• 제목/요약/키워드: 후방목상해

검색결과 12건 처리시간 0.026초

후방 충돌 펄스와 NCAP 펄스 차이로 인한 목상해 특성 비교 (Compare Characteristics of Neck Injuries between Rear Impact Pulse and NCAP Pulse)

  • 김종곤;박종호
    • 자동차안전학회지
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    • 제9권3호
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    • pp.7-12
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    • 2017
  • The whiplash is the most important issue of low speed rear-impact. So auto makers are committed to developing a seat to improve whiplash injury. Most NCAP tests have been used by same pulse (Mid Velocity 16kph). Only Euro NCAP uses different pulse that consists of Low, Mid, High velocity. But Euro NCAP also uses same pulse in Mid velocity as other NCAP test. That Mid velocity NCAP pulse was made by rear impact that has 90's vehicle structure properties. That pulse was used until now days. However these days, auto maker use more high tensile steel than 90's as customer and society demand more fuel efficiency and light vehicle with good safety structure. So modern vehicles have different pulse patterns of rear impact than NCAP pulse and 90's vehicle crash properties. In this paper, the test was conducted by following condition. Target car was impacted by the rigid barrier with certain velocity. Finally target vehicle gained delta V 16kph which was same velocity as NCAP Mid Velocity pulse. It is critical velocity which occur long period neck injury. It is very different pulse that was gained by real car impact from NCAP pulse. And it has higher peak G with high fluctuation and short duration than NCAP pulse.

후방 추돌시 머리지지대 위치에 따른 목상해 연구 (A Study on Influence of the Head Restraint Position on Neck Injury in Rear End Collision)

  • 최동원;전용범;박인송
    • 한국자동차공학회논문집
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    • 제18권5호
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    • pp.20-24
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    • 2010
  • The position of the automobile's head restraint is very important for the neck injury in rear end collision. This study is about influence of the head restraint height and distance on neck injury during rear end collision. The effects of the position have been evaluated experimentally. The neck injuries are calculated by the relative acceleration between the upper and lower neck. As a result, It is found that the head restraint should be close enough to the back of the head and high enough to the top of the head.

후방추돌시 백세트 변화에 따른 인체모형의 목상해에 관한 예측 연구 (A Predictive Study on Backset Variation on the Neck Injury of Human Model during Rear-end Collision)

  • 박진수;백세룡;임종한;윤준규
    • 한국인터넷방송통신학회논문지
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    • 제18권6호
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    • pp.251-258
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    • 2018
  • 최근 자동차 교통량의 증가로 인해 차량 추돌사고가 급증하여 이에 따른 승객의 목상해가 증가해왔으며, 이를 방지하기 위한 자동차 시트의 설계적인 주안점을 고려하여 컴퓨터 시뮬레이션 기술을 확대 이용한 자동차충돌 해석연구가 활발히 진행되고 있다 본 연구에서는 인체모형 BioRID II 더미를 이용한 차량승객거동해석을 위한 MADYMO 프로그램을 사용하여 차량속도 16 km/h 운전조건의 후방추돌시 시트의 착좌자세인 백세트의 변화에 따른 승객의 목상해를 예측하였다. 그 결과로, 백세트가 짧을수록 접촉시작시간은 단축되지만 접촉완료시간은 거의 동일함을 알 수 있었고, T1 가속도는 백세트가 넓을수록 가속도는 증가함을 나타냈다. 또한 백세트가 넓을수록 인장력은 증가하고, 머리가 머리지대에 닿는 순간의 속도가 빨라짐으로써 목상해지수(NIC)는 증가함을 보였다.

후방추돌시 BioRIDII 머리-목의 거동과 목상해지수와의 비교 (Comparison Head-Neck Movement and Neck Injury Criteria of BiRIDII in Rear-impact Sled Test)

  • 김시우;심소정;서명원
    • 한국자동차공학회논문집
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    • 제18권1호
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    • pp.51-57
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    • 2010
  • In recent years, a large number of study for rear impact has been conducted and as a result of study, researchers proposed the neck injury criteria and test procedures. But many questions, related to injury criteria and dummy biomechanical levels, remain unresolved. In recently reports, rear impact motions of BioRIDIIg is not humanlike but better than other dummy(HybridIII, RID3d). So, in this paper, 4 times sled test would be done to find the substitutable neck injury criteria in BioRIDIIg. To review corelation trend with neck injury critera and head-neck movement, we compared with recently announced neck injury criteria(NIC, Nkm, T1 ect.) and head-neck X-direction movement in BioRIDIIg. Finally, we find the head-neck X-direction movement on head C.G to T1 point may be considerable as the additional neck injury criteria.

후방추돌시 탑승자 목 상해 감소를 위한 연구 (A Study on Occupant Neck Injury in Rear End Collisions)

  • 이재완;윤경한;박경진
    • 한국자동차공학회논문집
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    • 제8권3호
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    • pp.130-138
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    • 2000
  • The position of the automobile seat back is very important for the neck injury in the rear-end collisions. The effects of the position have been evaluated experimentally. A sled simulator is utilized with a velocity of 33 km/h. The position is varied by the angle of seat back from 25 to 65 degrees. All the configurations of the seat are fixed except the angle. The neck injuries are calculated by the equations accepted in the industries. Also, the sled tests with other velocities are carried out for the comparison study. Using the results of the test, the effects of seat back strength are discussed to minimize the occupant neck injury in rear end collisions.

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후방추돌시 목상해를 고려한 승객거동해석 및 좌석설계 (Occupant Analysis and Seat Design to Reduce the Neck Injury for Rear End Impact)

  • 신문균;박기종;박경진
    • 한국자동차공학회논문집
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    • 제7권9호
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    • pp.182-194
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    • 1999
  • Occupant injury in rear end impact is rapidly becoming one of the most aggravating traffic safety problems with high human suffering and societal costs. Although rear end impact occurs at relatively low speed , it may cause permanent disability due to neck injuries resulting from an abrupt moment, shear force , and tension/compression force at the occipital condyles. The analysis is performed for a combined occupant-eat model response, using the SAFE(Safety Analysis for occupant crash Environment) computer program. The computational results are verified by those from sled tests. A parameter study is conducted for many physical and mechanical properties. Seat design has been performed based on the design of experiment process with respect to five parameters; seat-back upholstery stiffness, torsional stiffness of the seat-back. An orthogonal array is selected from the parameter study. A good design has been found from the analysis results based on the orthogonal array. The results show that reductions of stiffness in seat-back upholstery and joint are the most effective for preventing neck injuries.

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저속 정후면 추돌시 머리구속장치 위치에 따른 목 상해에 관한 생체 역학적 연구 (A Biomechanical Analysis in the Neck Injury according to the Position of Read Restraint During Low Speed Rear-End Impacts)

  • 조휘창;김영은
    • 한국자동차공학회논문집
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    • 제13권1호
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    • pp.132-139
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    • 2005
  • The driving position of head restraints and the relative risk of neck injury were studied in the computer simulation. MADYMO human model with the detail neck model was used to define the magnitude and direction of internal forces acting on the cervical spine during rear-end impact and to determine the effect of the initial position of the occupant's head with respect to the head restraints. Maximum reaction forces were generated during the head contact to the restraint and relatively large forces were generated at each spinal components in lower cervical spine in proportion to backset and height distance increasement.