• 제목/요약/키워드: Fracture prediction

검색결과 427건 처리시간 0.024초

API X65 강의 연성파괴 해석을 위한 삼축응력 영향을 고려한 파괴변형률 기준 개발 (Development of Stress-Modified Fracture Strain Criterion for Ductile Fracture of API X65 Steel)

  • 오창균;김윤재;박진무;백종현;김우식
    • 대한기계학회논문집A
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    • 제29권12권
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    • pp.1621-1628
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    • 2005
  • This paper presents a stress-modified fracture strain for API X65 steel used for gas pipeline, as a function of stress triaxiality. To determine the stress-modified fracture strain, tension test of bars with four different notch radii, made of API X65 steel, is firstly performed, from which true fracture strains are determined as a function of notch radius. Then detailed elastic-plastic, large strain finite element (FE) analyses are performed to estimate variations of stress triaxiality in the notched bars with load. Combining experimental with FE results provides the true fracture strain as a function of stress triaxiality, which is regarded as a criterion of ductile fracture. Application of the developed stress-modified fracture strain to failure prediction of gas pipes made of API X65 steel with various types of defects is discussed.

동적하중(動的荷重)을 받는 콘크리트의 파괴특성(破壞特性)과 파괴에너지의 크기효과에 관한 연구(硏究) (Dynamic Fracture Characteristics and Size-dependence of Fracture Energy of Concrete under Dynamic Loading)

  • 오병환;정철헌
    • 대한토목학회논문집
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    • 제10권1호
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    • pp.71-80
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    • 1990
  • 본(本) 논문(論文)에서는 동적하중(動的荷重)을 받는 콘크리트의 파괴특성을 규명하고, 동적하중하(動的荷重下)에서의 변화특성을 연구하였다. 이를 위하여 포괄적인 실험연구가 수행되었으며 부재크기의 영향을 분석하기 위하여 몇가지 시리즈로 분류하여 실험하였다. 본 실험으로부터 최대파괴하중(最大破壞荷重), 정적(靜的) 및 동적(動的) 파괴(破壞)에너지 그리고 공칭파괴응력이 계산되었다. 본(本) 연구결과(硏究結果) 변형속도(變形速度)가 증가함에 따라 콘크리트의 파괴에너지가 증가하는 것으로 나타났다. 또한, 부재의 크기가 커짐에 따라 파괴에너지 값이 상당히 변화되는 것으로 타나났다. 본(本) 연구(硏究)에서는 부재 크기에 따른 콘크리트의 정적(靜的) 및 동적(動的) 파괴에너지를 예측할 수 있는 예측공식을 도출하여 제시하였다. 본(本) 연구(硏究)는 콘크리트의 동적파괴거동해석에 유용한 기초자료가 될 것으로 사료된다.

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연성 파괴 기준을 이용한 허브 홀 확장 과정에서의 파단 예측 (Prediction of fracture in hub-hole expansion process using ductile fracture criteria)

  • 고윤기;이종섭;허훈;김홍기;박성호
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2004년도 추계학술대회논문집
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    • pp.160-163
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    • 2004
  • The hub hole in a wheel of vehicles usually formed with hole expansion process. Formability of material, especially the hole expansion ratio, is important to produce a fine hub hole. The hub hole expansion process is different from general forming process or bore expansion process in the viewpoint of forming a thick plate. In the hole expansion process of the plate with a hole, as the hole being expanded, the crack is occurred to outward direction at the boundary of a hole. Therefore, it is need to apply the fracture criterion in the hub hole expansion process. In this paper, the hub hole expansion process is simulated with commercial elasto-plastic finite element code, LS-DYNA3D considering some ductile fracture criteria. Fracture mode and hole expansion ratio is compared with respect to the fracture criteria. Analysis results demonstrate that only the effective plastic strain is not adequate to predict the fracture mode in the hub hole. And the analysis results also indicate that the ductile fracture criteria properly predict the fracture mode but hole expansion ratio is different with the result of each other because of their different characteristics.

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절삭력 신호를 이용한 정면 밀링에서 공구 파손량 예측 (Prediction of the Amount of Tool Fracture in Face Milling Using Cutting Force Signal)

  • 김기대;주종남
    • 대한기계학회논문집A
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    • 제25권6호
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    • pp.972-979
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    • 2001
  • Tool fracture index(TFI) was developed in order not only to detect tool fracture but also to predict the amount of tool fracture in face milling. TFI is calculated by using peak-to-valley values of cutting force acting on teeth and their ratio between the adjacent teeth. When the tool fractures, a large value of TFI proportional to the amount of tool fracture was obtained periodically and decreased gradually. It was found that TFI is independent of cutter runout and it almost does not vary during transient cutting such as cutting condition change during machining. The threshold of tool fracture can be analytically determined by TFI developed in this paper, because the magnitude of TFI was shown to be dependent on the ratio of the amount of tool fracture to feed per tooth and immersion ratio. It was possible to predict the amount of tool fracture in experiments by using the proposed TFI.

암반의 지하수유동해석을 위한 지하매질의 열극특성 개념에 대한 고찰 (Fracture Characteristics in Geologic Media for Groundwater Flow : Review)

  • 배대석;송무영
    • 지질공학
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    • 제5권2호
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    • pp.201-213
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    • 1995
  • 열극암반(Fractured rockmass)의 지하수유동해석을 위해서는 열극현상에 대한 전반적인 이해를 필요로 한다. 열극현상과 관련된 분야는 열극(Fracture)의 생성과 역학이론, 전파, 종식, 분포체계와 구조 및 열극체계 모델링등 다양한 분야가 이에 속한다. 그러나 이러한 분야의 연구는 일부 분야를 제외하고 외국에서도 그 역사가 깊지 못하며, 우리나라의 경우 근래에 일부 학계와 업계에서 관심을 보이고 있을 뿐이다.산업사회의 발달과 함께 다양한 목적으로 지하공간의 이용을 필요로 하게 되었고, 지하공동의 성능평가에 대한 적용방법 또한 복잡하고 다양한 접근방법을 요구하고 있다. 열극현상에 대한 정확한 이해가 지질학과 같은 어느 한 분야의 지식만으로 접근할 수가 없으므로, 열극의 정확한 분포 특성과 열극생선과정의 이론을 근간으로 열극체계 및 유동해석모델의 적절한 연관성을 도출하도록 조화를 이루므로써 신뢰성 높은 성능평가의 목표를 달성할 수 있을 것으로 기대된다.

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Remaining life prediction of concrete structural components accounting for tension softening and size effects under fatigue loading

  • Murthy, A. Rama Chandra;Palani, G.S.;Iyer, Nagesh R.
    • Structural Engineering and Mechanics
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    • 제32권3호
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    • pp.459-475
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    • 2009
  • This paper presents analytical methodologies for remaining life prediction of plain concrete structural components considering tension softening and size effects. Non-linear fracture mechanics principles (NLFM) have been used for crack growth analysis and remaining life prediction. Various tension softening models such as linear, bi-linear, tri-linear, exponential and power curve have been presented with appropriate expressions. Size effect has been accounted for by modifying the Paris law, leading to a size adjusted Paris law, which gives crack length increment per cycle as a power function of the amplitude of a size adjusted stress intensity factor (SIF). Details of tension softening effects and size effect in the computation of SIF and remaining life prediction have been presented. Numerical studies have been conducted on three point bending concrete beams under constant amplitude loading. The predicted remaining life values with the combination of tension softening & size effects are in close agreement with the corresponding experimental values available in the literature for all the tension softening models.

반응결합한 알루미나의 미구조와 파괴거동에 대한 비교 연구 (A Comparative Study of Microstructure and Fracture Behavior in Reaction-Bonded Alumina)

  • 이종호;장복기
    • 한국세라믹학회지
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    • 제29권7호
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    • pp.517-524
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    • 1992
  • For the present study two alumina bodies were prepared. The sinter-aid alumina body(SAA) was made by conventional sinter-process using sintering additives of TiO2 & MgO/CaO and the reaction-bonded alumina (RBA) made from Al-Al2O3 mixed powder. A comparison was made between those two bodies and this investigation seeks to evaluate their microstructure, physical properties and material's reliability as well as their fracture behaviour. In spite of its considerable microstructural densification accompanied by sintering shrinkage, SAA is largely inferior to RBA in fracture strength. However, SAA shows a somewhat higher m-value than RBA in respect to the material's reliability, the Weibull modulus(m). RBA, which has high fracture strength, shows much longer lifetime under static loading than SAA. Though, as with m of fracture strength, the reliability(mt) of lifetime prediction in RBA is less high than of SAA.

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연성파괴 이론을 적용한 튜브 온간액압성형의 성형한계 예측 (Prediction for Forming Limit of Tube Warm Hydroforming Based on the Ductile Fracture Criteria)

  • 이혜경;문영훈;이정환;이영선
    • 소성∙가공
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    • 제16권6호
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    • pp.426-431
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    • 2007
  • Hydroformability and fracture criteria of FE analysis based on ductile fracture were investigated in warm hydroforming of A16061 tube. To evaluate the hydroformability, uni-axial tensile test and bulge test were performed at room temperature and $200^{\circ}C$. The measured flow stresses were used as input parameters for FE analysis. The damage values were calculated by FE analysis based on ductile fracture criteria at maximum radius of free bulged tubes. Damage values were compared of hexagonal shaped hydroformed parts. As a result, the formability by critical damage value for extruded tube is lower than that of full annealed tube up to 0.5.

피로균열전파 동안 하중감소에 의한 균열지연 (Crack Retardation byt Load Reduction During Fatigue Crack Propagation)

  • 김현수;남기우;안석환;도재윤
    • 대한기계학회논문집A
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    • 제27권12호
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    • pp.2004-2010
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    • 2003
  • Fracture life and crack retardation behavior were examined experimentally using CT specimens of aluminum alloy 5083. Crack retardation life and fracture life were a wide difference. between 0.8 and 0.6 in proportion to ratio of load reduction. The wheeler model retardation parameter was used successfully to predict crack growth behavior. By using a crack propagation rule, prediction of fracture life can be evaluated quantitatively. A statistical approach based on Weibull distribution was applied to the test data to evaluate the dispersion in the retardation life and fracture life by the change of load reduction.

연속체요소 및 손상이론을 이용한 고강도강 차량부품의 변형기구와 파단 예측 (Prediction of Deformation Mechanism and Fracture for an Auto-Part with Advanced High Strength Steel using Solid Element and Damage Theory)

  • 곽종환;윤석주;김세호;박종규;한홍근
    • 소성∙가공
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    • 제26권5호
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    • pp.293-299
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    • 2017
  • In this paper, finite element stamping analysis was carried out for the front lower arm to examine the applicability of solid element with damage theory to predict shear fracture phenomena induced by sheared edge as well as deformation mechanisms. Mechanical properties related to deformation and damage theory were determined from tensile test. Shear fracture was predicted by normalized Cockcroft-Latham model with initial imposition of the damage value along the sheared edge. Simulation results illustrated that the analysis with solid element and damage theory predicted edge profile, strain distribution, and forming load more accurately than the analysis with shell element. Simulation with solid element can also predict the shear fracture more exactly comparing to analysis with shell element and forming limit curve.