• 제목/요약/키워드: Shock Load

검색결과 249건 처리시간 0.024초

수중폭발에 의한 해중철도의 간이 충격 응답 해석 (Simplified Shock Response Analysis for Submerged Floating Railway against Underwater Explosion)

  • 서승일;사공명;손승완
    • 한국철도학회논문집
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    • 제17권2호
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    • pp.100-105
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    • 2014
  • 해중철도 부근에서 테러나 사고에 의해 수중폭발이 발생하였을 경우, 함체에 치명적인 손상을 가할 수 있으므로, 충분한 강도를 확보해야 한다. 본 연구에서는 설계 목적으로 해중철도 인근에서 수중폭발이 발생한 경우, 경험에 기초한 공식을 이용하여 충격압을 추정하고, 충격압에 의한 해중철도의 응답을 해석할 수 있는 간이 해석 방법을 제안하였다. 해중철도 함체를 탄성 지지된 보로 이상화하고, 초기 최대 충격압이 작용하는 보에 대해 정적 유한요소해석을 실시한 후, 동하중 계수와 조합함으로 최대 변위 및 굽힘 모멘트를 계산한다. 간이해석 결과는 상용 유한요소해석 소프트웨어를 이용한, 시간에 따른 과도응답해석 결과와 비교하여 양호한 일치를 보임을 확인하였다.

착지 과제에서 낙하높이와 중량이 하지역학에 미치는 영향 (Effect of Different Drop Heights and Load on Lower Extremity Kinetics in Landing Task)

  • 현승현
    • 한국인터넷방송통신학회논문지
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    • 제21권3호
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    • pp.115-121
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    • 2021
  • 인간의 착지 전략은 다양한 조건에서 하지역학을 통해 설명해 왔다. 그러나 중량과 착지 높이의 두 조건이 결합되었을 때 하지역학이 어떻게 반응하는지 아직 이해할 수 없다. 이 연구의 목적을 달성하기 위해 성인 남녀 총 20명은 다양한 착지 높이 0.3 m, 0.4 m, 0.5 m에서 중량(무중량, 체중의 10%, 20% 그리고 30%)을 적용해 드롭랜딩을 실시하였다. 연구결과 중량의 주효과는 모든 변인에서 통계적으로 유의하지 않았다. 반면 착지 높이의 증가에 따라 무릎관절 각도는 더 굴곡된 형태를 보였으며 통계적으로 유의하였다. 또한 착지 높이 증가에 따라 좌우, 전후, 수직지면반력, 부하율은 더 증가되는 반면, 안정화시간은 보다 짧은 시간에 생성되었으며, 통계적으로 유의하였다. 따라서 인간은 다양한 높이에서 중량을 변경시키더라도 착지 동작을 성공적으로 수행할 수 있다. 그러나 중량 조건보다 착지 높이의 변화에 더 민감하게 반응하였다. 착지 높이는 시각정보를 통해 인지 및 충격 흡수에 대비할 수 있지만, 중량 수준은 신체가 인지하기 어렵고 충격흡수를 위한 착지 전략 메커니즘에 더 적용시키기 어려운 이유를 설명해준다.

외연적 유한요소법을 이용한 KC-100 전방착륙장치 Spin-up, Spring-back 하중 해석 (Spin-up, Spring-back Load Analysis of KC-100 Nose Landing Gear using Explicit Finite Element Method)

  • 박일경;김성준;안석민
    • 한국항공운항학회지
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    • 제19권4호
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    • pp.51-57
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    • 2011
  • The spin-up and the spring-back are most severe load cases in the aircraft landing gear design. These load cases are caused by reciprocal action of complex physical phenomenon such as the friction between a tire and ground, inertia of the rotation of a tire and the flexibility of a landing gear structure. Generally, the empirical formula or the theoretical formula is used to calculate the spin-up and spring-back load in the early stage of the development program of the aircraft landing gear. After the materialization of the design of a landing gear, spin-up and spring-back load are acquired by the free drop test. In this study, the spin-up and the spring-back load of the rubber shock absorber type KC-100 nose landing gear are calculated by the explicit finite element analysis. Through this analysis, more accurate and realistic spin-up and spring back loads could be applied to the early phase of the development of the aircraft landing gear.

A Speed Control for the Reduction of the Shift Shocks in Electric Vehicles with a Two-Speed AMT

  • Kim, Young-Ki;Kim, Hag-Wone;Lee, In-Seok;Park, Sung-Min;Mok, Hyung-Soo
    • Journal of Power Electronics
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    • 제16권4호
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    • pp.1355-1366
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    • 2016
  • In the present paper, a speed control algorithm with fast response characteristics is proposed to reduce the shift shock of medium/large-sized electric vehicles equipped with a two-speed AMT. Shift shocks, which are closely related with to the vehicles' ride comfort, occur due to the difference between the speed of the motor shaft and the load shaft when the gear is engaged. The proposed speed control method for shift shock reduction can quickly synchronize speeds occurring due to differences in the gear ratios during speed shifts in AMT systems by speed command feed-forward compensation and a state feedback controller. As a result, efficient shift results without any shift shock can be obtained. The proposed speed control method was applied to a 9 m- long medium- sized electric bus to demonstrate the validity through a simulated analysis and experiments.

Effects of Sinusoidal Vibration Fatigue on Compression Strength of Corrugated Fiberboard Container for Packaging of Fruits

  • Jung, Hyun-Mo;Kim, Jong-Kyoung;Kim, Man-Soo
    • 한국포장학회지
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    • 제16권1호
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    • pp.1-4
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    • 2010
  • The compression strength of corrugated fiberboard containers for packaging the agricultural products rapidly decreases because of various environmental conditions during distribution of unitized products. Among various environmental conditions, the main factors affecting the compression strength of corrugated fiberboard are absorption of moisture, long-term accumulative load, and fatigue caused by shock and vibration. An estimated rate of damage for fruit during distribution is about 30~40% owing to the shock and vibration. This study was carried out to characterize the durability of corrugated fiberboard containers for packaging the fruits and vegetables under simulated transportation environment. After the packaging freight was vibrated at various experimental conditions, the compression test for the packaging was performed. The compression strength of corrugated fiberboard containers decreased with loading weight and vibration time. The multiple nonlinear regression equation ($R^2$ = 0.9198) for predicting the decreasing rate of compression strength of corrugated fiberboard containers were developed using four independent variables such as input acceleration level, input frequency, loading weight and vibration time.

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모의 수송 환경에서의 청과물 골판지 상자의 진동 피로에 따른 내구성 (Durability of Corrugated Fiberboard Container for Fruit and Vegetables by Vibration Fatigue at Simulated Transportation Environment)

  • 김만수;정현모;김기복
    • Journal of Biosystems Engineering
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    • 제30권2호
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    • pp.89-94
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    • 2005
  • The compression strength of corrugated fiberboard container for packaging the agricultural products rapidly decreases because of various environmental conditions during distribution of unitized products. Among various environmental conditions, the main factors affecting the compression strength of corrugated fiberboard are absorption of moisture, long-term accumulative load, and fatigue caused by shock and vibration. An estimated rate of damage for fruit during distribution is about from 30 to 40 percent owing to the shock and vibration. This study was carried out to characterize the durability of corrugated fiberboard container for packaging the fruit and vegetables under simulated transportation environment. The vibration test system was constructed to simulate the land transportation using truck. After the package with corrugated fiberboard container was vibrated by vibration test system at various experimental conditions, the compression test for the package was performed. The compression strength of corrugated fiberboard container decreased with loading weight and vibrating time. The multiple nonlinear regression equation for predicting the decreasing rate of compression strength of corrugated fiberboard containers were developed using four independent variables such as input acceleration level, input frequency, loading weight and vibrating time. The influence of loading weight on the decreasing rate of corrugated fiberboard container was larger than other variables.

수송 트레일러의 충격흡수장치 개발 (IV) - 동력경운기 적재함의 연결히치, 판스프링, 쇽업쇼바 - (Development of Vibration Absorption Device for the Transportation-Trailer System (IV) - Connecting Hitch, Leaf Spring and Shock Absorber Suspension -)

  • 홍종호;오영근
    • Journal of Biosystems Engineering
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    • 제37권6호
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    • pp.359-364
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    • 2012
  • Purpose: This study was conducted to analyze the vibration absorption effect for the agricultural product transportation-trailer equipped with vibration absorbable connecting hitch, leaf spring suspension, and shock absorber simultaneously (HLS), comparing with the trailer equipped with vibration absorbable connecting hitch only(H), trailer equipped with connecting hitch and leaf spring suspension (HL), and existing trailer with no vibration absorption device (E). Methods: Vertical accelerations were measured at driver seat and front, middle, rear parts of trailer bottom with no load for 4 types of transportation-trailer, and analyzed using FFT analyzer. Results: The magnitude of average vibration accelerations occurred up to 20 Hz, at this low frequencies the severe damage for agricultural products could be represented, was lower (maximum 6 times) for HLS trailer compared with H trailer. And vibration absorption effect for HLS trailer was also higher up to 40-80 Hz and 80-100 Hz, but the difference was less. At driver seat, the vibration absorption effect was high severely for HL and HLS trailer, and the magnitude of vibration acceleration was showed less difference in comparing at trailer bottom. Conclusions: From the test results, it could be recommended that the agricultural products transportation trailer should be equipped with vibration absorption device of HLS.

충격하중에 의한 암석의 동적거동 측정시험장치 (SHPB Tests for Rock Dynamic Behavior by Shock Loading)

  • 박철환;박의섭
    • 터널과지하공간
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    • 제20권5호
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    • pp.318-324
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    • 2010
  • 발파나 지진과 같은 충격하중에 의한 재료의 동적특성이 최근 들어 지상 및 지하구조물의 설계에 주목받고 있다. 측정장비의 발달에 힘입어 수백 ${\mu}$-sec에서 파괴가 진행되는 동안에 발생하는 응력과 변형률의 완전한 이력곡선을 얻을 수 있다. SHPB는 암석의 동적거동을 연구하는데 보편적이며 믿을만한 실험장치로 인식되고 있으며, 이 장치에 의한 동적 압축이나 인장강도시험은 조만간 표준시험법으로 제정될 예정이다. 본 보고서는 종래의 사각형 입사파의 단점을 없애기 위하여 사인형태의 응력파를 생성할 수 있는 특별한 모양의 충격자를 고안한 논문을 소개한 것이다. 이 논문은 사인형태의 입사파에 대한 장점을 설명하고 또한 동하중에 대한 암석의 크기효과를 설명하고 있다.

An Accurate Analysis for Sandwich Steel Beams with Graded Corrugated Core Under Dynamic Impulse

  • Rokaya, Asmita;Kim, Jeongho
    • 국제강구조저널
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    • 제18권5호
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    • pp.1541-1559
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    • 2018
  • This paper addresses the dynamic loading characteristics of the shock tube onto sandwich steel beams as an efficient and accurate alternative to time consuming and complicated fluid structure interaction using finite element modeling. The corrugated sandwich steel beam consists of top and bottom flat substrates of steel 1018 and corrugated cores of steel 1008. The corrugated core layers are arranged with non-uniform thicknesses thus making sandwich beam graded. This sandwich beam is analogous to a steel beam with web and flanges. Substrates correspond to flanges and cores to web. The stress-strain relations of steel 1018 at high strain rates are measured using the split-Hopkinson pressure. Both carbon steels are assumed to follow bilinear strain hardening and strain rate-dependence. The present finite element modeling procedure with an improved dynamic impulse loading assumption is validated with a set of shock tube experiments, and it provides excellent correlation based on Russell error estimation with the test results. Four corrugated graded steel core arrangements are taken into account for core design parameters in order to maximize mitigation of blast load effects onto the structure. In addition, numerical study of four corrugated steel core placed in a reverse order is done using the validated finite element model. The dynamic behavior of the reversed steel core arrangement is compared with the normal core arrangement for deflections, contact force between support and specimen and plastic energy absorption.

서비스 로봇용 가변강성 형 안전관절의 설계 (Design of a Variable-Stiffness Type Safety Joint for Service Robots)

  • 정재진;장승환
    • 한국정밀공학회지
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    • 제26권5호
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    • pp.128-134
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    • 2009
  • This paper aims to design a variable-stiffness type economical safety joint for service robots. The safety joint was designed to have a passive shock absorbing mechanism for protecting human from a catastrophic collision under service condition of robots. A simple mechanism composed of two action disks for switching the load transfer, a spring and a screw for pre-load was proposed. In order to evaluate the performance of the safety joint a testing platform which can carry out the static and impact tests was also designed and fabricated. From the test results, the designed safety joint was proved to have a variable load-carrying capacity and about 42% impact absorption capacity with simple manipulation of the control screw.