄이기 위해서는 차륜과 레일의 음향조도(Acoustic roughness)가 국제규격에서 규정하는 일정값 이하로 관리되어야 한다. 이러한 음향조도의 관리를 위해서 사용되는 측정장치는 접촉식 변위센서를 주로 사용하게 되는데, 주행 중인 장치에서는 센서가 고정된 플랫폼의 위치가 가변적이고 레일면과 구동륜의 접촉시에 프레임의 피칭(Pitching)운동에 의해서 측정값의 오차가 발생하는 단점이 있다. 본 연구에서는 접촉식 변위센서를 통해 측정된 데이터의 정확도를 높이기 위해서, 플랫폼의 휠베이스, 바퀴의 개수 및 바퀴의 탄성접촉 등에 의한 레일표면 측정값의 변화와 스펙트럼 변화를 해석하였으며, 각 설계변수가 음향 스펙트럼에 미치는 영향을 분석하였다.