• 제목/요약/키워드: NVH (Noise, Vibration and Harshness)

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중공 섬유를 이용한 자동차 흡음재 성능 향상 연구 (The Study on Improvement of Acoustic Performance for Automobile Sound-absorbing Materials Using Hollow Fiber)

  • 이정욱;이수남;심재현;정판기;이원구;방병주
    • 한국소음진동공학회논문집
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    • 제21권9호
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    • pp.850-857
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    • 2011
  • Generally, sound-absorbing materials in vehicles are used for giving the comfort to passengers by reducing noise while driving. Materials of which targets are light weight, high performance, eco friendliness and recycling have been developed recently. In this study, sound-absorbing materials using PET(polyethylene terephthalate) hollow fibers to achieve the light weight and the high sound absorption performance are developed, and then evaluated to meet a requirement for the automotive components. The test results show that the acoustic performances of developed products having new fiber structure are better than those of the conventional product.

The Future of NVH Research - A Challenge by New Powertrains

  • Genuit, Ing. K.
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2010년도 춘계학술대회 논문집
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    • pp.48-48
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    • 2010
  • Sound quality and NVH-issues(Noise, Vibration and Harshness) of vehicles has become very important for car manufacturers. It is interpreted as among the most relevant factors regarding perceived product quality, and is important in gaining market advantage. The general sound quality of vehicles was gradually improved over the years. However, today the development cycles in the automotive industry are constantly reduced to meet the customers' demands and to react quickly to market needs. In addition, new drive and fuel concepts, tightened ecological specifications, increase of vehicle classes and increasing diversification(increasing market for niche vehicles), etc. challenge the acoustic engineers trying to develop a pleasant, adequate, harmonious passenger cabin sound. Another aspect concerns the general pressure for reducing emission and fuel consumption, which lead to vehicle weight reductions through material changes also resulting in new noise and vibration conflicts. Furthermore, in the context of alternative powertrains and engine concepts, the new objective is to detect and implement the vehicle sound, tailored to suit the auditory expectations and needs of the target group. New questions must be answered: What are appropriate sounds for hybrid or electric vehicles? How are new vehicle sounds perceived and judged? How can customer-oriented, client-specific target sounds be determined? Which sounds are needed to fulfil the driving task, and so on? Thus, advanced methods and tools are necessary which cope with the increasing complexity of NVH-problems and conflicts and at the same time which cope with the growing expectations regarding the acoustical comfort. Moreover, it is exceedingly important to have already detailed and reliable information about NVH-issues in early design phases to guarantee high quality standards. This requires the use of sophisticated simulation techniques, which allow for the virtual construction and testing of subsystems and/or the whole car in early development stages. The virtual, testing is very important especially with respect to alternative drive concepts(hybrid cars, electric cars, hydrogen fuel cell cars), where complete new NVH-problems and challenges occur which have to be adequately managed right from the beginning. In this context, it is important to mention that the challenge is that all noise contributions from different sources lead to a harmonious, well-balanced overall sound. The optimization of single sources alone does not automatically result in an ideal overall vehicle sound. The paper highlights modern and innovative NVH measurement technologies as well as presents solutions of recent NVH tasks and challenges. Furthermore, future prospects and developments in the field of automotive acoustics are considered and discussed.

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승용차용 HVAC Case의 동특성 해석 (Dynamic Analysis of HVAC Case for Passenger Car)

  • 육지용;차용길;임정수;김광일;강성호
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2008년도 추계학술대회논문집
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    • pp.378-384
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    • 2008
  • This Paper presents dynamic analysis of HVAC(Heating Ventilation & Air Condition) Heater Case which consists of heater and evaporator unit for passenger car. To analyze the dynamic characteristics of HVAC Heater Case. finite element model which consists of shell elements is constructed for modal analysis and experimental Modal analysis has been conducted. Finite element analysis results are compared with experimental results to evaluate of validity of finite element model After identifying node shape and natural frequency of HVAC Heater Case, local stiffness of HVAC Case is evaluated through point mobility using finite element analysis and experiment.

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비선형 유한요소 해석프로그램(LS-DYNA)을 이용한 차량 동력학해석 (Vehicle Dynamic Analysis Using Nonlinear Finite Element Analysis Program(LS-DYNA))

  • 민한기;이현;양인영
    • 한국안전학회지
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    • 제17권3호
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    • pp.36-42
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    • 2002
  • Structural integrity of either a passenger car or a light truck is one of the basic requirements for a full vehicle engineering and development program. The results of the vehicle product performance are measured in terms of ride and handling, durability, noise/vibration/harshness(NVH), crashworthiness and occupant safety. The level of performance of a vehicle directly affects the marketability, profitability and, most importantly, the future of the automobile manufacturer. In this study, we used the virtual proving ground(VPG) approach for obtaining the dynamic characteristics. VPG approach uses a nonlinear, dynamic, finite element code(LS-DYNA3D) which expands the application boundary outside the classic linear, antic assumptions. VPG approach also uses realistic boundary conditions of tire/road surface interactions. To verify the predicted dynamic results, a single lane change test has been performed. The prediction results were compared with the experimental test results, and the feasibility of the integrated CAE analysis methodology was verified.

FCEV용 원심형 터보 블로워의 마운트 진동 저감에 관한 연구 (A Study on Mount Vibration Reduction of a Centrifugal Turbo Blower for FCEV)

  • 김윤석;이상권
    • 한국소음진동공학회논문집
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    • 제18권10호
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    • pp.1073-1081
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    • 2008
  • A centrifugal turbo blower of the fuel cell electric vehicle (FCEV) operates at very high speed above 30000 rpm in order to increase the pressure of the air, which supplied to a stack of FCEV, using rotation of its impeller blades. Vibration which originated from the blower is generated by unbalance of mechanical components, rotation of bearings and rotating asymmetry that rotate at high speed. The vibration is transmitted to receiving structure through vibration isolators and it can causes serious problems in the noise, vibration and harshness(NVH) performance. Thus, the study about reducing this kind of vibration is an important task. In this paper, dynamic analysis of the blower executed by numerical simulation and experimental analysis of the blower is also performed. Then, measured and simulated results are compared in order to validate of the simulation. Finally, reducing vibration through modifying mount stiffness is the main purpose of this paper.

공압식 능동형 엔진마운트 시스템의 TPA 출력변수간의 상관관계 분석 (Correlation Analysis of TPA Output Variables in a Pneumatic Active Engine Mount System)

  • 박혈우;이재천;최재용;김정훈
    • 한국자동차공학회논문집
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    • 제20권1호
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    • pp.46-52
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    • 2012
  • A PAEM(Pneumatic Active Engine Mount) system has been developed to improve NVH performance of a SUV in idle state. Control objective to attenuate the vibration of a vehicle should be determined prior to the design of control algorithm. This study presents the correlation analysis of output variables of PAEM system by means of TPA(Transfer Path Analysis) using experimental data obtained by vehicle test. The analysis results show that the vibration of vertical direction is more serious than those of longitudinal and lateral direction of the vehicle, and that the correlation between the vibration of front seat rail and that of steer wheel is highest. In conclusion, the vibrations of front seat rail and steer wheel in vertical direction should be considered as the control objectives of the PAEM.

차체골격내 복합체 삽입을 이용한 구조기인 아이들 소음저감 (Reduction of Structure-borne Idle Noise with the Insertion of a Composite Body inside Vehicle Body Skeleton)

  • 김효식;김중희
    • 한국소음진동공학회논문집
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    • 제22권4호
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    • pp.335-343
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    • 2012
  • As a matter of fact, it has been not allowed to modify the shape of a vehicle body skeleton since the technical definition for the structure was fixed and the corresponding molds were developed. By the way, if it is available to apply an alternative to reinforce the skeleton without changing its mold, it must be much flexible to improve the performance qualities relevant to not only NVH(noise, vibration and harshness) but also crash and durability. Recently, a solution of so-called composite body becomes available for the need. We present a design method to insert the composite body inside a vehicle body skeleton in order to improve a structure-borne noise at the idle condition. The algorithms, topology optimization and design sensitivity analysis, are applied to mainly search the sensitive structural sections in the body skeleton and to extract the target stiffness of the sections. Inserting the composite bodies into the sensitive portions, it is predicted to achieve the countermeasures which can compromize the design availability in terms of the idle noise and weight. According to the validation result with test vehicles, the concerned noise transfer function is reduced and the idle booming noise is resultantly improved.

승용차용 스티어링시스템 지지 T-형구조물의 최적설계 (Optimization of T-Structure Supporting Steering System Using μGA)

  • 이종수;김성철
    • 대한기계학회논문집A
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    • 제29권6호
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    • pp.809-814
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    • 2005
  • The goal of this paper is to minimize the weight of the T-structure supporting steering system in reducing the vibration level on steering wheel which could be amplified by the resonance. Presently, requirements for reducing noise, vibration and harshness (NVH) in automotive area are more stringent than ever. One of them is the vibration of steering system which occurs sometimes at high speeds or when the engine is idling. Besides, the reduction of weight is also one of requirements for improvement of vehicle performance. This paper used the micro genetic algorithm as an optimization method to satisfy above two requirements. The whole T-structure assembly including steering column was used for frequency analysis.

로터리 스웨이징 공정의 점진성형에 의한 중공 드라이브샤프트의 진동모드 및 내구특성 (Vibration Mode and Durability Characteristics of Automotive IDS using Rotary Swaging Process for Incremental Forming)

  • 임성주;이낙규;이지환
    • 한국자동차공학회논문집
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    • 제13권5호
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    • pp.127-133
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    • 2005
  • Rotary swaging is one of the incremental forming process which is a chipless process using the reduction of cross-sections of bars, tubes and wires. The TDS(Tube Drive Shaft) of monobloc used in automotive has been developed by the rotary swaging process. The mechanical characteristics of swaged parts such as the hardness, thickness and roughness are also estimated to conduct experimental analyses of rotary swaging process with the materials of 34Mn5 Furthermore the change in the vibration mode of TDS due to design parameters, which are the tube length, diameter and thickness, has been investigated and analysed. The weight of the TDS product is smaller by about $12.8\%$ than that of SDS with the same performance. It could be evidently found that the TDS is designed to be much lighter than SDS (Solid Drive Shaft). This advantage might give some possibility to improve the NVH (Noise-Vibration-Harshness) characteristics. A maximum torque and a total number of torsional repetitions for the TDS is checked and measured to know the torsional intensity and fatigue strength through the static torsion test and torsional durability test, respectively. A total number of the torsional repetitions up to the fracture for the TDS is greater than 250,000 times.

구조 및 NVH 성능을 고려한 복합재료 서브프레임 개발 (Development of Lightweight Composite Sub-frame in Automotive Chassis Parts Considering Structure & NVH Performance)

  • 한두헌;하성규
    • Composites Research
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    • 제32권1호
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    • pp.21-28
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    • 2019
  • 최근 환경 규제에 의하여 자동차 업계는 차량의 연비를 높이기 위해서 복합소재를 활용한 경량화 연구가 다양하게 진행되고 있다. 하지만 샤시계 부품들은 복합소재를 활용한 경량화 연구가 미진하다. 따라서 본 연구에서는 샤시계 부품 중 서브프레임에 복합재료를 활용하여 스틸 동등 수준의 강성, 강도 그리고 NVH 성능과, 50%의 경량화를 이끌어 내는 것이 목표다. 우선, 복합재료의 Damping 특성을 확인하기 위하여, 스틸과 복합재료 시편을 활용하여 고유 진동수를 1차 비교하였다. 본격적으로 서브프레임 개발에 들어가 강성, 강도를 극대화 할 수 있는 Lay-up Sequence를 제시하였고, 제작과정 중 경화에 의한 열 수축을 피할 수 있는 Lay-up Sequence를 제시하였다. 이 과정은 구조해석을 바탕으로 설계를 하였고, Modal 해석을 바탕으로 고유 진동수와 주파수 응답 그래프를 확인하였다. 설계 안을 바탕으로 프로토 타입 서브프레임을 제작하였고 단품 모달 실험을 통하여 구조해석 설계 안을 검증하였다. 나아가서 실차에 장착하여 공진점 확인 및 아이들링, 로드 노이즈 포함하여 실내 소음 진동 응답 비교를 하였고, 기존 스틸 서브프레임과 동등한 수준의 성능임을 확인하였다. 최종적으로 경량화는 기존 부품 대비 약 50% 무게 경량화 효과를 확인하였다.