• 제목/요약/키워드: Miner Rule

검색결과 92건 처리시간 0.034초

고정익항공기용 외부연료탱크 및 파일런 피로 해석 (Fatigue Analysis of External Fuel Tank and Pylon for Fixed Wing Aircraft)

  • 김현기
    • 한국산학기술학회논문지
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    • 제21권7호
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    • pp.162-167
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    • 2020
  • 본 연구에서는 국내 고정익항공기 개발의 일환으로 고정익항공기용 외부 연료탱크와 파일런에 대한 피로해석을 수행하였다. 구조해석을 통해 외부 연료탱크와 파일런의 피로해석 부위들을 선정하고, 선정된 부위들에서 단위하중에 대한 전달함수를 구축하였다. 연속 하중 프로파일에 대해서 각 프로파일 하중과 전달함수와의 내적을 통해 선정 부위에서의 응력 성분을 계산한 후, Von Mises 등가응력을 사용하여 각 프로파일의 대표응력(Representative Stress)을 계산하였다. 그리고, 구축된 대표 응력 그룹에 Rainflow Counting 기법을 사용하여 초기의 방대한 하중 프로파일로 부터 축소된 개별 프로파일과 그에 대한 진폭 및 평균값을 추출한 후, MMPDS(Metallic Materials Properties Development and Standardization)의 S-N 선도를 적용하여 수명싸이클을 계산하였다. 만약, 추출된 개별 프로파일들의 Stress Ratio가 선정된 S-N 선도의 Stress Ratio 범위를 벗어나는 경우 Modified Goodman 선도로부터 유도된 식을 사용하여 Stress Ratio가 해당 S-N 선도에서 요구하는 범위를 만족하도록 변환하는 과정을 거쳤다. 그리고, Miner's Rule에 의해 계산된 각 프로파일들의 손상값들을 더하여 선정 부위에서의 수명을 평가하였다. 최종적으로 수명평가를 위해 선정된 외부연료탱크와 파일런의 관심 부위에서 요구 수명을 모두 만족하는 것으로 평가되었다.

동적 그룹 바인딩 기반의 모바일 에이전트를 이용한 인텔리전트 분산 플랫폼 (Intelligent Distributed Platform using Mobile Agent based on Dynamic Group Binding)

  • 마테오 로미오;이재완
    • 인터넷정보학회논문지
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    • 제8권3호
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    • pp.131-143
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    • 2007
  • 오늘날 정보 기술 및 지능형 시스템에서는 분산 데이터베이스로부터 패턴들을 찾고 규칙들을 추출하기 위해 데이터 마이닝 기술을 사용한다. 분산환경에서 데이터 마이닝 기술을 이용해 추출된 규칙들은 동적인 중복, 적응형 부하 균형 및 기타 기술들에서 활용될 수 있다. 그러나 대량의 데이터 전송은 에러를 야기하며 신뢰할 수 없는 결과를 초래할 수 있다. 이 논문은 이동 에이전트를 사용하여 동적 그룹 바인딩을 기반으로 한 인텔리전트 분산 플랫폼을 제안한다. 그룹서비스를 통해 효율적인 객체 검색을 위한 분류 알고리즘을 구현한다. 지능형 모델은 동적 중복을 위해 추출된 규칙을 사용한다. 데이터 마이닝 에이전트와 데이터 압축 에이전트는 각각 서비스 노드 데이터베이스로부터 규칙을 추출하여 데이터를 압축한다. 제안한 알고리즘은 데이터를 전송하기 전에 neuro-fuzzy 분류기를 사용하여 빈도가 적은 데이터 ???V을 합하는 전처리 과정을 수행한다. 객체그룹 분류, 서비스 노드 데이터베이스 마이닝, 데이터 압축 및 규칙 추출에 대한 시뮬레이션을 수행했다. 효율적인 데이터 압축 및 신뢰성 있는 규칙 추출에 대한 실험 결과 제안한 알고리즘이 다른 방법들과 비교해 이러한 관점에서 성능이 우수함을 나타내었다.

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Vehicle-bridge coupling vibration analysis based fatigue reliability prediction of prestressed concrete highway bridges

  • Zhu, Jinsong;Chen, Cheng;Han, Qinghua
    • Structural Engineering and Mechanics
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    • 제49권2호
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    • pp.203-223
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    • 2014
  • The extensive use of prestressed reinforced concrete (PSC) highway bridges in marine environment drastically increases the sensitivity to both fatigue-and corrosion-induced damage of their critical structural components during their service lives. Within this scenario, an integrated method that is capable of evaluating the fatigue reliability, identifying a condition-based maintenance, and predicting the remaining service life of its critical components is therefore needed. To accomplish this goal, a procedure for fatigue reliability prediction of PSC highway bridges is proposed in the present study. Vehicle-bridge coupling vibration analysis is performed for obtaining the equivalent moment ranges of critical section of bridges under typical fatigue truck models. Three-dimensional nonlinear mathematical models of fatigue trucks are simplified as an eleven-degree-of-freedom system. Road surface roughness is simulated as zero-mean stationary Gaussian random processes using the trigonometric series method. The time-dependent stress-concentration factors of reinforcing bars and prestressing tendons are accounted for more accurate stress ranges determination. The limit state functions are constructed according to the Miner's linear damage rule, the time-dependent S-N curves of prestressing tendons and the site-specific stress cycle prediction. The effectiveness of the methodology framework is demonstrated to a T-type simple supported multi-girder bridge for fatigue reliability evaluation.

누적손상이론을 이용한 풍력증속기의 가속수명시험법 개발 (Development of accelerated life test method for the wind turbine Gearbox using cumulative damage theory)

  • 손기수;곽희성;강창훈;조준행
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 제17회 워크샵 및 추계학술대회
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    • pp.693-697
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    • 2005
  • This study was performed to develop accelerated life test method of the wind-turbine gearbox using accumulated damage theory that used to model the fatigue of parts that receive variable load. The accumulated damage theory was introduced, and the estimation of life and calculation of accelerated life test time was illustrated. As the actual application example, accelerated life test method of the gearbox was described. Life distribution of the wind-turbine gearbox was supposed to follow Weibull distribution and life test time was calculated under the conditions of average life (MTBF) 140,600 hours and 99% reliability for one test sample According to the accumulated damage theory, because test time can shorten in case increase test load, test time could be reduced by 1.2 years when we put the load 1.2 times of rated load than 0.93 times of rated load that is equivalent load calculated by load spectrum of the wind turbine. This time, acceleration coefficient was 21.3. This accelerated test method was used to develop accelerated test method of gear reducer, gear and bearing as well as the industrial gearbox and it is considered to be applied comprehensively to mechanical parts the fatigue of which is happened by load or pressure etc.

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굴삭기 유압 주행시스템의 복합유성기어 시스템 설계개선 연구 (Design Improvement for a Planetary Gear System in Hydraulic Drive System)

  • 신유인;윤찬헌;한성길;박성규;송철기
    • 한국정밀공학회지
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    • 제33권10호
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    • pp.851-856
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    • 2016
  • Planetary gear systems have several advantages over traditional gearboxes with parallel axis gear shafts. The planetary gearbox arrangement also creates greater stability due to the even distribution of mass and increased rotational stiffness. However, gears in planetary gear systems occasionally have a short-life due to wear and breakage by repetitive load during operation time. In this study, we evaluated variables of the strength design for each part and conducted structural analysis of seven cases of the planetary gear system. The result of structural analysis was applied to shape optimization method and obtaining the weight lightening designed value. Subsequently, the planetary gear system was performed to ensure the durability of gears during operation time with miner's rule.

모니터링을 이용한 중형 풍력발전기용 증속기 주축의 부하특성 분석 연구 (Study on the Load Properties of Main Shaft of Medium Size Wind-turbine Gearbox using Monitoring)

  • 박영준;이근호;이종원;남윤수;차종환
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2007년도 춘계학술대회
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    • pp.378-382
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    • 2007
  • To improve the reliability for a wind-turbine gearbox, the mechanical loads acting on the gearbox need to be monitored and analysed exactly. This study was conducted to identify the characteristics of torques and bending moments acting on the main shaft of the gearbox using the rainflow counting method and predict the fatigue life of the main shaft by using the modified Miner's rule. While the mean wind speed became 3.5 m/s, the life of the main shaft by the acting torques was predicted as 4.3${\times}10^6$ years, and it by the bending moments was as 2.3${\times}10^4$ years. If the life of the wind turbine was estimated as 20 years, the fatigue life of the main shaft was regarded as infinite. Also, it was suggested that the life of the main shaft must be predicted by not the torques but the bending moments.

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소형 항공기 엔진 마운트 구조물의 피로 건전성 평가 (Estimation of Fatigue Integrity for Small Aircraft Engine Mount Strut)

  • 이무형;박일경;김성준;안석민
    • 한국항공운항학회지
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    • 제19권4호
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    • pp.58-66
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    • 2011
  • The estimation of fatigue integrity is very important for aerospace structures such as engine mount strut. The reason is that the fatigue integrity is essential analysis process to establish the structural stability in aerospace field. Therefore, in this paper, the process of fatigue analysis and test was performed for engine mount strut to prove the structural fatigue integrity. First of all, the fatigue load spectrum is constructed by considering the small aircraft operating condition. Fatigue analysis is done for the cluster near the welding zone which may have F.C.L.(fracture critical location). The fatigue life of engine mount strut was estimated by the Miner's rule which is the damage summation method. Finally, Fatigue test is performed to verify the fatigue integrity. The estimation process of fatigue integrity for engine mount strut of small aircraft may help the design.

독립현가형 AWD 차량의 구동축 가속 수명 평가에 관한 연구 (A Study on the Accelerated Life Evaluation of Drive Shaft for Independent Suspension type AWD Vehicle)

  • 김도식
    • 한국신뢰성학회지:신뢰성응용연구
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    • 제11권4호
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    • pp.343-356
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    • 2011
  • This paper proposes an accelerated life evaluation of drive shaft. The life test of drive shaft for independent suspension type AWD vehicle should be performed by use of the least test sample because many number of samples can't be used for the test because of its mass capacity and high price. We calculated the no failure test time by application of no failure test concept, and the already performed test data for drive shaft are applied for some kinds of reliability coefficients which are needed for calculation of life test time. And, for analysis of real driving condition of vehicle, the load spectrum is prepared using the needed road condition and vehicle data. The inverse power model is used for accelerated life test. The equivalent torque of load spectrum is achieved by use of Miner's Rule, and then the final accelerating condition is determined by decision of the accelerated test torque. This paper shows that the accelerated life test results corresponds with the target life and the proposed life test method can be very well applied to no failure life test for mass capacity machinery components.

Study on Mooring System Design of Floating Offshore Wind Turbine in Jeju Offshore Area

  • Kim, Hyungjun;Jeon, Gi-Young;Choung, Joonmo;Yoon, Sung-Won
    • International Journal of Ocean System Engineering
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    • 제3권4호
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    • pp.209-217
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    • 2013
  • This paper presents a mooring design procedure for a floating offshore wind turbine. Offshore environmental data for Jeju are taken from KHOA (Korea Hydrographic and Oceanographic Administration) and used for the environmental conditions in numerical analyses. A semi-submersible-type floating wind system with a 5-MW-class wind turbine studied by the DeepCwind Consortium is applied. Catenary mooring with a studless chain is chosen as the mooring system. Design deliverables such as the nominal sizes of chain and length of the mooring line are decided by considering the long-term prediction of the breaking strength of the mooring lines where a 100-year return period is used. The designed mooring system is verified using a fatigue calculation based on rain-flow cycle counting, an S-N curve, and a Miner's damage summation of rule. The mooring tension process is obtained from time-domain motion analyses using ANSYS/AQWA.

누적손상이론을 이용한 기계류부품의 가속수명시험법 개발 (Development of Accelerated Life Test Method for Machanical Parts Using Cumulative Damage Theory)

  • 김대철;이근호;김형의
    • 연구논문집
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    • 통권32호
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    • pp.35-43
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    • 2002
  • This study was performed to develop accelerated life test method of machanical parts using cumulative damage theory that used to model the fatigue of parts that receive variable load. The cumulative damage theory was introduced, and the estimation of life and calculation of accelerated life test time was illustrated. As the actual application example, accelerated life test method of agricultural tractor transmission was described. Life distribution of agricultural tractor transmission was supposed to follow Weibull distribution and life test time was calculated under the conditions of average life (MTBF) 3,000 hours and 90% reliability for one test sample. According to the cumulative damage theory, because test time can shorten in case increase test load, test time could be reduced by 482 hours when we put the load 1.1 times of rated load than 0.73 times of rated load that is equivalent load calculated by load spectrum of the agricultural tractor. This time, acceleration coefficient was 11.7. This accelerated test method was used to develop accelerated test method of gear reducer, hydraulic hose and bearing as well as agricultural tractor transmission and it is considered to be applied comprehensively to machanical parts the fatigue of which is happened by load or pressure etc.

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