• 제목/요약/키워드: shock loadings

검색결과 19건 처리시간 0.028초

선체거더 충격응답의 근사해석 (Approximate Analysis of Shock Response for Ship Hull Girder)

  • 송준태;박병욱;안진우;조윤식
    • 대한조선학회논문집
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    • 제33권2호
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    • pp.75-84
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    • 1996
  • 수중폭발에 의한 선체충격응답의 이론적 해석은 충격파를 전달하는 유체와 구조와의 복잡한 상호작용 문제로 귀착되나, 함정 내충격 설계의 측면에서 주요 관심사가 되는 선체의 충격운동은 폭발의 초기에 발생하므로 충격응답의 해석을 폭발의 초기로만 한정할 경우에는 매우 단순화된 구조동역학적 방법에 의해 충격응답을 근사적으로 산정할 수 있다. 이에 따라, 본 논문에서는 충격파에 의해 가속되는 선체 몰수부 단면에 해당하는 물기둥에 전달되는 운동량을 이상화하고, 이를 이용하여 선체거더의 충격응답을 근사 해석할 수 있는 기법을 제시하였다. 또한 이를 토대로 개발한 전산 프로그램을 이용하여 상자형의 단순모델에 적용하여 본 방법의 실용성을 검증하고 여러 가지의 구조특성 및 폭발 조건에 따른 충격응답을 해석하여 그 특성을 분석하였다.

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함정의 수중폭발 충격시험을 위한 계측장비 시스템 개발 (Development of Measurement System for the Underwater Explosion Shock Test of Naval Ships)

  • 박일권;조대승;김종철
    • 대한조선학회논문집
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    • 제40권4호
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    • pp.66-74
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    • 2003
  • In non-contact underwater explosion shock test of a real naval ship, measurement of shock loadings and responses should require onboard system to be able to safely trigger an explosive and to simultaneously and successfully measure scores of shock signals in the deteriorated environment. For this purpose, we have developed a shock-hardened measurement system resistible to 170g peak acceleration having 4 msec duration by resiliently mounting general purpose measurement instruments in racks. The system can simultaneously measure and record 200 signals to evaluate shock leadings and responses of the test ship by triggering an explosive and measurement instruments at the same time. We prove the performance of the developed system by introducing the signal acquisition results from of a real ship underwater shock test, firstly performed in Korea.

수중폭발 충격파와 가스구체 압력파를 함께 고려한 구조물의 동적응답해석 (Integrated Structural Dynamic Response Analysis considering the UNDEX Shock Wave and Gas Bubble Pulse)

  • 이상갑;권정일;정정훈
    • 대한조선학회논문집
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    • 제44권2호
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    • pp.148-153
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    • 2007
  • Two typical impact loadings, shock wave and gas bubble pulse, due to UNDEX(UNDerwater EXplosion), should be considered together for the closest response analysis of structure subjected to UNDEX to a reality. Since these two impact loadings have different response time bands, however, their response characteristics of structure are different from each other. It is impossible to consider these effectively under the current computational environment and the mathematical model has not yet been developed. Whereas Hicks model approximates the fluid-structure interaction due to gas bubble pulse as virtual mass effect, treating the flow by the response of gas bubble after shock wave as incompressible ideal fluid contrary to the compressible flow due to shock wave, Geers-Hunter model could make the closest response analysis of structure under UNDEX to a real one as a mathematical model considering the fluid-structure interaction due to shock wave and gas bubble pulse together using acoustic wave theory and DAA(Doubly Asymptotic Approximation). In this study, the application and effectiveness of integrated dynamic response analysis of submerged structure was examined with the analysis of the shock wave and gas bubble pulse together.

엔진 배기매니폴드의 열피로 수명 예측 (Thermal Fatigue Life Prediction of Engine Exhaust Manifold)

  • 최복록
    • 한국자동차공학회논문집
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    • 제15권1호
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    • pp.139-145
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    • 2007
  • This paper presents the low cycle thermal fatigue of the engine exhaust manifold subject to thermomechanical cyclic loadings. The analysis includes the FE model of the exhaust system, temperature dependent material properties, and thermal loadings. The result shows that at an elevated temperature, large compressive plastic deformations are generated, and at a cold condition, tensile stresses are remained in several critical zones of the exhaust manifold. From the repetitions of thermal shock cycles, plastic strain ranges could be estimated by the stabilized stress-strain hysteresis loops. The method was applied to assess the low cycle thermal fatigue for the engine exhaust manifold. It shows a good agreement between numerical and experimental results.

Elastodynamic and wave propagation analysis in a FG graphene platelets-reinforced nanocomposite cylinder using a modified nonlinear micromechanical model

  • Hosseini, Seyed Mahmoud;Zhang, Chuanzeng
    • Steel and Composite Structures
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    • 제27권3호
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    • pp.255-271
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    • 2018
  • This paper deals with the transient dynamic analysis and elastic wave propagation in a functionally graded graphene platelets (FGGPLs)-reinforced composite thick hollow cylinder, which is subjected to shock loading. A micromechanical model based on the Halpin-Tsai model and rule of mixture is modified for nonlinear functionally graded distributions of graphene platelets (GPLs) in polymer matrix of composites. The governing equations are derived for an axisymmetric FGGPLs-reinforced composite cylinder with a finite length and then solved using a hybrid meshless method based on the generalized finite difference (GFD) and Newmark finite difference methods. A numerical time discretization is performed for the dynamic problem using the Newmark method. The dynamic behaviors of the displacements and stresses are obtained and discussed in detail using the modified micromechanical model and meshless GFD method. The effects of the reinforcement of the composite cylinder by GPLs on the elastic wave propagations in both displacement and stress fields are obtained for various parameters. It is concluded that the proposed micromechanical model and also the meshless GFD method have a high capability to simulate the composite structures under shock loadings, which are reinforced by FGGPLs. It is shown that the modified micromechanical model and solution technique based on the meshless GFD method are accurate. Also, the time histories of the field variables are shown for various parameters.

캐비테이션을 고려한 부유구조물의 3차원 수중폭발 충격응답 해석 (3-Dimensional Underwater Explosion Shock Response Analysis of a Floating Structure considering Cavitation Effects)

  • 이상갑;권정일;정정훈
    • 대한조선학회논문집
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    • 제40권6호
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    • pp.1-11
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    • 2003
  • For an accurate shock response analysis of a floating structure such as a naval surface ship subjected to an UNDEX(UNDerwater Explosion), the cavitation effects due to reflected wave at free surface and wetted structural surface should be considered. In this study, for the consideration of cavitation effects an effective method using LS-DYNA/USA and its theoretical background were presented. Through the application of the analysis of bulk cavitation phenomena in the free field, it could be confirmed that almost the same results were obtained between LS-DYNA/USA code and the analytical method. for the investigation of cavitation effects from the structural shock response characteristics, three dimensional UNDEX shock response analysis of an idealized ship model was also carried out It could be found that the cavitation Phenomena gave significant effects on the structural shock response characteristics, and especially that the shock loadings calculated at the installed location of shipboard equipment were underestimated in the case of no consideration of the cavitation effects, which might cause the severe mistake in its shock-resistance design.

복합 폭발하중을 받는 GFRP 보강 RC 벽체 구조물의 비선형 충격 손상거동 해석 (Analysis of impact damage behavior of GFRP-strengthened RC wall structures subjected to multiple explosive loadings)

  • 노명현;이상열;박대효
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
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    • pp.1033-1036
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    • 2008
  • 본 논문에서는 폭발하중으로 발생하는 폭풍파의 충격하중과 폭풍파로 초래된 파편의 충돌하중을 동시에 받는 RC 벽체 구조물의 비선형 충돌 손상거동 해석이 수행된다. 이를 위해 먼저 가상 폭발사고 시나리오로부터 RC 콘크리트 구조물에 충격과 충돌 하중이 복합적으로 작용하는 경우를 선정한다. 폭발하중으로 인한 구조물의 저항성능을 확보하기 방안으로는 GFRP 재료를 보강하는 경우가 고려되고, GFRP 무보강 RC 구조물과 보강성능을 비교하여 제시한다. 또한, 막대한 시설과 비용 투자가 요구되는 폭발실험과 근접한 해석을 도출하기 위하여 실제 충격과 충돌 현상을 정확하게 묘사한 구성방정식과 상태방정식을 포함시킨 정교한 해석을 수행한다. 폭발하중과 같은 순간적인 동적 문제를 해석하기 위하여 외연적 고속충돌 해석 프로그램인 AUTODYN-3D을 활용하여 두 가지 대상구조물에 대한 수치 모의실험을 수행하고 GFRP로 보강된 RC 벽체 구조물의 보강성능을 입증한다.

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배기매니폴드의 열응력 해석을 위한 배기계 모델 구성에 관한 연구 (A Study on the Exhaust System Model for Thermal Stress Analysis of Exhaust Manifold)

  • 최복록;이경우;장훈
    • 한국자동차공학회논문집
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    • 제18권6호
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    • pp.7-13
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    • 2010
  • In this study, we investigated the efficient FE modelling techniques for thermal stress analysis of the exhaust manifold subject to thermo-mechanical cyclic loadings. At first, full engine model was considered to identify the critical locations and their results were compared to failure site shown by the engine bench test. And the equivalent system model was proposed based on the mechanical behavior of the full engine model. The weak areas of both FE models show a good agreement with the experimental crack location. As a result, a simplified modelling methodology was verified to estimate the thermo-mechanical behaviors of the exhaust manifold under thermal shock test condition.

이동하는 열탄성 보-평판의 진동에 대한 스펙트럴요소 해석 (An Axially Moving Thermoelastic Beam-plate: Spectral Element Modeling and Analysis)

  • 권경수;조주용;이우식
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2005년도 춘계학술대회 논문집
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    • pp.344-349
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    • 2005
  • The axially moving thin beam-plates exposed to sudden thermal loadings may experience severe vibrations through the thermal shock process. For accurate prediction of the thermal shock-induced vibrations, this paper develops a spectral element model for axially moving thermoelastic beam-plates. The spectral element model which is represented by spectral element matrix is formulated from the frequency-dependent dynamic shape functions which satisfy the governing equations in the frequency-domain. Thus, when compared with the classical finite element model in which simple polynomial functions are used as the shape functions, the spectral element model can provide exact solution by treating a whole uniform structure member as a single finite element, regardless of its length.

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복합신소재로 보강된 철근 콘크리트 구조물의 충돌손상거동 평가 (Evaluation of Impact Damage Behavior of a Reinforced Concrete Wall Strengthened with Advanced Composite Materials)

  • 노명현;이상열
    • 복합신소재구조학회 논문집
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    • 제1권3호
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    • pp.41-48
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    • 2010
  • 본 논문에서는 폭발하중으로 발생하는 폭풍파의 충격하중과 폭풍파로 초래된 파편의 충돌하중을 동시에 받는 철근 콘크리트 벽체 구조물의 비선형 충돌 손상거동 해석이 수행된다. 이를 위해 먼저 가상 폭발사고 시나리오로부터 철근 콘크리트 구조물에 충격과 충돌 하중이 복합적으로 작용하는 경우를 선정한다. 폭발하중으로 인한 구조물의 저항성능을 확보하기 방안으로는 복합신소재를 보강하는 경우가 고려되고, 복합신소재를 보강하지 않은 철근 콘크리트 벽체 구조물과 보강성능을 비교하여 제시한다. 또한, 막대한 시설과 비용 투자가 요구되는 폭발실험과 근접한 해석을 도출하기 위하여 실제 충격과 충돌 현상을 정확하게 묘사한 구성방정식과 상태방정식을 포함시킨 정교한 해석을 수행한다. 폭발하중과 같은 순간적인 동적 문제를 해석하기 위하여 외연적 고속충돌 해석 프로그램인 AUTODYN-3D을 활용하여 두 가지 대상구조물에 대한 수치 모의실험을 수행하고 복합신소재로 보강된 철근 콘크리트 벽체 구조물의 보강성능을 입증한다.

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