• 제목/요약/키워드: 기어 트레인

검색결과 31건 처리시간 0.025초

풍력발전기용 기어트레인의 특성에 관한 연구 (An Investigation on the Characteristics of Gear Trains of Wind turbines)

  • 박노길;이형우
    • Journal of Advanced Marine Engineering and Technology
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    • 제34권6호
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    • pp.806-815
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    • 2010
  • 풍력발전기용 증속기는 유성기어시스템과 헬리컬기어(또는 스퍼기어) 쌍으로 구성된다. 본 연구에서는 AGMA2001 및 ISO281기준으로 설계된 기존 및 제안된 기어열로 구성된 기어트레인들에 대하여 동력전달 특성들을 비교 분석하였다. 기어트레인의 레이아웃 설계는 기어트레인의 총중량, 출력밀도, 99% 수명시간, 최대 기어 굽힘/면압응력이 산출되었다. 설계에 사용된 설계요구조건들은 블레이드 접선속도 40 ~ 100 m/s, 1000 ~ 1800 rpm 의 발전기 입력속도, 그리고 1 ~ 8 MW의 동력 범위이다. 따라서 본 연구에서 도출된 기어열의 특성들은 기어트레인의 고 신뢰성/초 경량화 설계에 기초자료로 활용될 수 있다.

2.5MW 풍력발전기 동력분기식 기어트레인의 진동특성 (Vibration characteristics of power differential gear train for 2.5MW wind turbine)

  • 김정수;박노길;이형우
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권3호
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    • pp.253-261
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    • 2014
  • 본 연구에서는 스퍼 유성기어시스템 2단, 헬리컬기어 시스템 1단으로 구성되어 있고, 메인 축과 증속기가 플랜지 결합되어 있는 동력분기식 2.5MW 풍력발전기에 대해 진동해석을 수행하였다. 유성기어시스템, 헬리컬기어시스템, 메인 축 등은 MASTA 상용프로그램으로 모델링하고, 기어박스 케이스, 토크암, 유성캐리어, 플랜지 등은 유한요소법으로 모델링하였으며, 부분구조합성법으로 조합하여 진동해석을 수행하였다. 2.5MW 동력분기식 풍력발전기 기어트레인의 고유진동 특성 해석을 수행하였고, 블레이드 풍하중에 의한 가진, 질량불평형, 축 어긋남 등에 발생하는 가진원에 대해 위험속도 분석을 하였다.

5MW급 풍력발전기용 기어박스 하우징의 형상 최적설계 (Optimum Shape Design of Gearbox Housing for 5MW Wind Turbines)

  • 정기용;이대연;최은호;조진래;임오강
    • 한국전산구조공학회논문집
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    • 제25권3호
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    • pp.237-243
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    • 2012
  • 5MW급 풍력발전용 기어박스의 효율적인 구조해석과 근사모델을 생성하여 경량화를 위한 형상 최적설계를 수행하였다. 풍력발전용 기어박스의 구조는 기어 트레인, 축, 베어링, 하우징과 같이 복잡한 구성요소로 이루어져 있어 구조해석에 많은 요소 수를 요구하고 있다. 본 연구에서는 헬리컬 기어의 치강성 계수를 고려한 효과적인 기어박스의 구조해석 모델을 생성하였다. 치강성 계수를 사용한 유성 기어열은 상대적으로 적은 요소 수와 해석시간으로도 전체 기어박스 시스템의 구조해석과 형상 최적화를 가능케 한다. 치강성을 이용한 단순화된 해석모델과 근사모델을 적용하여 하우징 무게에 영향이 큰 부위의 두께를 설계변수로 설정하여 케이스 최적설계안을 도출하였으며, 최적설계를 위해 사용된 근사모델의 신뢰성과 최적 기어박스 하우징 형상의 수치해석을 통해 타당성을 검증하였다.

21톤급 휠 굴착기용 트랜스미션의 기어 트레인에 대한 강도 해석 (Strength Analysis of Complex Gear Train for Transmission of 21-Ton Grade Wheel Excavator)

  • 이준희;배명호;조연상
    • Tribology and Lubricants
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    • 제38권5호
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    • pp.179-184
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    • 2022
  • The power train of transmission for 21-ton grade wheel excavator makes use of a complex gear train composed of a planetary and helical gear system to drive the wheel excavator by transmitting power to the axle. The complex gear train with a shift mode is an important part of the transmission because of strength problems in an extreme environment. To calculate the specifications of the complex gear train and analyze the gear bending and compressive stresses of the complex gear train, this study analyzes gear bending and compressive stresses accurately for the optimal design of the complex gear train with respect to cost and reliability. In this article, the gear bending and compressive stresses of the complex gear train are calculated using the Lewes and Hertz equation. Evaluating the results with the data of the allowable bending and compressive stress from the stress and number of cycles curves of the gears verified the calculated specifications of the complex gear train. A computer structure analysis is performed with the 3D model of the planetary and helical gears to analyze the structure strength of the complex gear train. The results demonstrate that the durability and strength of the complex gear train are safe, because the safety factors of the bending and compressive stresses are more than 1.0.

PSIM기반의 유성기어를 사용한 직병렬 혼합형 하이브리드 자동차의 파워트레인 모델링 (PSIM based Modeling of a Series-Parallel Hybrid Electric Vehicle Powertrain Using Planetary Gear)

  • 배태석;임덕영;최재호
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2011년도 추계학술대회
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    • pp.293-294
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    • 2011
  • 본 논문에서는 유성기어를 사용한 직병렬 혼합형 하이브리드 자동차(SPHEV)의 파워트레인 모델링과 하이브리드 자동차의 모드(전기자동차 모드(EV), 엔진 모드, 하이브리드 모드(HEV) 등등)변화에 따른 파워 분배 및 동특성 해석에 대하여 기술한다. 내연기관, 전동기, Energy Storage System(ESS)과 같은 구성요소들의 정격은 에너지 개념과 Electrical Peaking Hybrid(ELPH)를 이용하여 설계하였으며, 동특성 분석을 위하여 전력전자 분야 에서 널리 사용되고 있는 시뮬레이션 툴인 PSIM을 이용하여 모델링 하였다.

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유성기어 효율을 고려한 입력분기 기반 하이브리드 전기자동차의 동력전달 효율 해석 (Analysis of Powertrain Efficiency for Input Split Type Hybrid Electric Vehicle considering Planetary-gear Efficiency)

  • 김정민
    • 한국자동차공학회논문집
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    • 제23권5호
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    • pp.508-514
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    • 2015
  • In this paper, the powertrain efficiency is analyzed for the input split type hybrid electric vehicle. For considering the powertrain loss, the power loss models of planetary gear and motor are applied. And, the mathematic equations of powertrain speed and torque are found by using the lever analogy. With the above models and equations, the powertrain efficiency is analyzed for the 0 to 180 km/h vehicle velocity range. From the analysis results, it is found that the transmission efficiency with the power loss of planetary gear is smaller maximum 2.1% than the transmission efficiency without the power loss of planetary gear.

1.7톤급 소형 굴착기용 주행 감속기의 복합 유성기어류에 대한 강도 평가 (Strength Evaluation of Complex Planetary Gear Train of Traveling Reducer for 1.7-Ton Grade Small Excavator)

  • 남석주;배명호;조연상
    • Tribology and Lubricants
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    • 제38권1호
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    • pp.22-26
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    • 2022
  • A 1.7-ton grade small excavator is a construction equipment that can perform various functions in limited spaces where heavy equipment cannot enter easily. Owing to the recent acceleration of urbanization, it has been used increasingly in drainage and gas pipes, as well as for road repair works in urban areas. The power train of a traveling reducer for a 1.7-ton grade small excavator utilizes a complex planetary gear system. Complex planetary gears are vital to the power train of a traveling reducer as it mitigates the fatigue strength problem. In the present study, the specifications of a complex planetary gear train are calculated; furthermore, the gear bending and compressive stresses of the complex planetary gears are analyzed to achieve an optimal design of the latter in terms of cost and reliability. In this study, the actual gear bending and compressive stresses of a planetary gear system are analyzed using a self-developed gear design program based on the Lewes and Hertz equation. Subsequently, the calculated specifications of the complex planetary gears are verified by evaluating the results with the data of allowable bending and compressive stress based on curves of stress vs. number of cycles of the gears.

전기구동 파워트레인의 감속기어비 설계를 위한 농용 트랙터의 작업 부하 분석 (Analysis of Agricultural Working Load Experiments for Reduction Gear Ratio Design of an Electric Tractor Powertrain)

  • 김정윤;박영일
    • 한국자동차공학회논문집
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    • 제20권5호
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    • pp.138-144
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    • 2012
  • Recent environmental issues such as exhaust gas and greenhouse effect make the agricultural machinery market takes into account the hybrid and electric propulsion technology used in automotive engineering. Generally the agricultural machinery, particularly an agricultural tractor, needs large load capacity and long continuous operating time comparing with conventional vehicles. In case of a pure electric tractor, it is necessary for considering large capacity batteries and long charging time. Therefore we take an AER extended PHEV (All Electric Range extended Plug-in Hybrid Electric Vehicle) power transmission system in developing an electric tractor in this study. First we propose a PHEV powertrain structure in order to substitute the conventional diesel engine equipped tractor. And we performed the road tests using a conventional mechanical tractor with various load conditions, which were classified and statistically treated real agricultural works. The test results were analysed with respect to the power characteristics of the power source. Finally using the test result, we designed two-stepped reduction gear ratios in the proposed an electric tractor powertrain for carrying out typical agricultural works.

풍력발전용 피치 드라이브 시스템의 복합 유성기어류에 대한 피로 강도해석 (Fatigue Strength Analysis of Complex Planetary Gear Train of the Pitch Drive System for Wind Turbines)

  • 김광민;배명호;조연상
    • Tribology and Lubricants
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    • 제37권2호
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    • pp.48-53
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    • 2021
  • Wind energy is considered as the most competitive energy source in terms of power generation cost and efficiency. The power train of the pitch drive for a wind turbine uses a 3-stage complex planetary gear system in being developed locally. A gear train of the pitch drive consists of an electric or hydraulic motor and a planetary decelerator, which optimizes the pitch angle of the blade for wind generators in response to the change in wind speed. However, it is prone to many problems, such as excessive repair costs in case of failure. Complex planetary gears are very important parts of a pitch drive system because of strength problem. When gears are designed for the power train of a pitch drive, it is necessary to analyze the fatigue strength of gears. While calculating the specifications of the complex planetary gears along with the bending and compressive stresses of the gears, it is necessary to analyze the fatigue strength of gears to obtain an optimal design of the complex planetary gears in terms of cost and reliability. In this study, the specifications of planetary gears are calculated using a self-developed gear design program. The actual gear bending and compressive stresses of the planetary gear system were analyzed using the Lewes and Hertz equation. Additionally, the calculated specifications of the complex planetary gears were verified by evaluating the results from the Stress - No. of cycles curves of gears.