• 제목/요약/키워드: 전변형량

검색결과 35건 처리시간 0.019초

공작기계 기어박스에서의 스퍼기어와 헬리컬기어에 대한 강도 내구성 (Strength Durability on Spur and Helical Gears in the Gearbox of Machine Tool)

  • 한문식;조재웅
    • 한국기계가공학회지
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    • 제13권3호
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    • pp.103-110
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    • 2014
  • In this study, spur and helical box models of an existing machine tool are investigated using structural and fatigue analyses. As the helical box model is shown to have less stress and deformation than those characteristics of the spur box model, the helical box has more strength and more transmission efficiency on the structure. In terms of fatigue analysis, the helical box model has more repeated fatigue strength than that of the spur box model. These study results can be effectively utilized in the design of real gear boxes of machine tools by anticipating and investigating prevention and durability against damage.

조향휠의 유형에 따른 구조안정성평가 (Evaluation on Structural Stability According to Steering Wheel Type)

  • 한문식;조재웅
    • 한국생산제조학회지
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    • 제21권5호
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    • pp.733-740
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    • 2012
  • This paper studies with structural and vibration analysis to evaluate the structural safety according to the types of steering wheels. This study models are two, three and four spoke types. As the number of spokes increases, the maximum equivalent stress becomes smaller but the maximum total deformation becomes a little higher. The natural frequency at three models are shown from 180 to 230Hz as the maximum deformation. The frequency responses as maximum amplitude displacement are happened at 200Hz, 500Hz and 500Hz respectively. In this study, the steering wheel with three spoke type is shown to become suitable at durability and production.

저속차량 차동장치의 내구성능 해석 (Durability Performance Analysis of a Differential Gear for a Low Speed Vehicles)

  • 천종필;편영식
    • 한국생산제조학회지
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    • 제21권6호
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    • pp.897-902
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    • 2012
  • Low speed vehicle(LSV), golf carts have unique requirements to differential gear design. For double axle torque LSV differential loading conditions were determined with the help of analytical model and ANSYS finite element analysis. With stress safety factor 3.15, fatigue safety factor 1.08 and fatigue life 106 cycle ring gear teeth strength analysis is performed and structure design optimized. This allows reducing overall cost of differential unit.

캘리퍼 실린더의 피로에 대한 내구성 해석 (Durability Analysis on Fatigue of Caliper Cylinder)

  • 한문식;조재웅
    • 한국자동차공학회논문집
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    • 제23권2호
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    • pp.208-213
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    • 2015
  • In this study, two models due to the configuration of caliper cylinder among the parts of automotive brake system are studied by structural and fatigue analysis. As the maximum equivalent stress at model 2 becomes 1.5 times lower than model 1, model 2 can endure load higher than model 1. In case of fatigue damage analysis on model 1 and 2, model 1 has the damage area more than model 2. Fatigue damage at model 1 happen more than model 2. These study results can be effectively utilized with the design on caliper cylinder by anticipating prevention against its damage and investigating durability.

포크레인 버켓의 피로 내구성 해석에 대한 연구 (Study on Fatigue Durability Analysis of Poclain Bucket)

  • 한문식;조재웅
    • 한국기계가공학회지
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    • 제12권2호
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    • pp.8-13
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    • 2013
  • This study analyzes about poclain bucket through fatigue durability analysis. Maximum equivalent stress and total deformation are shown at the lower of bucket and edge part respectively. Among the cases of nonuniform fatigue loads, 'SAE bracket history' with the severest change of load becomes most unstable but 'Sample history' becomes most stable. In case of 'Sample history' with the average stress of -10000Pa to 5000MPa and the amplitude stress of 0 to 6000MPa, the possibility of maximum damage becomes 3%. This stress state can be shown with 5 or 6 times more than the damage possibility of 'SAE bracket history' or 'SAE transmission'. The structural result of this study can be effectively utilized with the design of poclain bucket by investigating prevention and durability against fatigue damage.

차체의 종류별 로어암 형상의 변화에 따른 내구성 향상에 관한 연구 (Durability Improvement due to the Change of Lower Arm by the Class of Automotive Body)

  • 한문식;조재웅
    • 한국기계가공학회지
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    • 제16권6호
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    • pp.29-34
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    • 2017
  • This study analyzed automobile lower arm assembly structure and fatigue to identify configuration changes to enhance structural safety. Parts connected to the car body were fixed and 500 N load was applied at the lower arm head. Maximum equivalent stress and maximum total deformation were minimized for model 1 ( MPa and 0.10315 mm, respectively). Fatigue analysis using extreme SAE bracket history fatigue loads showed model 1 also improved fatigue life ($3.3693{\times}10^5cycles$). This study provides important inputs to improve lower arm durability by modifying the arm configuration.

도어 충격봉의 형상에 따른 구조 안전 해석 (Structural Safety Analysis According to the Shape of Door Impact Bar)

  • 한문식;조재웅
    • 한국생산제조학회지
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    • 제21권1호
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    • pp.21-25
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    • 2012
  • In this study, the safest model can be selected by the simulation result of structural safety analysis according to the shape of impact bar affected at side door of automobile. The open sectional model of semicircle type has the lowest deformation and stress among 4 kinds of models. As the weight of this model has 30% in comparison with other models, it becomes most economical and stable. As the open sectional model of cap type the highest deformation and stress among 4 kinds of models, it becomes weakest. The closed models with circular and rectangular types has the stress far lower than cap type. The maximum deformation is shown at the center part of impact bar but the maximum stress occurs at the joint part between impact bar and frame.

CNG버스의 연료탱크 설치방법에 따른 응력과 유동해석 (Stress and Flow Analysis due to Installation Method of Fuel Tank at CNG Bus)

  • 조재웅
    • 한국기계기술학회지
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    • 제13권4호
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    • pp.15-21
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    • 2011
  • The safety at this study is investigated by flow or stress analyses due to configuration or installation direction of fuel tank in the existing CNG bus. In case of the lower ceiling with sharp type, the equivalent stress due to the explosion of fuel tank is less than the type of flat or arc. it becomes safer on passenger. In case of the installation direction of fuel tank in the existing CNG bus, the stress applied on the lower ceiling at transverse direction becomes less than at longitudinal direction. It is more stable on the safety of passenger. The harm on the explosion accident can be prevented by use of the analysis result at this study.

선박의 프로펠러에서의 날개 수에 의한 유동 연구 (A Flow Study by the Number of Wings at Ship Propeller)

  • 한문식;조재웅
    • 한국기계가공학회지
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    • 제18권9호
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    • pp.17-22
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    • 2019
  • A ship's propulsion system is a device to move the ship by means of the power transmitted from the ship's engine to the propeller. In this study, three propeller models, a, b, and c, are designed and their flows are analyzed. Same flows with the same material are applied to all three models. Flow analysis results differ according to the shape of flow model though these models are the same material. In all respects, model C is considered to be more rigid and efficient than models A and B. A propeller model optimized for the driving force and stability can be developed through this study result.

어퍼암의 구조적 안전성 해석에 대한 연구 (Study on Structural Safety Analysis of Upper Arm)

  • 조재웅;한문식
    • 한국자동차공학회논문집
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    • 제21권3호
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    • pp.113-125
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    • 2013
  • This study analyzes upper arm as the part of suspension through the structural analyses of fatigue. Maximum displacement is shown at the knuckle joint connected with the bracket of automotive body. Among the cases of nonuniform fatigue loads, 'SAE bracket history' with the severest change of load becomes most unstable but 'Sample history' becomes most stable. Maximum life at 'Sample history' or 'SAE transmission' can be shown with 60 or 3.5 times more than 'SAE bracket history' respectively. In case of 'Sample history' with the average stress of $-4{\times}10^4$ to $4{\times}10^4$ MPa and the amplitude stress 0 to $8{\times}10^4$ MPa, the possibility of maximum damage becomes 3%. This stress state can be shown with 5 or 6 times more than the damage possibility of 'SAE Bracket history' or 'SAE transmission'. This study result is applied with the design of upper arm and it can be useful at predicting prevention and durability against its damage.