• 제목/요약/키워드: Contact and impact analysis

검색결과 322건 처리시간 0.031초

2차원 Lagrangian Hydrocode 개발 및 대변형 해석 (Development of 2-Dim Lagrangian Hydrocode and Application to Large Deformation Problems)

  • 이민형;김성우
    • 대한기계학회논문집A
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    • 제27권3호
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    • pp.409-415
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    • 2003
  • The purpose of this paper is to develop the 2-Dim Lagrangian Hydrocode for the analysis of large deformations of solids with implementation of the contact algorithm. First, th e governing equations are discretized into a system of algebraic equations. For more accurate and robust contact force computation. the defense node contact algorithm was adopted and implemented. For the verification of the code developed, two cases are carried out; the Taylor-Impact test and two bodies impact. The von -Mises criterion is implemented into the code with the Shock equation of state. The simulation results show a good agreement compared with the published experimental data and results from the commercial code. It is necessary to implement several material models and failure models for applications to different impact and penetration problems.

슬래브 두께에 따른 표준실험동의 중량충격음 특성 (Heavy-weight Floor Impact Sound Characteristics of Standard Laboratory by Slab Thickness)

  • 정영;송희수;전진용;김진수
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2004년도 추계학술대회논문집
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    • pp.103-108
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    • 2004
  • In this study, examined heavy-weight floor impact sound to structure that have slab thickness of 4 form at a standard laboratory through noise and vibration measured. The results show that the nature Natural frequency increased according to change of thickness of each slab by finite element analysis, and acceleration value decreased. Results of measurements of noise and vibration at a standard laboratory, the slab 210, 240mm structures was construed result such as finite element analysis but the slab 150, 180mm structures is construed that influence in vibration acceleration level because edge condition has condition that contact to ground. Therefore, in modelling process for analysis, is thought that need that condition analyzes examining element influencing about structure that contact to ground.

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Relationship between the Impact Peak Force and Lower Extremity Kinematics during Treadmill Running

  • Ryu, Ji-Seon;Park, Sang-Kyoon
    • 한국운동역학회지
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    • 제28권3호
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    • pp.159-164
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    • 2018
  • Objective: The aims of this study were to determine the impact peak force and kinematic variables in running speed and investigate the relationship between them. Method: Thirty-nine male heel strike runners ($mean\;age=21.7{\pm}1.6y$, $mean\;mass=72.5{\pm}8.7kg$, $mean\;height=176.6{\pm}6.1cm$) were recruited in this investigation. The impact peak forces during treadmill running were assessed, and the kinematic variables were computed using three-dimensional data collected using eight infrared cameras (Oqus 300, Qualisys, Sweden). One-way analysis of variance ANOVAwas used to investigate the influence of the running speed on the parameters, and Pearson's partial correlation was used to investigate the relationship between the impact peak force and kinematic variables. Results: The running speed affected the impact peak force, stride length, stride frequency, and kinematic variables during the stride phase and the foot angle at heel contact; however, it did not affect the ankle and knee joint angles in the sagittal plane at heel contact. No significant correlation was noted between the impact peak force and kinematic variables in constantrunning speed. Conclusion: Increasing ankle and knee joint angles at heel contact may not be related to the mechanism behind reducing the impact peak force during treadmill running at constant speed.

Far-Side 실사고 분석과 승객거동해석 연구 (Study for Real-World Accident Database and Occupant Behavior Analysis in Far-Side Collisions)

  • 신재호;백창민
    • 자동차안전학회지
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    • 제14권4호
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    • pp.77-83
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    • 2022
  • Occupant behaviors and body contact with vehicle interior parts are main injury mechanism in far-side collisions. In vehicle side impact accident where the crash accident occurs on the opposite side of the vehicle from the a particular occupant, it is exposed in terms of relatively larger lateral motion to interact with the opposite side of the vehicle structure. The challenge of minimizing motions of upper body and injury risk according to a direct contact is a primary occupant protection research. This study has performed a data analysis of real-world accident database extracted from the 2016~2020 CISS database and a parametric investigation of impact angles and occupant kinematics in far-side lateral and oblique impact simulations. A detailed data analysis was conducted to reveal the relationship among the accident and injury data. Database analysis and computational far-side impact results proposed the fundamental vehicle design for safety improvement in far-side collisions.

열차 충돌하중에 대한 콘크리트 일탈방호시설물(DCP)의 해석적 거동 검토 (Analytical Behavior of Concrete Derailment Containment Provision(DCP) according to Train Impact Loading)

  • 이나현;김지환;강윤석
    • 한국산학기술학회논문지
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    • 제19권11호
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    • pp.604-613
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    • 2018
  • 전 세계적으로 철도의 노후화 및 고속화 등으로 인한 열차탈선사고가 증가하고 있으며, 그로인한 인적 물적 피해가 증가하고 있는 실정이다. 특히 철도교량의 경우에는 가드레일 또는 방호벽 등을 설치하고 있으나, 이는 탈선열차차량(train body level)이 방호벽과 충돌함으로써 열차의 탈선운동을 억제하여 정지시키는데 목적이 있다. 이와 같은 차량에 의한 탈선방호는 인명피해 위험성 및 2차 피해발생 가능성이 높다. 그러므로 본 연구에서는 주행레일 사이에 일탈방호시설물(DCP, Derailment Containment Provision)을 설치하여, 차륜 또는 차축(wheel/bogie level)에서 탈선열차를 방호할 수 있는 시설물을 개발하였다. 또한, 기존 철도교량의 일탈방호성능을 확보할 수 있도록 DCP의 급속시공이 가능하도록 설계하였으며, 방호벽에 작용하는 충돌하중과 급곡선부에서의 관성력을 감소시킴으로써 일탈된 열차가 교량 밖으로의 전도 낙하방지 및 반대편 선로의 침입하는 것을 최소화 하고자 하였다. 본 논문에서는 LS-Dyna을 이용하여, 설계한 DCP의 열차 충돌위치 및 콘크리트 궤도 접합조건에 따른 거동에 대하여 해석적으로 변수연구를 수행하였다. 특히 접합조건은 접합재료의 물성치에 따라 끊어짐을 모사하는 Tiebreak contact과 완전 부착되었다고 가정하는 Perfect bond contact으로 나눠 해석적으로 검토하였다. DCP의 변위, 앵커 및 콘크리트의 응력, 변형률을 확인한 결과 Tiebreak contact이 실제 충돌하중에 대한 거동을 보다 유사하게 모사하는 것으로 판단하였다. 또한, 충돌위치에 따른 변위는 접합구간에서 가장 큰 변형이 발생하였으며, DCP 블록의 중앙에 충돌이 가해질 경우, 충돌하중이 가해지는 DCP 배면에서 휨 파괴가 발생하였다. 본 연구에서 수행한 충돌해석은 실제 충돌실험의 어려움에 의해 사전적으로 해석을 수행하였으며, 이를 바탕으로 DCP 앵커 설계변경은 필요할 것으로 판단된다.

접근각도에 따른 여자고등학교 축구선수의 인스텝 슈팅 동작에 관한 운동학적 분석 (The Kinematic Analysis on the Instep Shooting Motion of Female High School Soccer Players According to the Angles of Approach)

  • 조규권;김유신;최길순
    • 한국운동역학회지
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    • 제16권2호
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    • pp.153-163
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    • 2006
  • The purpose of this research was to analyze kinematic variables that appear during the instep shooting motion of female high school soccer players according to the angle of approach to find effective shooting motions. For this experiment, 5 female high school soccer players from the K city were participated in this study as the subject group, and as a through comparison and analysis of the resulting numbers of the variables, we came to the following conclusions. 1) Stride length and stride length/lower extremity length increased as the angle of approach increased. 2) As for C.O.G movement displacement, it was highest at an approach angle of $90^{\circ}$ during Right Foot Contact, at $135^{\circ}$ during Left Foot Contact, at $0^{\circ}$ during Rigth Toe Top, at $45^{\circ}$ during Impact, and at $0^{\circ}$ during Follow through. 3) The time required for each phase was longest at APP and shortest at BSP. The time required increased a little as the angle of approach increased, and the total time required also increased as the angle of approach increased. 4) The angle of the ankle joint was largest at an approach angle of $45^{\circ}$ for all events except Right Foot Contact. 5) The angle of the knee joint was largest at an approach angle of $135^{\circ}$ during Right Foot Contact, at $0^{\circ}$ during Left Foot Contact, at $45^{\circ}$ during Right Toe Top, at $135^{\circ}$ during Impact, and at $90^{\circ}$ during Follow through. 6) The angle of the hip joint was largest at an approach angle of $90^{\circ}$ during Right Foot Contact, at$0^{\circ}$ during Left Foot Contact, at $0^{\circ}$ during Right Toe Top, at $90^{\circ}$ during Impact, and at $0^{\circ}$ during Follow through.

복합적층쉘의 저속충격에 대한 동적 거동 해석 (Dvnarnic Reswnse of Laminated Com~osite Shell under Low-Velocity Impact)

  • 조종두;조영훈
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1994년도 추계학술대회 논문집
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    • pp.969-974
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    • 1994
  • The dynamic behavior of graphite/epoxy laminated composite shell structure due to low-velocity impact is investigated using the finite element method. In this analysis, the Newmark's constant-acceleration time integration algorithm is used. The impact response such as contact force, central deflection and dynamic strain history form shell structure analysis are compared with those form the plate non-linear analysis. The effects of curvature, impact velocity and mass of impactor on the composite shell are discussed.

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충격해석을 위한 새로운 불연속 시간적분법의 개발 (Development of a New Discontinuous Time Integration Method for Transient Analysis of Impact Phenomena)

  • 조진연;김승조
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 1998년도 춘계학술대회논문집; 용평리조트 타워콘도, 21-22 May 1998
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    • pp.407-412
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    • 1998
  • In this work, a new time integration method is proposed using the generalized derivative concept to simulate the dynamic phenomena having sudden constraint occurring in dynamic contact/impact problems. By the adoption of the generalized derivative concept and jump assumption, discontinuity can be incorporated in time integration and as a result, the algorithm does not need any other special consideration of jumps in dynamic field variables due to sudden constraint like dynamic contact-release conditions. To observe the characteristics of the proposed time integration method, the stability and convergence analyses are carried out. In numerical tests, several dynamic contact/impact problems are analyzed by straightforward application of the proposed time integration method with the exterior penalty method.

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고차전단변형과 대처짐을 고려한 복합적층판의 저속충격거동 해석 (Low-Velocity Impact Response Analysis of Composite Laminates Considering Higher Order Shear Deformation and Large Deflection)

  • 최익현;홍창선
    • 대한기계학회논문집
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    • 제17권12호
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    • pp.2982-2994
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    • 1993
  • Low-velocity impact responses of composite laminates are investigated using the finite element method based on various theories. In two-dimensional nonlinear analysis, a displacement field considering higher order shear deformation and large deflection of the laminate is assumed and a finite element formulation is developed using a C$^{o}$-continuous 9-node plate element. Also, three-dimensional linear analysis based on the infinitesimal strain-displacement assumptions is performed using 8-node brick elements with incompatible modes. A modified Hertzian contact law is incorporated into the finite element program to evaluate the impact force. In the time integration, the Newmark constant acceleration algorithm is used in conjuction with successive iterations within each time step. Numerical results from static analysis as well as the impact response analysis are presented including impact force histories, deflections, strains in the laminate. Impact responses according to two typical low-velocity impact conditions are compared each other.