• 제목/요약/키워드: crash

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고내식성 용융합금도금강판 적용 교량난간의 충돌성능 평가 (Crashworthiness Evaluation of Bridge Barriers Built with Hot-dip Zinc-aluminium-magnesium Alloy-coated Steel)

  • 노명현
    • 한국산학기술학회논문지
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    • 제17권3호
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    • pp.171-176
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    • 2016
  • 본 논문은 도로안전시설물의 공용중 부식 발생으로 인한 기능 손실을 줄일 수 있는 방안으로 고내식성 용융합금도금 강판을 적용한 도로안전시설물을 제안한다. 고내식성 용융합금도금강판을 적용한 도로안전시설물 제품에 대한 신뢰성 있는 충돌성능 평가 기초자료를 제공할 목적으로 고내식강이 적용된 교량난간 제품에 대한 충돌 시뮬레이션 및 실물 차량 충돌시험 연구를 수행한다. 시뮬레이션 및 실차충돌 시험 결과, 변형률 속도 의존성을 고려할 수 있는 정교한 동특성 재료모델을 도입한 충돌 시뮬레이션을 통해 얻어지는 충돌 거동과 실물 차량 충돌 시험 결과가 매우 유사한 것으로 도출되었다. 본 논문에서 제안된 고내식성 용융합금도금 강판을 적용한 교량난간은 실물 차량 충돌 시험의 충돌성능 평가 기준을 모두 충족시켜 현장 적용을 앞두고 있다.

개항의 항계 안에서의 선박충돌에 따른 법률상의 쟁점 -해양안전심판원의 재결사례에 대한 분석을 중심으로- (A Study about Legal Issues of Ship Crash in Open Ports Act)

  • 임석원
    • 수산해양교육연구
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    • 제28권1호
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    • pp.221-234
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    • 2016
  • Open port has the designated course and traffic jam of ships happens often. This fact may connect to ship crash easily. And the accident happens due to violation of navigation mainly. In ship crash between Neoblue and Shinkwang 7 at incheon open port, the Korean incheon maritime safety tribunal shows that the violation of navigation and duty of attention at the open port would produce ship crash directly. Wherefore, the interpretation and application of navigation are important to protect future ship crash accident. The points of navigation as objects of study are divided into two categories, interpretation and application of navigation on crashing between the ship which navigate the designated course and the ship which enter into the designated course from the another course or outside the course, interpretation and application of navigation on crashing between two or more ships, which navigate violating the navigation every ships and violating agreement rule each other. And as conclusion, I refer the legal responsibility both Neoblue and Shinkwang 7 in detail. The results of this study as follows : First, in case of crashing between the ship which navigate the designated course and the ship which enter into the designated course from the another course or outside the course, public order in open port act can be applied by priority. However, in applying the public order the principle of trust and reasons of crew, cause and effect, the time of navigation application are mandatory considerations. Second, in case of crashing between two or more ships, which navigate violating the navigation every ships and violating agreement rule each other, we should focus on the reasons of crew. Also, the reasons of crew need strict conditions. These means that the awareness of crash danger and recognition of special circumstance including limit state of ships, existence of emergency danger, non escaping crash danger by only observance of navigation. And in case of this state the public order the principle of trust and reasons of crew, cause and effect, the time of navigation application should be considered by priority, too.

AE-MDB 측면 충돌 시험 시 WorldSID 50%ile dummy 상해치에 대한 제어인자 연구 (The Study on control factor of WorldSID 50%ile dummy injury through AE-MDB side crash test)

  • 선홍열;한표경;김재수;김기석;윤일성
    • 자동차안전학회지
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    • 제6권1호
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    • pp.5-9
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    • 2014
  • Over the past ten years, since the introduction of the side crash test regulation in Europe, much research work has been performed internationally to develop new and modified test procedures to improve the level of occupant protection offered by vehicles in side crash test. This research has been co-ordinated and finally contributed to development of an AE-MDB(Advanced European Moving Deformable Barrier) and WorldSID (Worldwide Side Impact Dummy). EuroNCAP(European New Car Assessment Program) has the plan to conduct AE-MDB side crash test using WorldSID from 2015 by replacing Progressive MDB and EuroSID II. Automobile manufacturers need to respond to these changes closely. This paper is to find dominant control factor and analyze it of WorldSID 50%ile dummy injury through AE-MDB side crash test by predicting best and worst condition. And control factors will be validated within EuroNCAP regulations. This paper is analyzed by DFSS(Design for six sigma) which contains 5 control factors and is evaluated by ANOVA with the data as a result of LS-DYNA analysis correlated with crash pulse from 50 kph AE-MDB side crash test using WorldSID 50%ile dummy.

차량충돌해석 적용을 위한 간단화한 성형이력 고려 방법 (A Simplified Method to Consider Forming Effects in a Car Crash Analysis)

  • 허지향;윤종헌;임지호;박성호;허훈
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2008년도 추계학술대회 논문집
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    • pp.259-262
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    • 2008
  • This paper introduces a simplified method to consider forming effects in a car crash analysis. Representative value was used to consider forming effects simply. Four representative values, which are the mean value of thicknesses and effective plastic strains at nodes, the median of thicknesses and effective plastic strains at nodes, were evaluated. A crash analysis of a front side member shows that analysis results from the suggested methods are similar to those from the conventional method to consider forming effects. Use of the mean effective plastic strain shows the best results. A car crash analysis for a ULSAB/AVC model under the condition of US SINCAP were carried out to demonstrate the validity of the suggested method. Analysis results show that the error of suggested method is less than 1.5%.

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자동차 충돌해석에 의한 단순화된 차체 강성 방정식의 유도 (The Derivation of Simplified Vehicle Body Stiffness Equation Using Collision Analysis)

  • 장인식;채덕병
    • 한국자동차공학회논문집
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    • 제8권4호
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    • pp.177-185
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    • 2000
  • The deformation characteristics is one of the major factors to resume the crash configuration in collision accident reconstruction. Crash analysis are carried out using finite element method and body stiffness equations representing force-deformation relationship are derived, Two different crash conditions : 1) frontal barrier impact 2) frontal impact between cars are given for the derivation of the equations. The stiffness coefficient of equation by method 2) is larger than that by method. 1). Crash analysis between two vehicles is accomplished with three crash angles and three velocities for each angle condition. The deformations are measured for six selected points and deformation energies are calculated using the derived equations. Equation by method 2) results in better estimation of deformation energy than that by method 1) for all crush configurations. The estimated energies can be utilized as one of indices to identify the type of the collision accident result.

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차량의 충돌 유형 및 속도에 따른 에어백 충돌인식 알고리듬에 관한 연구 (A Study on the Airbag Crash Recognition Algorithm for Vechcle Impact Modes and Speeds)

  • 성기안;이창식
    • 한국자동차공학회논문집
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    • 제8권6호
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    • pp.259-266
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    • 2000
  • Crash test data from different impact modes and threshold speeds were used to assess the effects of impact conditions on air bag electronic single point sensing (ESPS) activation requirements. The requirements are expressed in terms of the desired sensor activation time based on unbelted driver dummy kinematics. A crash discriminator pre-displacement is introduced to crash recognition algorithm to the ESPS. The new crash recognition algorithm named Velocity Energy Pre-displacement(VEPD) method is developed and the ESPS algorithm based on the VEPD technique is used to assess the ESPS system performance. It is shown that VEPD method correlates very well with desired sensor activation time and meets the activation requirement.

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정면 오프셋 충돌시 가스튜브를 이용한 차량용 범퍼의 손상성, 수리성에 대한 연구 (A Study on the Damageability and Repairability of the Car Bumper Systems with Gas Tube)

  • 조휘창;박인송
    • 한국자동차공학회논문집
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    • 제11권5호
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    • pp.134-139
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    • 2003
  • The car crash accidents in low speed occurs most frequently. Damage on a conventional bumper after the car accident causes the bumper to get fixed most of time. This study shows how a gas tube bumper reduces a damageability and increase repairability after the car accidents. The 15 km/h 40% offset front and rear crash test recommended by RCAR (Research council for automobile repairs) standard was performed and evaluated damages on the gas tube bumper by the pendulum impact tester. In this study, the gas tube bumper reduces damageability and increases repairability after car crash accidents. In addition, car frame design to apply the gas tube bumper may consider to be changed.

프론트 사이드 멤버의 경사 충돌 성능 (Crash Performance of Front Side Member Impacted with Angle)

  • 강성종
    • 한국자동차공학회논문집
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    • 제22권2호
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    • pp.52-59
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    • 2014
  • Front impacted SUV vehicle shows that the front parts of side members are collapsed by the bending due to the transverse load exerted at the end of side members. Side member models were impacted with various angles in order to study the crash performance according to the impact angle. Even for the small impact angle of $10^{\circ}$, crash performance seriously deteriorated and the deformations for impact angle $15^{\circ}$ were similar to those from the front body impact analysis. In addition, the angled front impact analysis for the straight member with hat section was carried out and the effects of inner reinforcement shape on crash performance was investigated.

알루미늄 폼이 충전된 충돌부재의 충격흡수 성능 (Impact Performance of a Crash Member Filled with Aluminum Foam)

  • 김낙현;김지훈;이종국;김대용
    • 소성∙가공
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    • 제20권8호
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    • pp.555-561
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    • 2011
  • The energy absorbing characteristics of crash members in a car collision play an important role in controlling the amount of damage to the passenger compartment. Crash members filled with aluminum foam are expected to have reduced mass while maintaining or even improving the crashworthiness compared to the conventional hollow-beam types. Finite element simulations are carried out in the present work to assess the improvement of crashworthiness by the use of aluminum foam fillers. The numerical results agreed well with experimental measurements. Parametric studies are conducted to analyze the effect of impact velocity, weld strength, and initiator on the crash response.

측면충돌모의시험 방법 개발과 응용 (Development of Side Impact Crash Simulation Methodology and Its Applications)

  • 하영호
    • 한국자동차공학회논문집
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    • 제8권1호
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    • pp.101-109
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    • 2000
  • Occupant protection in the side impact of a car became one of the most important issues of car crashworthiness due to high injury level in a side impact crash. An accurate simulation of the side impact crash is an essential tool for the reduction of development time and cost for side impact safety system. This paper describes a new test methodology that can accurately generate the crash pulses of a vehicle and a door in a very cost-effective manner, and then evaluates the injury values of the dummy for the various sled pulses. This test methodology is simple and easy to approach because the door velocity is controlled by the hydraulic actuator and brake and the seat velocity is only adjusted by the friction force of the hydraulic brake. The superiority of the proposed test methodology is proven by the evaluation of dummy's injury values according to the change of the pressure of the hydraulic brake and by the application as a tool for the development of side airbag.

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