• 제목/요약/키워드: Car Interior Design

검색결과 90건 처리시간 0.024초

PROCESS OF DESIGNING BODY STRUCTURES FOR THE REDUCTION OF REAR SEAT NOISE IN PASSENGER CAR

  • Kim, K.C.;Kim, C.M.
    • International Journal of Automotive Technology
    • /
    • 제8권1호
    • /
    • pp.67-73
    • /
    • 2007
  • This study analyzes the interior noise that is generated during acceleration of a passenger car in terms of car body structure and panel contribution. According to the transfer method, interior noise is classified into structure-borne noise and air-borne noise. Structure-borne noise is generated when the engine's vibration energy, an excitation source, is transferred to the car body through the engine mount and the driving system and the panel of the car body vibrates. When structure-borne noise resonates in the acoustic cavity of the car interior, acute booming noise is generated. This study describes plans for improving the car body structure and the panel form through a cause analysis of frequency ranges where the sound pressure level of the rear seat relative to the front seat is high. To this end, an analysis of the correlation between body attachment stiffness and acoustic sensitivity as well as a panel sensitive component analysis were conducted through a structural sound field coupled analysis. Through this study, via research on improving the car body structure in terms of reducing rear seat noise, stable performance improvement and light weight design before the proto-car stage can be realized. Reduction of the development period and test car stage is also anticipated.

고감성 인조피혁개발을 위한 제품중심 공정설계 시스템 (A Product-Focused Process Design System(PFPDS) for High Comforts Artificial Leather Fabrics)

  • 김주용;박백성;이채정
    • 한국염색가공학회지
    • /
    • 제20권6호
    • /
    • pp.69-74
    • /
    • 2008
  • In this paper, a comfort evaluation system based on a product-focused process design (PFPD) has been proposed for high comforts interior seat covers. Correlations between comforts properties and physical/thermal properties of interior seat covers were examined by combining traditional regression analysis and data mining techniques. A skin sensorial comfort of leather samples was evaluated by only human tactile sensation. The adjectives of leather car seat covers are 'Soft', 'Sticky' and 'Elastic'. Thermo-physiological comfort properties of leather samples were evaluated by only human tactile sensation. The adjectives of leather car seat covers are 'Coolness to the touch' and 'Thermal and humid'. Skin sensorial comforts of cloth samples were evaluated by only human tactile sensation. The adjectives of cloth car seat covers are 'Soft', 'Smooth', 'Voluminous' and 'Elastic'. Thermo-physiological comforts of cloth samples were evaluated by only human tactile sensation. The adjectives of cloth car seat covers are 'Coolness to the touch' and 'Thermal and humid'.

자동차 인테리어의 사용성 분석에 관한 사례연구 II-센터페시아(center fascia)를 중심으로- (A case study on usability analysis of a car interior II)

  • 최승원;임지영;박영목;김철수;박종서
    • 한국디자인학회:학술대회논문집
    • /
    • 한국디자인학회 2000년도 추계 학술발표대회 논문집
    • /
    • pp.124-125
    • /
    • 2000
  • 과거의 자동차 인테리어 디자인은 스타일링이나 인간공학적 측면을 주로 배려하여 디자인되어 왔다. 그러나 시간의 흐름에 따른 사용자의 가치 및 요구(needs)의 다양화, 흑은 관련 기술의 발전에 따라 "주행" 중 "제어"해야하는 많은 기능들이 추가됨에 따라 이러한 다양한 조작 대상들을 동시에 조작하거나 조작하기 위한 학습이 점점 더 어려워지고 있는 실태이다. (중략)

  • PDF

자동차 인테리어의 사용성 분석에 관한 사례연구I ­운전석을 중심으로­ (A case study on usability analysis a car interior I)

  • 양수선;김병길;김철수;박영목;박종서
    • 한국디자인학회:학술대회논문집
    • /
    • 한국디자인학회 2000년도 추계 학술발표대회 논문집
    • /
    • pp.8-9
    • /
    • 2000
  • 기존의 자동차 인테리어 디자인은 인간공학적이나 스타일링을 위주로 하는 경우가 많았다. 그러나 본 연구는 운전자의 '사용성' 이라는 측면에서 운전부를 중심으로 운행에 관계된 이그니션콘트롤(ignition control), 멀티펑션스위치(multi function switch)와 차량의 상태를 알려주는 클러스터게이지(cluster gauge)를 중심으로 조사해 보았다. (중략)

  • PDF

뇌파를 이용한 적정 자동차 내부소음의 평가 (Evaluation of Car Interior Noise by Using EEG)

  • 김정룡;박창순
    • 산업경영시스템학회지
    • /
    • 제24권65호
    • /
    • pp.65-73
    • /
    • 2001
  • In this study, psychophysiological stress was quantitatively evaluated at various car interior noise levels by using Electroencephalogram(EEG). An experiment was performed to investigate the most comfortable range of noise level during simulated driving condition. Twelve healthy volunteers participated in the experiment. They were asked to operate the driving simulator while six levels of interior noise were given, such as 45dB(A), 50dB(A), 55dB(A), 60dB(A), 70dB(A), 80dB(A), and maximal subjective noise level. EEG signals were recorded for 60 seconds in each noise level. The power spectral analysis was performed to analyze EEG signal. At the same time, psychological stress was also measured subjectively by using a magnitude estimation method. The results showed that subjective stress and EEG spectrum indicated a statistically significant difference between noise levels. In particular, high level noise produced an increase in beta power at temporal(T3, T4) areas. It was also found that beta activity was highly correlated with subjective perception of discomfort, and subjects responded to car interior noise as arousing or negative stimuli. Moreover, beta power remained stable above 70dB(A), whereas subjective discomfort continued to increase even above 70dB(A) We concluded that brain waves could provide psychophysiological information of drivers emotional reaction to car interior noise. Thus, EEG parameters could be a new measure to determine optimal noise level in ergonomic workplace design after further verification in various experimental conditions.

  • PDF

승용차 차실모델의 진동 및 소음특성에 관한 연구 (A Study on the vibration and noise characteristics of vehicle compartment model)

  • 김석현
    • 산업기술연구
    • /
    • 제9권
    • /
    • pp.87-99
    • /
    • 1989
  • It is desirable to predict the noise and vibration problems of a passenger car in its design stage for a better ride quality. Dominant frequencies of the noise inside a car range from about 50 Hz to 300 Hz and these are frequently caused by the coupling of the acoustic normal modes of the compartment cavity and structural modes of the body. In this paper, car interior noise problem is investigated in view of vibration-acoustic modes coupling and numerical simulation is performed on the interior noise. In the simulation, experimental modal data of the vehicle structure are utilized to improve the accuracy of the analysis. The results are in good agreement with those of experiment on a half scaled vehicle compartment model. Especially, strongly coupled modes can be predicted, which give useful informations to solve noise problems of real car at design stage.

  • PDF