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원형관 내 데토네이션 파 구조 및 동적 특성 수치 연구 (Numerical Study of Detonation Wave Structure and Dynamics in a Circular Tube)

  • 조덕래;김종관;장근진;최정열
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2012년도 제38회 춘계학술대회논문집
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    • pp.278-281
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    • 2012
  • 펄스 데토네이션 엔진과 같이 원형 관내를 전파하는 데토네이션 파의 삼차원 파면 구조 및 동적 특성을 파악하기 위한 수치 해석을 수행하였다. 비가역 Arrhenius 반응 모델을 이용하여 일련의 pre-exponential 값에 대한 해석을 수행하여 2-셀,3-셀, 4-셀 및 6-셀 데토네이션 모드의 삼차원 파면구조에 대한 생성 매커니즘들을 살펴보았다. 2차원 결과와 비교하여 반경 방향에서 slapping 횡단 파의 효과를 확인하였으며, 모든 다중-셀 모드에서 벽면에서의 데토네이션 파면 구조와 그을음 막 기록들은 반경 방향으로 slapping 파가 움직이는 동안 시계 및 반 시계 방향으로 움직이는 횡단파에 의하여 형성되며, 굽어진 벽면에서 반사되는 횡단파는 다차원 confinement 효과에 의하여 강도가 변화한다.

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Concrete pavement monitoring with PPP-BOTDA distributed strain and crack sensors

  • Bao, Yi;Tang, Fujian;Chen, Yizheng;Meng, Weina;Huang, Ying;Chen, Genda
    • Smart Structures and Systems
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    • 제18권3호
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    • pp.405-423
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    • 2016
  • In this study, the feasibility of using telecommunication single-mode optical fiber (SMF) as a distributed fiber optic strain and crack sensor was evaluated in concrete pavement monitoring. Tensile tests on various sensors indicated that the $SMF-28e^+$ fiber revealed linear elastic behavior to rupture at approximately 26 N load and 2.6% strain. Six full-scale concrete panels were prepared and tested under truck and three-point loads to quantify the performance of sensors with pulse pre-pump Brillouin optical time domain analysis (PPP-BOTDA). The sensors were protected by precast mortar from brutal action during concrete casting. Once air-cured for 2 hours after initial setting, half a mortar cylinder of 12 mm in diameter ensured that the protected sensors remained functional during and after concrete casting. The strains measured from PPP-BOTDA with a sensitivity coefficient of $5.43{\times}10^{-5}GHz/{\mu}{\varepsilon}$ were validated locally by commercial fiber Bragg grating (FBG) sensors. Unlike the point FBG sensors, the distributed PPP-BOTDA sensors can be utilized to effectively locate multiple cracks. Depending on their layout, the distributed sensors can provide one- or two-dimensional strain fields in pavement panels. The width of both micro and major cracks can be linearly related to the peak strain directly measured with the distributed fiber optic sensor.

An exploratory study of stress wave communication in concrete structures

  • Ji, Qing;Ho, Michael;Zheng, Rong;Ding, Zhi;Song, Gangbing
    • Smart Structures and Systems
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    • 제15권1호
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    • pp.135-150
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    • 2015
  • Large concrete structures are prone to cracks and damages over time from human usage, weathers, and other environmental attacks such as flood, earthquakes, and hurricanes. The health of the concrete structures should be monitored regularly to ensure safety. A reliable method of real time communications can facilitate more frequent structural health monitoring (SHM) updates from hard to reach positions, enabling crack detections of embedded concrete structures as they occur to avoid catastrophic failures. By implementing an unconventional mode of communication that utilizes guided stress waves traveling along the concrete structure itself, we may be able to free structural health monitoring from costly (re-)installation of communication wires. In stress-wave communications, piezoelectric transducers can act as actuators and sensors to send and receive modulated signals carrying concrete status information. The new generation of lead zirconate titanate (PZT) based smart aggregates cause multipath propagation in the homogeneous concrete channel, which presents both an opportunity and a challenge for multiple sensors communication. We propose a time reversal based pulse position modulation (TR-PPM) communication for stress wave communication within the concrete structure to combat multipath channel dispersion. Experimental results demonstrate successful transmission and recovery of TR-PPM using stress waves. Compared with PPM, we can achieve higher data rate and longer link distance via TR-PPM. Furthermore, TR-PPM remains effective under low signal-to-noise (SNR) ratio. This work also lays the foundation for implementing multiple-input multiple-output (MIMO) stress wave communication networks in concrete channels.

Comparison of Sapphire and Germanium Fibers for Erbium : Yag Lithotripsy

  • Lee, Ho;Yoon, Ji-Wook;Jung, Young-Dae;Kim, Jee-Hyun;Ryan, Robert T.;Teichman, Joel M.H.;Welch, A.J.
    • Journal of the Optical Society of Korea
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    • 제12권4호
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    • pp.309-313
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    • 2008
  • We studied the sapphire and germanium fibers to determine which optical fiber best transmits Erbium:YAG laser for intracorporeal lithotripsy. Human calculi were ablated with an Erbium:YAG laser in contact mode using two fibers. Optical outputs at the distal end of fibers were measured before and after laser lithotripsy. Upon the irradiation on the calculus with the 50 mJ and 100 mJ pulse energy, the output energy at the distal end of germanium fiber declined to approximately 50% of the input energy. For the sapphire fiber, the output energy at the distal end remained unchanged with 100 mJ input energy; however the output energy had dropped to 50% for 200 mJ input energy. In order to examine how the types of target tissue affect the fiber damage, the sapphire fiber was tested for the irradiation on soft tissue and water as well. No energy decline was observed during soft tissue and water irradiation. We also characterized ablation craters with both optical fibers. Both fibers produced similar craters on calculi in terms of depth and diameter. Sapphire fibers are better suited than germanium fibers for Erbium:YAG lithotripsy in terms of the fiber damage.

단일칩 마이컴을 이용한 위상변위 방식 풀브리지 직류-직류 전력변환기 (Phase-Shift Full-Bridge DC-DC Converter using the One-Chip Micom)

  • 정강률
    • 전기전자학회논문지
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    • 제25권3호
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    • pp.517-527
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    • 2021
  • 본 논문에서는 단일칩 마이컴을 이용한 위상변위 방식 직류-직류 전력변환기를 제안한다. 제안한 전력변환기의 1차측은 위상변위 방식에 의하여 단극성 펄스폭변조(unipolar PWM)로 동작하는 풀브리지 전력구조이며, 2차측은 4개의 다이오드로 구성된 풀브리지 전파정류기이다. 제안한 전력변환기의 제어는 단일칩 마이컴에 의해 수행되고, 그 MOSFET 스위치들은 부트스트랩 회로에 의해 구동된다. 그래서 전력변환기의 전체 시스템은 간단하다. 제안한 전력변환기는 공진회로와 저지커패시터를 이용하여 고효율을 달성한다. 본 논문에서는 먼저, 제안한 전력변환기의 전력회로의 동작을 각 동작모드를 따라 설명한다. 그리고 제안한 전력변환기의 전력회로 설계방식을 보이고 제안한 전력변환기를 동작시키는 마이컴 상의 소프트웨어 제어 알고리즘과 피드백 및 스위치 구동 회로에 관하여 간략히 설명한다. 그 후, 본 논문에서 제시한 설계와 구현방식에 의하여 설계하고 제작된 시제품 전력변환기의 실험결과를 통하여 제안한 전력변환기의 동작 특성을 입증한다. 실험결과에서 약 92% 정도의 최고 효율을 얻었다.

Effect of surface treatments on the bond strength of indirect resin composite to resin matrix ceramics

  • Celik, Ersan;Sahin, Sezgi Cinel;Dede, Dogu Omur
    • The Journal of Advanced Prosthodontics
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    • 제11권4호
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    • pp.223-231
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    • 2019
  • PURPOSE. The purpose of this study was to evaluate the shear bond strength (SBS) of an indirect resin composite (IRC) to the various resin matrix ceramic (RMC) blocks using different surface treatments. MATERIALS AND METHODS. Ninety-nine cubic RMC specimens consisting of a resin nanoceramic (RNC), a polymer-infiltrated hybrid ceramic (PIHC), and a flexible hybrid ceramic (FHC) were divided randomly into three surface treatment subgroups (n = 11). In the experimental groups, untreated (Cnt), tribochemical silica coating (Tbc), and Neodymium-Doped Yttrium Aluminum Garnet (Nd:YAG) laser irradiation (Lsr) with 3 W (150 mJ/pulse, 20 Hz for 20 sec.) were used as surface treatments. An indirect composite resin (IRC) was layered with a disc-shape mold ($2{\times}3mm$) onto the treated-ceramic surfaces and the specimens submitted to thermal cycling (6000 cycles, $5-55^{\circ}C$). The SBS test of specimens was performed using a universal testing machine and the specimens were examined with a scanning electron microscope to determine the failure mode. Data were statistically analyzed with two-way analysis of variance (ANOVA) and Tukey HSD test (${\alpha}=.05$). RESULTS. According to the two-way ANOVA, only the surface treatment parameter was statistically significant (P<.05) on the SBS of IRC to RMC. The SBS values of Lsr-applied RMC groups were significantly higher than Cnt groups for each RMC material, (P<.05). Significant differences were also determined between Tbc surface treatment applied and untreated (Cnt) PIHC materials (P=.039). CONCLUSION. For promoting a reliable bond strength during characterization of RMC with IRC, Nd:YAG laser or Tbc surface treatment technique should be used, putting in consideration the microstructure and composition of RMC materials and appropriate parameters for each material.

갈륨 미세입자 탄성 복합체 기반 고민감도와 광대역폭을 갖는 가변 강성 압력센서 (Adaptive Pressure Sensor with High Sensitivity and Large Bandwidth Based on Gallium Microdroplet-elastomer Composite)

  • 이시목;변상혁;스티브박;심주용;정재웅
    • 센서학회지
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    • 제31권6호
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    • pp.423-427
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    • 2022
  • A pressure sensor that mimics the sensing ability of human skin has emerged as high-profile technology because it shows remarkable applications in numerous fields such as robotics, human health monitoring, and artificial prosthetics. Whereas recent pressure sensors have achieved high sensitivity similar to that of human skin, they still show limited detection bandwidth. Moreover, once these e-skin are fabricated, their sensitivity and stiffness are fixed; therefore, they can be used for only limited applications. Our study proposes a new adaptive pressure sensor built with uniform gallium microdroplet-elastomer composite. Based on the phase transition of gallium microdroplets, the proposed sensor undergoes mode transformation, enabling it to have a higher sensitivity and wider detection bandwidth compared with those of human skin. In addition, we succeeded in extending a single adaptive pressure sensor to sensor arrays based on its high uniformity, reproducibility, and large-scale manufacturability. Finally, we designed an adaptive e-skin with the sensor array and demonstrated its applications on health monitoring tasks including blood pulse and body weight measurements.

광 주파수 빗으로부터 단일 광 주파수 성분의 선택적 추출 (Selective Extraction of a Single Optical Frequency Component from an Optical Frequency Comb)

  • 문한섭
    • 한국광학회지
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    • 제34권6호
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    • pp.225-234
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    • 2023
  • 모드 잠금 레이저는 주기성을 가지고 짧은 시간 동안 레이저 출력이 펄스로 동작한다. 그러나 시간-주파수 영역에서 모드 잠금된 펄스 레이저의 펄스 반복률의 주기성은 푸리에 변환으로 일정한 주파수 간격을 가진 광 주파수 빗과 같이 이해된다. 이때 광 주파수 빗의 각 주파수 성분은 연속적으로 발진하는 수십만 개의 단일 주파수 성분을 가진 continuous-wave 레이저들과 같다. 광 주파수 빗은 약 20년 전에 개발되어 세계에서 가장 정밀한 원자 시계의 개발을 가능케 하고 안정된 광 주파수를 정밀하게 전송하는 데에 사용되었으며, 다양한 응용연구로도 발전했다. 본 논문에서는 광 주파수 빗의 단일 주파수 구성 요소를 선택적으로 추출하고, 광 빗의 주파수 구성 요소를 제어하는 연구를 소개한다. 또한 광 주파수 빗의 개념과 원리를 해설함으로써 시간-주파수 도메인에서 빛의 특성을 이해하고, 광 주파수 빗을 활용한 다양한 응용 연구를 개발하는 데 도움을 주고자 한다.

ALOS-2 Stripmap-ScanSAR 위상간섭기법에서의 스펙트럼 분석 평가 (Evaluation on Spectral Analysis in ALOS-2 PALSAR-2 Stripmap-ScanSAR Interferometry)

  • 박서우;정성우;홍상훈
    • 대한원격탐사학회지
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    • 제36권2_2호
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    • pp.351-363
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    • 2020
  • 연안 충적층 지역은 토양침식, 지반침하 등 지질 재해와 태풍, 홍수 해양 재해에 노출되어 인명 또는 재산 피해의 위험에 취약하다. 지반 침하는 지표 물질이 지하로 이동하면서 지반의 점진적인 또는 급격한 침강이 발생하는 현상으로 지속적인 감시가 요구된다. 영상레이더 위상간섭기법 (Radar Interferometry)은 마이크로파 영역에서 관측된 위상정보를 이용하여 지형 변위를 정밀하게 관측할 수 있는 기술이다. Small BAseline Subset(SBAS) 기법은 최소 20장 이상의 영상레이더 자료를 사용하여 대상 지역에 대한 시계열 지표 변위를 정밀하게 분석할 수 있어 지반침하 감시에 유용하다. X- 또는 C-밴드에 비해 장파장인 L-밴드 영상레이더 자료는 긴밀도 유지에 보다 유리하여 지구과학용으로 적합하다. 하지만 L-밴드 ALOS-2 PALSAR-2은 전지구 관측 프로그램을 운영하고 있어 시계열 분석을 하기에 영상 획득이 충분하지 않을 수 있다. 관심 지역인 부산의 경우, Stripmap 영상은 11장으로서 SBAS 시계열 분석 기법을 적용하기에는 부족한 촬영 수이다. 일반적으로 동일한 모드의 영상 간 위상간섭기법의 적용이 가능하지만, 비슷한 관측 기하에서 관측한 Stripmap과 ScanSAR 영상을 이용한 위상간섭기법의 적용이 성공적으로 수행된 바 있다. 해당 지역의 ScanSAR 영상은 18장으로 Stripmap-ScanSAR 위상간섭기법을 적용하면 SBAS 기법을 이용한 향상된 시계열 분석이 가능하게 된다. 본 연구에서는 Gamma 소프트웨어를 이용하여 ALOS-2 PALSAR-2로부터 획득된 L-band 영상 자료에 대한 위상간섭기법 적용 가능여부를 평가하였다. Stripmap-ScanSAR 위상간섭기법 적용을 위해 이종 모드 관측 영상 사이의 chirp bandwidth와 pulse repetition frequency (PRF)의 차이를 고려한 영상레이더 자료 처리를 수행하였으며, radar carrier frequency의 차이 보정과 common band filtering 적용 여부에 따라 발생하는 위상간섭도의 품질을 분석하였다. Radar carrier frequency 차이 보정에 따른 위상간섭도의 긴밀도 변화는 크게 나타나지 않았으나, common band filtering으로 인해, 위상간섭도에서 azimuth 방향으로 주기적인 잡음과 전체적인 긴밀도 저하가 발생하였다. 따라서 Stripmap-ScanSAR 위상간섭기법을 적용하는 경우 두 관측 모드의 range와 azimuth 방향의 밴드 폭의 특성에 따라 주의 깊은 자료 처리가 요구된다.

양극산화에 의한 티타늄 산화막의 표면 특성 및 생체 활성에 관한 연구 (SURFACE CHARACTERISTICS AND BIOACTIVITY OF ANODICALLY OXIDIZED TITANIUM SURFACES)

  • 이상한;조인호
    • 대한치과보철학회지
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    • 제45권1호
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    • pp.85-97
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    • 2007
  • Statement of problem: Recently, anodic oxidation of cp-titanium is a popular method for treatment of titanium implant surfaces. It is a relatively easy process, and the thickness, structure, composition, and the microstructure of the oxide layer can be variably modified. Moreover the biological properties of the oxide layer can be controlled. Purpose: In this study, the roughness, microstructure, crystal structure of the variously treated groups (current, voltage, frequency, electrolyte, thermal treatment) were evaluated. And the specimens were soaked in simulated body fluid (SBF) to evaluate the effects of the surface characteristics and the oxide layers on the bioactivity of the specimens which were directly related to bone formation and integration. Materials and methods: Surface treatments consisted of either anodization or anodization followed thermal treatment. Specimens were divided into seven groups, depending on their anodizing treatment conditions: constant current mode (350V for group 2), constant voltage mode (155V for group 3), 60 Hz pulse series (230V for group 4, 300V for group 5), and 1000 Hz pulse series (400V for group 6, 460V for group 7). Non-treated native surfaces were used as controls (group 1). In addition, for the purpose of evaluating the effects of thermal treatment, each group was heat treated by elevating the temperature by $5^{\circ}C$ per minute until $600^{\circ}C$ for 1 hour, and then bench cured. Using scanning electron microscope (SEM), porous oxide layers were observed on treated surfaces. The crystal structures and phases of titania were identified by thin-film x-ray diffractmeter (TF-XRD). Atomic force microscope (AFM) was used for roughness measurement (Sa, Sq). To evaluate bioactivity of modified titanium surfaces, each group was soaked in SBF for 168 hours (1 week), and then changed surface characteristics were analyzed by SEM and TF-XRD. Results: On basis of our findings, we concluded the following results. 1. Most groups showed morphologically porous structures. Except group 2, all groups showed fine to coarse convex structures, and the groups with superior quantity of oxide products showed superior morphology. 2. As a result of combined anodization and thermal treatment, there were no effects on composition of crystalline structure. But, heat treatment influenced the quantity of formation of the oxide products (rutile / anatase). 3. Roughness decreased in the order of groups 7,5,2,3,6,4,1 and there was statistical difference between group 7 and the others (p<0.05), but group 7 did not show any bioactivity within a week. 4. In groups that implanted ions (Ca/P) on the oxide layer through current and voltage control, showed superior morphology, and oxide products, but did not express any bioactivity within a week. 5. In group 3, the oxide layer was uniformly organized with rutile, with almost no titanium peak. And there were abnormally more [101] orientations of rutile crystalline structure, and bonelike apatite formation could be seen around these crystalline structures. Conclusion: As a result of control of various factors in anodization (current, voltage, frequency, electrolytes, thermal treatment), the surface morphology, micro-porosity, the 2nd phase formation, crystalline structure, thickness of the oxide layer could be modified. And even more, the bioactivity of the specimens in vitro could be induced. Thus anodic oxidation can be considered as an excellent surface treatment method that will able to not only control the physical properties but enhance the biological characteristics of the oxide layer. Furthermore, it is recommended in near future animal research to prove these results.