• 제목/요약/키워드: Shear-band

검색결과 182건 처리시간 0.025초

평면변형률 시험에서 이미지 해석을 통한 사질토의 전단면 특성 평가 (Assessment of Shear Band Characteristics in Granular Soils Using Digital Image Analysis Technique for Plane Strain Tests)

  • 장의룡;정영훈;김준영;정충기
    • 한국지반공학회논문집
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    • 제27권4호
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    • pp.51-65
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    • 2011
  • 전단면의 형성과 전단면에 집중되어 국부적으로 발생하는 변형은 지반 구조물의 거동과 안정성에 크게 영향을 미치기 때문에 전단면의 특성을 파악하는 것은 매우 중요하다. 본 연구에서는 전단면의 형성 및 발달 패턴 등을 실험적으로 규명하기 위하여 입도분포가 다른 세 가지 시료에 대하여 밀도와 구속압 조건을 변화시켜가면서 평면변형률 시험을 수행하였다. 전단 중에 이미지를 촬영하고, 전단 초기에서부터 한계 상태까지 하중 단계에 따라서 이미지 해석을 수행하여 시료 내부의 변형을 측정하였다. 이를 바탕으로 전단면이 발생하기 시작하는 단계를 확인하였고, 이 단계부터 응력 연화 단계를 지나 한계 상태에 이를 때까지의 전단면의 특성을 기울기와 두께의 관점에서 평가하였다. 또한, 두께를 합리적으로 산정하기 위하여 통계적인 해석 절차도 마련하였다.

Shear wave velocity of sands subject to large strain triaxial loading

  • Teachavorasinskun, Supot;Pongvithayapanu, Pulpong
    • Geomechanics and Engineering
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    • 제11권5호
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    • pp.713-723
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    • 2016
  • Shear wave velocities of three selected sandy soils subject to drained triaxial compression test were continuously measured using the bender elements. The shear wave velocity during isotropic compression, as widely recognized, increased as confining pressure increased and they were correlated well. However, during drained shearing, the mean effective stress could no further provide a suitable correlation. The shear wave velocity during this stage was almost constant with respect to the mean effective stress. The vertical stress was found to be more favorable at this stage (since confining stress was kept constant). When sample was attained its peak stress, the shear wave velocity reduced and deviated from the previously existed trend line. This was probably caused by the non-uniformity induced by the formation of shear band. Subsequently, void ratios computed based on external measurements could not provide reasonable fitting to the initial stage of post-peak shear wave velocity. At very large strain levels after shear band formation, the digital images revealed that sample may internally re-arrange itself to be in a more uniform loose stage. This final stage void ratio estimated based on the proposed correlation derived during pre-peak state was close to the value of the maximum void ratio.

비정질 합금의 전단띠 내부 구조변화 해석을 통한 소성의 이해 (Understanding the Plasticity of Amorphous Alloys Via the Interpretation of Structural Evolution Inside a Shear Band)

  • 이창면;박경원;이병주;심재혁;이재철
    • 한국재료학회지
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    • 제19권5호
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    • pp.276-280
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    • 2009
  • The effect of the initial packing structure on the plasticity of amorphous alloys was investigated by tracing the structural evolution of the amorphous solid inside a shear band. According to the molecular dynamics simulations, the structural evolution of the amorphous solids inside the shear band was more abrupt in the alloy with a higher initial packing density. Such a difference in the structural evolution within the shear band observed from the amorphous alloys with different initial packing density is believed to cause different degrees of shear localization, providing an answer to the fundamental question of why amorphous alloys show different plasticity. We clarify the structural origin of the plasticity of bulk amorphous alloys by exploring the microstructural aspects in view of the structural disordering, disorder-induced softening, and shear localization using molecular dynamics simulations based on the recently developed MEAM (modified embedded atom method) potential.

단열 전단 밴드의 유한요소 해석 (Finite Element Anmllysis of Adiabatic Shear Band)

  • 유요한;전기영;정동택
    • 대한기계학회논문집
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    • 제16권8호
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    • pp.1519-1529
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    • 1992
  • 본 연구에서는 단열 전단 밴드의 특성 규명을 위하여 특별히 고안된 계단 형 상 시편(stepped specimen)의 수치해석을 통하여 단열 전단 밴드의 형성과 성장(init- iation and growth of adiabatic shear band)에 관한 체계적 해석을 시도해 보았다. 금번 논문에서는 우선 격자 크기(mesh size)와 충격 속도(impact velocity)가 단열 전 단 밴드의 형성 및 성장에 미치는 영향과 제반 특성을 규명할 계획이며 차후 재료의 기하학적 형상 등이 단열 전단 밴드의 형성 및 성장에 미치는 영향에 대해서도 단계적 연구를 시도할 계획이다. 해석을 위하여 가공경화효과, 변형률 속도 경화효과(stra- in rate hardening effect), 열적연화효과 등을 고려할 수 있는 구성 방정식(constit- utive equation)을 갖춘 엑스플리시트 시간적분 유한요소 코드(explicit time integr- ation finite element code)를 사용하였으며 기존의 연구 결과와는 달리 어떠한 인위 적 결함도 해석에 사용하지 않았다.

Improvement of Plastic Deformation in Hetrogeneous Atomic Cu-Zr Amorphous Alloy with Distributed Nanocrystals

  • 박준영
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회A
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    • pp.1718-1722
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    • 2008
  • This study explores the influence of volume fraction of nanocrystals of Cu-Zr amorphous alloys on shear band formation. As the number of crystals with very tiny size increases, the strain localization, i.e. shear band, decreases without large drop of flow stress. The DPRs also depict no sudden drop and relatively high values. The strain state during the deformation represents a few shear bands at low volume fraction while there are no distinguishable shear bands at high volume fraction of nanocrystals.

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미소 전단 띠 형성에 의한 톱니형 칩 생성 예측 (Prediction of Serrated Chip Formation due to Micro Shear Band in Metal)

  • 임성한;오수익
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2003년도 춘계학술대회논문집
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    • pp.427-733
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    • 2003
  • Adiabatic shear bands have been observed in the serrated chip during high strain rate metal cutting process of medium carbon steel and titanium alloy. The recent microscopic observations have shown that dynamic recrystallization occurs in the narrow adiabatic shear bands. However the conventional flow stress models such as the Zerilli-Armstrong model and the Johnson-Cook model, in general, do not predict the occurrence of dynamic recrystallization (DRX) in the shear bands and the thermal softening effects accompanied by DRX. In the present study, a strain hardening and thermal softening model is proposed to predict the adiabatic shear localized chip formation. The finite element analysis (FEA) with this proposed flow stress model shows that the temperature of the shear band during cutting process rises above 0.5T$\sub$m/. The simulation shows that temperature rises to initiate dynamic recrystallization, dynamic recrystallization lowers the flow stress, and that adiabatic shear localized band and the serrated chip are formed. FEA is also used to predict and compare chip formations of two flow stress models in orthogonal metal cutting with AISI 1045. The predictions of the FEA agreed well with the experimental measurements.

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고속 절삭공정 중 톱니형 칩 생성 예측 (Prediction of Serrated Chip Formation in High Speed Metal Cutting)

  • 임성한;오수익
    • 소성∙가공
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    • 제12권4호
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    • pp.358-363
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    • 2003
  • Adiabatic shear bands have been observed in the serrated chip during high strain rate metal cutting process of medium carbon steel and titanium alloy The recent microscopic observations have shown that dynamic recrystallization occurs in the narrow adiabatic shear bands. However the conventional flow stress models such as the Zerilli-Armstrong model and the Johnson-Cook model, in general, do not predict the occurrence of dynamic recrystallization (DRX) in the shear bands and the thermal softening effects accompanied by DRX. In the present study, a strain hardening and thermal softening model is proposed to predict the adiabatic shear localized chip formation. The finite element analysis (FEA) with this proposed flow stress model shows that the temperature of the shear band during cutting process rises above 0.5Τ$_{m}$. The simulation shows that temperature rises to initiate dynamic recrystallization, dynamic recrystallization lowers the flow stress, and that adiabatic shear localized band and the serrated chip are formed. FEA is also used to predict and compare chip formations of two flow stress models in orthogonal metal cutting with AISI 1045. The predictions of the FEA agreed well with the experimental measurements.s.

슬래브-기둥 접합부의 내진성능을 위한 래티스 전단보강 (Lattice Shear Reinforcement for Earthquake-Resistance of Slab-Column Connection.)

  • 김유니;박홍근
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계학술발표회 논문집(I)
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    • pp.26-29
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    • 2006
  • A flat plate-column connection is susceptible to brittle punching shear failure, which may result in the necessity of shear reinforcement. In present study, experimental tests were performed to study the capacity of slab-column connections strengthened with lattice, stud rail, shear band and stirrup under gravity and cyclic lateral load. Among them, the capacity of the specimens with lattice are superior to the others due to the truss action of the lattice bars and dowel action of the longitudinal bars as well as the shear resistance of the web re-bar. On the other hand, the strengths of the specimens with stud rail, shear band and stirrup are lower than the estimated strength by the ACI, therefore design formulas of the ACI are needed to revise.

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저층형 철근콘크리트 전단벽의 전단강도 평가를 위한 스트럿-타이 모델 (Strut-and-Tie Model for Shear Strength of Reinforced Concrete Squat Shear Walls)

  • 문주현;양근혁
    • 콘크리트학회논문집
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    • 제27권6호
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    • pp.615-623
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    • 2015
  • 철근콘크리트 전단벽의 전단강도를 예측하기 위한 기존 연구자들의 스트럿-타이 모델(STM)들은 횡하중 및 상부의 축력에 대한 전단벽의 내부 힘의 흐름과 웨브의 전단철근에 의해 전달되는 전단력의 비율을 명확히 제시하고 있지 않다. 이를 개선하기 위해서, 이 연구에서는 콘크리트 파괴역학의 균열 띠 이론을 기반한 단순한 STM을 개발하였다. 응력이완 스트립을 동반하는 콘크리트 스트럿의 등가유효너비는 중립축 깊이와 콘크리트 유효압축강도 계수로 결정되었다. 균열 띠 확장영역의 전단 전달 메커니즘은 강성법에 의한 트러스 작용으로부터 산정되었다. 웨브 콘크리트 스트럿과 전단철근에 의한 전단 전달력은 응력이완 스트립과 균열 띠 이론을 기반한 에너지평형조건으로부터 유도되었다. 제시된 모델은 Siao와 Hwang et al.의 STM에 비해 150여개의 기존 실험결과의 경향을 잘 예측하였다. 또한, 제시된 STM은 각 변수에 따른 무차원된 전단강도의 경향을 잘 반영하고 있다.