• Title/Summary/Keyword: V bend

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자동차용 냉연 강판의 형상 동결성 연구 (Study on Springback Characteristic of Cold Rolled Steel Sheet)

  • 한수식;박기철;남재복
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 1998년도 제2회 박판성형심포지엄 논문집 박판성형기술의 현재와 미래
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    • pp.17-24
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    • 1998
  • This paper deals with the springback characteristics of cold rolled sheet steel through the use of the V-bending process and U-bending one. The influence of material properties on the springback of forming processes was investigated. In the V-bending process there was an optimum bend radius for each combination of parameters which produced minimal springback. In the U-bending process the blank holder force can control the degree of springback. A high blank holding force resulted in a uniform strain distribution and reduced the level of springback.

Czochralski법으로 성장된 RE : YAG(RE = Nd3+, Er3+) 단결정의 결함분석 (Defects analysis of RE : YAG (RE = Nd3+, Er3+) single crystal synthesized by Czochralski method)

  • 박청호;주영준;김혜영;심장보;김철진
    • 한국결정성장학회지
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    • 제26권1호
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    • pp.1-7
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    • 2016
  • RE : YAG 단결정은 레이저 발진 소재로 다양한 성장 변수를 제어하면서 Czochralski법으로 성장된다. 성장과정 동안 고액계면의 온도구배 및 회전속도에 의해 발생하는 결함들은 결정의 광학적 특성 저하로 작용하기 때문에 결함 분석을 통한 결정 품질의 향상을 필요로 한다. 격자결함 밀도 분석(EPD)을 통하여 성장된 RE : YAG 단결정의 표면 결함 존재를 확인하였고, 이를 통해 투과전자현미경(TEM) 분석영역을 선택하였다. 선택한 영역의 시편은 트라이포드 연마 방법으로 제작하였고, 200 kV 투과전자현미경과 300 kV 전계 방사형 투과전자현미경(FE-TEM)을 사용하여 buckling, rod shaped, 내부응력에 의한 bend contours, 편석 등의 결함들을 관찰하였다.

Microtremor 배열 (SPAC) 측정을 이용한 제4기 실트층의 S파 속도구조 추정 (Estimating the shear velocity profile of Quaternary silts using microtremor array (SPAC) measurements)

  • Roberts James;Asten Michael
    • 지구물리와물리탐사
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    • 제8권1호
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    • pp.34-40
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    • 2005
  • 직경 96 m 까지의 배열을 이용하는 microtremor 방법을 통해 호주의 미고결 제4기 Yarra Delta 퇴적물의 30-50 m 심도까지의 S 파 속도구조를 비파괴적으로 추정할 수 있었다. 두 실트층(Cool Island silt 와 Fishermans Bend silt)이 주해석대상인데, $5\%$의 정밀도로 이 층들의 S 파 속도를 얻을 수 있었으며, 상부의 좀 더 역약한 층(Vs: 130 m/sec) 및 하부의 약간 단단한 층(Vs: 235 m/sec)으로 구별된다. 이 층들 하부에 이미 역층으로 알려진 단단한 층(Vs: 500 - 650 m/sec)도 구별해내었다. 단일 수진기 별로 수평/수직 성분 스펙트럼비를 이용한 지표 횡단 결과로 연약한 실트층 두께의 변화를 빠르게 파악할 수 있으나 단지 정성적이며, 복잡한 지질단면의 경우에 정량적인 S 파 분포를 알기 위해서는 배열방법이 사용되어야 할 것이다.

FRACTURE TOUGHNESS CHARACTERISTICS IN HIGH ENERGY DENSITY BEAM WELDED JOINT OF HIGH TENSILE STEELS

  • Ro, Chan-Seung;Yamada, Tomoaki;Mochizuki, Masahito;Ishikawa, Nobuyuki;Bang, Han-Sur;Toyoda, Masao
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2002년도 Proceedings of the International Welding/Joining Conference-Korea
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    • pp.583-588
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    • 2002
  • The purpose of the study is to evaluate fracture toughness on the Laser and the electron beam welded joints of high tensile steels (HT500, HT550, HT650) by using 3-point bend CTOD and Charpy impact test. WM (weld metal) CTOD tests have been carried out using two kinds of CTOD specimen, the Laser beam welding (108mm length, and 24mm width, and 12mm thickness) and the electron beam welding (l71mm length, and 38mm width, and 19mm thickness). WM Charpy impact specimen is a standard V-notch type, and the temperature of the experiment is changed from -45 to 20 degree of centigrade. FE-analysis is also performed in order to investigate the effect of stress-strain fields on fracture characteristics. Results of the standard V-notch Charpy test are influenced by strength mis-match effect and the absorbed energy vE depends on crack path, and The transition temperature of Laser beam welded joints is more higher than that of electron beam welded joints. Results of the 3-point bend test give low critical CTOD and the crack path is in the weld metal of al specimens. These results indicate fracture toughness characteristics of the welded joints and transition temperature of HT500 are similar both a Laser beam welded joint and an electron beam welded joint. But the fracture toughness and the transition temperature of the electron beam welded joints of HT550 and HT650 are higher than those o the Laser beam welded joints.

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실리콘 숏키장벽의 이온선 에칭의 영향 (Influence of Ion Beam Etching on Silicon Schottky Barriers)

  • Wang, Jin-Suk
    • 대한전기학회논문지
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    • 제35권2호
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    • pp.62-66
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    • 1986
  • Ion beam etching of silicon with N2 and Ar gas has been found to cause the band edge to bend downward near the surface in p-type silicon. Rectifying, rather than ohmic contacts are obtained on the structures formed by evaporation of gold and titanium onto ion-bean-etched p-type silicon. The 1/C2 versus V relationship measured at 1MHz is found to be nonlinear for small voltages indicating alteration of the effective doping colse to the silicon surface.

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Assessment of RANS Models for 3-D Flow Analysis of SMART

  • Chun Kun Ho;Hwang Young Dong;Yoon Han Young;Kim Hee Chul;Zee Sung Quun
    • Nuclear Engineering and Technology
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    • 제36권3호
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    • pp.248-262
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    • 2004
  • Turbulence models are separately assessed for a three dimensional thermal-hydraulic analysis of the integral reactor SMART. Seven models (mixing length, k-l, standard $k-{\epsilon},\;k-{\epsilon}-f{\mu},\;k-{\epsilon}-v2$, RRSM, and ERRSM) are investigated for flat plate channel flow, rotating channel flow, and square sectioned U-bend duct flow. The results of these models are compared to the DNS data and experiment data. The results are assessed in terms of many aspects such as economical efficiency, accuracy, theorization, and applicability. The standard $k-{\epsilon}$ model (high Reynolds model), the $k-{\epsilon}-v2$ model, and the ERRSM (low Reynolds models) are selected from the assessment results. The standard $k-{\epsilon}$ model using small grid numbers predicts the channel flow with higher accuracy in comparison with the other eddy viscosity models in the logarithmic layer. The elliptic-relaxation type models, $k-{\epsilon}-v2$, and ERRSM have the advantage of application to complex geometries and show good prediction for near wall flows.

고출력 마그네트론 구동용 3.6 MW, 4 ${\mu}s$, 200 pps 펄스모듈레이터 개발 (Development of 3.6 MW, 4 ${\mu}s$, 200 pps Pulse Modulator for a High power magnetron)

  • 손윤규;장성덕;오종석;조무현;남궁원;이한구;배영순;이경태;손병학
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2004년도 하계학술대회 논문집 C
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    • pp.1778-1780
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    • 2004
  • Microwave heating system of KSTAR consists of ECH and LHCD. ECH and LHCD offer the reliability of operation in the beginning of plasma formation and non-inductive current drive for long time steady state operation with maintaining MHD stability, respectively. LHCD demands 5 GHz of frequency and consists of c-band waveguide, 4-port circuitor, dry dummy load, dual directional coupler, E-bend, arc detector. Our system is a lineup type pulse modulator that has 45 kV of output pulse voltage, 90 A of pulse current, 4 us of pulse width. 1:4 step-up pulse transformer, 7 stages of PFN and thyratron tube (E2V, CX1191D) are used in this modulator. The purpose of this paper is to show the modulator design and experimental result.

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GAS-DYNAMICAL FRICTION OF A PERTURBER MOVING ON A CIRCULAR ORBIT

  • Kim, Hyo-Sun;Kim, Woong-Tae
    • 천문학회지
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    • 제40권4호
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    • pp.179-182
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    • 2007
  • Dynamical friction plays an important role in reducing angular momenta of objects in orbital motions. While astronomical objects usually follow curvilinear orbits, most previous studies focused on the linear-trajectory cases. Here, we present the gravitational wake due to, and dynamical friction on, a perturber moving on a circular orbit in a uniform gaseous medium using a semi-analytic method. The circular orbit causes the density wakes to bend along the orbit into asymmetric configurations, resulting in the drag forces in both opposite (azimuthal) and lateral (radial) directions to the perturber motion, although the latter does not contribute to the orbital decay much. For a subsonic perturber, the bending of a wake is only modest and the resulting drag force in the opposite direction is remarkably similar to the linear-trajectory counterpart. On the other hand, a supersonic perturber is able to overtake its own wake, possibly multiple times, creating a high-density trailing tail. Despite the dramatic changes in the wake morphologies, the azimuthal drag force is in surprisingly good agreement with the formulae of Ostriker for the linear-trajectory cases, provided $V_pt=2R_p,\;where\;V_p\;and\;R_p$ are the velocity and orbital radius of the perturber, respectively.

치주인대의 비선형성을 고려한 치아 교정용 호선의 굽힘 최적화 (Bending Optimization of Archwire for Orthodontics Considering the Nonlinearity of Periodontal Ligament)

  • 허지인;이권희
    • 한국기계가공학회지
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    • 제12권6호
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    • pp.77-83
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    • 2013
  • Orthodontics is a branch of dentistry that is concerned with the study and treatment of malocclusion, which may result from tooth irregularities, disproportionate jaw relationships, or both. Orthodontic devices consist of brackets, archwire connected to each bracket, and bends and hooks for auxiliary functions. Basically, orthodontics involves the interaction of brackets and archwire. It should be noted that uncontrolled tipping can occur due to unwanted movement of the teeth. The bending of an archwire can control the angle of an archwire and the rotation of a tooth. In this study, we predict the relationship between the bending angle of an archwire and the rotation of a tooth using the Kriging interpolation method. Also, we calculate the angle of an archwire that occurs at the minimum value of tooth rotation.

Size-effect of fracture parameters for crack propagation in concrete: a comparative study

  • Kumar, Shailendra;Barai, S.V.
    • Computers and Concrete
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    • 제9권1호
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    • pp.1-19
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    • 2012
  • The size-effect study of various fracture parameters obtained from two parameter fracture model, effective crack model, double-K fracture model and double-G fracture model is presented in the paper. Fictitious crack model (FCM) for three-point bend test geometry for cracked concrete beam of laboratory size range 100-400 mm is developed and the different fracture parameters from size effect model, effective crack model, double-K fracture model and double-G fracture model are evaluated using the input data obtained from FCM. In addition, the fracture parameters of two parameter fracture model are obtained using the mathematical coefficients available in literature. From the study it is concluded that the fracture parameters obtained from various nonlinear fracture models including the double-K and double-G fracture models are influenced by the specimen size. These fracture parameters maintain some definite interrelationship depending upon the specimen size and relative size of initial notch length.