• 제목/요약/키워드: Gas Cylinder

검색결과 744건 처리시간 0.025초

가스성형시 가스압력이 성형품의 강성에 미치는 영향 (The Effect of Gas Pressure on the Stiffness of Products Manufactured with Gas-Assisted Injection)

  • 박균명;박봉현;이성희;김청균
    • 한국정밀공학회지
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    • 제17권10호
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    • pp.102-109
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    • 2000
  • In the present study, gas-assisted molding and structural vibration analysis of hollow long cylinder with the variation of gas injection pressure are performed. Though there are so many parameters such as delay time, injection pressure, and gas pressure on gas-assisted molding, the latter has the most dominant effect on this process. Therefore, the present paper deals with the effects of gas pressure on the dynamic stiffness of the model by means of vibration analysis and then suggests the fundamental materials which can be directly adapted to manufacturing lines.

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연성해석을 이용한 CNG 차량 압력 용기용 밸브의 안전성 평가 (Safety Evaluation of a Cylinder Valve for Compressed Natural Gas Vehicle Pressure Vessels using Fluid-structure Interaction Analysis)

  • 이효렬;안중환;김복만;김화영
    • 한국생산제조학회지
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    • 제23권2호
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    • pp.103-108
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    • 2014
  • Growing concerns about environmental pollution have led to an increase in the demand for compressed natural gas (CNG) vehicles in recent years. CNG vehicles are equipped with a cylinder valve installed in a high-pressure vessel to control the CNG flow. The cylinder valve must meet high quality safety standards because the pressure vessel stores high-pressure CNG. Therefore, safety evaluation of the cylinder valve is necessary to ensure the safety of CNG vehicles. In this study, fluid-structure interaction analysis for the structural integrity of the cylinder valve were conducted using a commercial finite element analysis code(ANSYS WORKBENCH V14). The CFD analysis was performed using a steady-state technique according to the inlet and outlet pressures in order to predict the pressure distribution. Structural analysis was performed by a static structure technique at the maximum working pressure to evaluate the structural integrity of the cylinder valve. From the results, the safety factor of the valve component is between 1.57 and 21.5.

특성곡선법을 이용한 디젤엔진 가스유동 1차원 수치해석의 타당성 평가 (Validation of diesel engine gas flow one-dimensional numerical analysis using the method of characteristics)

  • 김경현;공경주
    • 수산해양기술연구
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    • 제56권3호
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    • pp.230-237
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    • 2020
  • In order to design a diesel engine system and predict its performance, it is necessary to analyze the gas flow of the intake and exhaust system. A gas flow analysis in three-dimensional (3D) format needs a high-resolution workstation and enormous time for analysis. Therefore, the method of characteristics (MOC) was used for a gas flow analysis with a fast calculation time and a low-resolution workstation. An experiment was conducted on a single cylinder diesel engine to measure pressure in cylinder, intake pipe and exhaust pipe. The one-dimensional (1D) gas flow was analyzed under the same conditions as the experiment. The engine speed, valve timing and compression ratio were the same conditions and the intake pressure was inputted as the experimental results. Bent pipe such as an exhaust port that cannot be realized in 1D was omitted. As results of validation, the cylinder pressure showed accuracy, but the exhaust pipe pressure exhibited inaccuracy. This is considered as an error caused by the failure to implement a bent pipe such as an exhaust port. When analyzed in 3D, calculation time required 61 hours more based on a model of this study. In the future, we intend to implement a bent pipe that cannot be realized in 1D using 3D and prepare a method to supplement reliability by using 1D-3D coupling.

참여기체를 가진 무한 원형관 계의 복사 열전달 증진 (Augmentation of Radiative Heat Transfer in an Infinite Cylindrical Pipe Enclosing a Participating Gas)

  • 변기홍
    • 대한기계학회논문집
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    • 제16권10호
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    • pp.1955-1962
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    • 1992
  • 본 연구에서는 무한 원형관 안의 복사에 참여하는 참여가스에 면을 도입시키 면, 참여가스로부터 원형관 벽면으로의 복사 열유속(radiatve heat flux)이 증진 또는 감소되는 현상을 연구하는 데 있다. 참여가스는 흡수, 방사 특성이 온도와 파장에 변하지 않는 회체가스(gray gas)이거나, 화석 연료 연소시 연소가스의 성분이며, 복사 에 참여하는, 수증기와 이산화탄소의 혼합물이다. 편의상, 이 가스를 실제가스(real gas)라 부르기로 한다.도입면은 동축 무한 원형관(coaxial Infinite cylinder)이다. 참여가스의 성분, 계의 직경, 동축 무한 원형관 사이의 직경비, 면의 방사율, 면과 가 스의 온도가 열전달 증진에 미치는 영향을 연구하고자 한다.

피스톤 링 팩 및 실린더 보아 마모와 오일소모를 고려한 엔진 내구수명 연구 (A Study on Engine Durability Considering Oil Consumption and Wear of Piston-Ring Pack and Cylinder Bore)

  • 전상명
    • Tribology and Lubricants
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    • 제22권3호
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    • pp.155-163
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    • 2006
  • Ring, groove and cylinder bore wear may not be a problem in most current automotive engines. However, a small change in ring face, groove geometry and cylinder bore diameter can significantly affect the lubrication characteristics and ring axial motion. This in turn can cause to change inter-ring pressure, blowby and oil consumption in an engine. Therefore, by predicting the wear of piston ring face, ring groove and cylinder bore altogether, the changed ring end gap and the changed volume of gas reservoir can be calculated. Then the excessive oil consumption can be predicted. Being based on the calculation of gas flow amount by the theory of piston ring dynamics and gas flow, and the calculation of oil film thickness and friction force by the analysis of piston ring lubrication, the calculation theory of oil amount through top ring gap into combustion chamber will be set. This is estimated as engine oil consumption. Furthermore, the wear theories of ring, groove and cylinder bore are included. Then the each amount of wear is to be obtained. The changed oil consumption caused by the new end gap and the new volume of oil reservoir around second land, can be calculated at some engine running interval. Meanwhile, the wear amount and oil consumption occurred during engine durability cycle are compared with the calculated values. Next, the calculated amount of oil consumption and wear are compared with the guideline of each part's wear and oil consumption. So, the timing of part repair and engine life cycle can be predicted in advance without performing engine durability test. The wear data of rings, grooves and cylinder bore are obtained from three engines before and after engine durability test. The calculated wear data of each part are turn out to be around the band of averaged test values or a little below.

엔진 내구시험 시 실린더 보아의 마모에 관한 연구 (A Study on Cylinder Bore Wear during Engine Durability Test)

  • 전상명
    • Tribology and Lubricants
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    • 제22권3호
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    • pp.131-136
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    • 2006
  • Cylinder bore wear may not be a problem in most current automotive engines. However, a small change in cylinder bore diameter can significantly affect the lubrication characteristics and ring axial motion. This in turn can cause to change inter-ring pressure, blow-by and oil consumption in an engine. Therefore, by predicting the wear of piston ring face, ring groove and cylinder bore altogether, the changed ring end gap and the changed volume of gas reservoir can be calculated. Then the excessive oil consumption can be predicted. Being based on the calculation of gas flow amount by the theory of piston ring dynamics and gas flow, and the calculation of oil film thickness and friction force by the analysis of piston ring lubrication, the calculation theory of oil amount through top ring gap into combustion chamber will be set. This is estimated as engine oil consumption. Furthermore, the wear theories of ring, groove and cylinder bore are included. Then the each amount of wear is to be obtained. The changed oil consumption caused by the new end gap and the new volume of oil reservoir around second land, can be calculated at some engine running interval. Meanwhile, the wear amount and oil consumption occurred during engine durability cycle are compared with the calculated values. Next, the calculated amount of oil consumption and wear are compared with the guideline of each pare0s wear and oil consumption. So, the timing of part repair and engine life cycle can be predicted in advance without performing engine durability test. The wear data of cylinder bore diameter are obtained from three engines before and after engine durability test. The calculated wear data of cylinder bore diameter are turn out to be twice of the lower bound of averaged test values at TDC and the lower bound at BDC.

오비터 공기 압축기 성능해석 (Performance Analysis of an Orbiter Air Compressor)

  • 김현진;조광명;고원
    • 설비공학논문집
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    • 제17권8호
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    • pp.754-763
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    • 2005
  • This paper introduces a new concept compressor in which piston orbits in the cylinder having an annular space formed between two concentric circular walls. In this configuration, two gas pockets are formed with $180^{\circ}$ phase difference: one between the wrap of the orbiting piston and the inner cylinder wall and the other between the piston wrap and the outer cylinder wall. This alternating feature of gas compression and discharge processes yields several advantages such as low torque variation and low gas pulsation. Computer simulation program has been developed to evaluate the compressor performance. The volumetric, adiabatic, and mechanical efficiencies of the orbiter compressor are calculated to be $85.6\%,\;97.2\%,\;and\;95.2\%$, respectively, when it is used as an air compressor.

연소실 형상에 따른 연소 및 배기가스 배출물 특성에 관한 연구 (A Study on Combustion and Characteristics of Exhaust Gas Properties for Combustion Chamber)

  • 김대열;한영출;주신혁;박병완
    • 한국자동차공학회논문집
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    • 제12권1호
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    • pp.66-73
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    • 2004
  • This paper presents characteristics of combustion and exhaust gas properties according to variation of the combustion chamber for economy and emissions standards. In order to use combustion and exhaust gas properties data, it is necessary to build some data base, which use cylinder pressure sensor and emission tester. A feasibility and necessity of combustion pressure based cylinder spark timing control has been examined. So, this was obtained the coefficient of variation(COV) and the specific fuel consumption(sfc). Using the results of the test, the effects of the variable combustion chamber can be improved combustion stability and be reduced exhaust emission.

35MPa 수소가스 자동차용 복합소재 압력용기의 응력특성에 관한 강도안전성 연구 (Strength Safety Study on the Stress Characteristics of a Composite Pressure Cylinder for 35MPa Hydrogen Gas Vehicle)

  • 김청균;김도현
    • 한국가스학회지
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    • 제16권2호
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    • pp.25-30
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    • 2012
  • 본 논문에서는 알루미늄 라이너와 탄소섬유/에폭시 및 유리섬유/에폭시로 구성된 복합소재 압력용기에 대한 응력 안전성 연구결과를 제시하고 있다. 9.2L의 저장용량을 갖는 수소가스 자동차용 복합소재 압력용기에는 35MPa의 충전압력으로 수소가스를 압축한 경우이다. FEM 해석결과는 미국의 수소가스 압력용기에 대한 DOT-CFFC와 한국의 KS B ISO 인증기준에 기반하여 평가하였다. FEM 해석결과에서 알루미늄 라이너에 걸리는 응력 247MPa는 알루미늄 항복강도(272MPa)의 95%에 해당하는 안전기준에 비해 충분히 낮다는 결과이다. 그리고 알루미늄의 표면에 감은 탄소섬유 복합소재는 후프방향과 헤리컬방향에서 발생한 최대탄소섬유응력이 29.43%와 28.87% 수준으로 각각 나타났기 때문에 최소파열압력에서의 최대섬유응력 대비 30% 이하를 유지해야 한다는 안전기준에 부합하므로 안전하다. 또한, 탄소섬유 복합소재에 대한 응력비는 후프방향과 헤리컬방향에 대해 3.4와 3.46으로 각각 예측되었기 때문에 최소안전기준인 2.4보다 높아 안전한 것으로 나타났다.

2중 실린더 구조를 갖는 인장 가스스프링의 마찰력 변화에 따른 피스톤 거동에 대한 연구 (A study on the behavior of the piston with varying friction force in the double cylinder-typed extension gas spring)

  • 정남균
    • 한국산학기술학회논문지
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    • 제19권2호
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    • pp.9-14
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    • 2018
  • 가스스프링은 가스가 압축될 때 가지게 되는 압력을 스프링과 같이 사용하는 형태로, 광범위한 산업분야에 사용되고 있고 그 수요 또한 증가하고 있다. 이 가스스프링은 압축 스프링과 인장 스프링으로 나뉠 수 가 있는데, 압축 스프링과 달리인장 스프링의 경우는 피스톤 속도 제어에 대한 연구가 많이 이루어지지 않았다. 본 연구에서는 2중 실린더 구조를 갖는 인장 가스스프링에서의 압력 손실 계산을 통하여 피스톤 반발압력의 크기를 이론적으로 예측하였고, 피스톤과 실린더 사이의 마찰이 작은 경우와 큰 경우에 대하여 피스톤의 실제 거동을 모사해 보았다. 수치해석을 위해서는 유동해석분야에서 가장 널리 사용되고 있는 FLUENT를 이용하였고, 피스톤의 거동을 모사하기 위하여 FLUENT에서 제공하는 6-DOF 모델과 사용자정의함수(User Defined Function)를 사용하였다. 격자는 Layering 기법만으로도 Dynamic mesh가 성공적으로 구현되도록 피스톤 전후의 유동영역을 따로 분할하여 다른 형태의 격자를 생성하였다. 해석 결과 두 경우 다 최종적으로는 목표로 하는 속도로 피스톤이 복귀하는 결과를 보였으나, 최종 속도에 도달하는 과정에서 다른 차이를 보였다.