• 제목/요약/키워드: frontal crash

검색결과 111건 처리시간 0.028초

유한요소해석을 통한 차량내 복합재 휠체어 고정구의 구조 강도 특성 평가 (Strength Characterisation of Composite Securement Device in the Vehicle by FE Analysis)

  • 함석우;양동규;손승녀;어효경;김경석;전성식
    • Composites Research
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    • 제32권4호
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    • pp.171-176
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    • 2019
  • 본 연구는 복합재를 사용한 휠체어 고정구의 구조 강도 특성에 대하여 평가하였다. 이를 위해 특별교통수단 내 휠체어 고정구의 시험 기준 ISO 10542에 의거하여 전방 충돌 슬레드 유한요소해석을 진행하였고, 이를 통해 얻은 고정구에 작용하는 하중데이터를 휠체어 고정구 유한요소해석의 초기 조건으로 사용하였다. 고정구는 블록, 가이드, 레일로 구성되어 있으며, 이 중에서 레일의 중량 비율이 가장 높기 때문에 탄소섬유 에폭시 복합재를 레일에 적용하는 것이 적합한 것으로 나타났다. 또한 기존의 레일에서 하단 부분을 복합재로 적용한 하이브리드 레일은 기존 SAPH 440으로 제작된 레일의 구조강도와 비슷하게 설계할 경우, 약 27% 정도 경량화를 달성할 수 있는 것으로 나타났다.

샌드위치 복합재 적용 자동무인경전철 차체 구조물의 구조 안전성 및 충돌 특성 평가 연구 (An Evaluation of Structural Integrity and Crashworthiness of Automatic Guideway Transit(AGT) Vehicle made of Sandwich Composites)

  • 고희영;신광복;조세현;김대환
    • Composites Research
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    • 제21권5호
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    • pp.15-22
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    • 2008
  • 본 논문은 샌드위치 복합재가 적용된 자동무인경전철 차체 구조물의 구조 안전성 및 충돌 안전성 결과에 대해 서술하고 있다. 차체 구조물에 적용된 샌드위치 복합재는 알루미늄 하니컴 심재와 WR580/NF4000 유리섬유/에폭시 적층 복합재 면재로 이루어져 있다. 차체 구조물에 적용되는 적층 복합재 면재에 대해 기계적 시험을 통하여 물성을 획득하였고, 직교 이방성 특성을 갖는 하니컴 심재의 물성은 유효등가손상모델을 적용하였다. ANSYS v11.0을 이용한 유한요소 해석은 JIS E 1105 기준과 ASCE 21-98 기준에 따라서 자동무인경전철 차체의 구조 안전성을 평가하였다. 충돌해석은 외연유한요소 해석 프로그램인 LS-DYNA3D를 이용하였다. 충돌 조건은 강체벽에 10km/h의 속도로 정면충돌 사고를 모사하였다. 또한, 수성된 Chang-Chang 파손기준시은 충돌 후 복합재 구조물의 파손 모드를 평가하는데 추천된다.

하니컴 샌드위치 복합재를 적용한 저상버스의 충돌 및 전복 특성 연구 (A Study on Crashworthiness and Rollover Characteristics of Low-Floor Bus made of Honeycomb Sandwich Composites)

  • 신광복;고희영;조세현
    • Composites Research
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    • 제21권1호
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    • pp.22-29
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    • 2008
  • 본 논문은 유리섬유 에폭시 면재에 알루미늄 하니컴 샌드위치 복합재가 적용된 저상버스 차체에 대한 정면충돌과 전복에 대한 특성에 대해 연구하였다. 이때 충돌과 전복 해석은 외연유한요소 해석 프로그램인 LS-DYNA3D를 이용하였다. 차체 구조물에 적용되는 적층 복합재 면재에 대해 기계적 특성시험을 통하여 물성을 획득하였고, 직교이방성 특성을 갖는 하니컴 심재의 물성은 유효등가손상 모델을 적용하였다. 저상버스의 충돌 해석은 60km/h의 속도로 정면충돌 사고를 모사하여 해석을 수행하였고, 전복해석은 유럽 안전법규 ECE-R66의 시험 방법을 고려하여 해석하였다. 저상버스의 정면충돌과 전복에 대해 운전자와 승객의 생존 공간 안전성에 관한 결과를 보여준다. 또한, 수정된 Chang-Chang 파손기준식은 충돌과 전복해석에 대한 복합재 구조물의 파손 모드 예측에 추천된다.

충격 지점과 보행자 전도 거리의 상관관계에 관한 연구 (A Study on the Relationship between Impact Point of Vehicle and Throw Distance of Pedestrian)

  • 강대민;안승모
    • 한국기계가공학회지
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    • 제6권3호
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    • pp.71-76
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    • 2007
  • The fatalities of pedestrian account for about 40.0% of all fatalities in Korea 2005. Vehicle-Pedestrian accident generates trajectory of pedestrian. In pedestrian involved accident, the most important data to inspect accident is throw distance of pedestrian. The throw distance of pedestrian can be influenced by many variables. The variables that influence trajectory of pedestrian can be classified into vehicular factors, pedestrian factors, and road factors. Vehicular factors are the frontal shape of vehicle, impact speed of vehicle, the offset of impact point. Many studies have been done about the relation between impact speed and throw distance of pedestrian. But the influence of the offset of impact point was neglected. The influence of the offset of impact point was analyzed by Working Model, and the trajectory of pedestrian, dynamic characteristics of multi-body were analyzed by PC-CRASH, a kinetic analysis program for a traffic accident. Based on the results, the increase of offset reduced the throw distance of pedestrian. However box type vehicle just like bus, the offset of impact point did not influence the throw distance of pedestrian considerably.

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철도 차량 전두부 충돌 피해 저감을 위한 Protective shell frame의 위상 최적화에 관한 연구 (The study on Topology Optimization for Crashworthiness enhancement in Protective shell frame of Rolling Stock leading-cab)

  • 김현준;김세훈;정현승;권태수;서명원
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.138-143
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    • 2007
  • The leading-cab (high energy absorption area) of rolling stock directly is impacted on the frontal crash unlike other cabs. Thus, leading-cab has a structurally complex shape to solve getting concentrated loads. However, in order to enhance structural performance and to achieve the weight reduction of cab, changing the sizes and adjusting the distance of members do not take an effective result. Therefore, in design phase, to find the material arrangement which helps structural capacity be better should be done. This research applies the topology optimization to concept design of protective shell frame on strategy of crush energy absorption with considering pressure and vertical loads acting on the principal part of leading-cab. In this research, topology optimization method focuses on structural design, and which yields optimal material arrangement under given loads and boundary conditions using density method which has the density of material as design variables. Finally, this research presents optimal material arrangement and structure of protective shell frame on given loads with applying topology optimization.

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차 대 보행자 충돌 시 사고해석 모델 개발 (Development of Accident Analysis Model in Car to Pedestrian Accident)

  • 강대민;안승모
    • 동력기계공학회지
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    • 제13권5호
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    • pp.76-81
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    • 2009
  • The fatalities of pedestrian account for about 21.2% of all fatalities at 2007 year in Korea. To reconstruct exactly the accident, it is important to calculate the throw distance of pedestrian in car to pedestrian accident. The frontal shape of SUV vehicle is dissimilar to passenger car and bus, so the trajectory and throw distance of pedestrian by SUV vehicle is not the same of passenger car and bus. The influencing on it can be classified into the factors of vehicle and pedestrian, and road factor. It was analyzed by PC-CRASH for simulation, and SPSS s/w was used for regression analysis. From the simulation results, the maximum impact energy of multi-body of pedestrian was occurred to that of torso body at the same time. And the throw distance increased with the increasing of impact velocity, and decreased with the increasing of impact offset. Also it decreased with the increasing of velocity of pedestrian at accident, and the throw distance of wet road was longer than that of dry road. Finally, the regression analysis model of SUV(Nissan Pathfinder type)vehicle in car to pedestrian accident was as follows; $$disti_i=-0.87-0.11offseti_i+0.69speed_i-4.27height_i+0.004walk_i+0.63wet_i+{\epsilon}_i$$.

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차량용 MR 충격댐퍼의 동특성 해석 (Dynamic Characteristic Analysis of MR Impact Damper for Vehicle System)

  • 송현정;우다윗;최승복
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2006년도 춘계학술대회논문집
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    • pp.147-152
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    • 2006
  • This paper presents the dynamic characteristics of MR impact damper for vehicle collision system. Various types of mechanism have been proposed for reduce transmitted force to vehicle chassis and finally protect occupants from injury. In the case of frontal collision, the bumper make main role of isolation material for collision attenuation. In this study, proposed bumper system composed of MR impact damper and structures. The MR impact damper is to adopted MR fluid which has reversible properties with applied magnetic field. MR fluid operates under flow mode with Bingham flow and bellows is used for generation of fluid flow. Mathematical model of MR impact damper incorporated with MR fluid is established. Field dependent damping force is investigated with time and frequency domain. The MR impact damper is then incorporated with vehicle crash system. The governing equation of motion of vehicle model is formulated considering occupant model. Dynamic characteristics of vehicle collision system investigated with computer simulation.

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자동차보험 과실기준 기반 자동차사고유형 체계화에 관한 연구 (A Study on the Classification of the Car Accidents Types based on the Negligence Standards of Auto Insurance)

  • 박요한;박원필;김승기
    • 자동차안전학회지
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    • 제13권4호
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    • pp.53-59
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    • 2021
  • According to the Korean Traffic Accident Analysis System (TAAS), more than 200,000 traffic accidents occur every year. Also, the statistics including auto insurance companies data show 1.3 million traffic accidents. In the case of TAAS, the types of traffic accidents are simply divided into four; frontal collision, side collision, rear collision, and rollover. However, more detailed information is needed to assess for advanced driver assist systems at intersections. For example, directional information is needed, such as whether the vehicle in the car accident way in a straight or a left turn, etc. This study intends to redefine the type of accident with the more clear driving direction and path by referring to the Negligence standards used in automobile insurance accidents. The standards largely divide five categories of car-to-car/motorcycle /pedestrian/cyclist, and highway, and the each category is classified into dozens of types by status of the traffic signal, conflict situations. In order to present more various accident types for auto insurance accidents, the standards are reclassified driving direction and path of vehicles from crash situations. In results, the car-to-car accidents are classified into 33 accident types, car-to-pedestrian accidents have 19 accident types, car-to-motorcycle accidents have 38 accident types, and car-to-cyclist accidents are derived into 26 types.

차량 정면충돌 및 추돌시 유효충돌속도에 따른 탑승자 상해특성에 관한 연구 (A Study on Characteristics of Passenger Injury for Effective Impact Speed in Vehicles Frontal Collision and Rear-ender)

  • 조정권;윤준규;임종한
    • 한국인터넷방송통신학회논문지
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    • 제15권4호
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    • pp.239-247
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    • 2015
  • 최근에 자동차 사고발생 빈도수가 높은 정면충돌사고와 추돌사고에 대해 사회적 관심도 높아지면서 다양한 연구들이 진행되고 있다. 본 연구에서는 자동차 충돌사고에서 재구성을 위한 유효충돌속도와 인체상해발생정도의 관계를 과학적으로 분석하여 관련 모형식을 제시하였으며, 인체상해가 가능한 자동차 실차실험의 한계가 명확하므로 이를 대신하여 각종 충돌실험자료와 인체실험자료 등을 심층 분석하고자 하였다. 그 결과로 정면 및 추돌사고의 경우에는 유효 충돌속도가 7 km/h 이하에서는 상해가 발생하지 않는 임계치를 나타냈으며, 충돌속도와 소성변형량 정도를 통해 상해정도가 유효충돌속도에 선형적으로 비례하는 모형식을 제시하였다. 따라서 본 연구를 통하여 새롭게 제시된 유효충돌속도와 상해발생정도의 추정모형은 사고재구성에서 최소한의 공학적 판단기준으로 활용 가능하여 법적 분쟁시 유익한 정보를 제공할 것으로 사료된다.

Q6, Q10 어린이 인체모형 상해치에 대한 안전 구속 시스템 최적화 연구 (The study of optimization of restraint systems for injuries of Q6 and Q10 child dummies)

  • 선홍열;이슬;김기석;윤일성
    • 자동차안전학회지
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    • 제7권3호
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    • pp.7-13
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    • 2015
  • Occupant protection performance in frontal crashes has been developed and assessed for mainly front seat occupants over many years, and in recent years protection of rear seat occupants has also been extensively discussed. Unlike the front seats, the rear seats are often occupied by children seated in rear-facing or forward - facing child restraint systems, or booster seats. In the ENCAP, child occupant protection assessments using 18-month-old(P1.5) and 3-year-old(P3) test dummies in the rear seat have already been changed to new type of 18-month-old (Q1.5)and 3-year-old(Q3) test dummies. In addition, ENCAP are scheduled with the development and introduction of test dummies of 6-year-old (Q6) and 10.5-year-old children(Q10) starting 2016. In KNCAP, Q6 and Q10 child dummies will be introduced in 2017 as well. Automobile manufacturers need to develop safety performance for new child dummies closely. In this paper, we focused on Q6 and Q10 child dummies sitting in child restraint system. Offset frontal crash tests were conducted using two types of test dummies, Q6 and Q10 child dummies, positioned in the rear seat. Q6 and Q10 were used to compare dummy kinematics in rear seating positions between Q6 behind the driver's seat and Q10 behind the front passenger's seat. The full vehicle sled test results of both dummies were conducted with different restraint systems. It showed that several injury and image data was collected as the result of the full vehicle sled test. Based on the results of these investigations, this paper describes which factor is most important and combination is the best performance when evaluating rear seat occupant protection for Q6 and Q10 child dummies.