• Title/Summary/Keyword: 자동차 휠

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인공현실감 기술을 이용한 자동차 주행환경의 개발

  • 윤정선;김창수;조영건;김철중
    • Proceedings of the ESK Conference
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    • 1996.04a
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    • pp.270-275
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    • 1996
  • 본 연구에서는 인공현실감 기술을 이용하여 일종의 시뮬레이터라고 할 수 있는 자동차 주행환경을 개발하였다. 이 시스템은 Pentium PC에서 구현되었고 운전을 위하여 스티어링 휠, 클러치, 브레이크, 액 셀을 사용하였으며 속도출력을 위하여 스피드메타를 사용하였다. 이러한 입출력 장치를 하나의 통합된 모듈로 만들어서 8255 인터페이스 카드를 통하여 컴퓨터와 접속시켰다. 음향효과를 위하여 MIDI 인터페 이스, 샘플러, 스피커를 사용하였고 효과음은 샘플링하여 사용하였다. 이 밖에도 3차원 그래픽 디스플레 이를 위하여 CrystalEyes가 사용되었다. 가상세게 모델링을 위한 소프트웨어로는 Superscape VRT4.0이 사용되었다. 그래픽으로는 도심 시내 주행환경을 구현하였고, 모든 객체들은 실물 크기 비율로 그렸다. 자동차의 운전 메카니즘은 자동차 동역학을 모델링하여 계산하였다. 이러한 시스템은 주행시 운전자의 자세 및 생리신호를 측정하기 위한 환경으로 사용될 수 있으며 또한 교통안전표지나 신호등과 같은 도로 환경의 인간공학적 평가를 위해서도 사용될 수 있다.

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Vibration Analysis of Automobile Tire Due to Road Impact (노면으로부터 충격을 받는 자동차 타이어의 진동해석)

  • 이태근;김병삼
    • The Journal of the Acoustical Society of Korea
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    • v.22 no.6
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    • pp.505-511
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    • 2003
  • As the technique of automobile industry is being advanced, the advancement of vehicle ride is being required. In order to achieve this purpose, the study on the vibration which are produced by moving vehicle is carried out actively. In order to analysis, the tire vibration characteristics for passing over a cleat, the tire is modeled with 7-DOFs (degree of freedom). The model is verified against simulations and experiments. The effects of proposed tire design parameters such as the tire tread rubber, tread ring, apex are considered. According to the results of analysis, the tire design parameters that can reduce the tire and wheel vibration quantity are conducted.

A Design of an Automotive Wheel Bearing Unit for Long Life (자동차 휠 베어링 유닛의 장수명 설계)

  • Yun, Gi-Chan;Choe, Dong-Hun
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.24 no.2 s.173
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    • pp.319-328
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    • 2000
  • This paper presents a new design method of the 1 generation wheel bearing unit using a numerical optimization technique in order to increase bearing fatigue life. For calculating the fatigue life, a method of load analysis is studied on the automotive wheel bearing system. The design variables selected are ball size, initial contact angle, number of balls, pitch diameter, pre-load, and distance between ball centers. The method of feasible directions in ADS (Automated Design Synthesis) is utilized to automatically find the optimum design variables. To validate the design method, a computer program is developed and applied to a practical passenger car model. The optimum design results demonstrated the effectiveness of the proposed design method showing that the system life of the optimally designed wheel bearing unit is enhanced in comparison with that of the initial ones within the given available design space.

An Study on Vibration Characteristics of Automobile Al-alloy Wheel (자동차 알루미늄 합금 휠의 진동특성에 관한 연구)

  • Kim Byoung-Sam
    • Transactions of the Korean Society of Machine Tool Engineers
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    • v.14 no.3
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    • pp.122-127
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    • 2005
  • The styling of automobile wheels and their effect on vehicle appearance has increased in importance in recent years. The wheel designer has been given the task of insuring that a wheel design meets its engineering objectives without affecting the styling theme. The wheel and tire system is considered as a vehicle component whose dynamic modal information of the tire/wheel system are employed in the modal synthesis model of the vehicle. The vibration characteristics of a automobile wheel play an important role to judge a ride comfort and quality for a automobile. In this paper, the vibration characteristics of a Al-alloy and steel wheel for automobile are studied. Natural frequency, damping and mode shape are determined experimentally by frequency response function method. Results show that wheel material property, size and design are parameter for shift of natural frequency and damping.

Study on the Dynamic Characteristics of a Manual Transmission Using Linear Models (선형모델을 이용한 수동변속기의 동적 특성 연구)

  • Yoon, Jong-Yun;Lee, Iljae
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.23 no.3
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    • pp.240-248
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    • 2013
  • Torsional vibrations, such as the gear rattle of the manual transmission in vehicle systems, are correlated with the firing stroke from the engine. These vibro-impacts can be examined based upon linear time-invariant analysis. In order to understand the gear dynamics, a specific manual transmission with a front-engine front-wheel drive configuration is investigated. A method to reduce the degrees of freedom is suggested based upon the eigensolutions and frequency response functions, which will lead to the development of an efficient matrix size. The dynamic characteristics of single- and dual-mass flywheels are then compared. The effect of the dual-mass flywheel is investigated based upon the mobility analysis, which will lead to understanding of the concepts for avoiding vibro-impacts. A linear time-invariant system model is examined by employing the effective clutch stiffness from a two-stage clutch damper. Thus, the relationship between the dynamic characteristics and the clutch damper can be predicted by assuming a combination of different stage stiffness levels.

Development of smart car intelligent wheel hub bearing embedded system using predictive diagnosis algorithm

  • Sam-Taek Kim
    • Journal of the Korea Society of Computer and Information
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    • v.28 no.10
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    • pp.1-8
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    • 2023
  • If there is a defect in the wheel bearing, which is a major part of the car, it can cause problems such as traffic accidents. In order to solve this problem, big data is collected and monitoring is conducted to provide early information on the presence or absence of wheel bearing failure and type of failure through predictive diagnosis and management technology. System development is needed. In this paper, to implement such an intelligent wheel hub bearing maintenance system, we develop an embedded system equipped with sensors for monitoring reliability and soundness and algorithms for predictive diagnosis. The algorithm used acquires vibration signals from acceleration sensors installed in wheel bearings and can predict and diagnose failures through big data technology through signal processing techniques, fault frequency analysis, and health characteristic parameter definition. The implemented algorithm applies a stable signal extraction algorithm that can minimize vibration frequency components and maximize vibration components occurring in wheel bearings. In noise removal using a filter, an artificial intelligence-based soundness extraction algorithm is applied, and FFT is applied. The fault frequency was analyzed and the fault was diagnosed by extracting fault characteristic factors. The performance target of this system was over 12,800 ODR, and the target was met through test results.

POWER AND ENERGY STORAGE DEVICES FOR NEXT GENERATION HYBRID ELECTRIC VEHICLE (차세대 복합형 전기자동차의 전력 및 에너지 저장장치)

  • Kim, Min-Huei
    • Journal of the Korean Society of Industry Convergence
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    • v.1 no.1
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    • pp.31-41
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    • 1998
  • Fuel conservation and environmental pollution control are the principal motivating factors that are urging at present widespread research and development activities for electric hybrid vehicles throughout the world. The paper describes different possible energy storage devices, such as battery, flywheel and ultra capacitor, and power sources, such as gasoline engine, diesel engine, gas turbine and fuel cell for next generation hybrid electric vehicle. The technology trend and comparison in energy storage and power devices indicate that battery and gasoline engine, respectively will remain the most viable devices for hybrid vehicle at least in the near future.

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A Selection of Initial Contact Angle of Automotive Wheel Bearing Units (차륜용 베어링 유니트의 초기 접촉각 선정)

  • 안태길;이상훈;현준수
    • Transactions of the Korean Society of Automotive Engineers
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    • v.10 no.1
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    • pp.162-167
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    • 2002
  • An automotive wheel bearing is one of the most important components to guarantee the service life of a passenger car. The endurance life of a bearing is affected by many parameters such as material properties, heat treatment, lubrication conditions, temperature, loading conditions, bearing geometry, internal clearance and so on. In this paper, we analyze the relation between loads and deformations of wheel bearing units. On the basis of it, we calculate the endurance life of wheel bearing units and suggest a method to determine the initial contact angle to achieve a maximum endurance life with considering stress concentration.

Analysis of the Crankshaft Speed Fluctuation in Intra-Cycle (사이클 내 크랭크축 각속도의 변동 해석)

  • 배상수;임인건;김세웅;김응서
    • Transactions of the Korean Society of Automotive Engineers
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    • v.4 no.2
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    • pp.166-172
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    • 1996
  • This paper presents the characteristics of the crankshaft speed fluctuations. To analyze them, the speed waveforms were measured both at the flywheel and at the front end of the engine. The speed waveform measured at the flywheel shows better result than at the front end one, because of the torsional vibration and the auxiliary components. And the patterns of the speed fluctuations are classified into three region, such as low load, middle load and high load region with the variations of the loads. Additionally, as the engine speeds increase and the loads decrease, the analysis of the speed becomes more difficult due to lower variation of the speed. And in all the regions, the main frequency component of the speed fluctuation is firing frequency.

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Performance Simulation for a Dual Mass Flywheel using Discrete Model of Arcspring (아크스프링의 이산화 모델을 사용한 DMF 성능 시뮬레이션)

  • 김태현;김민성;송한림;어순기;김현수
    • Transactions of the Korean Society of Automotive Engineers
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    • v.12 no.4
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    • pp.146-153
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    • 2004
  • This paper presents a discrete analysis approach to investigate the performance of dual mass flywheel (DMF). In the discrete analysis, arcspring installed between the flywheels is modeled as N- discrete elements. Each element consists of mass, spring and nonlinear friction element. LuGre friction model is used to describe nonlinear friction characteristic. Based on the dynamic models of the DMF, clutch, engine, manual transmission and vehicle, a DMF performance simulator is developed using MATLAB Simulink. Simulation results of the engine speed, driveshaft torque and vehicle velocity are compared with test results. It is found that the discrete DMF model describes the vehicle behavior closely, especially during the clutch actuation period.