• 제목/요약/키워드: Test stub

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고다층 보드 신뢰성 확보를 위한 베어보드 EMC 특성 연구 (A Study on the EMC Characteristics of Bare PCB for Reliability of High-Multilayer PCB)

  • 박진성;김기현;김경민;김성용
    • 반도체디스플레이기술학회지
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    • 제22권1호
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    • pp.94-98
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    • 2023
  • In the case of high-speed data transmission on high multilayer boards, signal coherence is a problem, especially due to the via hole, and a solution to improve return loss or insertion loss by applying a back drill to the via hole is being proposed. In this paper, Near-Field Electromagnetic measurements were made on a high multilayer board to determine how the presence or absence of back drill affects signal consistency. For this purpose, we used a signal generator, spectrum analyzer, and EMC scanner on a test board to determine if it is possible to distinguish between areas with and without back drill in the via holes of the stubs on the board. Also, we analyzed the measured value of S11, S21 and EMC etc. for how much it improves the signal attenuation of the stub with back drill. Through this, we knew that less electromagnetic waves are generated the stub via with back drill. At future research, we will analyze how much it improves the signal loss and electromagnetic waves due to the depth of back drill.

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컬럼-트리 형식 철골모멘트 접합부의 모델링 변수제안 (Modeling Parameters for Column-Tree Type Steel Beam-Column Connections)

  • 안희태;김태완;유은종
    • 한국지진공학회논문집
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    • 제27권1호
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    • pp.59-68
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    • 2023
  • The column-tree type steel beam-column connections are commonly used in East Asian countries, including Korea. The welding detail between the stub beam and column is similar to the WUF-W connection; thus, it can be expected to have sufficient seismic performance. However, previous experimental studies indicate that premature slip occurs at the friction joints between the stub and link beams. In this study, for the accurate seismic performance evaluation of column-tree type moment connections, a moment-slip model was proposed by investigating the previous test results. As a result, it was found that the initial slip occurred at about 25% of the design slip moment strength, and the amount of slip was about 0.15%. Also, by comparing the analysis results from models with and without the slip element, the influence of slip on the performance of overall beam-column connections was examined. As the panel zone became weaker, the contribution of slip on overall deformation became greater, and the shear demand for the panel zone was reduced.

A numerical investigation of the tensile behavior of the thread-fixed one-side bolted T-stubs at high temperature

  • You, Yang;Liu, Le;Jin, Xiao;Wang, Peijun;Liu, Fangzhou
    • Steel and Composite Structures
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    • 제45권4호
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    • pp.605-619
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    • 2022
  • The tensile behavior of the Thread-fixed One-side Bolt (TOB) at high temperatures was studied using the Finite Element Modeling (FEM) to explore the structural responses that could not be measured in tests. The accuracy of the FEM was verified using the test results from the failure mode, load-displacement curve as well as yielding load. Three typical failure modes of TOB connected T-stubs were observed, which were the Flange Yielding (FY), the Bolt Failure (BF) and the Coupling Failure mode (CF). The influence of the flange thickness tb and the temperature θ on the tensile behavior of the T-stub were discussed. The initial stiffness and the yielding load decreased with the increase of the temperature. The T-stubs almost lost their resistance when the temperature exceeded 700℃. The failure modes of T-stubs were mainly decided by the flange thickness, which relates to the anchorage of the hole threads and the bending resistance of flange. The failure mode could also be changed by the high temperature. Design equations in EN 1993-1-8 were modified and verified by the FEM results. The results showed that these equations could predict the failure mode and the yielding load at different temperatures with satisfactory accuracy.

Experimental study on partially-reinforced steel RHS compression members

  • Pinarbasi, Seval
    • Structural Engineering and Mechanics
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    • 제63권3호
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    • pp.385-400
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    • 2017
  • This paper presents an experimental study on the behavior of axially-loaded steel RHS (rectangular hollow section) compression members that are partially reinforced along their lengths with welded steel plates. 28 slender column tests were carried out to investigate the effects of the slenderness ratio of the unreinforced member and the ratio of the reinforced length of the member to its entire length. In addition to the slender column tests, 14 stub-column tests were conducted to determine the basic mechanical properties of the test specimens under uniform compression. Test results show that both the compressive strength and stiffness of an RHS member can be increased significantly compared to its unreinforced counterpart even when only the central quarter of the member is reinforced. Based on the limited test data, it can be concluded that partial reinforcement is, in general, more effective in members with larger slenderness ratios. A simple design expression is also proposed to predict the compressive strength of RHS columns partially reinforced along their length with welded steel plates by modifying the provisions of AISC 360-10 to account for the partial reinforcement.

발전소 열교환기 헤더와 튜브의 부분 용입형 용접부 초음파 자동검사시스템 개발 (Development of Automated Ultrasonic Testing System for Partial Joint-Weld of Heat Exchanger's Header to Tube in Power Plant)

  • 이진혁;임성진;박익근;김대현
    • 비파괴검사학회지
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    • 제30권4호
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    • pp.367-372
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    • 2010
  • 발전설비의 열교환기는 대형 헤더에 다수의 튜브가 용접된 구조로 협소한 튜브간격으로 인하여 안전성 확보와 수명진단을 위한 비파괴검사에 많은 제약을 받는다. 특히 일부의 헤더 용접부는 부분 용입형 용접구조로 이루어져 있어, 루트부에 용입부족 결함이 발생하기 쉽다. 이러한 용입부족 부분은 구조물의 형상과 결함을 구분하여 판정하기 어렵기 때문에 이를 검출할 수 있는 검사방법이 요구된다. 본 연구에서는 헤더와 튜브로 이루어진 열교환기 부분 용입형 용접부에서 발생하는 용입부족 결함과, 용접비드 내의 결함을 검출 하고자 초음파검사 기법을 이용한 자동검사시스템을 개발하였고 이 시스템을 이용하여 용접부의 결함을 효과적으로 검출할 수 있었다.

Effect of spiral spacing on axial compressive behavior of square reinforced concrete filled steel tube (RCFST) columns

  • Qiao, Qiyun;Zhang, Wenwen;Mou, Ben;Cao, Wanlin
    • Steel and Composite Structures
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    • 제31권6호
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    • pp.559-573
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    • 2019
  • Spiral spacing effect on axial compressive behavior of reinforced concrete filled steel tube (RCFST) stub column is experimentally investigated in this paper. A total of twenty specimens including sixteen square RCFST columns and four benchmarked conventional square concrete filled steel tube (CFST) columns are fabricated and tested. Test variables include spiral spacing (spiral ratio) and concrete strength. The failure modes, load versus displacement curves, compressive rigidity, axial compressive strength, and ductility of the specimens are obtained and analyzed. Especially, the effect of spiral spacing on axial compressive strength and ductility is investigated and discussed in detail. Test results show that heavily arranged spirals considerably increase the ultimate compressive strength but lightly arranged spirals have no obvious effect on the ultimate strength. In practical design, the effect of spirals on RCFST column strength should be considered only when spirals are heavily arranged. Spiral spacing has a considerable effect on increasing the post-peak ductility of RCFST columns. Decreasing of the spiral spacing considerably increases the post-peak ductility of the RCFSTs. When the concrete strength increases, ultimate strength increases but the ductility decreases, due to the brittleness of the higher strength concrete. Arranging spirals, even with a rather small amount of spirals, is an economical and easy solution for improving the ductility of RCFST columns with high-strength concrete. Ultimate compressive strengths of the columns are calculated according to the codes EC4 (2004), GB 50936 (2014), AIJ (2008), and ACI 318 (2014). The ultimate strength of RCFST stub columns can be most precisely evaluated using standard GB 50936 (2014) considering the effect of spiral confinement on core concrete.

Complete collapse test of reinforced concrete columns

  • Abdullah, Abdullah;Takiguchi, Katsuki
    • Structural Engineering and Mechanics
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    • 제12권2호
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    • pp.157-168
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    • 2001
  • In this paper, experimental investigation into the behavior of reinforced concrete (RC) columns tested under large lateral displacement with four different types of loading arrangements is presented. Each loading arrangement has a different system for controlling the consistency of the loading condition. One of the loading arrangements used three units of link mechanism to control the parallelism of the top and bottom stub of column during testing, and the remaining employed eight hydraulic jacks for the same purpose. The loading systems condition used in this investigation were similar to the actual case in a moment-resisting frame where the tested column was displaced in a double curvature. Ten model column specimens, divided into four series were prepared. Two columns were tested monotonically until collapse, and unless failure took place at an earlier stage of loading, the remaining eight columns were tested under cyclic loading. Test results indicated that the proposed system to keep the top and bottom stubs parallel during testing performed well.

Design of High Strength Concrete Filled Tubular Columns For Tall Buildings

  • Liew, J.Y. Richard;Xiong, M.X.;Xiong, D.X.
    • 국제초고층학회논문집
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    • 제3권3호
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    • pp.215-221
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    • 2014
  • Ultra-high strength concrete and high tensile steel are becoming very attractive materials for high-rise buildings because of the need to reduce member size and structural self-weight. However, limited test data and design guidelines are available to support the applications of high strength materials for building constructions. This paper presents significant findings from comprehensive experimental investigations on the behaviour of tubular columns in-filled with ultra-high strength concrete at ambient and elevated temperatures. A series of tests was conducted to investigate the basic mechanical properties of the high strength materials, and structural behaviour of stub columns under concentric compression, beams under moment and slender beam-columns under concentric and eccentric compression. High tensile steel with yield strength up to 780 MPa and ultra-high strength concrete with compressive cylinder strength up to 180 MPa were used to construct the test specimens. The test results were compared with the predictions using a modified Eurocode 4 approach. In addition, more than 2000 test data samples collected from literature on concrete filled steel tubes with normal and high strength materials were also analysed to formulate the design guide for implementation in practice.

상·하부 스플릿 T 접합부의 초기회전강성 예측모델 (Prediction Model for the Initial Rotational Stiffness of a Double Split T Connection)

  • 양재근;김윤;박재호
    • 한국강구조학회 논문집
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    • 제24권3호
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    • pp.279-287
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    • 2012
  • 상 하부 스플릿 T 접합부는 T-stub의 두께, 고력볼트 게이지 거리 등의 주요 변수 조합에 따라서 보통모멘트골조 혹은 특수모멘트골조에 적합한 접합부로 사용된다. 상 하부 스플릿 T 접합부가 안전한 구조거동을 발휘하기 위해서는 건축구조기준에서 규정한 층간변위각 및 접합부모멘트에 대한 요구사항을 만족하여야 한다. 이러한 요구사항 조건의 충족여부를 파악하기 위해서는 접합부의 회전강성 및 한계소성모멘트에 대한 예측이 필수적이다. 따라서 이 연구는 일차적으로 정적하중을 받는 상 하부 스플릿 T 접합부의 회전강성 예측을 위한 해석모델 제안을 위하여 진행하고자 한다. 이를 위하여 3차원 비선형 유한요소해석을 수행하였다. 제안한 해석모델의 적용 적합성은 기존의 해석모델 및 실험결과와 비교 검토하여 입증하였다.

4분의 1 파장 단락 스터브 방식 서지 어레스터의 잔여 전압 제거에 관한 연구 (Study on the Elimination of Residual Voltage in Quarter Wave Short Stub Surge Arrestor)

  • 김연태;원태영
    • 대한전자공학회논문지TC
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    • 제37권8호
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    • pp.33-44
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    • 2000
  • 고전압 전류 특성의 낙뢰는 안테나를 통해 지상에 설치된 이동 통신 기지국으로 도입될 수 있으며, 이를 방지하기 위한 장치가 서지 어레스터이다. 본 논문에서는 서지 어레스터의 개념, 종류, 동작 원리, 설계 및 제작 등을 검토하고, 이를 기반으로 현재 국내외에서 이용되고 있는 이동 통신 서비스인 셀룰라, GSM 및 PCS 등과 차세대 이동 통신 서비스인 IMT-2000의 기지국에 적용 가능한 서지 어레스터들을 설계하였다. 초기 설계된 서지 어레스터들은 고주파 3차원 구조 시뮬레이터 상에서 특성 예측을 위한 컴퓨터 모의 실험과 서지 어레스터의 전자기적 특성 개선을 위한 내부 구조 최적화 작업이 수행되었다. 서지 어레스터의 최종 설계도를 기반으로 실제 IMT-2000 기지국용 4분의 1 파장 단락 스터브 방식의 서지 어레스터를 제작하였으며, 전자기적 전송 특성 측정과 낙뢰 전달 테스트를 수행하여 제작된 서지 어레스터의 성능을 측정하였다. 측정 결과, 전압 정재파 비는 1.05 이하, 삽입 손실은 -0.035 dB이하, 상호변조 특성은 -150 dBc 이하의 특성을 얻었으며, 잔여 전압 특성은 7∼ll V 정도의 특성을 보였다.

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