• 제목/요약/키워드: Johnson-cook model

검색결과 70건 처리시간 0.032초

유한요소해석을 이용한 터빈 케이스의 컨테인먼트 성능 평가 (Turbine Case Containment Capability Evaluation Using Finite Element Analysis)

  • 백준우;김상우;이수용
    • 항공우주시스템공학회지
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    • 제17권5호
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    • pp.19-27
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    • 2023
  • 본 연구에서는 유한요소해석을 이용하여 터빈 케이스의 컨테인먼트 성능 평가를 수행하였다. 충격 하중을 받는 구조물의 경우 변형률 속도가 증가함에 따라 유동 응력이 증가하기 때문에 충격 거동을 해석하기 위해서는 변형률 속도가 필수적으로 고려되어야 한다. 본 연구에서는 3가지 재료 모델(Cowper-Symonds, Johnson-Cook, Modified Johnson-Cook)을 충격 해석에 적용하고자 하였다. 해석에 적용된 재료 모델을 검증하기 위해서 알루미늄 6061 평판에 대한 충격 시험을 진행하였다. 실험과 해석 결과를 비교, 분석한 결과 Modified Johnson-Cook 모델이 가장 적은 오차를 보였다. 끝으로 해당 재료 모델을 터빈 케이스의 컨테인먼트 성능 평가에 적용하여 블레이드의 초기 속도에 따른 관통 여부와 충돌 부위에서 발생한 응력과 변형률을 제시하였다.

LS-DYNA 발파 모델링에서 현장암반의 특성을 반영하기 위한 Hoek-Brown 파괴기준과 Holmquist-Johnson-Cook 콘크리트 재료모델의 접목 (Integrating the Hoek-Brown Failure Criterion into the Holmquist-Johnson-Cook Concrete Material Model to Reflect the Characteristics of Field Rock Mass in LS-DYNA Blast Modeling)

  • 최병희;선우춘;정용복
    • 화약ㆍ발파
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    • 제38권3호
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    • pp.15-29
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    • 2020
  • 본 논문에서는 Hoek-Brown (HB) 파괴기준을 Holmquist-Johnson-Cook (HJC) 콘크리트 재료모델에 접목시킴으로써 LS-DYNA 상에서 암반발파를 모델링할 때 현장암반의 고유한 특성이 잘 반영될 수 있도록 도모하였다. 이것은 많은 지질학적 불연속면을 포함하고 있는 현장암반이 지니고 있는 독특한 특징을 강조하기 위함이다. 두 모델의 접목은 HB 파괴기준으로 HJC 재료모델의 정적 강도 부분을 교체함으로써 이루어지며, 교체과정은 통계학적 곡선적합 기법에 의해 수행된다. 본 논문에서는 접목의 과정이 상세하게 소개되며, 획득된 HJC 재료모델의 사용에 대한 실례도 제시된다. 제시된 수치계산은 현장의 석회암 암반의 단일공 발파에 대한 평면변형률 모델링으로서 LS-DYNA가 제공하는 유체-구조물 상호작용(FSI) 기법과 다중재료 라그랑주-오일러(MMALE) 정식화 기법을 조합하여 수행된다.

횡충격하중을 받는 빙해선박 구조물의 파단에 관한 연구 (On the Fracture of Polar Class Vessel Structures Subjected to Lateral Impact Loads)

  • 민덕기;조상래
    • 대한조선학회논문집
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    • 제49권4호
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    • pp.281-286
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    • 2012
  • Single frame structures with notches were fractured by applying drop impact loadings at room temperature and low temperature. Johnson-Cook shear failure model has been employed to simulate the fractured single frame structures. Through several numerical analyses, material constants for Johnson-Cook shear failure model have been found producing the cracks resulted from experiments. Fracture strain-stress triaxiality curves at both room temperature and low temperature are presented based on the extracted material constants. It is expected that the fracture strain-stress triaxiality curves can offer objective fracture criteria for the assessment of structural fractures of polar class vessel structures fabricated from DH36 steels. The fracture experiments of single frame structures revealed that the structure on low temperature condition fractures at much lower strain than that on room temperature condition despite the same stress states at both temperatures. In conclusion, the material properties on low temperature condition are essential to estimate the fracture characteristics of steel structures operated in the Northern Sea Route.

3D 프린팅으로 제작한 Ti-6Al-4V 재료의 Johnson-Cook 모델의 유동 응력 결정 (Flow Stress Determination of Johnson-Cook Model of Ti-6Al-4V Material using 3D Printing Technique)

  • 박대균;김태호;전언찬
    • 한국기계가공학회지
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    • 제17권4호
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    • pp.64-69
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    • 2018
  • This paper investigates the compressive deformation behavior of direct metal tooling (DMT), processing titanium alloy (Ti-6Al-4V) parts under high strain loading conditions. Split Hopkinson Pressure Bar (SHPB) experiments were performed to determine the flow stress and the coefficients of the Johnson-Cook model. This model is described as a function of strain, strain rate, and temperature. SHPB experiments were performed to characterize the deformation behavior of specimens made with 3D printers, using Ti-6Al-4V material under high temperature and dynamic loading.

Split Hopkinson Pressure Bar(SHPB)에 의한 고 변형률 재료의 구성방정식 시뮬레이션

  • 이억섭;정주호;김종호
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1995년도 추계학술대회 논문집
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    • pp.724-727
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    • 1995
  • Dynamic deformation behavior under the high strain rate loading condition obtained with the aid of Split Hopkinson Pressure Bar(SHPB) technique is simulated by DYNA2D (an hydrodynamic code). A constitutive equation such as Johnson-Cook model is used by adjusting various parameters to fit experimentally determined dynamic stress-strain relationship.

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고체추진기기의 고장분포 기반의 균열전파 모델: 실험과의 비교 (Failure distribution based crack propagation in solid propellant container: Comparison with experiment)

  • 여재익
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2005년도 제24회 춘계학술대회논문집
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    • pp.47-52
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    • 2005
  • 이 논문은 열폭발 실험에서의 열적, 화학적, 기계적 행동의 결과에 대한 3차원 모델 결과를 나타낸다. 폭발이 관찰되기 전까지 제한된 고 폭발물은 시간당 $1^{\circ}C$의 비율로 가열된다. 임의의 Lagrangian-Euler 코드를 사용하여 모델링된 가열, 점화 그리고, deflagration 단계는 구조적에서 동적인 hydro 시간단계까지 변하는 넓은 범위의 시간 영역에서 다루어 질수 있다. Johnson-Cook Failure Model (JCFM)에 실험적 고장분포를 더하여 폭발기기의 균열방향과 fragment의 크기를 예측할 수 있는 모델을 개발한다.

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절삭실험을 이용한 저합금강의 유동응력 결정 및 검증 (Determination and Verification of Flow Stress of Low-alloy Steel Using Cutting Test)

  • 안광우;김동후;김태호;전언찬
    • 한국기계가공학회지
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    • 제13권5호
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    • pp.50-56
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    • 2014
  • A technique based on the finite element method (FEM) is used in the simulation of metal cutting process. This offers the advantages of the prediction of the cutting force, the stresses, the temperature, the tool wear, and optimization of the cutting condition, the tool shape and the residual stress of the surface. However, the accuracy and reliability of prediction depend on the flow stress of the workpiece. There are various models which describe the relationship between the flow stress and the strain. The Johnson-Cook model is a well-known material model capable of doing this. Low-alloy steel is developed for a dry storage container for used nuclear fuel. Related to this, a process analysis of the plastic machining capability is necessary. For a plastic processing analysis of machining or forging, there are five parameters that must be input into the Johnson-Cook model in this paper. These are (1) the determination of the strain-hardening modulus and the strain hardening exponent through a room-temperature tensile test, (2) the determination of the thermal softening exponent through a high-temperature tensile test, (3) the determination of the cutting forces through an orthogonal cutting test at various cutting speeds, (4) the determination of the strain-rate hardening modulus comparing the orthogonal cutting test results with FEM results. (5) Finally, to validate the Johnson-Cook material parameters, a comparison of the room-temperature tensile test result with a quasi-static simulation using LS-Dyna is necessary.

SHPB 기법과 확률이론을 이용한 고분자재료의 동적거동특성 및 건전성 평가 (Reliability Estimation and Dynamic Deformation of Polymeric Material Using SHPB Technique and Probability Theory)

  • 이억섭;김동혁
    • 대한기계학회논문집A
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    • 제32권9호
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    • pp.740-753
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    • 2008
  • The conventional Split Hopkinson Pressure Bar (C-SHPB) technique with aluminum pressure bars to achieve a closer impedance match between the pressure bars and the specimen materials such as hot temperature degraded POM (Poly Oxy Methylene) and PP (Poly Propylene) to obtain more distinguishable experimental signals is used to obtain a dynamic behavior of material deformation under a high strain rate loading condition. An experimental modification with Pulse shaper is introduced to reduce the nonequilibrium on the dynamic material response during a short test period to increase the rise time of the incident pulse for two polymeric materials. For the dynamic stress strain curve obtained from SHPB experiment under high strain rate, the Johnson-Cook model is applied as a constitutive equation, and we verify the applicability of this constitutive equation to the probabilistic reliability estimation method. The methodology to estimate the reliability using the probabilistic method such as the FORM and the SORM has been proposed, after compose the limit state function using Johnson-Cook model. It is found that the failure probability estimated by using the SORM is more reliable than those of the FORM, and the failure probability increases with the increase of applied stress. Moreover, it is noted that the parameters of Johnson-Cook model such as A and n, and applied stress affect the failure probability more than the other random variables according to the sensitivity analysis.