• Title/Summary/Keyword: 임피던스 튜브

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A Study on Estimation Method for Physical Properties of Sound Absorbing Materials (다공성 재료의 물리적 성질 추정 방법에 대한 연구)

  • Kim, Yoon-Jae;Kang, Yeon-June;Kim, Jung-Soo
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2005.11b
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    • pp.118-121
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    • 2005
  • The acoustical performance of porous materials is determined by their seven or more macroscopic physical properties. However, it is not easy to measure all these properties in many cases. Furthermore, the measurement is compels engineers to spend much times. The effect of each property on the normal incidence absorption coefficient and normalized surface impedance was studied to estimate the properties of porous materials by numerical method. According to the investigation, Properties of porous materials are divided into several groups and estimated by each group. This paper is focused on the estimation procedure of porous materials by the numerical method.

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Sound transmission of multi-layered micro-perforated plates in a cylindrical impedance tube (원통형 임피던스 튜브 내 다중 미세천공 판의 음향투과)

  • Kim, Hyun-Sil;Ma, Pyung-Sik;Kim, Bong-Ki;Lee, Seong-Hyun;Seo, Yun-Ho
    • The Journal of the Acoustical Society of Korea
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    • v.39 no.4
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    • pp.270-278
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    • 2020
  • In this paper, sound transmission of Micro-Perforated Plates (MPPs) installed in an impedance tube with a circular cross-section is described using an analytic method. Vibration of the plates is expressed in terms of an infinite series of modal functions, where modal function in the radial direction is given by the Bessel function. Under the plane wave assumption, a low frequency approximation is derived, and a formula for the sound transmission coefficient of multi-layered MPPs is presented using the transfer matrix method. The Sound Transmission Losses (STLs) of single and double MPPs are computed using the proposed method and compared with those done by the Finite Element Method (FEM), which shows an excellent agreement. As the perforation increases, the STL is degraded, since the STL becomes dominated by the perforation ratio rather than by vibration of the plate. The STL shows dips at natural frequencies as well as at the mass-spring-mass resonance frequency. The proposed model for the STL prediction in this study can be applied to an arbitrary number of MPPs, where each MPP may or may not have a perforation.

Study of Sound Absorption & Transmission Characteristics for MCPs Foaming rate by Batch Process (MCPs Closed Cell 의 발포율에 따른 흡차음 특성 연구)

  • 이병희;차성운;강연준
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.10a
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    • pp.364-368
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    • 2004
  • Micro Cellular Plastics create a sensation at polymer industrial for lowering product cost & overcoming a lowering of mechanical intensity. This research based on the experiment of sound absorption & transmission characteristics inquire into acoustic property of Micro Cellular Plastics. This experiment clarify the change of cell foaming rate for foaming time and the change of sound absorption & transmission for foaming rate.

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A Study on Sensing Characteristics of Carbon Nanotube Smart Composite Nano Sensors Based on Electrical Impedance Measurement (탄소나노튜브 스마트 복합소재의 전기적 임피던스 변화를 이용한 나노센서의 센싱 특성 연구)

  • Kang, I.P.
    • Journal of Power System Engineering
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    • v.13 no.1
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    • pp.65-71
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    • 2009
  • To address the need for new intelligent sensing, this paper introduces nano sensors made of carbon nanotube (CNT) composites and presents their preliminary experiments. Having smart material properties such as piezoresistivity, chemical and bio selectivity, the nano composite can be used as smart electrodes of the nano sensors. The nano composite sensor can detect structural deterioration, chemical contamination and bio signal by means of its impedance measurement (resistance and capacitance). For a structural application, the change of impedance shows specific patterns depending on the structural deterioration and this characteristic is available for an in-situ multi-functional sensor, which can simultaneously detect multi symptoms of the structure. This study is anticipated to develop a new nano sensor detecting multiple symptoms in structural, chemical and bio applications with simple electric circuits.

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A facile spray coating of bismuth oxide on TiO2 nanotube arrays for lithium ion battery anode materials (스프레이 코팅법을 이용한 산화비스무트-타이타니아 나노튜브 제조와 리튬이차전지 음극으로의 적용)

  • Kim, Nam-Yeol;Jeong, Min-Gyeong;Choe, Jin-Seop
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.146-146
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    • 2017
  • 산화비스무트는 리튬이온과의 반응에서 현재 상용화된 그래파이트보다 높은 이론용량을 가지고 있으나, 리튬이온과의 반응에서 비교적 큰 부피팽창 특성을 가져 리튬이차전지의 음극재로서 상용화가 어려운 단점이 있다. 본 연구에서는, 이러한 문제점을 개선하기 위하여 양극산화법을 통해 충 방전시 부피팽창 변화가 매우 적은 타이타니아 나노튜브를 제조한 후, 그 위에 스프레이 방법으로 산화비스무트를 코팅하여 두 물질의 복함체를 만듦으로써 용량과 구조적 안정성을 향상시키는 방법을 소개한다. 음극재의 구조적 특성은 고분해능 주사전자현미경 (HR-SEM), 고분해능 엑스선 회절분석기(XRD)를 통해 조사하였으며, 전기화학 임피던스 분광법 (EIS), 순환전류법 (CV), 충 방전 싸이클 분석을 통해 리튬이차전지의 작동원리와 보다 향상된 성능을 규명하였다.

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초소형 실리콘 신경탐침의 임피던스 특성 향상 연구

  • Lee, Su-Jin;Lee, Lee-Jae;Yun, Hyo-Sang;Park, Jae-Yeong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.427-428
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    • 2014
  • 서론: 최근 전세계적인 고령화 진행에 따른 뇌졸중, 파킨슨병, 알츠하이머병 등과 같은 각종 뇌관련 질환에 대한 관심이 더욱 높아지고 있으며 다양한 뇌질환 치료를 위하여 뇌 신경 신호의 정확한 검출 대한 연구가 학계에서 활발히 진행되고 있다. 효과적인 뇌 신경 신호 검출을 위해서는 세포조직의 손상을 최소화 할 수 있는 초소형 신경탐침 및 극소 면적내에서 극대화된 검출 전극이 구현되어야 한다. 그러나, 극소 면적내에 구성된 소면적 전극을 통한 신호 검출은 전극 계면에서의 높은 임피던스를 야기시켜 정밀한 신경신호 검출에 어려움을 만든다. 따라서, 뇌 신경 신호 검출시 전극 계면에서의 낮은 임피던스를 검출하기 위한 다결정실리콘, 이리듐 산화막, 탄소나노튜브와 같은 다양한 전극 소재를 이용한 신경탐침 연구가 제안되어 왔다. 본 연구에서는 극소화된 전극면적과 신경세포 계면에서의 저 임피던스 신경신호 검출을 위하여 비이온성 계면활성제와 전해도금을 이용하여 높은 거칠기값을 갖는 나노동공 백금층을 검출 전극으로 활용하였다. 실험 결과: 제작된 신경탐침의 몸체는 실리콘으로 이루어지며, 탐침 끝단에는 신호 측정을 위한 나노동공 백금층을 갖는 전극들이 집적되어 있다. Fig. 1 는 제작된 나노동공 백금을 갖는 신경탐침의 이미지 (a), SEM (b), TEM (c), FESEM (d) 측정결과를 보여준다. 0.9 %의 NaCl 용액에서 제작된 신경탐침의 계면임피던스 및 위상각 변화에 대한 측정결과가 Fig. 2에 나타나 있다. 1.2 kHz 주파수에서 $942.6K{\Omega}$ ($0.029{\Omega}cm^2$, $3.14{\mu}m^2$)로 극대화된 실표면적을 갖는 나노동공 백금층에 의하여 매우 낮은 임피던스 특성을 보인 것으로 판단된다. 또한 제작된 신경탐침은 위상각이 $-82.9^{\circ}$로서 캐패시터와 같은 역할을 하고 있다고 예상할 수 있었으며 $4.6mFcm^{-2}$의 축전용량값을 보였다. Fig. 3는 1 M의 황산용액에서 나노동공백금층이 형성된 신경탐침 전극과 형성 전의 전기화학적 표면변화를 비교분석한 결과로서 나노동공 백금층의 형성 전/후의 전류응답 특성이 상이하게 나타났다. 나노동공 백금층의 실표면적 극대화로 인한 전류응답수치 또한 크게 향상 되었으며, 0~-0.25 V 영역에서의 수소 흡착에 따른 환원곡선은 전형적인 백금 특성을 보여주는 결과로 판단 할 수 있다. Table 1는 기존에 연구되었던 신경탐침들과 본 연구에서 제작된 나노동공 백금을 갖는 신경탐침의 임피던스와 캐패시턴스 특성을 비교한 결과이다. 결론: 본 연구에서는 실리콘 신경탐침 끝단에 집적된 전극상에 전해도금법을 이용하여 높은 거칠기값을 갖는 나노동공 백금층을 형성하고 전극 계면상의 낮은 임피던스를 검출을 하였다. 나노동공 백금층을 갖는 신경탐침은 순환전압전류법을 통해 극대화된 실표면적을 극대화를 확인할 수 있었으며, 극대화된 검출 전극면은 저 임피던스 측정에 용이함을 실험을 통해서 증명할 수 있었다. 따라서, 높은 거칠기값의 나노동공 백금층은 초소형화된 신경탐침상에 집적되는 전극면적소형화와 다수의 전극 구현에 효과적일 것으로 판단되며 보다 정확한 신경신호 검출을 통한 뇌질환의 명확한 이해에 유망할 것으로 판단된다.

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Development of Underwater Acoustic Performance Measurement System Using Pulse Tubes (펄스 튜브를 이용한 수중 음향 성능 측정 시스템 개발)

  • Seo, Yun-Ho;Kim, SangRyul;Lee, Sung-Min;Byun, Yang-Heon;Seo, Youngsoo
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.24 no.5
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    • pp.399-406
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    • 2014
  • Underwater acoustic materials are installed in order to reduce reflection, transmission and radiation of an underwater structure. The acoustic performance of the materials should be evaluated in accurately-controlled environment in terms of temperature and static pressure. In this paper, two pulse tubes, which are equipped with temperature and pressure controllers, are designed and developed to evaluate echo reduction(ER) and transmission loss(TL) of underwater acoustic materials. The procedures of the evaluation are suggested and the validation is carried out by comparing theoretical values to experimental results for a simple stainless steel specimen and free surface. In result, it is validated that developed pulse tubes are able to measure ER and TL with 2 dB tolerance.

Development of Eddy Current Test Probe for Profilometry Inspection of Tube (원형튜브 단면형상검사용 와전류탐촉자 개발)

  • Lee, H.J.;Nam, M.W.;Lee, C.H.
    • Journal of the Korean Society for Nondestructive Testing
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    • v.17 no.4
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    • pp.262-269
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    • 1997
  • An eddy current probe ($8{\times}1$ multiple-element, surface scan) was successfully designed and fabricated at the KEPRI using the impedance equivalent circuit theory. The probe is intended for the detection of circumferential deformations (cross-section view) of the heat exchanger tubing that can occur due to corrosion, erosion, and denting. Optimum design parameters providing the highest sensitivity and signal-to-noise ratio, such as the coil dimensions, electrical characteristics, and test frequencies, were determined based on initial laboratory experiments conducted on the test specimen (SS304 tubing: OD : 9.68mm, wall-thickness : 0.47mm) containing artificial flaws (e.g., dents and corroded surface on tube OD) using the available Zetec-made probe. Using this parameters, a new probe was made and tested on an unknown specimen. The result indicated that the new probe is capable of detecting the circumferential deformation with the error of ${\pm}0.2%$ (0.022mm) of the tube O.D.

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An analysis of acoustic pressure in the center of double pipe inside of a cylindrical vibrator (원통형 진동자 내부의 이중관 중심에서의 음압해석)

  • Kim, Jungsoon;Kim, Moojoon
    • The Journal of the Acoustical Society of Korea
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    • v.36 no.3
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    • pp.165-171
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    • 2017
  • The effect of the concentric solid tube inserted inside the vibrator on the sound field distribution was analyzed for the sound waves focused on the center axis in the fluid - filled cylindrical piezoelectric transducer. The sound waves radiated from the inside of the cylindrical piezoelectric vibrator are transmitted through the fluid medium and are reflected or transmitted on the wall surface of the solid tube, and are focused on the central axis. At this time, the sound field distribution centered on the acoustic tube varies depending on the acoustic impedance and the thickness of the solid tube. In order to theoretically analyze this, the transfer matrix for each medium is derived, and the sound pressure level at the center axis is theoretically analyzed. For the acrylic tube with various thicknesses, the changing trend in the sound pressure level measured on the central axis agrees well with the result of the theoretical analysis, and it confirmed that the sound pressure formed at the center changes very sensitively with the thickness of the solid tube.

Electrochemical properties of heat-treated multi-walled carbon nanotubes (열처리된 탄소나노튜브 상대전극의 전기화학적 특성 연구)

  • Lee, S.K.;Moon, J.H.;Hwang, S.H.;Kim, G.C.;Lee, D.Y.;Kim, D.H.;Jeon, M.H.
    • Journal of the Korean Vacuum Society
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    • v.17 no.1
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    • pp.67-72
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    • 2008
  • We have studied the effect of heat treatment of multi-walled carbon nanotubes (MWNTs) as a counter electrode on the electro-chemical properties of dye-snsitized solar cells. MWNTs on the p-type Si substrate were synthesized by thermal chemical vapor deposition (CVD) using Fe catalysts. We prepared the two types of MWNTs samples with the different diameters. The rapid thermal annealing (RTA) treatment for the MWNTs was carried out at the growth temperature ($900^{\circ}C$) for 1 minute with $N_2$ gas atmosphere. The structural, electrical and electrochemical properties of MWNTs were investigated by field-emission scanning electron microscopy (FE-SEM), Raman spectroscopy, 2-point probe station and electrochemical impedance spectroscopy (EIS). The I(D)/I(G) ratio of heat-treated MWNTs in Raman spectra was considerably decreased. It was also found that the heat-treated MWNTs showed better redox reaction of iodide at the interface between MWNTs surface and electrolyte than that of as-grown MWNTs. The redox resistance value of heat-treated electrodes was measured to be much lower than that of as-grown electrode at the interface. As a result, the counter electrode using the heat-treated MWNTs showed better electrochemical properties.