• 제목/요약/키워드: Shape Degradation Factor

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로터리 드로우 벤더를 이용한 타원형 튜브의 유한요소 벤딩 해석 (Finite Element Bending Analysis of Oval Tubes Using Rotary Draw Bender for Hydroforming Applications)

  • 이호국
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2005년도 추계학술대회 논문집
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    • pp.71-74
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    • 2005
  • In manufacturing automotive parts, such as engine cradles, frame rails, subframes, cross-members, and other parts from circular tubes, pre-bending and pre-forming operations are often required prior to the subsequent tubular hydroforming process. During some pre-forming operations, the cross section of a bent circular tube is crushed into an oval-like shape to ensure proper geometry and sufficient clearance in the hydroforming dies. For such applications, the use of oval Instead of circular tubes could be an effective means of eliminating the pre-forming step. The oval tube could also be produced with less thinning and with less strain on the outside of the bend when controlled by a booster system without the use of mandrel. Hence, the understanding of the issues that occur in the bending of oval tubes is worthy of Investigation. This paper presents parametric studies on the bending of oval tubes without a mandrel. The finite element modeling technique is used to examine the deformation characteristics for both circular and oval tubes. In the simulations, the bending process parameters of bend radius, aspect ratio of the tube ovalness, and tube wall thickness are varied. Observations are made to obtain a hoop-buckle limit diagram in terms of a non-dimensional shape degradation factor. Suggestions based upon developed criteria are made on the acceptability of bend tubes suitable for hydroforming applications without the need ofa pre-forming step or the used of a mandrel.

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Spectral resolution evaluation by MCNP simulation for airborne alpha detection system with a collimator

  • Kim, Min Ji;Sung, Si Hyeong;Kim, Hee Reyoung
    • Nuclear Engineering and Technology
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    • 제53권4호
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    • pp.1311-1317
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    • 2021
  • In this study, an airborne alpha detection system, which consists of a passivated implanted planar silicon (PIPS) detector and an air filter, was developed. A collimator applied to the alpha detection system showed an enhancement in resolution and a degradation in detection efficiency. The resolution and detection efficiency were compared and analyzed to evaluate the performance of the collimator. Thus, the resolution was found to be more important than the efficiency as a determining factor of the detection system performance, from the viewpoint of radionuclide identification. The performance was evaluated on three properties of the collimator: hole shape, hole length, and the ratio between the hole and frame pitches. From the hole shape performance evaluation, a hexagonal collimator showed the highest resolution. Further, the collimator with a hole pitch of 14 mm was found to have the highest resolution while that with a frame pitch of 4-6 mm (i.e., 1.2-1.4 times longer than the hole pitch) showed the highest resolution.

Improvement of Degradation Characteristics in a Large, Racetrack-shaped 2G HTS Coil for MW-class Rotating Machines

  • Park, Heui Joo;Kim, Yeong-chun;Moon, Heejong;Park, Minwon;Yu, Inkeun
    • Journal of Electrical Engineering and Technology
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    • 제13권3호
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    • pp.1166-1172
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    • 2018
  • Degradation due to delamination occurs frequently in the high temperature superconductors (HTS) coil of rotating machines made with 2nd generation (2G) HTS wire, and the authors have observed other similar cases. Since an HTS field coil for a rotating machine is required to have stable current control and maintain a steady state, co-winding techniques for insulation material and epoxy resin for shape retention and heat transfer improvement are applied during coil fabrication. However, the most important limiting factor of this technique is delamination, which is known to be caused by the difference in thermal expansion between the epoxy resin and 2G HTS wire. Therefore, in this study, the experimental results of mixing the ratio of epoxy resin and alumina ($Al_2O3$) filler were applied to the fabrication of small and large test coils to solve the problem of degradation. For the verification of this scheme, eight prototypes of single pancake coils with different shapes were fabricated. They showed good results. The energization and operation maintenance tests of the stacked coils were carried out under liquid neon conditions similar to the operation temperature of an MW-class rotating machine. In conclusion, it was confirmed that the alumina powder mixed with epoxy resin in an appropriate ratio is an effective solution of de-lamination problem of 2G HTS coil.

환경 온도변화에 대한 자동차용 엔진마운트의 수명 예측 (Lifetime prediction of the engine mount about the environment temperature variation)

  • 김형민;위신환;윤신일;신익재;김규로
    • 한국신뢰성학회지:신뢰성응용연구
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    • 제13권1호
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    • pp.65-76
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    • 2013
  • In order to assess the reliability of engine mount for a vehicles, life test model and procedure are developed. By using this method, failure mechanism and life distribution are analyzed. The main results are as follows; i) the main failure mechanism is degradation failure of engine mount rubber by fatigue failure at dynamic load. ii) temperature is a second factor to affect a failure. iii) the life distribution of engine mount module is fitted well to Weibull life distribution and the shape parameter is 18.4 and the accelerated life model of that is fitted well to Arrhenius model.

광학계 제작 시 오차 영향이 적은 불꽃감지기용 테스트램프 반사경 형상에 관한 연구 (Study of the Reflector Shape of a Test Lamp for a Flame Detector with Little Influence of Error in Optical-system Fabrication)

  • 박혜진;강동화;공미선;김은지;이예은;조예지;정미숙
    • 한국광학회지
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    • 제29권6호
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    • pp.233-240
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    • 2018
  • 본 논문에서는 불꽃감지기용 테스트램프의 반사경 형상에 대해 제작 시 오차를 줄일 수 있는 설계 방법 연구를 진행하였다. 테스트램프는 높은 광량의 빛을 평행하게 진행시켜야 하지만, 제작 시 중앙 빛을 제어하는 소형 반사경의 고정이 어렵다는 단점으로 인해 광량 저하가 발생하여 목표 광량을 만족하지 못하는 경우가 많다. 이러한 문제점 해결을 위해 틸트 및 디센터 시에도 성능 저하 현상을 최소화하는 방향으로 광 손실률 5% 미만의 구 소형 반사경 설계를 진행하였고, 설계 분석 결과에 따라 광학계 제작 시에도 오차 영향이 적은 소형 반사경으로 구체 형상을 제시하였다.

Development of Durable Reliability Assessment Methods for Heavy Duty Coatings

  • Kim, Seung-Jin;Jung, Ho;Yang, In-Mo;Tanaka, Takeyuki
    • Corrosion Science and Technology
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    • 제4권4호
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    • pp.155-163
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    • 2005
  • Heavy duty coating are required to have minimum durable period of 15 years under average usage environment because these paints are coated with purpose of anti-corrosion, antifouling, plastering etc. Onto steel structures constructed upon land and sea and other ferrous structures of electric power generation plants, electricity transmission towers, large structures of various plants, etc. Therefore we tried to estimate heavy duty coating longevity through reliability evaluation method and used combined cyclic anti-conrrosion test method composed of drying, moisturizing and salt spray as for accelerated life test to estimate longevity. Accelerated life test hours to heavy duty coating of first grade (with longevity not less than 15 years) specification may be obtained from troubleless test hours $t_n=\frac{B_p}{n^{1/\beta}}\left[\frac{1n(1-CL)}{1n(1-p)} \right]^{1/\beta}=19.671$ (yr) where shape parameter $\beta=1.1$, confidence level CL=80 %, warranty life $B_{10}=15$ yr and sampling size n=10 (2 sets). Because acceleration factor {AF} found by accelerated test is 41.7, accelerated life test hours required may be represented about 4,132 hr so that if this amount of hours is converted to number of cycles(6 hr/cycle) of complex cycle corrosion resistance test then the amount is tantamount about 690 cycles. That means if there does not occur trouble failure (with defect factor sum not more than 20) during when there is performed 690 cycles of combined cyclic anti-corrosion test to heavy duty coating specimen then it signifies that there can be warranted longevity $B_{10}$ of 15 yr under condition of confidence level CL=80 %.

핵자기공명 영상법을 위한 내부 영상용 뒤집음-탐침의 제작 (Construction of Magnetic Resonance Imaging Inside-out probes for Internal Imaging)

  • 고락길;이동훈;정은기
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1995년도 추계학술대회
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    • pp.78-81
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    • 1995
  • In imaging the samples or human internal organs in a tube shape, general RF-probe types (that encircles a sample or places on top of the sample) are usually unsuitable for the internal imaging due to the degradation of signal-to-noise ratios(SNR's). In the present study the inside-out probes for Magnetic Resonance Imaging (MRI) have been constructed in the three different shapes such as an anti-solenoidal, a saddle and a dual surface types which are positioned as close to the area as possible by putting the probe inside the tubelike sample to improve filling factor. RF-field distributions have also been calculated depending upon the geometrical changes of anti-solenoid probes. Moreover, the performance of the inside-out probes has been checked by measuring SNR's of the images acquired. The inside-out probes constructed in this study produced better SNR's and rf-field uniformity in the area close to the probes in comparing with any other commercial probes. There is a high possibility that the constructed probes in the present study are applicable to the diagnosis of human bodies.

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휨 변경 최소화 근접 냉각 금형을 통한 고성능 고효율 플라스틱 축류팬 개발 (Development of high performance and efficiency plastic axial fan by proximity cooling mold to minimize warpage)

  • 신광호;김미애;채보혜;박상옥;김용대
    • Design & Manufacturing
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    • 제13권1호
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    • pp.61-67
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    • 2019
  • The cooling unit of the industrial showcase consists of a compressor, a condenser and an evaporator. An axial fan is used to circulate the air to improve the efficiency of the heat exchanger. In the past, aluminum fans have been used, which have problems such as low performance, efficiency, high failure rate, and high noise. This study is to develop high performance, high efficiency plastic fan replacing aluminum fan. A major factor in determining the performance and noise of an axial fan is the angle and cross-sectional shape of the blade, which is suitable for raising the lift force, thereby controlling the vortex, which is the main cause of noise and performance degradation. In order to produce a high efficiency injection molded fan, it is necessary to develop a mold that minimizes the deformation of the injection process for the designed shape. In this study, we developed a high efficiency, low noise plastic injection fan with more than 11% performance improvement and noise reduction compared to conventional aluminum fan.

산업용 청소기 모터의 가속수명시험 (Accelerated Life Test of Industrial Cleaner Motor)

  • 엄학용;이기천;장무성;박종원;이용범
    • 한국신뢰성학회지:신뢰성응용연구
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    • 제18권3호
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    • pp.193-200
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    • 2018
  • Purpose: In this study, the life of the motor is investigated by performing the accelerated life test with the brush wear of the industrial cleaner motor as the main failure mode. Methods: The accelerating stress factor of the accelerated life test is a voltage, which can increase the number of revolutions of the motor to accelerate the brush wear due to the friction between the brush and the commutator. Also, the accelerating stress level was determined after determining the maximum allowable level of the voltage through the preliminary test. Results: The motor failure time at each accelerating stress level was predicted by regression analysis with brush wear length as performance degradation data. The main failure mode, which is brush wear, of the motor was reproduced by this test. The shape parameter of the Weibull distribution was confirmed to be the same statistically at all accelerating stress levels by the likelihood ratio test. Conclusion: The life of the motor was investigated by performing the accelerated life test with the brush wear of the industrial cleaner motor as the main failure mode. Through the accelerating test method of the cleaner motor, various life expectancy and life expectancy of the acceleration factor are predicted.

핵자기공명 영상법과 핵자기공명 분광법을 위한 뒤집음-탐침의 개발에 대한 연구 (Development of inside-out probes for both Nuclear Magnetic Resonance Imaging and Nuclear Magnetic Resonance Spectroscopy)

  • 이동훈;고락길;정은기
    • 대한의용생체공학회:의공학회지
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    • 제16권3호
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    • pp.309-316
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    • 1995
  • 핵자기공명(Nuclear Magnetic Resonance)에서 신호 획득 시에 가장 중요한 부분중의 하나인 rf-탐침(radio-frequency-probe)은 실험대상이 되는 시료의 기하학적 모양과 획득하고자 하는 정보 등에 따라서 적절히 설계 및 제작되어야 최적의 신호를 얻을 수 있다. 일반적으로, rf-탐침은 시료를 둘러싸는 형태와 시료 표면에 위치하는 형태 등 두 가지로 제작된다. 그러나, 시료나 인체 부위가 관모양을 하고 있으며 관 모양 주위로부터의 신호를 관측하는 경우, 앞에서 기술한 두가지 형태의 탐침을 이용해서는 신호대 잡음비의 저하로 인해 만족할 만한 신호 획득이 어려워진다. 이때, 탐침을 관 모양의 시료 내부에 위치시키고, 관찰하고자 하는 부위에 최대로 가까이하며 탐침의 품격인자를 높이는 것이 최적의 신호획득에 중요한 조건이 되게 된다. 본 논문에서는 탐침을 시료 내부에 넣고 탐침 외부로부터 신호를 얻는 뒤집음-탐침을 역-솔레노이드 saddle 및 이중표면코일 등의 세가지 형태로 제작하고 최적신호의 획득에 대한 시도를 해보았고, 컴퓨터를 이용한 계산을 통하여 기하학적인 모양의 차이에 따른 rf-자기장 발생 상태를 알아보았다. 아울러, 시험시료로부터 발생되는 영상신호를 얻고 영상 영역 내에서 신호대잡음비를 측정하여 탐침들의 성능을 비교 분석했다. 본 연구에서 제작된 뒤집음-탐침의 경우, 어떠한 상품화된 탐침과 비교할 때, 뛰어난 신호대잡음비와 탐침 주위에서 매우 높은 균일성이 유지되었다. 또한, 제작된 형태의 뒤집음-탐침을 이용한 인체 진단에의 응용성은 매우 높을 것으로 예상된다.

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