• 제목/요약/키워드: Pipkin

검색결과 14건 처리시간 0.016초

핍킨 2형 대퇴골두골절의 보존적 치료 14년 후 결과 - 증례보고 - (A Hip 14 Years after a Non-surgiclly-treated Pipkin Type-II Fracture of the Femoral Head - A Case Report -)

  • 이영균;하용찬;구경회
    • Journal of Trauma and Injury
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    • 제25권1호
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    • pp.25-27
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    • 2012
  • A 30-year-old, male truck driver had a traffic accident and visited a hospital due to left hip pain. The patient's femoral head was fractured, and he was treated conservatively. For 14 years afterwards, he walked without a limp, had no pain, and drove his truck. He was involved in another traffic accident and experienced a comminuted fracture of the left distal femur 14 years after the initial injury. Although he was symptom-free, while being treated by open reduction and internal fixation for the distal femur fracture, he was concerned about the status of his left femoral head. Pelvis radiographs and reconstructed CT images were done, and they showed a spur change around the femoral head which had a dense sclerotic band within and revealed a slight depression of subchondral bone of the medial portion of the femoral head. The diagnosis was a Pipkin type-II fracture of the femoral head.

차량현가장치용 일래스토메릭 부시으이 비선형점탄성 모델연구 (I) -축 방향 모드- (A Study of A Nonlinear Viscoelastic Model for Elastomeric Bushing in Automotive Suspension System (I) -Axial Mode-)

  • 이성범
    • 한국자동차공학회논문집
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    • 제7권5호
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    • pp.154-161
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    • 1999
  • An elastomeric bushing is a device used in automotive suspension systems to cushion the force transmitted from the wheel to the frame of the vehicle. A bushing is an elastomeric hollow cylinder which is bonded to a solid metal shaft at its inner surface and a metal sleeve at its outer suface. The relation between the force applied to the shaft or sleeve and their relative deformation is nolinear and exhibits features of viscoelasticity. Numerical solutions of the boundary value problem represent the exact bushing response for use in the method for determining the force relaxation function of the bushing. The new nonlinear viscoelastic bushing model, which is called Pipkin-Rogers model, is proposed and it is shown that the predictions of the proposed force-displacement relation are in very good agreement with the exact results. This new bushing model is thus very suitable for use in multi-body dynamics codes. The success of the present study for axial mode response suggests that the same approach be applied to other modes, such as torsional or radial modes.

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축방향 모드에 대한 자동차 부싱의 점탄성 모델링 (Viscoelastic Modeling of Automotive Bushing for Axial Mode)

  • 이성범;이수용
    • Elastomers and Composites
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    • 제39권3호
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    • pp.228-233
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    • 2004
  • 자동차 부싱은 차체로 전달되는 하중을 줄여주는 역할을 하는 자동차 현가장치의 주요 부품으로 바깥쪽 슬리브와 안쪽의 축 사이에서 가운데가 비어있는 실린더의 형상을 가진다. 차축에 작용되는 하중과 부싱의 상대 변위는 비선형 점탄성 성질을 나타내며, 부싱에서 힘과 변위의 관계는 다물체 동역학 시뮬레이션에 매우 중요하다. 본 연구는 실험을 바탕으로 하여, 자동차 부싱에 대한 힘과 변위의 비선형 점탄성 관계를 변위에 의존하는 힘 완화함수로 표현하여 이를 유도하는 방법을 개발하였으며, 완성된 비선형 점탄성 부싱 모델은 ??킨-라저스 모델로 명명하여 실험값과 비교하여 검증하였다.

일래스토메릭 부싱의 회전방향 모두 비선형 점탄성 모델연구 (A Study of A Nonlinear Viscoelastic Model for Elastomeric Bushing in Torsional Mode)

  • 이성범
    • 한국정밀공학회지
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    • 제16권2호통권95호
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    • pp.194-200
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    • 1999
  • An elastomeric bushing is a device used in automotive suspension systems to cushion the force transmitted from the wheel to the frame of the vehicle. A bushing is an elastomeric hollow cylinder which is bonded to a solid metal shaft at its inner surface and a metal sleeve at its outer surface. For axial motion case, the relation between the force applied to the shaft and their relative displacement was considered. In this paper, the relation between the moment applied to the shaft and their relative deformation(angle of rotation) is considered for the torsional motion case. Numerical solutions of the boundary value problem represent the exact bushing response for use in the method for determining the moment relaxation function of the bushing. Solutions also allow for comparison between the exact moment-deformation behavior and that predicted the proposed model. It is shown that the predictions of the proposed moment-deformation relation are in very good agreement with the exact results.

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