• 제목/요약/키워드: Transportation Vibration

검색결과 383건 처리시간 0.024초

KSR-III 로켓의 도로운송 및 핸들링에 의한 진동하중 (Vibration Loads on KSR-III during Ground Transportation and Handling)

  • 전영두;조병규;박동수;황승현;김준
    • 한국소음진동공학회:학술대회논문집
    • /
    • 한국소음진동공학회 2002년도 추계학술대회논문집
    • /
    • pp.250-254
    • /
    • 2002
  • It is conducted to analyze vibration loads on KSR-III(KSR: Korea Sounding Rocket) and its major segments during their ground transportation and various handling process. These loads may be different from the real flight environment. Inadequate assessment of these loads can cause not only local damages on the rocket system but also the critical problem like flight mission failure. Therefore, transportation and handling loads must be considered during design and attenuated to ensure that the rocket structural damage does not occur. This work is concerned with the generation of criteria and prediction of transportation and handling loads for KSR-III. The results show that the shipping container is well designed to satisfy the design requirements. The maximum vibration level recorded during whole transportation and handling for KSR-III is less than 2g, the criteria of KSR-III movement condition.

  • PDF

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
    • /
    • 제37권6호
    • /
    • pp.359-364
    • /
    • 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.

유한요소법 및 실험을 이용한 트럭 탑재 특수 장비의 주행진동 해석 (Analysis of Transportation Vibration for Truck-Mounted Special Equipments via FEM and Experiments)

  • 송오섭;이학렬
    • 한국소음진동공학회논문집
    • /
    • 제19권10호
    • /
    • pp.1083-1091
    • /
    • 2009
  • Modern military equipments are tend to be mounted on a movable truck for their survivability and operation performance. Special units and electronic equipments installed on the truck experience the vibration caused by road roughness during their transport. The level of the transportation vibration is affected by both road conditions and vehicle speeds. In this paper, various experiments on the vibration characteristics of the equipment are carried out via road tests. Transportation vibration is also investigated by numerical analysis using FEM, and natural frequencies and random responses of the launcher are obtained. The PSD and RMS values of acceleration of the equipment are predicted and compared with test results.

근접장 굴착진동이 도시철도 구조물에 미치는 동적영향 연구 (A Study on the Dynamic Effect Influencing to Urban Railway Structures by Vibration from Near-field Excavating Work)

  • 한우진;장승주;배상수;장승엽;방명석
    • 한국지반신소재학회논문집
    • /
    • 제21권4호
    • /
    • pp.41-53
    • /
    • 2022
  • 본 연구에서는 도시철도에 인접하여 암반굴착공사를 실시할 때 발생하는 지반진동이 도시철도 구조물에 미치는 영향을 수치 해석을 통하여 검증하였다. 암반굴착공사는 발파공사와 굴착기계공사의 두 경우에 대하여 실시하였다. 발파공사는 굴착부지가 넓은 경우에 정밀진동제어방법과 소규모진동제어방법에 대한 해석을 실시하고 실무에서 기준처럼 사용하고 있는 발파진동 영향권을 검증하였다. 이 발파진동 영향권에서 제시하는 발파 이격거리는 범위가 매우 커서 범위 값 중 최소치에 발파점이 위치할 때 진동한계치를 넘어갈 수 있다. 굴착기계공사는 천공공사를 위한 어스오거와 착암공사를 위한 브레이커에 의한 지반진동이 도시철도 구조물에 미치는 영향을 검증하였다. 시험시공을 통하여 어스오거와 브레이커의 지반진동을 측정하고 보정을 거쳐서 수치해석을 위한 입력하중을 산출하였다. 수치해석은 터널구조, 개착식 박스구조, 고가교량구조에 대하여 실시하였다. 터널구조의 해석에서 결과는 어스오거는 현장 추정치와 비슷하나 브레이커에서는 현장에서 얻어지는 추정치보다 작다. 발파공 사이의 충전매질을 통한 충격파 전파 효과를 수치적으로 시뮬레이션하고 검증하였다. 개착식 박스구조에서는 굴착공과 박스사이의 매립토가 지반진동을 증폭시키는 형상이 발생하며 진동파가 박스구조물에 도달하면 일정한 값으로 수렴한다. 고가교량의 경우에는 진동하중이 상대적으로 작은 어스오거 지반진동은 파일기초에 도달하면서 작아지는데, 상대적으로 크고 주기적인 브레이커 지반진동은 교량 상부구조에 추가적인 지반 진동하중으로 작용함을 볼 수 있다.

ASTM 규격에 따른 민감화물 수송용 컨테이너 화차의 진동 특성에 관한 기초 연구 (A Fundamental Study on Vibration Characteristics of Container Car for Sensitive Cargo Transportation according to ASTM D-4169)

  • 기호철;이승일;김철수
    • 한국산학기술학회논문지
    • /
    • 제20권12호
    • /
    • pp.53-59
    • /
    • 2019
  • 민감 상품의 화물 운송 중 발생하는 진동 및 충격의 저감을 위하여 본 연구에서는 실제 트럭과 화차에 진동센서가 부착된 컨테이너를 이용하여 운송 경로에 따른 진동이력을 측정하였다. 컨테이너 내부 바닥 2개소에 3축 방향(길이, 횡, 수직 방향)으로 가속도센서를 부착하여 트럭운송 구간(아산-의왕)과 화물열차 운송 구간(의왕-부산)에 대하여 진동이력을 측정하였다. ASTM D-4169에서 제안된 철도 진동 프로파일(0.29Grms)은 트럭 진동 프로파일(0.54Grms) 대비 약 50% 수준으로 낮다. 국내 화물 컨테이너 운송 동안 ASTM D-4169에 준한 진동 프로파일과 비교한 결과는 다음과 같다. 트럭 운송 구간에서의 길이방향과 횡 방향 진동 수준은 모두 ASTM의 트럭운송 진동 프로파일보다 길이방향 약 16%, 횡 방향 약 33% 수준으로 전반적으로 낮게 나타난 반면에, 수직방향 진동은 4~15Hz와 60Hz 이상 범위에서 ASTM의 트럭운송 진동 프로파일을 부분적으로 초과하였다. 화물열차 진동 측정이력은 도로와 유사하며, 길이방향과 횡방향의 진동측정이력은 ASTM D-4169의 철도 진동 프로파일보다 낮으며, 반대로 수직방향의 이력은 30Hz이상 범위에서 초과하였다.

On bending, buckling and vibration of graphene nanosheets based on the nonlocal theory

  • Liu, Jinjian;Chen, Ling;Xie, Feng;Fan, Xueliang;Li, Cheng
    • Smart Structures and Systems
    • /
    • 제17권2호
    • /
    • pp.257-274
    • /
    • 2016
  • The nonlocal static bending, buckling, free and forced vibrations of graphene nanosheets are examined based on the Kirchhoff plate theory and Taylor expansion approach. The nonlocal nanoplate model incorporates the length scale parameter which can capture the small scale effect. The governing equations are derived using Hamilton's principle and the Navier-type solution is developed for simply-supported graphene nanosheets. The analytical results are proposed for deflection, natural frequency, amplitude of forced vibration and buckling load. Moreover, the effects of nonlocal parameter, half wave number and three-dimensional sizes on the static, dynamic and stability responses of the graphene nanosheets are discussed. Some illustrative examples are also addressed to verify the present model, methodology and solution. The results show that the new nanoplate model produces larger deflection, smaller circular frequencies, amplitude and buckling load compared with the classical model.

배 골판지 포장상자의 진동특성 (Vibration Characteristics of Corrugated Fiberboard Boxes for Packages of Pears)

  • 김만수;정현모
    • Journal of Biosystems Engineering
    • /
    • 제27권5호
    • /
    • pp.391-398
    • /
    • 2002
  • During handling unitized products, they are subjected to a variety of environmental hazards. Shock and vibration hazards are generally considered the most damaging of the environmental hazards on a product and it may encounter while passing through the distribution environment. A major cause of shock damage to products is drops during manual handling. The increasing use of unitization of pallets has been resulted in a reduction of the shock hazards. This has caused an increasing interest in research focused on vibration caused dam age. Damage to the product by the vibration most often occurs when a product or a product component has a natural frequency that falls within the range of the forcing frequencies of the particular mode of transportation being used. Transportation vibration is also a major cause of fruit and vegetable quality loss due to mechanical damage. This study was conducted to determine the vibration characteristics of the corrugated fiberboard bones for packages of pears, and to investigate the degree of vibration injury of the pears in the boxes during the simulated transportation environment. The vibration tests were performed on an electrohydraulic vibration exciter. The input acceleration to exciter was fixed at 0.25 G for a single container resonance test and 0.5 G for the vertical stacked container over the frequency range from 3 to 100 Hz. Function generator (HP-33120A) was connected by wire to the vibration exciter for controlling the input acceleration at a continuous logarithmic sweep rate of 1.0 octave per min. The peak frequency and acceleration on the single box test were 22.02 Hz, 1.5425 G respectively, and these values on the vertical stacked boxes were observed from the bottom box 19.02, 18.14, 16.62 and 15.40 Hz and 2.2987, 3.7654. 5.6087, and 7.9582 G, respectively. The pear in the bottom box had a slightly higher damage level than the fruit packed in the other stacked boxes. It is desirable that the package and transportation system has to be so designed that 15∼20 Hz frequency will not occur during the transportation environment.

KSR-III 로켓의 도로운송 및 핸들링에 의한 진동하중 (Vibration Loads on KSR-III during Ground Transportation and Handling)

  • Chun, Young-Doo;Cho, Byoung-Gyu
    • 한국소음진동공학회:학술대회논문집
    • /
    • 한국소음진동공학회 2002년도 추계학술대회논문초록집
    • /
    • pp.330.2-330
    • /
    • 2002
  • It is conducted to analyze vibration loads on KSR-III and its major segments during their ground transportation and various handling process. These loads may be different from the real flight environment. Inadequate assessment of these loads can cause not only local damages on the rocket system but also the critical problem like flight mission failure. Therefore, transportation and handling loads must be considered during design and attenuated to ensure that the rocket structural damage does not occur. (omitted)

  • PDF

모의 수송환경에서의 적재된 골판지 포장화물 내 배의 진동특성 (Vibration Characteristics of the Pears in Corrugated Fiberboard Container for Packaging be stacked at Simulated Transportation Environment)

  • 정현모;박인식;김만수
    • 한국포장학회지
    • /
    • 제11권1호
    • /
    • pp.11-16
    • /
    • 2005
  • Fruits are subjected to complex dynamic stresses in the transportation environment. During a long journey form the production area to markets, there is always some degree of vibration present. Vibration inputs are transmitted from the vehicle through the packaging to the fruit. Inside, these cause sustained bouncing of fruits against each other and container wall. These steady state vibration input may cause serious fruit injury, and this damage is particularly severe whenever the fruit inside the package is free to bounce, and is vibrated at its resonance frequency. The determination of the resonant frequencies of the fruit may help the packaging designer to determine the proper packaging system providing adequate protection for the fruit, and to understand the complex interaction between the components of fruit when they relate to expected transportation vibration inputs. The first frequency of the pear in packaged freight be stacked in resonance frequency band of the pear packaged freight was increased from the bottom to the top of the stack but the second frequency of that in resonance frequency band of the pear was decreased. This indicated that the high damage score of the pear in bottom tier in vibration test was due to higher acceleration level in resonance frequency band of the pear.

  • PDF

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

  • 곽명근;백정훈;설욱제
    • 대한건축학회논문집:계획계
    • /
    • 제35권1호
    • /
    • pp.29-35
    • /
    • 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.