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1

루프 방사체를 포함한 역 F형 삼중 대역 내장형 안테나

최동식, 이영중, 정병운, 이병제

한국ITS학회 한국ITS학회 학술대회 2004년 한국ITS학회 정기총회 및 추계학술대회 2004.11 pp.220-223

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4,000원

2

Design and Simulation of a Reflectarray Antenna using New Cell for Different Beam Angles SCOPUS

Iman Aryanian, Abdolali Abdipour, Gholamreza Moradi

보안공학연구지원센터(IJGDC) International Journal of Grid and Distributed Computing Vol.9 No.6 2016.06 pp.93-102

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In this paper a new cell is proposed for reflectarray antenna and is used to design the antenna to obtain to maximum gain and efficiency using phase synthesis in a frequency band of 11 GHz up to 11.7 GHz for different beam angles. The proposed cell is a double ring of hexagon which introduces multiple resonances which can provide more than 360 degrees phase variation by changing the loop size. Design method is based on phase-only algorithm where amplitude of the field on the reflectarray surface is forced by the feed. A 1.2 m reflectarray is designed for different beam directions. The results show maximum directivity of 42 dB and maximum efficiency of 73% for the required bandwidth. Focal length is 1.5 m which is set for maximum efficiency.

3

Prediction of optimal bending angles of a running loop to achieve bodily protraction of a molar using the finite element method

Ryu, Woon-Kuk, Park, Jae Hyun, Tai, Kiyoshi, Kojima, Yukio, Lee, Youngjoo, Chae, Jong-Moon

[Kisti 연계] 대한치과교정학회 KJO : Korean journal of orthodontics Vol.48 No.1 2018 pp.3-10

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원문보기

Objective: The purpose of this study was to predict the optimal bending angles of a running loop for bodily protraction of the mandibular first molars and to clarify the mechanics of molar tipping and rotation. Methods: A three-dimensional finite element model was developed for predicting tooth movement, and a mechanical model based on the beam theory was constructed for clarifying force systems. Results: When a running loop without bends was used, the molar tipped mesially by $9.6^{\circ}$ and rotated counterclockwise by $5.4^{\circ}$. These angles were almost similar to those predicted by the beam theory. When the amount of tip-back and toe-in angles were $11.5^{\circ}$ and $9.9^{\circ}$, respectively, bodily movement of the molar was achieved. When the bend angles were increased to $14.2^{\circ}$ and $18.7^{\circ}$, the molar tipped distally by $4.9^{\circ}$ and rotated clockwise by $1.5^{\circ}$. Conclusions: Bodily movement of a mandibular first molar was achieved during protraction by controlling the tip-back and toe-in angles with the use of a running loop. The beam theory was effective for understanding the mechanics of molar tipping and rotation, as well as for predicting the optimal bending angles.

4

Correction to: Prediction of optimal bending angles of a running loop to achieve bodily protraction of a molar using the finite element method [Korean J Orthod 2018;48(1):3-10]

Ryu, Woon-Kuk

[Kisti 연계] 대한치과교정학회 KJO : Korean journal of orthodontics Vol.49 No.2 2019 p.137

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5

루프 서브디비전 곡면의 1차 전단 변형 쉘 요소

김형길, 조맹효

[Kisti 연계] 한국전산구조공학회 한국전산구조공학회 학술대회논문집 2002 pp.55-61

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원문보기

In the present study, a first order shear deformable Loop-subdivision triangular element which can handle transverse shear deformation of moderately thick shell and composite laminated or sandwich shells are developed. The developed element is more general than the previous one based on classical shell theory, since it includes the effect of transverse shell deformation and has standard five degrees of freedom per node. The quartic box spline function is employed as the interpolation basis function. Numerical examples for the benchmark static shell problems are analyzed to assess the performance of the developed subdivision shell element and locking trouble.

6

루프서브디비전 곡면을 이용한 일차전단 변형 쉘요소의 성능에 관한 연구

김형길, 조맹효

[Kisti 연계] 한국전산구조공학회 한국전산구조공학회 학술대회논문집 2003 pp.261-268

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원문보기

A first order shear deformable Loop-subdivision triangular element which can handle transverse shear deformation of moderately thick shell is developed. The developed element is general since it includes the effect of transverse shear deformation and has standard six degrees of freedom per node.(three translations and three rotations) The quartic box-spline function is employed as interpolation basis function. Numerical examples for the benchmark problems are analyzed in order to assess the performance of the newly developed subdivision shell element. Both in the uniform and in the distorted mesh configurations.

7

개루프제어로 이송되는 공작기계 구조물의 동적 거동을 위한 유한 요소 해석

최진우, 이태홍

[Kisti 연계] 한국공작기계학회 한국공작기계기술학회지 Vol.19 No.5 2010 pp.596-602

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원문보기

In this study, a fmite element model was developed for analysis of feeding a structure in open loop control The finite element analysis (FEA) can simulate dynamic behavior of the structure of a machine tool rapidly traveling with a screw feeding driving system. The feeding mechanism was implemented with screw element of the FEA tool used in this study. The procedure was developed for the dynamic transient FEA. First, motion parameters such as jerk and velocity were introduced for the structure to be fed in open loop control When its traveling distance was determined, set-points for the distance were generated based on the motion parameters. The set-points were applied to the FE model constructed for the traveling structure. The FEA was executed and evaluated. In this study, the FEA procedure was applied to the column of a machine tool and the dynamic behavior of the column was evaluated. The FEA helps in evaluation of the motion characteristics of a structure. The convergence time of the structure vibration posterior to feeding termination can be estimated and the stiffness of the flexible structure is also evaluated against jerk, and acceleration. It provides the feeding force which is helpful in selection of the feeding motor.

 
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