• 제목/요약/키워드: interface charge

검색결과 472건 처리시간 0.025초

Nonlinear numerical modelling for the effects of surface explosions on buried reinforced concrete structures

  • Nagy, N.;Mohamed, M.;Boot, J.C.
    • Geomechanics and Engineering
    • /
    • 제2권1호
    • /
    • pp.1-18
    • /
    • 2010
  • The analysis of structure response and design of buried structures subjected to dynamic destructive loads have been receiving increasing interest due to recent severe damage caused by strong earthquakes and terrorist attacks. For a comprehensive design of buried structures subjected to blast loads to be conducted, the whole system behaviour including simulation of the explosion, propagation of shock waves through the soil medium, the interaction of the soil with the buried structure and the structure response needs to be simulated in a single model. Such a model will enable more realistic simulation of the fundamental physical behaviour. This paper presents a complete model simulating the whole system using the finite element package ABAQUS/Explicit. The Arbitrary Lagrange Euler Coupling formulation is used to model the explosive charge and the soil region near the explosion to eliminate the distortion of the mesh under high deformation, while the conventional finite element method is used to model the rest of the system. The elasto-plastic Drucker-Prager Cap model is used to model the soil behaviour. The explosion process is simulated using the Jones-Wilkens-Lee equation of state. The Concrete Damage Plasticity model is used to simulate the behaviour of concrete with the reinforcement considered as an elasto-plastic material. The contact interface between soil and structure is simulated using the general Mohr-Coulomb friction concept, which allows for sliding, separation and rebound between the buried structure surface and the surrounding soil. The behaviour of the whole system is evaluated using a numerical example which shows that the proposed model is capable of producing a realistic simulation of the physical system behaviour in a smooth numerical process.

3계층 구조를 이용한 GIS 자료처리 설계 및 구현 -도로의 노선선정을 중심으로- (The Design and Implementation of GIS Data Processing using 3-Tiers Architecture for selecting Route)

  • 이형석;배상호
    • 한국컴퓨터정보학회논문지
    • /
    • 제7권3호
    • /
    • pp.23-29
    • /
    • 2002
  • 지리정보체계(GIS)의 자료처리 설계는 분석절차와 더불어 효율적인 방법이 요구되는 과정이다. 본 연구는 3계층 기반의 객체지향기법을 적용한 도형 사용자 접속 환경의 원도우용 체계로서 조건에 따른 도로의 노선선정을 제시할 수 있도록 사용과 유지관리를 손쉽게 하였다. 자료계층은 지오미디어와 응용계층과의 상호 자료 교환, 추출 및 보존을 위한 클래스를 담당하였다. 응용계층에는 시ㆍ종점간의 노선선정에 필요한 제반조건을 고려하여 노선선정 알고리즘을 적용하였으며, 자료 운용, 도로조건, 영향권, 클로소이드 및 계층분석과정 등을 모듈식으로 추가하여 새로운 조건별에 따라 비교노선을 선정할 수 있도록 하였다. 사용자 계층에는 응용계층에 취득된 자료들을 표현할 수 있도록 하였다. 따라서 3계층 기반구조를 이용하여 GIS의 자료 처리의 설계구현에 그 효율성을 제시할 수 있었다.

  • PDF

Modulating the Voltage-sensitivity of a Genetically Encoded Voltage Indicator

  • Jung, Arong;Rajakumar, Dhanarajan;Yoon, Bong-June;Baker, Bradley J.
    • Experimental Neurobiology
    • /
    • 제26권5호
    • /
    • pp.241-251
    • /
    • 2017
  • Saturation mutagenesis was performed on a single position in the voltage-sensing domain (VSD) of a genetically encoded voltage indicator (GEVI). The VSD consists of four transmembrane helixes designated S1-S4. The V220 position located near the plasma membrane/extracellular interface had previously been shown to affect the voltage range of the optical signal. Introduction of polar amino acids at this position reduced the voltage-dependent optical signal of the GEVI. Negatively charged amino acids slightly reduced the optical signal by 33 percent while positively charge amino acids at this position reduced the optical signal by 80%. Surprisingly, the range of V220D was similar to that of V220K with shifted optical responses towards negative potentials. In contrast, the V220E mutant mirrored the responses of the V220R mutation suggesting that the length of the side chain plays in role in determining the voltage range of the GEVI. Charged mutations at the 219 position all behaved similarly slightly shifting the optical response to more negative potentials. Charged mutations to the 221 position behaved erratically suggesting interactions with the plasma membrane and/or other amino acids in the VSD. Introduction of bulky amino acids at the V220 position increased the range of the optical response to include hyperpolarizing signals. Combining The V220W mutant with the R217Q mutation resulted in a probe that reduced the depolarizing signal and enhanced the hyperpolarizing signal which may lead to GEVIs that only report neuronal inhibition.

리튬이온전지 음극용 SiOx 나노입자의 조대화를 통한 전기화학 특성 향상 (Granulations of SiOx Nanoparticles to Improve Electrochemical Properties as a Li-Ion Battery's Anode)

  • 이보라;이재영;장보윤;김준수;김성수
    • 한국전기전자재료학회논문지
    • /
    • 제32권1호
    • /
    • pp.70-77
    • /
    • 2019
  • $SiO_x$ nanoparticles were granulated, and their microstructures and effects on electrochemical behaviors were investigated. In spite of the promising electrochemical performance of $SiO_x$, nanoparticles have limitations such as high surface area, low density, and difficulty in handling during slurry processing. Granulation can be one solution. In this study, pelletizing and annealing were conducted to create particles with sizes of several decades of micron. Decrease in surface area directly influences the initial charge and discharge process when granules are applied as anode materials for Li-ion batteries. Lower surface area is key to decreasing the amount of irreversible phase-formation, such as $Li_2Si_2O_5$, $Li_2SiO_3$ and $Li_4SiO_4$, as well as forming the solid electrolyte interface. Additionally, aggregation of nanoparticles is required to obtain further enhancement of the electrochemical behavior due to restrictions that there be no $Li_4SiO_4$-related reaction during the first discharge process.

에어로졸 데포지션으로 제조된 4H-SiC 위 Al2O3 게이트 산화막의 후열처리 공정에 따른 전기적 특성 (Electrical Properties of Al2O3 Gate Oxide on 4H-SiC with Post Annealing Fabricated by Aerosol Deposition)

  • 김홍기;김성준;강민재;조명연;오종민;구상모;이남석;신훈규
    • 전기전자학회논문지
    • /
    • 제22권4호
    • /
    • pp.1230-1233
    • /
    • 2018
  • 에어로졸 데포지션 (aerosol deposition)공정을 통해 $Al_2O_3$막을 4H-SiC 상에 50 nm 두께로 제조하였고, 후열처리 공정에 따른 전기적 특성을 분석하였다. 그 결과 $N_2$분위기 열처리 시 $Al_2O_3$와 SiC 계면의 고정전하량이 감소하였으나 산소공공 생성에 의한 누설전류의 증가를 확인하였다. 본 결과로부터 계면특성 향상과 누설전류의 감소를 위해서는 적절한 $N_2$$O_2$가스의 혼합이 중요함을 확인하였다.

전기화학 증착법을 이용한 그래핀 개질 Indium Tin Oxide 전극 제작 및 효소 전극에 응용 (Fabrication of Graphene-modified Indium Tin Oxide Electrode Using Electrochemical Deposition Method and Its Application to Enzyme Electrode)

  • 왕설;시키;김창준
    • Korean Chemical Engineering Research
    • /
    • 제60권1호
    • /
    • pp.62-69
    • /
    • 2022
  • 그래핀은 부피에 비해 표면적이 넓고 뛰어난 기계적 물성과 전기전도성을 가지며 생체적합성이 우수하다. 본 연구에서는 전기화학적 방법을 이용하여 indium tin oxide (ITO) 글래스 슬라이드 표면에 산화그래핀을 증착·환원시킨 전극을 제작하였고 그래핀으로 표면 개질된 ITO의 전기화학적 특성을 조사하였다. 산화그래핀의 증착과 환원에 순환전압전류법을 사용하였다. 주사전자현미경과 에너지 분산형 X-선 분광법을 사용하여 그래핀이 코팅된 ITO 표면을 관찰하였다. 순환전압전류법과 전기화학 임피던스 분광법을 사용하여 제작된 전극들의 전기화학 특성을 평가하였다. 사이클 수와 주사 속도는 산화그래핀 증착과 환원도에 상당한 영향을 미쳤으며 제작된 전극의 전기화학 특성도 달랐다. ITO 전극에 비하여 그래핀으로 표면 개질된 ITO는 전극 계면에서의 전하 전달 저항이 낮았고 더 많은 전류를 생산하였다. 그래핀으로 표면 개질된 ITO 표면에 고정화된 포도당 산화효소는 포도당을 산화시키며 성공적으로 전자들을 생성하였다.

항공용 인터콤의 백업 모드 운용을 위한 디지털 방식의 이중화 설계 (The Digital Redundancy Design for Back-up Mode Operation of Aviation Intercom)

  • 정성재;조경학;김동혁;이성우
    • 한국항행학회논문지
    • /
    • 제26권5호
    • /
    • pp.358-364
    • /
    • 2022
  • 항공용 인터콤 시스템은 정/부조종사 간 내부 통화 및 조종사와 승무원 간 내부 통화, 초고주파 무전기(U/VHF)와 같은 통신 장비를 통한 외부 통화, 초단파전방향거리탐지기/계기착륙장치(VOR/ILS), 전술 항법 장치(TACAN)와 같은 항법 및 임무 장비 오디오 신호 모니터링, 비행 데이터기록장치(FDR) 및 자료전송 시스템(DTS)으로의 음성 녹음용 오디오 신호 출력, 항공기의 상태와 위협 등에 대한 오디오 경고음/경고 음성 발생 등 항공기 내의 모든 음성 신호에 대한 처리를 담당하는 장비이다. 이러한 항공용 인터콤은 아날로그 오디오 신호의 경우 노이즈에 민감하기 때문에 조종사 및 승무원의 임무 수행을 위해 항공기 내/외부의 전자파 노이즈로부터 오디오 신호를 보호할 수 있는 이중화 설계가 필요하다. 본 논문에서는 항공용 디지털 인터콤의 이중화를 위한 정상/백업 운용모드 및 디지털 방식의 이중화 설계 방안과 제작 및 검증 결과에 대하여 기술한다.

Highly sensitive xylene sensors using Fe2O3-ZnFe2O4 composite spheres

  • Chan, Jin Fang;Jeon, Jae Kyoung;Moon, Young Kook;Lee, Jong-Heun
    • 센서학회지
    • /
    • 제30권4호
    • /
    • pp.191-195
    • /
    • 2021
  • Pure ZnFe2O4 and Fe2O3-ZnFe2O4 hetero-composite spheres were prepared by ultrasonic spray pyrolysis of a solution containing Zn- and Fe-nitrates. Additionally, the sensing characteristics of these spheres in the presence of 5 ppm ethanol, benzene, p-xylene, toluene, and CO (within the temperature range of 275-350 ℃) were investigated. The Fe2O3-ZnFe2O4 hetero-composite sensor with a cation ratio of [Zn]:[Fe]=1:3 exhibited a high response (resistance ratio = 140.2) and selectivity (response to p-xylene/response to ethanol = 3.4) to 5 ppm p-xylene at 300 ℃, whereas the pure ZnFe2O4 sensor showed a comparatively lower gas response and selectivity. The reasons for the superior response and selectivity to p-xylene in Fe2O3-ZnFe2O4 hetero-composite sensor were discussed in relation to the electronic sensitization due to charge transfer at Fe2O3-ZnFe2O4 interface and Fe2O3-induced catalytic promotion of gas sensing reaction. The sensor can be used to monitor harmful volatile organic compounds and indoor air pollutants.

고에너지 전고체 전해질을 위한 나노스케일 이종구조 계면 특성 (Nanoscale Characterization of a Heterostructure Interface Properties for High-Energy All-Solid-State Electrolytes )

  • 황성원
    • 반도체디스플레이기술학회지
    • /
    • 제22권1호
    • /
    • pp.28-32
    • /
    • 2023
  • Recently, the use of stable lithium nanostructures as substrates and electrodes for secondary batteries can be a fundamental alternative to the development of next-generation system semiconductor devices. However, lithium structures pose safety concerns by severely limiting battery life due to the growth of Li dendrites during rapid charge/discharge cycles. Also, enabling long cyclability of high-voltage oxide cathodes is a persistent challenge for all-solid-state batteries, largely because of their poor interfacial stabilities against oxide solid electrolytes. For the development of next-generation system semiconductor devices, solid electrolyte nanostructures, which are used in high-density micro-energy storage devices and avoid the instability of liquid electrolytes, can be promising alternatives for next-generation batteries. Nevertheless, poor lithium ion conductivity and structural defects at room temperature have been pointed out as limitations. In this study, a low-dimensional Graphene Oxide (GO) structure was applied to demonstrate stable operation characteristics based on Li+ ion conductivity and excellent electrochemical performance. The low-dimensional structure of GO-based solid electrolytes can provide an important strategy for stable scalable solid-state power system semiconductor applications at room temperature. The device using uncoated bare NCA delivers a low capacity of 89 mA h g-1, while the cell using GO-coated NCA delivers a high capacity of 158 mA h g−1 and a low polarization. A full Li GO-based device was fabricated to demonstrate the practicality of the modified Li structure using the Li-GO heterointerface. This study promises that the lowdimensional structure of Li-GO can be an effective approach for the stabilization of solid-state power system semiconductor architectures.

  • PDF

Effect of Carbon Fiber Layer on Electrochemical Properties of Activated Carbon Electrode

  • Jong kyu Back;Jihyeon Ryu;Yong-Ho Park;Ick-Jun Kim;Sunhye Yang
    • Journal of Electrochemical Science and Technology
    • /
    • 제14권2호
    • /
    • pp.184-193
    • /
    • 2023
  • This study investigates the effects of a carbon fiber layer formed on the surface of an etched aluminum current collector on the electrochemical properties of the activated carbon electrodes for an electric double layer capacitor. A particle size analyzer, field-emission SEM, and nitrogen adsorption/desorption isotherm analyzer are employed to analyze the structure of the carbon fiber layer. The electric and electrochemical properties of the activated carbon electrodes using a carbon fiber layer are evaluated using an electrode resistance meter and a charge-discharge tester, respectively. To uniformly coat the surface with carbon fiber, we applied a planetary mill process, adjusted the particle size, and prepared the carbon paste by dispersing in a binder. Subsequently, the carbon paste was coated on the surface of the etched aluminum current collector to form the carbon under layer, after which an activated carbon slurry was coated to form the electrodes. Based on the results, the interface resistance of the EDLC cell made of the current collector with the carbon fiber layer was reduced compared to the cell using the pristine current collector. The interfacial resistance decreased from 0.0143 Ω·cm2 to a maximum of 0.0077 Ω·cm2. And degradation reactions of the activated carbon electrodes are suppressed in the 3.3 V floating test. We infer that it is because the improved electric network of the carbon fiber layer coated on the current collector surface enhanced the electron collection and interfacial diffusion while protecting the surface of the cathode etched aluminum; thereby suppressing the formation of Al-F compounds.