• Title/Summary/Keyword: electron microscope characteristics

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AFM based Surface Verifications of Pulse Electrochemical Polishing for Various Frequency Conditions (주파수 변화에 따른 AFM 기반의 펄스 전기화학 폴리싱 표면특성 분석)

  • Kim, Young-Bin;Kim, Jong-Tye;Ahn, Dong-Gyu;Park, Jong-Rak;Jeong, Sang-Hwa;Park, Jeong-Woo
    • Journal of the Korean Society of Manufacturing Technology Engineers
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    • v.21 no.2
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    • pp.246-251
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    • 2012
  • Pulse electrochemical polishing process has been used to improve mechanical properties such as surface roughness and corrosion resistance on conductive metallic materials. In addition, pulse electrochemical polishing process with various frequency may produce a lustrous, smoother, deburred and cleaned surface on workpiece. The aim of this paper is to study surface characteristics of pulse electrochemical polishing for various frequency conditions using AFM to verify localized surface variation in nanometer scale.

Electrical and optical characteristics of ITO films with different composition (ITO의 조성에 따른 전기적, 광학적 특성)

  • Lee, Seo-Hee;Jang, Gun-Eik
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.216-216
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    • 2010
  • ITO는 n- type 반도체 재료로 Sn의 첨가로 인한 매우 낮은 전기저항과 안정성때문에 널리 사용되고 있는 재료이며 비교적 높은 band gap(3.55Ev)를 가짐으로 인하여 가시광선 영역에서 높은 투과도를 가지는 특징이 있다. 단점으로는 박막 제조 시에 증착시간의 증가함에 따라 음이온 충격 및 온도 상공으로 인한 막의 표면손상이 발생하게 되고 이것은 전기저항이 증가하는 요인으로 작용하는 문제점이 있다. 본 연구에서는 3가지 조성의 ITO박막을 스퍼터 장치를 이용하여 증착하고 그에 따른 전기적, 구조적, 광학적 특성을 분석 하였다. 증착된 ITO성막의 표면분석을 위해 AFM (Atomic Force Microscope)으로 표면 거칠기값 분석, XRD (X-ray diffraction)을 이용 결정성장분석, SEM (Scanning Electron Microscope)으로 표면의 미세구조관찰, 4Point pobe로 면 저항분석, spectrophotometer로 박막의 투과율과 흡수율을 분석하였다. 조성변화와 공정변수에 따른 전기적, 구조적, 광학적 특성변화의 원인분석으로 고효율의 ITO 박막성장 가능성을 조사하였다.

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Evaluation of Cavitation Characteristics of 5083-O Al Alloy with Amplitude (5083-O 알루미늄 합금의 진폭에 따른 캐비테이션 침식 특성 평가)

  • Lee, Seung Jun;Kim, Seong Jong
    • Corrosion Science and Technology
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    • v.11 no.5
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    • pp.205-212
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    • 2012
  • With recent advances in engineering and technology, a damage on industrial machineries performing high-speed and high-power requirements has become a problem. There is an increasing possibility of cavitation damage, especially in pumps, propellers and high-speed vessels in a flowing liquid accordingly. There are several factors affecting cavitation damage on materials, including viscosity, pressure, temperature, amplitude applied. In this study, effects of cavity pressure in seawater on the damage for 5083-O aluminium alloy were evaluated by modulating amplitude. Trend of the damage with respect to time and amplitude was analyzed comparatively, and surface degradation of specimens was investigated by using Scanning Electron Microscope(SEM) and 3D microscope. The result reveals that the amount of the damage increased consistently with the increase in time and amplitude while the plastic deformation zone where no appreciable damage occurred was in less than 30 minutes.

Organic additive effects in physical and electrical properties of electroplated Cu thin film

  • Lee, Yeon-Seung;Lee, Yong-Hyeok;Gang, Seong-Gyu;Ju, Hyeon-Jin;Na, Sa-Gyun
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2010.05a
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    • pp.48.1-48.1
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    • 2010
  • Cu has been used for metallic interconnects in ULSI applications because of its lower resistivity according to the scaling down of semiconductor devices. The resistivity of Cu lines will affect the RC delay and will limit signal propagation in integrated circuits. In this study, we investigated the characteristics of electroplated Cu films according to the variation of concentration of organic additives. The plating electrolyte composed of $CuSO_4{\cdot}5H_2O$, $H_2SO_4$ and HCl, was fixed. The sheet resistance was measured with a four-point probe and the material properties were investigated with XRD (X-ray Diffraction), AFM (Atomic Force Microscope), FE-SEM (Field Emission Scanning Electron Microscope) and XPS (X-ray Photoelectron Spectroscopy). From these experimental results, we found that the organic additives play an important role in formation of Cu film with lower resistivity by EPD.

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Study on the Effect of Particles Injected Into the Head/Disk Interface (헤드-디스크 인터페이스에 주입되는 입자의 영향에 대한 연구)

  • Han Je-Hee;Lee Rae-Jun;Kim Dae-Eun;Kang Tae-Sik;Cho Keung-Youn
    • 정보저장시스템학회:학술대회논문집
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    • 2005.10a
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    • pp.179-183
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    • 2005
  • Particles in the HDD can cause serious damages such as scratches and thermal asperity(TA) at the head/disk interface(HDI). Accordingly, particles cause data loss including physical and electrical damages. To improve the reliability of head-disk interface, understanding the damage characteristics at the HDI due to particle interactions is required. The materials such as $A1_2O_3$, TiC and aluminum were used in this experiment. The size and hardness of particles injected into the HDI are closely relevant to surface damage caused the data loss on the disk and head. In this paper, a variety of scratches were analyzed using scanning electron microscope(SEM) and atomic force microscope(AFM). In order to analyze defects of very small size on the disk, optical surface analyzer(OSA) was also used.

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One-Dimensional Eu(III) and Tb(III)-Doped Gd Oxide Nanorods

  • Kim, Wonjoo;Sohn, Youngku
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.664-664
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    • 2013
  • Red europium(III) and green terbium(III) activating phosphors have been doped and co-doped in gadolinium oxide supports by a hydrothermal method. Scanning electron microscope images reveal that they are one-dimensional nanorods of 40~50 wide and 250~300 nm long. The gadolinium oxide supports show Gd(OH)3 of hexagonal phase and Gd2O3 of cubic crystal structure before and after a thermal annealing, respectively based on X-ray diffraction analysis. Their physicochemical characteristics have further been examined by photoluminescence spectroscopy, FT-IR, UV-visible absorption, and optical microscope. The emission colors are characterized by CIE coordinates. In addition, the emissions from Eu(III) and Tb(III) are assigned to $5D0{\rightarrow}7FJ$ (J=0,1,2,3,4) and $5D4{\rightarrow}FJ$ (J=6,5,4,3), respectively.

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Characterization and Modification of Low Molecular Water-Soluble Chitosan for Pharmaceutical Application

  • Jang, Mi-Kyeong;Nah, Jae-Woon
    • Bulletin of the Korean Chemical Society
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    • v.24 no.9
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    • pp.1303-1307
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    • 2003
  • The low molecular water-soluble chitosan nanoparticles (LMWSC-NPs) were prepared, which was modified with hydrophilic and hydrophobic moieties to evaluate the potential for pharmaceutics application. The synthesis of LMWSC-NPs was identified by FT-IR and $^1H$-NMR spectra. Also, we measured the photon correlation spectroscopy (PCS), transmission electron microscope (TEM) and atomic force microscope (AFM) to investigate the characteristics and morphology of the LMWSC-NPs. At the PCS measurement, the more increase the number of substitutive group, the more decrease the positive charge of LMWSC-NP surface. From the results of TEM and AFM, spherical morphologies were observed, and their sizes were 30-150 nm. Resultantly, LMWSC-NPs prepared in this experiment will be expected as a suitable device for the drug targeting system.

Analysis of Microstructure for Resistance Spot Welded TRIP Steels using Atomic Force Microscope (원자력간 현미경을 이용한 TRIP강 저항 점용접부의 미세조직 분석에 관한 연구)

  • Choi, Chul Young;Ji, ChangWook;Nam, Dae-Geun;Jang, Jaeho;Kim, Soon Kook;Park, Yeong-Do
    • Journal of Welding and Joining
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    • v.31 no.1
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    • pp.43-50
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    • 2013
  • The spot welds of Transformation Induced Plasticity (TRIP) steels are prone to interfacial failure and narrow welding current range. Hard microstructures in weld metal and heat affected zone arenormally considered as one of the main reason to accelerate the interfacial failure mode. There fore, detailed observation of weld microstructure for TRIP steels should be made to ensure better weld quality. However, it is difficult to characterize the microstructure, which has similar color, size, and shape using the optical or electron microscopy. The atomic force microscope (AFM) can help to analyze microstructure by using different energy levels for different surface roughness. In this study, the microstructures of resistance spot welds for AHSS are analyzed by using AFM with measuring the differences in average surface roughness. It has been possible to identify the different phases and their topographic characteristics and to study their morphology using atomic force microscopy in resistance spot weld TRIP steels. The systematic topographic study for each region of weldments confirmed the presence of different microstructures with height of 350nm for martensite, 250nm for bainite, and 150nm for ferrite, respectively.

A Study on the Wave Type and the Damage of Hair according to Water content when Heat permanent is treated - Focus on Damaged Hair -

  • Lee, Soon-Hee;Choi, Jung-Myung
    • Journal of Fashion Business
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    • v.12 no.6
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    • pp.11-22
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    • 2008
  • The goal of this study is to provide beauticians with the fundamental material to use effectively heat permanent wave in beauty industry as well as their customer's satisfaction. It carried out an experiment with damaged hair of a woman in her late twenties to investigate the change of physical and morphological characteristics by its water content when performing heat permanent wave. After spreading 0g, 1g, 2g, 3g, and 4g of water on damaged hair respectively, heat permanent wave was treated and the change of hair was observed. The change of physical characteristic was compared through permanent wave form of hair, tensile strength and elongation. The change of morphological characteristic was observed through Scanning Electron Microscope(SEM) and Transmission Electron Microscope(TEM). The result of experiment on the physical specificity revealed that permanent wave form was the most ideal when the water content was 2g, also 3g. Though the materials with much moisture content formed the results were not satisfied. The material with 0g of water content didn't make the wave. In terms of tensile strength and elongation, tensile strength was generally reduced as per the damaged degree of hair. On the contrary, elongation was increased. It observed the changes of morphological characteristic that the damage on hair cuticle was deepen, as its moisture content was decreased, and cuticle's surface was worn away. The observation of fine structure on hair section by transmission electronic microscope also certainly showed the result that damaged hair having experience with chemical treatment had got much damaged to hair cuticle as well as hair cortex. Generally chemical treatment makes hair damaged. Under consideration of this aspect, the ultimate goal of this thesis is to minimize the damage of hair caused by chemical treatment and get the satisfaction on the hair style. According to the result of experiment, the damaged hair whose moisture content was 3g showed the best permanent wave form.

THE EFFECT OF LASER IRRADIATION ON THE SURFACE CHARACTERISTICS OF TOOTH ENAMEL (레이저 처리가 치아 법랑질의 표면구조에 미치는 영향)

  • Lee, Ju-Hyun
    • Journal of the korean academy of Pediatric Dentistry
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    • v.33 no.2
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    • pp.201-206
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    • 2006
  • A recent laboratory study has demonstrated improved caries lesion resistance with enamel that was exposed to $CO_2$ laser irradiation for very short time period. When topical fluoride treatment was performed before or after laser irradiation, reductions in dental caries. The purpose of this scanning electron microscopic(SEM) study and atomic force microscope study was to characterize surface alterations in tooth enamel after in vitro laser irradiation alone and combined topical fluoride treatment either before or after laser irradiation. The treatment effects of laser irradiation led to the formation of an irregular, mild porosities and fine fissures, also created granular materials. But when laser irradiation was followed by APF, the enamel surface had homogenous architecture. The result led to the caries resistance effects by these granular structures have been considered to represent redeposited mineral phases due to the mobilization of calcium, phosphate, and fluoride from lased enamel.

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