• 제목/요약/키워드: Engine Mount Optimization

검색결과 29건 처리시간 0.022초

차체의 유연성을 고려한 엔진마운트 최적설계 (Optimum Design of Engine Mount System Considering Body Flexibility)

  • 황인수;김태욱;박우선;고병식
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 1997년도 추계학술대회논문집; 한국과학기술회관; 6 Nov. 1997
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    • pp.319-325
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    • 1997
  • As customer's demand for vehicle comfort is getting increased, vibration problem is very important issue in vehicle development. Engine is the main factor causing vehicle vibration, so that we should isolate detrimental transmitted excitation from engine. In order to solve this problem engine mounting system was properly optimized. Simulation was performed not only rigid body mode analysis but also flexible body mode analysis. We obtained the optimal locations and stiffness of engine mounts from simulation results, and had reasonable results from considering flexible body mode than only rigid body mode analysis.

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향상된 유전알고리듬을 이용한 유체마운트의 최적화 (Optimization of Engine Mount Using an Enhanced Genetic Algorithm)

  • 안영공;김영찬;양보석
    • 한국소음진동공학회논문집
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    • 제12권12호
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    • pp.935-942
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    • 2002
  • When designing fluid mounts, design parameters can be varied in order to obtain a desired notch frequency and notch depth. The notch frequency is a function of the mount parameters and is typically selected by the designer to occur at the vibration disturbance frequency. Since the process of choosing these parameters can involve some trial and error, it seems to be a great application for obtaining optimal performance of the mount. Many combinations of parameters are possible to give us the desired notch frequency, but the question is which combination provides the lowest depth. Therefore. an automatic optimal technique is needed to optimize the performance of the fluid mount. In this study. the enhanced genetic algorithm (EGA) is applied to minimizing transmissibility of a fluid mount at the desired notch frequency, and at the notch and resonant frequencies. The EGA is modified genetic algorithm to search global and local optimal solutions of multi-modal function optimization. Furthermore. to reduce the searching time as compare to conventional genetic algorithm and Increase the precision of the solutions, the modified simplex method is combined with the algorithm. The results show that the performance of the optimized mount by using the hybrid algorithm is better than that of the conventional fluid mount.

인공생명 알고리듬을 이용한 유체마운트의 최적설계 (Optimal Design of Fluid Mount Using Artificial Life Algorithm)

  • 안영공;송진대;양보석;김동조
    • 한국소음진동공학회논문집
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    • 제12권8호
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    • pp.598-608
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    • 2002
  • This paper shows the optimal design methodology for the fluid engine mount by the artificial life algorithm. The design has been commonly modified by trial and error because there is many design parameters that can be varied in order to minimize transmissibility at the desired fundamental resonant and notch frequencies. The application of trial and error method to optimization of the fluid mount is a great work. Many combinations of parameters are possible to give us the desired resonant and notch frequencies, but the question is which combination Provides the lowest resonant peak and notch depth. In this study the enhanced artificial life algorithm is applied to get the desired fundamental resonant and notch frequencies of a fluid mount and to minimize transmissibility at these frequencies. The present hybrid algorithm is the synthesis of and artificial life algorithm with the random tabu (R-tabu) search method. The hybrid algorithm has some advantages, which is not only faster than the conventional artificial life algorithm, but also gives a more accurate solution. In addition, this algorithm can find all globa1 optimum solutions. The results show that the performance of the optimized mount compared with the original mount is improved significantly.

소형 승용차의 파워트레인 마운트 Stop&Go 성능 적용을 위한 의사결정모델 (Decision Making Model for Powertrain Mount-Stop&Go Performance in a compact mobile)

  • 유정우;엄인섭;이홍철
    • 한국산학기술학회논문지
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    • 제13권3호
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    • pp.967-976
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    • 2012
  • 본 논문은 자동차 환경규제에 따른 CO2 감소 및 연비향상을 위하여 Stop&Go 기능을 적용한 소형 승용차에 대한 파워트레인 마운트 (Powertrain Mount) 의 진동 소음 최적화 방향을 제시하였다. 이를 위해 현재 "A" 차량에 적용중인 파워트레인 마운트 시스템을 분석한 후 다구찌 기법을 활용하여 파워트레인 마운트에 적용된 고무 동특성에 대한 다양한 변수를 제시하였고, 고무의 동특성 변수에 의해 만들어진 테스트 제품을 AHP(Analytic Hierarchy Process)기법을 적용하여 Stop&Go 기능에 적합한 진동 소음의 최적화 정도를 검증하였다. 이와 같은 시스템을 파워트레인 마운트의 초기 디자인 검증에 적용함으로써, 파워트레인 마운트의 고무 동특성에 대한 엔지니어링 노하우 (Engineering Know-How) 없이도 엔진의 움직임으로 야기되는 진동 소음의 문제점을 파악하고 이를 효과적으로 제어하는데 큰 역할을 할 것으로 예상된다.

중형 세단 차량의 흡기 전동 CVVT 소음 개발 (Development of an Intake E-CVVT Noise for the Medium-sized Sedan Vehicle)

  • 이종규;이형민;이해승;권오준
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2014년도 추계학술대회 논문집
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    • pp.341-346
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    • 2014
  • Intake E-CVVT noise, generally caused by collision sound of roller and cage clearance at idle and driving condition, is considerable source of annoyance in passenger cars using the gasoline engine. Main source of this noise is the cam torque variation of an intake E-CVVT system, and can be controlled by clearance decrease such as backlash reduction, but which may increase the manufacturing cost. Thus in this paper, most effective solution for low noise intake E-CVVT was achieved through not only reduction of backlash and cam angular acceleration but also improvement of vehicle transfer system, which is optimal configuration through acoustic sensitivity optimization of engine mount support bracket.

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공회전시 차량의 소음진동현상의 질적개선에 대한 고찰 (Idle Quality Optimization Study)

  • 이민섭
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2003년도 춘계학술대회논문집
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    • pp.342-352
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    • 2003
  • Idle NVH characteristics are one of the most important aspects among the vehicle performances. Vehicle developers are devoted to improve vehicle interior noise and steering wheel and seat vibrations. In order to improve the idle quality, noise and vibration transfer path should be carefully evaluated. Also, effects of various components related to the idle performance should be confirmed. A general procedure for improving the idle qualify is described in detail. The relationship among cylinder pressure characteristics, crankshaft rotational speed variation, and vehicle vibrations is also investigated. Influences of drive shaft, torque converter, air conditioning system, vehicle structure including engine mount system, and idle control parameters on the vehicle idle quality are studied. Weak points of typical vehicles on the idle qualify are identified. Some of improvement measures are proposed and verified.

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NH3 전환효율 극대화를 위한 Urea 인젝터의 분사 최적화에 관한 수치적 연구 (A Numerical Study on the Optimization of Urea Solution Injection to Maximize Conversion Efficiency of NH3)

  • 문성준;조낙원;오세두;정수진;박경우
    • 한국자동차공학회논문집
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    • 제22권3호
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    • pp.171-178
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    • 2014
  • From now on, in order to meet more stringer diesel emission standard, diesel vehicle should be equipped with emission after-treatment devices as NOx reduction catalyst and particulate filters. Urea-SCR is being developed as the most efficient method of reducing NOx emissions in the after-treatment devices of diesel engines, and recent studies have begun to mount the urea-SCR device for diesel passenger cars and light duty vehicles. That is because their operational characteristics are quite different from heavy duty vehicles, urea solution injection should be changed with other conditions. Therefore, the number and diameter of the nozzle, injection directions, mounting positions in front of the catalytic converter are important design factors. In this study, major design parameters concerning urea solution injection in front of SCR are optimized by using a CFD analysis and Taguchi method. The computational prediction of internal flow and spray characteristics in front of SCR was carried out by using STAR-CCM+7.06 code that used to evaluate $NH_3$ uniformity index($NH_3$ UI). The design parameters are optimized by using the $L_{16}$ orthogonal array and small-the-better characteristics of the Taguchi method. As a result, the optimal values are confirmed to be valid in 95% confidence and 5% significance level through analysis of variance(ANOVA). The compared maximize $NH_3$ UI and activation time($NH_3$ UI 0.82) are numerically confirmed that the optimal model provides better conversion efficiency of $NH_3$. In addition, we propose a method to minimize wall-wetting around the urea injector in order to prevent injector blocks caused by solid urea loading. Consequently, the thickness reduction of fluid film in front of mixer is numerically confirmed through the mounting mixer and correcting injection direction by using the trial and error method.