• 제목/요약/키워드: Seat Vibration

검색결과 221건 처리시간 0.028초

시트에서 발생하는 동적 커플링 현상 실험 및 분석 (Experiment and analysis of dynamic coupling phenomenon in a seat)

  • 민경원;김덕만;박현규;박준홍
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2014년도 추계학술대회 논문집
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    • pp.1004-1006
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    • 2014
  • This study was conducted to improve the understanding of factors affecting an automobile seat cushion in dynamic conditions. When there are two dummies on the seat to measure each places respectively at once, the shape of the transfer function changes because the dummies affect each other as if they are linked with some kind of a spring when under excitation. A simple two-degree-of-freedom linear model is used to define a translational stiffness of dynamic coupling phenomenon. The cushion deflection model was created to find the relation between dynamic coupling and distance. Experimental set-up was made to compare with the two-degree-of-freedom linear model. The dynamic coupling factor could be utilized to improve the dynamic comfort of automobile seats.

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엔진 마운트계의 최적설계에 관한 연구 (A Study on an Optimal Design of Engine Mount System)

  • 황원걸
    • 한국자동차공학회논문집
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    • 제6권1호
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    • pp.16-26
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    • 1998
  • The major effective factors on the ride quality of a vehicle are the vibration and noise of the engine and drive system. Engine contributes about 80% of the vibration and noise in the vehicle, and exciting forces of the engine are transmitted onto the vehicle frame through the engine mount. This paper studies the vibration reduction of a vehicle through the improvement of the engine mount. A computer program for optimal design is developed and the engine mount conditions are optimized to reduce the WRMS of PSD of acceleration at the driver's seat, which are caused by the exciting forces at the idle speed. Design variables are selected as the stiffness, mount angle and the location of the engine mount rubber. It is shown through computer simulation that the PSD of acceleration at the driver's seat can be improved by redesigning the engine mount system.

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승차감 향상을 위한 에어셀시트의 모델링 및 능동제어 (Modeling and Active Control of an Air-Cell Seat for Ride-Comfort Improvement)

  • 홍금식;황수환;홍경태;유완석
    • 대한기계학회논문집A
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    • 제28권11호
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    • pp.1672-1684
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    • 2004
  • In this paper, an active vibration control with the use of an air-cell seat for passenger cars is investigated. The roles of the air-cell inserted between the polyurethane foam of the seat and seat cover are first to extend the seat's capability to adopt various shapes of human body and to improve the ride-comfort against road disturbances. The air-cell seat is modeled as a 1-d.o.f. spring-damper system. Because an exact modeling of the air-cell itself is alomost impossible, its dynamic characteristics are analyzed through experiments. A road-adaptive gain-scheduled sky-hook control for the air-cell seat system is proposed. The skyhook gains are scheduled in such a way that the acceleration level transmitted to human body on various road conditions is minimized. Simulations and experimental results are provided.

승용차량의 정차진동 주파수에 대한 불편함의 등감각곡선 (Equivalent Discomfort Curve on Idle Vibration Frequency of Passenger Vehicle)

  • 전경진;이재영;안세진;정의봉
    • 한국소음진동공학회논문집
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    • 제22권6호
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    • pp.535-541
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    • 2012
  • The three-down one-up method which is commonly used in the field of psychophysics is employed in this study that is to reveal how much magnitude of vibration makes discomfort in passenger vehicle on idle condition. Thirteen taxi drivers were invited for subject of the experiment where they evaluated the controlled vibrations on rigid seat in terms of idle vibration on passenger vehicle at frequency range from 15 Hz to 40 Hz. As the result, vibration of 100~105 dB is marginal range to make discomfort on passenger seat. Frequency dependency of the discomfort was found at the frequency range, which is the higher frequency the lower discomfort with the same magnitude of vibration. The frequency dependency found here was compared with ISO 2631-1 that is more sensitive at the frequency range.

농용 트랙터의 동특성 시뮬레이션 (III) - 주요 설계 변수가 좌석 진동에 미치는 영향 - (Simulation of Dynamic Characteristics of Agricultural Tractor (III) - Effect of Design Parameters on Seat Vibrations -)

  • 박홍제;김경욱
    • Journal of Biosystems Engineering
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    • 제24권3호
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    • pp.183-194
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    • 1999
  • Using the dynamic model and simulation program TDA developed in the previous paper, effects of design parameters of an agricultural tractor-trailer system on its vertical seat vibrations were investigated. The tractor-trailer system was excited by traversing over a half-sine bump. The excitation frequencies were determined by traveling velocity of the tractor and a half-sine bump selected appropriately. TDA predicted the autospectra of the vertical seat accelerations with different values of design parameters and compared them to analyze their effects. The design parameters included positions of engine, cab, and seat mountings as well as their dynamic properties. The results of this study suggested guidelines with which an improved structure of tractor may be developed in the early stage of design for a better ride quality.

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모터 전류 형상 제어 기술을 적용한 차량용 전동 시트 (Automobile Power Seat Using Motor Current Profile Control Technology)

  • 정명진
    • 전기전자학회논문지
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    • 제23권1호
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    • pp.224-229
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    • 2019
  • 시트는 운전 중에 운전자와 승차자의 편의를 제공하도록 요구된다. 최근 수동으로 동작하는 시트가 모터를 이용하여 자동으로 동작하는 전동 시트로 변화되고 있다. 시트에 모터를 적용함에 따라 과전류에 의해 발생하는 반전충격음, 진동 및 소음과 같은 문제가 발생하고 있다. 시트 모터의 제어를 통해 문제를 해결하려는 연구가 시도 되고 있다. 본 연구에서는 전동 시트에 사용되는 DC 모터에 흐르는 전류가 소프트 스타트와 소프트 스톱 형태를 갖도록 입력 전압의 형상을 결정하는 4개의 제어변수를 제어하는 기술 제안하였다. 전동 시트의 모델링을 통해 입력 전압에 대한 코일에 흐르는 전류의 관계식을 유도하고, 제어변수에 따른 시뮬레이션을 통해 소프트 스타트와 소프트 스톱 형태를 갖는 최적의 전류 형상의 구현이 가능함을 확인하였다.

상용승용차 시트프레임 부품의 중량 최적화에 관한 연구 (A Study on the Weight Optimization for the Passenger Car Seat Frame Part)

  • 장인식;민병조
    • 한국자동차공학회논문집
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    • 제14권5호
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    • pp.155-163
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    • 2006
  • Car seat is one the most important element to make comfortable drivability. It can absorb the impact or vibration during driving state. In addition to those factors, it is needed to have enough strength for passenger safety. From energy efficiency and environmental point of view lighter passenger car seat frame becomes hot issue in the auto industry. In this paper, weight optimization methodology is investigated for commercial car seat frame using CAE. Optimized designs for seat frame are developed using commercially available finite element code(ANSYS) and design of experiment method. At first, car seat frame is modelled using 3-D computer aided design tool(CATIA) and simplified for finite element modelling. Finite element analysis is carried out for the case of FMVSS 202 Head Restraint test to check the strength of the original seat frame. Two base brackets are selected as optimized elements that are the heaviest parts in the seat frame. After finite element analysis for the brackets with similar load condition to the previous test optimization technique is applied for 10% to 50% weight reduction. Design of experiment is utilized to obtain optimization design for the bracket based on the modified 50% weight reduction model in which outer shape of the bracket is conserved. Weight optimization models result in the decrease of the strength in spite of weight reduction. The more design points should be considered to get better optimized model. The more advanced optimization technique may be utilized for more parts of the seat frame to increase whole seat frame characteristics in the future.