• 제목/요약/키워드: Vehicle Structure

검색결과 1,596건 처리시간 0.026초

차량 가진원 유무에 따른 실내소음의 전달경로 분석에 대한 연구 (Transfer Path Analysis of the Vehicle Interior Noise according to Excitation Existence or not)

  • 박종호;이상권
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2011년도 춘계학술대회 논문집
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    • pp.365-370
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    • 2011
  • Structure-bone noise is an important aspect to consider during the design and development of a vehicle. Reduction of structure-bone noise of the compartment in a vehicle is an important task in automotive engineering. Many methods which analyze transfer path of noise have been used for structure-bone noise. The existing method to measure of frequency response function of transfer path has been tested by removing a source. This Paper presents an experimental analysis about Transfer Path Analysis of the vehicle interior noise according to Excitation or not. To identify these points of difference, experiment were conducted through an experimental test using simulation vehicle.

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차체구조물의 탄소성좌굴에 관한 민감도해석과 최적설계 (Sensitivity Analysis and Optimal design for the Elasto-plastic buckling of Vehicle Structures)

  • 원종진;이종선
    • 한국생산제조학회지
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    • 제7권5호
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    • pp.106-112
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    • 1998
  • Experience and experiments show that in many cases the buckling limit is reached at a much smaller load level than is predicted by linear buckling analysis. In this paper, it is considered linear and nonlinear of plane vehicle structure and estimates design sensitivity of the cross sectional area that is composed plane vehicle structure and performs optimal design. It compares linear vehicle structure with nonlinear vehicle structure for optima design result that is selected constraint condition of buckling load.

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단순유한요소모델을 이용한 차체필라 형상최적설계 (Design Optimization for vehicle Pillar Section Shape Using Simple Finite Element Model)

  • 이상범
    • 한국생산제조학회지
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    • 제9권6호
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    • pp.133-139
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    • 2000
  • Vibrational characteristics of the vehicle structure are mainly influenced by the shape of the pillar cross section. In this paper a vehicle structural optimization technique has been developed to investigate a lightweight vehicle structure subject to constraints on natural frequencies in a simple beam-and-shell model. In this technique, the optimization procedures involve two stages. In the first stage, the section procedures involve tow stages. In the first stage, the section properties of beam elements of the vehicle structure has been optimized to have minimum weight while satisfying the constraints of natural frequencies. And, in the second stage, the shape of the cross section of the elements of the structure has been determined.

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자동차용 공기압축기의 구조해석 (Structure Analysis of Vehicle Air Compressor)

  • 원종진;이종선;흥석주;이현곤
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 1999년도 춘계학술대회 논문집
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    • pp.45-50
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    • 1999
  • The object of this study is structure analysis of vehicle air compressor. Structure analysis is compose to nodal solution and element solution using ANSYS code. Then analysis is partition to head part, cylinder and piston part of vehicle air compressor. Stress and strain results are satisfy to Von Mises yield criterion.

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주차장 구조물 슬래브의 차량하중영향에 관한 연구 (Vehicle Load Effects on Slab of Parking Garage Structure)

  • 곽효경;송종영
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1997년도 봄 학술발표회 논문집
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    • pp.131-138
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    • 1997
  • The equivalent vehicle load factors which can consider the concentrated wheel load effect in slab design of parking garage structure are proposed. Based on the standard vehicle with total weight of 2.4 ton which is designed through the investigation of small to medium vehicle produced in Korea and the review of numerous foreign design codes for parking garage structure, the effects of moving vehicle loads on slab are analyzed using the finite element method. Besides. the relationships between the equivalent load factors and the sectional dimensions are established by regression analysis. The calculation of design forces can be easily accomplished without taking sophisticated numerical analysis for the moving vehicle load as the results obtained to the distributed load are multiplied by the proposed load factors in practice.

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유체력을 고려한 3차원 수중압력선체의 진동특성에 관한 연구 (A Study on the Vibration of Characteristics of 3-Dimension Submerged Vehicle in Consideration of Fluid-Structure Interaction)

  • 손충렬;황인하;이강수
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2000년도 춘계학술대회 논문집
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    • pp.81-88
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    • 2000
  • Unlike structures in the air, the vibration analysis of a submerged or floating structure such as offshore structures or ships is possible only when the fluid-structure interaction is understood, as the whole or part of the structure is in contact with water. Specially, the importance of the added mass is not necessary to say like the submerged vehicle, all of the hull body, is positioned in the water. This paper introduce two method to find natural frequency in consideration of fluid-structure modal coupled vibration analysis. The purpose of this study is to analyze of the vibration characteristic of submerged vehicle to obtain the anti-vibration design data, which could be used in the preliminary design stage data. Underwater pressure hull of submerged vehicle is used as the model of this study. The F.E.M model is meshed by shell and beam element. Also, considering of the inner hull weight, mass element is distributed in the direction of hull length. Numerical calculations are accomplished using the commercial B.E.M code. The characteristics of natural frequency(eigenvalues), mode shape(eigenvectors) and frequency-displacement response are analyzed. The results of this study will be used as the useful design data in preliminary anti-vibration design stage.

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도로 주행 시험을 통한 모듈러 유닛의 진동 특성 분석 (Analysis of Vibration Characteristics of Modular Unit by Road Test)

  • 곽명근;백정훈;설욱제
    • 대한건축학회논문집:계획계
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    • 제35권1호
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    • pp.29-35
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    • 2019
  • The unit modular system is a type of prefabricated construction method that completes the building by uniting the modular units on site by transporting the unit module structure manufactured in the factory to the site. Since the unit module structure is not only the frame but also the finished form including the inner and outer materials, it is most likely to be brought into the field. Therefore, not only the damage of the inner and outer materials but also deformation of frame structure due to the vibration generated during the transportation of the vehicle, And it is necessary to take appropriate methods when transporting the module structure. However, there are no methods to prevent modular structure damage due to vehicle vibration in domestic and foreign modular transportation guidelines or standards. In this study, we investigate the vibrations during the vehicle transportation of the module structure through the road driving test, identify the vibration frequency characteristics of the vehicle through FFT analysis, and propose a vibration reduction methods for module transportation.

사망재해의 원인분석에 관한 연구 (A Study on Analysis of Causes for Fatal Accidents)

  • 백종배;민경일;이영섭
    • 한국안전학회지
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    • 제5권3호
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    • pp.56-62
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    • 1990
  • This study is conducted to analyze exact causes of occupational fatalities and results are as follows : 1) The number of fatalities in establislment which employed less than 50 workers is 605(40.1% ). Age of sixties and seventies is occupied by 10 percent with there being old-aged trend. Fatal workers who were employed less than 3 months are 39.5 percent and fatal workers who were employed more than 10 years are 11.9 percent. Safety training is necessary for newly recruited and long employed workers. 2) Accident type is, in sequence, fall from elevation, traffic accident, disease, contact with electric current, and hazardous condition is, in order, inadequate guard, hazardous method or procedure, public hazard, and agency of accident is, in sequence, temporary structure/building/structure, powered transport vehicle, passenger vehicle, hoisting or lifting apparatus, and unsafe act is, in order, driving error, failure to secure or warn. 3) The results of cross-tabulation for hazardous condition and accident type is, in sequence, traffic accident by public hazard, fall from elevation by hazardous method or procedure, fall from elevation as well as contact with elctric current by inadequate guard. The result of cross-tabulation for agency of accident and accident type is, in order, fall from elevation by temporary structure/building/structure, traffic accident of passenger vehicle and powered transport vehicle, contact with electric apparatus. The result of cross-tabulation for agency of accident and hazardous condition is, in sequence, public hazard of passenger vehicle, hazardous method or procedure of temporary structure/building/structure, publit hazard of powered transport vehicle, inadequate guard of temporary structure/building/structure. The result of cross-tabulation for unsafe act and accident type is, in sequence, traffic accident by driving error, fall from elevation by inattention to footing or surrounding, contact with electric current by secure or warn.

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제작차륜이동 시험기의 실동주행 가속도측정 (A Real Vehicle Tracking Acceleration Using A Tire-Wheel-Tracking Machine)

  • 성익현;성승열
    • 한국재난정보학회 논문집
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    • 제7권3호
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    • pp.190-197
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    • 2011
  • 본 연구에서는 타이어를 장착한 차량시험기에서 교량과 차량의 상호작용효과를 분석하고자 반복하중시험을 실시하고 이에 대한 동적반응을 파악하였다. 이를 위하여 차량-교량간 상호작용이 포함된 이동질량형 윤하중 실험기를 단순교 형식의 교량에 적용하여 이동질량 반복주행실험을 수행하였다. 이동질량 반복주행실험 결과를 분석하여 차량-교량간의 상호작용을 포함한 가속도 형태의 실동주행차량가속도를 규명하였다. 규명된 차량의 실동주행차량가속도를 범용 해석프로그램에 적용하여 차량-교량 상호작용을 재현할 수 있었다.

차량 동특성에 대한 프레임의 유연성 효과 (Flexibility Effects of Frame for Vehicle Dynamic Characteristics)

  • 이상범
    • 한국공작기계학회논문집
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    • 제11권2호
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    • pp.80-86
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    • 2002
  • Previous method of computer simulation to predict the dynamic response of a vehicle has been based on the assumption that vehicle structure is rigid. If the flexibility of the vehicle structure becomes too large to ignore, rigid body assumption will no longer give good estimation of the dynamic characteristics. Therefore, in order to predict more precise vehicle dynamic characteristics, flexible multi-body dynamic analysis of a vehicle is necessary. This paper investigates dynamic characteristics of vehicle systems with flexible frames numerically. Joint reaction forces, vertical accelerations, pitch accelerations are analyzed for the vehicle systems with various flexible frames using multi-body dynamic analysis code and finite element analysis code.