• 제목/요약/키워드: Multi-axial stress

검색결과 86건 처리시간 0.021초

단일 및 혼합모드 하중하에서의 레일강의 파괴조건 및 피로균열진전거동 (Fracture Criterion and Fatigue Crack Growth Behavior of Rail Steel Under Mode I & Mixed Mode Loading)

  • 김정규;이종선;김철수
    • 대한기계학회논문집A
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    • 제23권6호
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    • pp.1039-1047
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    • 1999
  • It is necessary to evaluate the fatigue behavior of rail steel under the multi-axial stress state to assure the railway vehicle's safety. For this purpose, the stress analysis to investigate the crack initiation criteria, static failure and fatigue behavior under mixed-mode are performed. The stress analysis results show that the initiation of the transverse fissure depends on the maximum shear stress below the surface. For the mixed mode, the fatigue crack growth behavior which is represented by the projection crack length and comparative S.I.F, ${\Delta}K_v$, shows the more conservative results. Also, its rate is lower than that of the case of the mode I, and this difference decreases with increasing the stress ratio, R.

인발 선재의 잔류응력에 미치는 공정변수의 영향 및 잔류응력 완화 (Influence of Process Parameters on Residual Stress and Reducing Residual Stress in Drawn Wire)

  • 이상곤;황원호;김병민;배철민
    • 소성∙가공
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    • 제14권8호통권80호
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    • pp.704-711
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    • 2005
  • The influence of process parameters in drawn wire on residual stresses was investigated. Based on a FE-simulation of the wire drawing process, the effects of process parameters such as semi-die angle, reduction, friction coefficient and bearing length on the residual stresses were investigated. The validity of the FE-simulation results was verified by the comparison of the previous simulated results with experimental data. In this study, semi-die angle and die reduction have significant effect on the residual stresses at the surface of drawn wire. Several methods such as, addition of axial tension, application of skin pass, straightening in multi-roll straightener etc, were suggested in the previous studies to reduce the residual stresses. In this study, the results show that the concurrent application of skin pass with low die reduction and low semi-die angle at the final stage of drawing operation reduces dramatically the both axial and hoop residual stresses after drawing

유한요소 해석에 의한 공정변수가 인발 선재의 잔류응력에 미치는 영향평가 및 완화에 관한 연구 (A Study on the Influence of Process Parameters on Residual Stress and Reducing Residual Stress for Drawn Wire Using FE-Analysis)

  • 이상곤;황원호;김병민;배철민;이충열
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 추계학술대회 논문집
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    • pp.834-837
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    • 2005
  • This study presents a study on the influence of process parameters(semi-die angle, die reduction, friction condition, and bearing length) in drawn wire on residual stresses were investigated using FE-analysis. In this study, semi-die angle and die reduction have a significant effect on the residual stresses at the surface of drawn wire. In the previous study, in order to reduce the residual stresses, several methods were suggested: addition of axial tension, application of skin pass, straightening in multi-roll straightener etc. In this study, it can be known that the concurrent application of skin pass with low die reduction and low semi-die angle at the final stage of drawing operation reduces dramatically the both axial and hoop residual stresses after drawing.

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두꺼운 벽을 갖는 복합재료 튜브의 잔류응력 저감 연구 (Reduction of Residual Stresses in Thick-Walled Composite Tubes)

  • 신의섭;정성남
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2003년도 춘계학술발표대회 논문집
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    • pp.176-179
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    • 2003
  • This paper deals with the optimum design of thick-walled multi-layered composite tubes by minimizing the process-induced residual stresses under some constraints of structural stiffnesses. An analytic model based on quasi-static thermoelasticity is adopted for the calculation of the residual stresses in the multi-layered composite tubes. The numerical results of optimization show that, in the case of cross-ply CFRP tubes, the residual stresses can be reduced to a certain level by controlling ply thicknesses. However, the optimized tubes may be susceptible to cracking because the transverse residual stress is still large in a strength-based sense. To further suppress the residual stresses, the effects of stacking sequence, wall thickness and axial pretension on the optimum solutions are examined.

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Difference analysis of the collapse behaviors of the single-story beam-column assembly and multi-story planar frame

  • Zheng Tan;Wei-Hui Zhong;Bao Meng;Xing-You Yao;Yu-Hui Zheng;Yao Gao;Shi-Chao Duan
    • Steel and Composite Structures
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    • 제50권3호
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    • pp.265-280
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    • 2024
  • The collapse behavior observed in single-story beam-column assembly (SSBCA) do not accurately represent the actual overall stress characteristic of multi-story frame structure (MSFS) under column loss scenario owing to ignoring the interaction action among different stories, leading to a disconnection between the anti-collapse behaviors of "components" and "overall structures", that is, the anti-collapse performance of frame structures with two different structural scales has not yet formed a combined force. This paper conducts a numerical and theoretical study to explore the difference of the collapse behaviors of the SSBCA and MSFS, and further to reveal the internal force relationships and boundary constraints at beam ends of models SSBCA and MSFS. Based on the previous experimental tests, the corresponding refined numerical simulation models were established and verified, and comparative analysis on the resistant-collapse performance was carried out, based on the validated modeling methods with considering the actual boundary constraints, and the results illustrates that the collapse behaviors of the SSBCA and MSFS is not a simple multiple relationship. Through numerical simulation and theoretical analysis, the development laws of internal force in each story beam under different boundary constraints was clarified, and the coupling relationship between the bending moment at the most unfavorable section and axial force in the composite beam of different stories of multi story frames with weld cover-plated flange connections was obtained. In addition, considering the effect of the yield performance of adjacent columns on the anti-collapse bearing capacities of the SSBCA and MSFS during the large deformation stages, the calculation formula for the equivalent axial stiffness at the beam ends of each story were provided.

다축응력상태의 구성관계에 기초한 FRP 콘크리트 부재의 층분할 단면해석모델 (Model for fiber Cross-Sectional Analysis of FRP Concrete Members Based on the Constitutive Law in Multi-Axial Stress States)

  • 조창근;김영상;배수호;김환석
    • 콘크리트학회논문집
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    • 제14권6호
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    • pp.892-899
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    • 2002
  • 콘크리트 휨 부재의 내하능력을 개선하는 방법들 중에서, 최근에 와서, 기존의 철근콘크리트 부재에서 사용하는 철근을 대신하여 섬유보강폴리머(FRP) 복합재료 층으로 보강한 콘크리트 부재에 관한 연구가 이루어지고 있다. 본 연구는 휨을 받는 원형단면 FRP 콘크리트 부재의 거동을 예측하기 위한 해석모델에 중점을 두고 있다. FRP층과 내부에 충진된 콘크리트로 이루어진 부재의 응력 및 변형을 예측하기 위하여 층분할 단면해석 모델이 제시되었다. 콘크리트의 압축거동이 횡방향 팽창에 의존한다는 가정과 다축 압축 응력상태의 구성관계에 기초하여 FRP 층으로 둘러 쌓인 콘크리트의 응력변형률 관계를 정식화하였다. 고전적 적층이론에서, FRP 층의 거동은 2차원 적층의 면내거동의 응력-변형률 관계에 기초한 등 가직교재료특성에 기초하여 정식화하였다. 소개된 해석모델의 검증을 위하여 원형단면 FRP 콘크리트 휨 부재의 4점 실험과 비교한 결과, 본 모델은 부재의 모멘트-곡률 관계, 단면에서의 축방향 변형률뿐만 아니라 횡방향 변형률, 그리고 FRP 층으로 인한 콘크리트의 구속효과의 증진에 관한 거동 특성들을 잘 예측해 주었다.

METHOD OF FATIGUE LIFE PREDICTION FOR SPOT WELDED STRUCTURE

  • Okabe, A.;Kaneko, T.;Tomioka, N.
    • International Journal of Automotive Technology
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    • 제7권3호
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    • pp.353-360
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    • 2006
  • The nominal structural stress calculation method proposed by Radaj has included some problems as follows: (a) How the value of the diameter D is decided in the method; (b) It is not possible to estimate nominal structural stress of the spot welded joints with the balanced sheet in-plane load that no general loads are obtained by FE shell analysis. In this paper, the new method for calculating nominal structural stress was proposed to solve above-mentioned problems. The proposed method calculates the nominal structural stress through the circular plate theory in theory of elasticity. This theoretical analysis uses not only general loads but also nodal displacements around spot welding provided by FE shell analysis as boundary condition. Fatigue test data of various spot-welded joints could be arranged in a narrow bandwidth on S-N chart using the nominal structural stresses calculated by proposed method. The fatigue life prediction method using the proposed method for calculating nominal structural stress is useful for the prior evaluation technique that can predict the fatigue life of spot welding by CAE.

Effect of strain rate and stress triaxiality on fracture strain of 304 stainless steels for canister impact simulation

  • Seo, Jun-Min;Kim, Hune-Tae;Kim, Yun-Jae;Yamada, Hiroyuki;Kumagai, Tomohisa;Tokunaga, Hayato;Miura, Naoki
    • Nuclear Engineering and Technology
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    • 제54권7호
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    • pp.2386-2394
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    • 2022
  • In this paper, smooth and notched bar tensile tests of austenitic stainless steel 304 are performed, covering four different multi-axial stress states and six different strain rate conditions, to investigate the effect of the stress triaxiality and strain rate on fracture strain. Test data show that the measured true fracture strain tends to decrease with increasing stress triaxiality and strain rate. The test data are then quantified using the Johnson-Cook (J-C) fracture strain model incorporating combined effects of the stress triaxiality and strain rate. The determined J-C model can predict true fracture strain overall conservatively with the difference less than 20%. The conservatism in the strain-based acceptance criteria in ASME B&PV Code, Section III, Appendix FF is also discussed.

사질토의 전단 하중 재하 시 다축 벤더엘리먼트 시험으로 구한 이방적 전단탄성계수 (Anisotropic Elastic Shear Moduli of Sands Measured by Multi-directional Bender Element Tests in Stress Probe Experiments)

  • 고영주;정영훈;이충현;정충기
    • 대한토목학회논문집
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    • 제28권3C호
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    • pp.159-166
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    • 2008
  • 흙은 변형률에 따라 강성이 감소하는 비선형적 변형 특성을 가지지만, 매우 작은 변형률 영역($<10^{-3}%$)에서는 선형탄성적 특성을 갖는다고 알려져 있다. 본 연구에서는 응력 경로 시험 중 실시한 다축 벤더엘리먼트 시험을 통해 다양한 응력 상태에서 사질토의 이방적 전단탄성계수를 측정하고, 그 변화를 분석하고자 하였다. 응력 경로 시험에서는 내부 변형률 측정 장치 및 3 방향의 벤더 엘리먼트가 부착된 삼축 시험기를 이용하였다. 전단 중 응력비가 -0.5~1.5의 범위를 벗어나게 되면 축 방향 전단탄성계수는 응력과의 경험적 상관관계와 차이가 발생하였고, 이로부터 시료의 항복이 전단파 전달 구조를 변화시킴을 알 수 있었다. 수평방향 전단탄성계수의 변화는 전단 중 체적 상태의 변화와 밀접한 관계가 있음을 알 수 있었다.

미시역학적 파손이론을 이용한 복합재 적층판의 피로수명 예측 (Prediction of Fatigue life of Composite Laminates using Micromechanics of Failure)

  • 진교국;하성규;김재혁;한훈희
    • Composites Research
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    • 제24권1호
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    • pp.10-16
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    • 2011
  • 복합재 적층판의 피로수명을 평가하는 것은 여러 가지 재료와 섬유적층각에 따라 수많은 인증실험이 요구된다. 본 논문에서는 미시역학적 파손이론을 이용하여 복합재의 구성재료인 섬유, 기지 및 섬유/기지 경계면의 피로수명 예측를 통해 복합재 적층판의 피로수명 평가를 할 수 있는 방법을 제시하였다. 기지는 다축응력상태을 고려할 수 있는 일반적인 등방성 재료의 등가응력파손식을 이용하였고, 섬유는 이방성 재료이지만 섬유방향의 응력이 주요하므로 섬유방향의 응력만 고려한 최대응력 파손식을 사용하였다. 섬유/기지 경계면에서는 임계단면파손식을 사용하였고, 경계면의 피로강도가 크다고 가정하여 경계면에서의 피로파손는 무시하였다. 인장과 압축강도가 다른 재료의 평균응력효과를 고려할 수 있도록 수정된 Goodman 식을 이용하였다. 순수 기지의 피로실험 데이터를 기반으로 미시역학적 파손이론을 이용하여 단일 플라이와 복합재 적층판인 UDT[$90^{\circ}2$], BX[${\pm}45^{\circ}$]S와 TX[$0^{\circ}/{\pm}45^{\circ}$]S의 피로수명을 예측해 보았고, 실험 데이터와 잘 일치함을 확인하였다.