• 제목/요약/키워드: Electro-magnetic wave

검색결과 109건 처리시간 0.028초

A Study on Smart Heat Radiating Sheet for Protecting Electronic Equipments on the Ship

  • Choi, Dong-Soo;Kim, Dong-Il;Kim, Doh-Yeol;Choi, Dong-Han;Kil, Gyung-Suk;Kim, Jae-Hwan
    • 한국항해항만학회지
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    • 제35권7호
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    • pp.569-573
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    • 2011
  • In this paper, we developed a Smart Heat Radiating Sheet(SHRS) having the absorption ability of more than 15 dB, and thermal conduction rate more than 20 W/mk for port logistics RFID(Radio Frequency IDentification) system by using AMP(Amorphous Metal Powder) and shielding sheet. Firstly, the EM(Electro_Magnetic) wave absorber samples were fabricated by using AMP and CPE (Chlorinated Polyethylene) with different composition ratios of 80 : 20 wt.% and 85 : 15 wt.%, respectively. Secondly, we fabricated the Smart Heat Radiating Sheet using the shielding sheet to attach EM Wave Absorber. As a result, the Smart Heat Radiating Sheet with absorption ability of 16 dB at 433 MHz and thermal conduction rate is 24 W/mk has been developed with the composition ratio of Amorphous Metal Powder : CPE = 85 : 15 wt.% and thickness of 5.5 mm.

3.5 mm 동축형 미소열량계 개발과 전자파전력 측정표준 확립 (Development of a 3.5 mm Coaxial Microcalorimeter for Microwave Power Standards)

  • 권재용;김정환;강태원
    • 한국전자파학회논문지
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    • 제20권9호
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    • pp.989-996
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    • 2009
  • 전자파전력은 전자파 측정표준 분야의 기본 측정량이며, 관련된 주요 전자파 측정량, 예를 들면 감쇠량, RF 전압, 안테나 특성, 전자기장의 세기 등의 국가 표준을 확립하는데 직접 사용된다. 본 논문에서는 전자파전력 측정에 필요한 전자파전력계와 전력 감지기의 측정 원리를 다룬다. $50\;MHz{\sim}26.5\;GHz$의 주파수 범위에서 동작 하는 전자파전력 국가 표준 원기인 3.5 mm 등축형 미소열량계의 설계, 제작에 있어서의 핵심 사항에 대해서 다루고, 미소열량계를 중심으로 구성된 전력 측정 시스템의 구조 및 동작 원리를 고찰한다.

Fundamental Investigation of Functional Property of Concrete Mixed with Functional Materials

  • Lee, Jong-Chan;Lee, Moon-Hwan;Lee, Sae-Hyun;Park, Young-Sin;Park, Jae-Myung
    • International Journal of Concrete Structures and Materials
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    • 제18권3E호
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    • pp.165-171
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    • 2006
  • Environment-friendly materials are increasingly used as building construction materials nowadays, and the market share of those is growing. Accordingly, the research and developments in terms of environmental value are progressing steadily now. The main characteristics of environmental products are far-infrared radiation, negative-ion emission, electromagnetic wave shielding, and antimicrobial property. These products are often used in mortar and as spray on the finishing material. Nevertheless, there are hardly any research on the functional properties of concrete, the main material in construction field. Thus, we evaluated such basic properties of concrete as slump, compressive strength and air content while using such functional materials as sericite, wood-pattern sandstone, carbon black and nano-metric silver solution to focus on their functional properties like far-infrared radiation, negative ion emission, electro magnetic wave shielding, and antimicrobial activity in this research. The results indicated that the most useful material in the functional materials was carbon black. Sericite and nano-metric silver solution had a little effect on the functional property. Moreover, although wood-pattern sandstone had very high functional property, it exhibited too low compressive strength to be applied, to concrete as a factory product. Antimicrobial property of nano-metric silver solution in the concrete was not clear demonstrated, but if these specimens were to be aged in $CO_2$ gas for a long time, it might be apparent.

Ultrasonic waves in a single walled armchair carbon nanotube resting on nonlinear foundation subjected to thermal and in plane magnetic fields

  • Selvamani, Rajendran;Jayan, M. Mahaveer Sree;Ebrahimi, Farzad
    • Coupled systems mechanics
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    • 제10권1호
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    • pp.39-60
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    • 2021
  • The present paper is concerned with the study of nonlinear ultrasonic waves in a magneto thermo (MT) elastic armchair single-walled carbon nanotube (ASWCNT) resting on polymer matrix. The analytical formulation is developed based on Eringen's nonlocal elasticity theory to account small scale effect. After developing the formal solution of the mathematical model consisting of partial differential equations, the frequency equations have been analyzed numerically by using the nonlinear foundations supported by Winkler-Pasternak model. The solution is obtained by ultrasonic wave dispersion relations. Parametric work is carried out to scrutinize the influence of the non local scaling, magneto-mechanical loadings, foundation parameters, various boundary condition and length on the dimensionless frequency of nanotube. It is noticed that the boundary conditions, nonlocal parameter, and tube geometrical parameters have significant effects on dimensionless frequency of nano tubes. The results presented in this study can provide mechanism for the study and design of the nano devices like component of nano oscillators, micro wave absorbing, nano-electron technology and nano-electro- magneto-mechanical systems (NEMMS) that make use of the wave propagation properties of armchair single-walled carbon nanotubes embedded on polymer matrix.

Influence of electro-magneto-thermal environment on the wave propagation analysis of sandwich nano-beam based on nonlocal strain gradient theory and shear deformation theories

  • Arani, Ali Ghorbanpour;Pourjamshidian, Mahmoud;Arefi, Mohammad
    • Smart Structures and Systems
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    • 제20권3호
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    • pp.329-342
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    • 2017
  • In this paper, the dispersion characteristics of elastic waves propagation in sandwich nano-beams with functionally graded (FG) face-sheets reinforced with carbon nanotubes (CNTs) is investigated based on various high order shear deformation beam theories (HOSDBTs) as well as nonlocal strain gradient theory (NSGT). In order to align CNTs as symmetric and asymmetric in top and bottom face-sheets with respect to neutral geometric axis of the sandwich nano-beam, various patterns are employed in this analysis. The sandwich nano-beam resting on Pasternak foundation is subjected to thermal, magnetic and electrical fields. In order to involve small scale parameter in governing equations, the NSGT is employed for this analysis. The governing equations of motion are derived using Hamilton's principle based on various HSDBTs. Then the governing equations are solved using analytical method. A detailed parametric study is conducted to study the effects of length scale parameter, different HSDBTs, the nonlocal parameter, various aligning of CNTs in thickness direction of face-sheets, different volume fraction of CNTs, foundation stiffness, applied voltage, magnetic intensity field and temperature change on the wave propagation characteristics of sandwich nano-beam. Also cut-off frequency and phase velocity are investigated in detail. According to results obtained, UU and VA patterns have the same cut-off frequency value but AV pattern has the lower value with respect to them.

등가재료정수법 및 FDTD법에 의한 단일편파용 광대역 전파흡수체의 해석 (Analysis of Broad-Band Electromagnetic Wave Absorber for Single Polarized Wave by the Equivalent Material Method and the FDTD Method)

  • 이수영;김동일;이종헌
    • 한국전자파학회논문지
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    • 제9권3호
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    • pp.296-304
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    • 1998
  • TV파와 같은 수명편파용 광대역 전파흡수체를 설계하기 위해 평판 페라이트층 위에 핀형 페라이트를 적충한 전파흡수체를 제안하였다. 제안한 전파홉수체를 등가재료정수법을 이용하여 최적 치수를 구하고, 이 때의 전파흡수능을 기존의 흡수체의 흡수능과 비교하였다, 둥가재료정수법이라는 근사법의 타당성을 확인하기 위하여 Hashin-Strikman의 경계치를 이용한 경우의 실효유전율과 비교하였다. 나아가서, 등가재료정수법에 의한 전파흡수능과 도파관모델로 근사하여 FDTD법으로 구한 전파홉수능을 비교한 결과, 이들은 서로 잘 일치함을 확인하였다. 따라서, 제안한 단일편파용 전파흡수체는 30 MHz-5830 MHz의 광대역 특성을 가지며, 이러한 구조의 전파흡수체를 설계 또는 해석하는 데에는 등가재료정수법으로도 충분히 유효함이 입증되었다.

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Magnetron Sputter Coating of Inner Surface of 1-inch Diameter Tube

  • Han, Seung-Hee;An, Se-Hoon;Song, In-Seol;Lee, Keun-Hyuk;Jang, Seong-Woo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.135-135
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    • 2015
  • Tubes are of extreme importance in industries as for fluid channels or wave guides. Furthermore, some weapon systems such as cannons use the tubes as gun barrels. To increase the service life of such tubes, a protective coating must be applied to the tubes' inner surface. However, the coating methods applicable to the inner surface of the tubes are very limited due to the geometrical restriction. A small-diameter cylindrical magnetron sputtering gun can be used to deposit coating layers on the inner surface of the large-bore tubes. However, for small-bore tubes with the inner diameter of one inch (~25 mm), the magnetron sputtering method can hardly be accommodated due to the space limitation for permanent magnet assembly. In this study, a new approach to coat the inner surface of small-bore tubes with the inside diameter of one inch was developed. Instead of using permanent magnets for magnetron operation, an external electro-magnet assembly was adopted around the tube to confine the plasma and to sustain the discharge. The electro-magnet was operated in pulse mode to provide the strong axial magnetic field for the magnetron operation, which was synchronized with the negative high-voltage pulse applied to the water-cooled coaxial sputtering target installed inside the tube. By moving the electro-magnet assembly along the tube's axial direction, the inner surface of the tube could be uniformly coated. The inner-surface coating system in this study used the tube itself as the vacuum chamber. The SS-304 tube's inner diameter was 22 mm and the length was ~1 m. A water-cooled Cu tube (sputtering target) of the outer diameter of 12 mm was installed inside of the SS tube (substrate) at the axial position. The 50 mm-long electro-magnet assembly was fed by a current pulse of 250 A at the frequency and pulse width of 100 Hz and 100 usec, respectively. The calculated axial magnetic field strength at the center was ~0.6 Tesla. The central Cu tube was synchronously driven by a HiPIMS power supply at the same frequency of 100 Hz as the electro-magnet and the applied pulse voltage was -1200 V with a pulse width of 500 usec. At 150 mTorr of Ar pressure, the Cu deposition rate of ~10 nm/min could be obtained. In this talk, a new method to sputter coat the inner surface of small-bore tubes would be presented and discussed, which might have broad industrial and military application areas.

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전자회로 및 부품 보호용 방열기능형 스마트 전파 흡수체의 개발과 전망 (Development and prospect of Smart EMW Absorber for Protection of Electronic Circuits and Devices with Heat Radiating Function)

  • 김동일;박수훈;주양익
    • 한국정보통신학회논문지
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    • 제19권5호
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    • pp.1040-1046
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    • 2015
  • 전자 및 전파통신기술의 급속한 발전에 따라 인류는 정보통신의 커다란 혜택을 누릴 수 있게 되었다. 그러나 전자파환경은 보다 복잡해지고, 그만큼 제어하가 어려워졌다. 이에 따라 ANSI, FCC, CISPR(국제무선장해규제기구) 등과 같은 국제기구에서는 다양한 전자파환경의 제어 및 대책을 수립해 오고 있다. 본 논문에서는 전파흡수체의 현황과 미래의 스마트 흡수체, 나아가서 방열 기능을 가지는 전파흡수체의 설계 방법을 제안한다. 설계한 전파흡수체는 2 GHz~2.45 GHz에서 20 dB 이상의 흡수능을 발휘하며, 개구의 크기, 간격 및 두께는 각각 6 mm, 9 mm, and 6.5 mm로 하였다. 이 스마트 전파흡수체는 다양한 전자, 통신, 제어, 전파 시스템의 회로 및 부품 보호용 소재로 활용될 수 있을 것으로 보인다.

의료영상장치의 전자파 안전에 대한 연구 (A Study on the Safety of Electromagnetic Wave of Medical Imaging System)

  • 선종률;이원정;임재동
    • 대한안전경영과학회:학술대회논문집
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    • 대한안전경영과학회 2010년도 추계학술대회
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    • pp.103-112
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    • 2010
  • This study was done to provide basic data on the safety of professionals in medical imaging system by measuring the electromagnetic waves generated in the medical imaging system being used in medical organization. The studied medical imaging systems were general X-ray system, computed tomography(CT), ultrasonographic system, magnetic resonance imaging(MRI), PET-CT and fluoroscopic system, and through these devices, electric field and magnetic field were measured and analyzed. As a result of the analysis, the measured values classified by the medical organizations were not much significant, but in the measurement by the medical imaging systems, there were high hazard elements in the sequential order of electric field PET-CT($17.7{\pm}22.9$)v/m, CT($10.3{\pm}8.7$)v/m, general X-ray system ($8.8{\pm}8.8$)v/m, magnetic field general X-ray system($5.06{\pm}8.26$)mG, CT($2.71{\pm}4.53$)mG and PET-CT($0.74{\pm}0.34$)mG, the systems that adopted X-ray as main ray source, and the more aged the medical imaging systems, the greater the effects of electro-magnetic waves($10.6{\pm}15.93v/m$ for 5 years or more, $6.14{\pm}5.60v/m$ for 5 years or less). The effects of electromagnetic waves on medical imaging systems or facilities were not much when the notification of ministry of knowledge economy is considered, but in the overall perspective considering all the equipments and facility of the medical organization, such effects were significant. It is determined that sustainable safety managements of electric field and magnetic field must be done during process from medical imaging system installation to maintenance to rule out such factors.

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의료영상장치의 전자파 안전에 대한 연구 (A Study on the Safety of Electromagnetic Wave of Medical Imaging System)

  • 선종률;이원정;임재동
    • 대한안전경영과학회지
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    • 제12권4호
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    • pp.67-72
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    • 2010
  • This study was done to provide basic data on the safety of professionals in medical imaging system by measuring the electromagnetic waves generated in the medical imaging system being used in medical organization. The studied medical imaging systems were general X-ray system, computed tomography(CT), ultrasonographic(USG) system, magnetic resonance imaging(MRI), PET-CT and fluoroscopic(R/F) system, and through these devices, electric field and magnetic field were measured and analyzed. As a result of the analysis, the measured values classified by the medical organizations were not much significant, but in the measurement by the medical imaging systems, there were high hazard elements in the sequential order of electric field PET-CT($17.7{\pm}22.9$)v/m, CT($10.3{\pm}8.7$)v/m, general X-ray system($8.8{\pm}8.8$)v/m, magnetic field general X-ray system($5.06{\pm}8.26$)mG, CT($2.71{\pm}4.53$)mG and PET-CT($0.74{\pm}0.34$)mG, the systems that adopted X-ray as main ray source, and the more aged the medical imaging systems, the greater the effects of electro-magnetic waves($10.6{\pm}15.93v/m$ for 5 years or more, $6.14{\pm}5.60v/m$ for 5 years or less). The effects of electromagnetic waves on medical imaging systems or facilities were not much when the notification of ministry of knowledge economy is considered, but in the overall perspective considering all the equipments and facility of the medical organization, such effects were significant. It is determined that sustainable safety managements of electric field and magnetic field must be done during process from medical imaging system installation to maintenance to rule out such factors.