• 제목/요약/키워드: Hydro-mechanical analysis

검색결과 173건 처리시간 0.031초

알루미늄 판재 적용 십자형 액압성형 공정의 해석 및 실험적 고찰 (The Study of Sheet Hydro-Mechanical Forming Process for Aluminum Alloy Sheets by Experiment and Finite Element Analysis)

  • 신동우;윤영식;김동옥;유용문;한범석;강대건
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회A
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    • pp.1000-1009
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    • 2008
  • Hydro-mechanical forming process has numerous advantages compared to those of a conventional deep drawing process such as an excellent surface quality and low costs of dies. In fact, Hydro-mechanical forming is a desirable forming process for producing complex parts in automotive body components, and it is an excellent candidate for the forming process of aluminum panels. In this research, Hydro-mechanical forming process with a cross shape punch has been studied for Al-Si-Mg alloy sheets. Finite element analysis by LS-Dyna has predicted the deep drawing depth of the aluminum sheets, and the experiment has confirmed that result. Put Abstract text here.

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정수압을 이용한 홀 펀칭공정의 유한요소 해석 (Finite Element Analysis of the Hydro-mechanical Punching Process)

  • 윤종헌;김승수;김응주;박훈재;최태훈;이혜진;허훈
    • 소성∙가공
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    • 제15권3호
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    • pp.220-225
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    • 2006
  • This paper investigates the characteristics of a hydro-mechanical punching process. The hydro-mechanical punching process is divided into two stages: the first stage is the mechanical half piercing in which an upper punch goes down before the initial crack is occurred; the second stage is the hydro punching in which a lower punch goes up until the final fracture is occurred. Ductile fracture criteria such as the Cockcroft, Brozzo and Oyane are adopted to predict the fracture of sheet material. The index values of ductile fracture criteria are calculated with a user material subroutine, VUMAT in the ABAQUS Explicit. The hydrostatic pressure retards the initiation of a crack in the upper region of the blank and induces another crack in the lower region of the blank during the punching process. The final fracture zone is placed at the middle surface of the blank to the thickness direction. The result demonstrates that the hydro-mechanical punching process makes a finer shearing surface than the conventional one as hydrostatic pressure increases.

Hydro-mechanical hole punching 공정의 유한요소 해석 (FE Analysis for hydro-mechanical Hole Punching Process)

  • 윤종헌;김승수;박훈재;최태훈;이혜진;허훈
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2005년도 춘계학술대회 논문집
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    • pp.159-162
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    • 2005
  • The milli-components for electronic and medical device etc. have been manufactured by conventional process. Forming and machining process for those milli-components need tremendous cost and time because products require higher dimensional accuracy than the conventional ones. For instance, conventional mechanical punching process has many drawbacks for applying to high accuracy products. The final radius of hole can be varied and burr which interrupting another procedure is generated. Hydro-mechanical punching process makes possible to reduce amount of burr and obtain the fine shearing surface using the operating fluid. Hydrostatic pressure retards occurrence of initial crack and induces to locate the fracture surface in the middle of sheet to thickness direction. In this paper, Hydro-mechanical punching process is analyzed using finite element method and the effect of hydrostatic pressure is evaluated during punching process. The prediction of fracture is performed adopting the various ductile fracture criteria such as Cockcroft, Brozzo and Oyane's criterion using a user subroutine in ABAQUS explicit.

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유한 요소법을 이용한 축대칭 하이드로 미케니칼 디프 드로잉 공정의 해석 (Analysis of the Axisymmetric Hydro-Mechanical Deep Drawing Process by Using the Finite Element Method)

  • 양동열;김한경;이항수;김경웅
    • 대한기계학회논문집
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    • 제16권5호
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    • pp.873-882
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    • 1992
  • 본 연구에서는 축대칭 형상의 하이드로 미케니칼 디프드로잉 공정을 강소성 유한요소법으로 해석하는 것이다. 본 논문에서는 Fig.1에서 보이는 바와 같은 경우 에 대하여 평두 펀치(flat headed punch)를 사용한 공정을 강소성 유한요소법으로 해 석하였으며 펀치 행정에 따른 챔버내의 압력 및 플랜지부의 압력분포를 구하였다. 접촉부의 처리는 플랜지부의 압력분포를 구하였다. 접촉부의 처리는 Yang등이 제안 한 방법을 적용하였다. 이론해석의 타당성을 알아보기 위하여 금형을 설계, 제작하 고 실험을 수행하여 결과를 비교 검토하였다.

Hydro-mechanical analysis of non-uniform shrinkage development and its effects on steel-concrete composite slabs

  • Al-Deen, Safat
    • Steel and Composite Structures
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    • 제26권3호
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    • pp.303-314
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    • 2018
  • Drying shrinkage in concrete caused by drying and the associated decrease in moisture content is one of the most important factors influencing the long-term deflection of steel-concrete composite slabs. The presence of profiled steel decking at the bottom of the composite slab causes non-uniform drying from top and bottom of the slab resulting non-uniform drying shrinkage. In this paper, a hydro-mechanical analysis method is proposed to simulate the development of non-uniform shrinkage through the depth of the composite slab. It also demonstrates how this proposed analysis method can be used in conjunction with previously presented structural analysis model to calculate the effects of non-uniform shrinkage on the long-term deflection of the slab. The method uses concrete moisture diffusion model to simulate the non-uniform drying of composite slab. Then mechanical models are used to calculate resulting shrinkage strain from non-uniform drying and its effect on the long-term behaviour of the composite slabs. The performance of the proposed analysis method is validated against experimental data.

Runner Design and Internal Flow Characteristics Analysis for an Ns=200 Francis Hydro Turbine Model

  • Hwang, Yeong-Cheol;Chen, Zhenmu;Choi, Young-Do;Lee, Young-Ho
    • Journal of Advanced Marine Engineering and Technology
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    • 제40권8호
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    • pp.698-703
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    • 2016
  • Francis hydro turbines have been most widely used throughout the world because of their wide range of head and flow rate applications. In most applications, they are used for high heads and flow rates. Currently, Korea is developing technology for Francis hydro turbine design and manufacture. In order to understand the internal details of Francis hydro turbines further, a new Francis turbine model runner is designed and model internal flow characteristics are investigated. The specific speed of the Francis hydro turbine model runner is $Ns=200m-kW-min^{-1}$. The runner blade is designed successfully according to the port area and one-dimensional loss analysis. The best efficiency point of the Francis hydro turbine model achieves 90% at the design condition. CFD analysis yields a hill chart of the Francis hydro turbine model for use in predicting performance.

이차원 수리-역학적 연계해석 시 유도배수 모델링 방법에 따른 수치해석적 비교연구 (A numerical comparative study on induced drainage modelling in 2D hydro-mechanical coupled analysis)

  • 유광호
    • 한국터널지하공간학회 논문집
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    • 제10권1호
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    • pp.91-104
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    • 2008
  • 터널의 경우 안정성을 정량적으로 평가하기 위해 안전율 개념이 제안된 바 있다. 이는 역학적 해석의 범주에 한정된 것으로 수리 역학적(hyro-mechanical) 연계해석의 범주에서는 해석 모델링의 복잡성으로 인해 안전율 개념이 적용된 연구는 극히 드문 실정이다. 최근 들어 수리-역학적 연계해석에 관한 연구가 활발히 진행되고 있다. 본 연구에서는 해저 터널의 안전율을 정확히 산정하기 위해 수리-역학적 연계해석 시 유도배수 모델링 방법을 비교 분석하였다. 수치해석 시 터널 내부로 유도배수하는 방법으로는 숏크리트 수리특성을 조절하는 유도배수 방법과 집수정을 이용한 유도배수 방법이 고려되었다. 두 방법의 비교를 위해 암반등급, 숏크리트 두께, 암반 수리특성에 대하여 민감도 분석을 수행하였고, 연구 결과 해저터널의 수리-역학적 연계해석 시 집수정을 이용한 유도배수 방법을 사용하는 것이 터널의 안정성을 검토하는 데에 보다 신뢰성이 높은 것으로 나타났다.

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확장된 네트워크기법을 이용한 정유압 기계식 번속장치의 동력전달 특성해석 (Analysis of Power Transmission Characteristics for Hydro-mechanical Transmission Using Extended Tetwork theory)

  • 김원;정순배;김현수
    • 대한기계학회논문집A
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    • 제20권5호
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    • pp.1426-1435
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    • 1996
  • In this paper. a network theory for generaltransmission systme was extended considering the direction of power flow. Also, a modified network model was suggested for a node with 4 shafts in order to verify the power flow. Based on the extended network theory, a simulation program was developed to analyze a hydro-mecaanical tranmission(HMT) system consistion of two hydrostatic pump motors, severeal planetary gear trains steer differential gear. The simulation result showed that the extendednotwork analysis program develped can predict the power circulation as well as the magnitude of torque and speed for each transmission element and can be used design tool for genaral power transmission system.

하이드로 메카니컬 펀칭공정의 전단 메커니즘 (Shearing Mechanism in Hydro-Mechanical Punching Process)

  • 김승수;김창훈
    • 한국기계가공학회지
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    • 제5권3호
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    • pp.51-57
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    • 2006
  • Hydro-mechanical punching was developed for preventing burr formation. Circular hole punching and Finite element method(FEM) analysis were conducted to investigate shearing characteristics of this process in comparison with conventional and mechanical counter punching. In this process hydrostatic pressing with appropriate medium was utilized instead of counter punch, which resulted in the delay of the point that the fracture is initiated and clean shearing surface was obtained. FEM analysis was utilized to find out optimum processing parameters and shearing mechanism for burr-free hole punching.

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Review on Methods of Hydro-Mechanical Coupled Modeling for Long-term Evolution of the Natural Barriers

  • Chae-Soon Choi;Yong-Ki Lee;Sehyeok Park;Kyung-Woo Park
    • 방사성폐기물학회지
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    • 제20권4호
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    • pp.429-453
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    • 2022
  • Numerical modeling and scenario composition are needed to characterize the geological environment of the disposal site and analyze the long-term evolution of natural barriers. In this study, processes and features of the hydro-mechanical behavior of natural barriers were categorized and represented using the interrelation matrix proposed by SKB and Posiva. A hydro-mechanical coupled model was evaluated for analyzing stress field changes and fracture zone re-activation. The processes corresponding to long-term evolution and the hydro-mechanical mechanisms that may accompany critical processes were identified. Consequently, practical numerical methods could be considered for these geological engineering issues. A case study using a numerical method for the stability analysis of an underground disposal system was performed. Critical stress distribution regime problems were analyzed numerically by considering the strata's movement. Another case focused on the equivalent continuum domain composition under the upscaling process in fractured rocks. Numerical methods and case studies were reviewed, confirming that an appropriate and optimized modeling technique is essential for studying the stress state and geological history of the Korean Peninsula. Considering the environments of potential disposal sites in Korea, selecting the optimal application method that effectively simulates fractured rocks should be prioritized.