• 제목/요약/키워드: delivered impact force

검색결과 6건 처리시간 0.02초

반발계수를 이용한 안전모의 충격 흡수 성능에 관한 연구 (A Study on the Shock Absorption Performance of the Safety Helmet using Coefficient of Restitution)

  • 신운철
    • 한국안전학회지
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    • 제27권5호
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    • pp.30-34
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    • 2012
  • A safety helmet is a personal protective equipment to protect the head from falling and flying objects. A safety helmet has the maximum delivered impact force as shock absorption performance, the lower delivered impact force the better performance, which was not a controlled variety during manufacturing safety helmet. Accordingly there were some difficulties in establishing the standard for improved performance as there was not a clear controllable impact force for improved performance. In this study the shock absorption performance was intended to be found as coefficient of restitution related to impulse. As a research method, a coefficient of restitution during the absorption of shock was calculated using the impulse transferred to pharynx utilizing the safety helmet shock absorption performance testing device based on the theory of momentum and impulse. The estimated impulsive force curve was derived assuming that shock was not absorbed using the measured data. The sample was selected as tested goods of ABS material for safety certification available mainly in the market. As a result of study, the maximum delivered impact force of safety helmet made by a domestic safety certified a company was 735 N, and its coefficient of restitution proved to be 0.64. The smaller coefficient of restitution is, the lower maximum delivered impact force and the higher shock absorption performance. The coefficient of restitution can be used as a performance index of safety helmet.

콘 크러셔의 전달 하중 및 기여도 분석 (Transfer Force and Contribution Analysis of Cone Crusher)

  • 김대지;정진태;;이창선;송창헌
    • 드라이브 ㆍ 컨트롤
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    • 제19권4호
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    • pp.77-84
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    • 2022
  • The aims of this study was to estimate transfer force delivered to cone crusher housing and contribution of force transmission. The rock crushing condition caused vibrations in the cone crusher housing, which were experimentally measured, and frequency response functions (FRF) were also found through modal impact tests. Vibration data and frequency response functions were applied to the transfer path analysis (TPA) model. Next, transfer forces delivered to the cone crusher housing were quantified via the TPA method. Contribution of force transfer was also analyzed based on force estimation results. Finally, this study describes basic concepts and components of the TPA method and reviews its applicability to rotating machinery that experiences impact vibrations and forces.

저온 분사 코팅 공정에서 충돌속도에 따른 CuNiTiZr 벌크 비정질 소재의 활성화 에너지와 결정화 거동 분석 (Effects of Impact Velocity on Crystallization and Activation Energy of Cu-based Bulk Metallic Glasses in Kinetic Spray Coating)

  • 윤상훈;배규열;김정환;이창희
    • 한국표면공학회지
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    • 제41권6호
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    • pp.301-307
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    • 2008
  • In this paper, nanocrystallization of CuNiTiZr bulk metallic glass (BMG) subjecting to a kinetic spraying, dependent on impact velocity, was investigated by numerical and experimental approaches. The crystallization fraction and nucleation activation energy of initial feedstock and as-deposited coating were estimated by DSC and Kissinger method, respectively. The results of numerical modeling and experiment showed that the crystalline fraction and nucleation activation energy in BMG coatings were depended on kinetic energy of incident particle. Upon impact, the conversion of particle kinetic energy leads to not only decreasing free energy barrier but also increasing the driving force for an amorphous to crystalline phase transformation. The nanocrystallization of BMGs is associated with the strain energy delivered by a plastic deformation with a high strain rate.

단순형태 세일의 변형에 대한 유체-구조 연성 해석 (Fluid-Structure Interaction Analysis on the Deformation of Simplified Yacht Sails)

  • 박세라;유재훈;송창용
    • 대한조선학회논문집
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    • 제50권1호
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    • pp.33-40
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    • 2013
  • Since most of yacht sails are made of thin fabric, they form cambered sail shape that can efficiently generate lift power by aerodynamic interaction and by external force delivered from supporting structures such as mast and boom. When the incident flow and external force alter in terms of volume or condition, the shape of sail also change. This deformation in shape has impact on the peripheral flow and aerodynamic interaction of the sail, and thus it is related to the deformation of the sail in shape again. Therefore, the precise optimization of aerodynamic performance of sail requires fluid-structure interaction (FSI) analysis. In this study, the simplified sail without camber was under experiment for one-way FSI that uses the result of flow analysis to the structural analysis as load condition in an attempt to fluid-structure interaction phenomenon. To confirm the validity of the analytical methods and the reliability of numerical computation, the difference in deformation by the number of finite element was compared. This study reproduced the boundary conditions that sail could have by rigs such as mast and boom and looked into the deformation of sail. Sail has non-linear deformation such as wrinkles because it is made of a thin fabric material. Thus non-linear structural analysis was conducted and the results were compared with those of analysis on elastic material.

유조선 선수부의 내충돌 구조설계에 관한 연구 -이상화 모델의 충돌거동 분석(1) (A study on the Crashworthiness Design of Bow Structure of Oil Carriers -Collision Behaviour of Simplified Models(1))

  • 신영식;박명규
    • 한국해양공학회지
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    • 제15권3호
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    • pp.120-127
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    • 2001
  • The potential pollution problems resulting from tanker collision necessitate the requirement for an effective structural design and the development of relevant safety regulations. During a few decades, the great effort has been made by the international Maritime Organization and the Administration, etc, to reduce oil spillage from collision accidents. However there is still a need for investigation in the light of structural evaluation method for the experiments and rational analysis, and design development for an operational purpose of ships. This study aims for investigating a complicated structural response of bow structures of simplified models and oil carriers for assessing the energy dissipation and crushing mechanics of the striking vessels through a methodology of the numerical analysis for the various models and its design changes. Through these study an optimal bow construction absorbing great portion of kinetic energy at the least penetration depth prior to reach to the cargo area and an effective location of collision bulkhead are investigated. In order to obtain a rational results in this study, three stages of collision simulation procedures have been performed step by step as follows; 1) 16 simplified ship models are used to investigate the structural response against bow collision with variation of primary and secondary members. Mass and speed are also varied in four conditions. 2) 21 models consisted of 5 sizes of the full scaled oil carriers are used to perform the collision simulation with the various sizes and deadweight delivered in a recent which are complied with SOLAS and MARPOL. 3) 36 models of 100l oil carrier are used to investigate the structural response and its influence to the collision bulkhead against bow collision in variation with location of collision bulkhead, primary members, framing system and colliding conditions, etc. By the first study using simplified models the response of the bow collision is synthetically evaluated for the parameters influencing to the absorbed energy, penetration depth and impact force, etc.

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두경부암 방사선치료 시 선량 균일도 향상을 위한 Thermoplastic 구강 보상체의 개발 (Development of a Thermoplastic Oral Compensator for Improving Dose Uniformity in Radiation Therapy for Head and Neck Cancer)

  • 최준용;원영진;박지연;김종원;문봉기;윤형근;문수호;전종병;서태석
    • 한국의학물리학회지:의학물리
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    • 제23권4호
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    • pp.269-278
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    • 2012
  • 두경부암 방사선치료 시 공동 경계면 및 주변 치료 부위의 선량 균일도 향상을 위하여 조직 등가의 thermoplastic 구강 보상체를 개발하였다. Thermoplastic의 유용성 평가를 위해, 기존에 사용해 오던 치과용 인상재료인 paraffin, alginate, 그리고 putty로 제작한 각 구강 보상체의 물성 및 선량 분포 향상도를 비교하였다. 물성 평가에는 강도 평가(압축 실험, 낙하 실험)와 자연변형도(시간에 따른 체적 변화) 평가를 수행하였으며, 개발한 선량 검증용 팬톰에 삽입한 유리선량계와 Gafchromic EBT2 필름을 이용하여 표면선량, 공동 경계면 선량 및 빔 측면도를 측정하여 전달 선량을 평가하였다. 두 달간 각 구강 보상체의 자연변형도 평가하였을 때, alginate는 수분증발로 최대 80% 체적 변화를 보였으나, thermoplastic을 포함한 나머지 조직 등가 물질은 체적 변화가 3% 미만으로 나타났다. 강도 평가 중 5회 반복한 1.5 m 높이의 자유 낙하실험에서 paraffin은 충격에 의하여 파손이 발생되었으나, thermoplastic은 낙하에 의한 파손이 발생되지 않았으며, 압축 강도 실험에서도 paraffin에 비하여 8배 이상의 높은 힘에서도 파손되지 않았다. 유리선량계를 이용한 선량 검증 결과, 1문 조사 시 조직등가[약 80 HU (Hounsfield Unit)]의 thermoplastic은 동일한 처방 선량 전달 시 약 1,000 HU 이상의 값을 나타내는 putty에 비해 4% 낮은 출력계수(monitor unit) 전달로 약 4.9%의 낮은 표면 선량을 전달하였다. 또한 빔 입사 방향을 기준으로 할 때, 구강 통과 후 경계면의 빔 측면도에서 선량 균일도 평가를 위해 측정한 조사영역 편평도는 air, thermoplastic, putty에서 각각 11.41, 3.98, 4.30으로 나타났다. Thermoplastic 구강 보상체는 조직 등가 물질로 기존에 사용해오던 구강 보상체에 비하여 강도가 높고 물질 변형 확률이 적으며, 구강을 포함을 경계면 및 주변 부위에 균일한 선량 분포를 형성할 수 있으므로 균일한 처방 선량 전달 및 피부 선량 감소가 가능하다.