• 제목/요약/키워드: Surface tension effect

검색결과 390건 처리시간 0.025초

Finite element modeling of corroded RC beams using cohesive surface bonding approach

  • Al-Osta, Mohammed A.;Al-Sakkaf, Hamdi A.;Sharif, Alfarabi M.;Ahmad, Shamsad;Baluch, Mohammad H.
    • Computers and Concrete
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    • 제22권2호
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    • pp.167-182
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    • 2018
  • The modeling of loss of bond between reinforcing bars (rebars) and concrete due to corrosion is useful in studying the behavior and prediction of residual load bearing capacity of corroded reinforced concrete (RC) members. In the present work, first the possibility of using different methods to simulate the rebars-concrete bonding, which is used in three-dimensional (3D) finite element (FE) modeling of corroded RC beams, was explored. The cohesive surface interaction method was found to be most suitable for simulating the bond between rebars and concrete. Secondly, using the cohesive surface interaction approach, the 3D FE modeling of the behavior of non-corroded and corroded RC beams was carried out in an ABAQUS environment. Experimental data, reported in literature, were used to validate the models. Then using the developed models, a parametric study was conducted to examine the effects of some parameters, such as degree and location of the corrosion, on the behavior and residual capacity of the corroded beams. The results obtained from the parametric analysis using the developed model showed that corrosion in top compression rebars has very small effect on the flexural behaviors of beams with small flexural reinforcement ratio that is less than the maximum ratio specified in ACI-318-14 (singly RC beam). In addition, the reduction of steel yield strength in tension reinforcement due to corrosion is the main source of reducing the load bearing capacity of corroded RC beams. The most critical corrosion-induced damage is the complete loss of bond between rebars and the concrete as it causes sudden failure and the beam acts as un-reinforced beam.

Effect of Al and Mg Contents on Wettability and Reactivity of Molten Zn-Al-Mg Alloys on Steel Sheets Covered with MnO and SiO2 Layers

  • Huh, Joo-Youl;Hwang, Min-Je;Shim, Seung-Woo;Kim, Tae-Chul;Kim, Jong-Sang
    • Metals and materials international
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    • 제24권6호
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    • pp.1241-1248
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    • 2018
  • The reactive wetting behaviors of molten Zn-Al-Mg alloys on MnO- and amorphous (a-) $SiO_2$-covered steel sheets were investigated by the sessile drop method, as a function of the Al and Mg contents in the alloys. The sessile drop tests were carried out at $460^{\circ}C$ and the variation in the contact angles (${\theta}_c$) of alloys containing 0.2-2.5 wt% Al and 0-3.0 wt% Mg was monitored for 20 s. For all the alloys, the MnO-covered steel substrate exhibited reactive wetting whereas the $a-SiO_2$-covered steel exhibited nonreactive, nonwetting (${\theta}_c>90^{\circ}$) behavior. The MnO layer was rapidly removed by Al and Mg contained in the alloys. The wetting of the MnO-covered steel sheet significantly improved upon increasing the Mg content but decreased upon increasing the Al content, indicating that the surface tension of the alloy droplet is the main factor controlling its wettability. Although the reactions of Al and Mg in molten alloys with the $a-SiO_2$ layer were found to be sluggish, the wettability of Zn-Al-Mg alloys on the $a-SiO_2$ layer improved upon increasing the Al and Mg contents. These results suggest that the wetting of advanced high-strength steel sheets, the surface oxide layer of which consists of a mixture of MnO and $SiO_2$, with Zn-Al-Mg alloys could be most effectively improved by increasing the Mg content of the alloys.

Y-TZP zirconia의 기계적 표면처리가 파절저항과 접착계면 실패에 미치는 영향 (Effect of mechanical surface treatment on the fracture resistance and interfacial bonding failure of Y-TZP zirconia)

  • 이양진
    • 구강회복응용과학지
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    • 제30권2호
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    • pp.102-111
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    • 2014
  • 목적: 본 연구의 목적은 air-blasting particle size를 달리하고 분사 압력과 시간을 통상보다 크게 증가시켜 표면에 큰 손상을 유발한 군을 상대적으로 작은 손상을 유발한 군과 비교하여 파절 저항과 접착 강도 차이를 보이는지 평가하는 데 있다. 연구 재료 및 방법: 지르코니아($LAVA^{TM}$) 디스크 표면에 각각 $30{\mu}m$- particle size (Cojet) 2.8 bar 15초, $110{\mu}m$- (Rocatec) 2.8 bar 15초, $110{\mu}m$- (Rocatec) 3.8 bar 30초로 조건을 달리하여 표면처리 후 각각 이축 굽힘하중 강도 실험과 접착 파절 하중 실험을 실행하였다. 접착은 상아질 유사 베이스에 $200{\mu}m$ 두께의 레진시멘트로 시행하여 인장력을 극대화하였으며 음향방출(AE) 센서로 실패하중을 검출하였다. 결과: 이축 굽힘하중 강도, 접착 파절하중은 세 군간 서로 유의성 있는 차이를 보이지 않았다(P > 0.05). 접착 시편의 균열은 대부분 radial crack이었다. 결론: 정하중 평가의 한계 내에서, air-blasting particle size와 압력에 의한 표면 손상은 크지 않았으며, 접착 파절하중 평가는 표면 손상과 접착 강도를 동시에 평가할 수 있는 방법이라 여겨진다.

RGP lens 다목적 용액의 습윤성에 관한 비교 연구

  • 박현주;김재민;이기영
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2003년도 생물공학의 동향(XIII)
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    • pp.428-433
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    • 2003
  • 소수성인 RGP lens의 관리용액인 6개사의 다목적용액(multipurpose solution, MPS)의 습윤성 접촉각과 표면장력, 점도를 측정하여 비교해 보았다. 결과는 RGP 렌즈를 8시간 MPS에 담근 후 인공누액을 떨어뜨려 측정한 접촉각은 $25^{\circ}-36^{\circ}$의 범위로 렌즈와 MPS는 비교적 우수한 습윤성을 보여주었으며, 표면 장력은 19.8-31.3 mN/m의 값이 얻어졌다. 각각의 다목적용액에 렌즈를 홀더에 얹은 상태로 계면과 렌즈가 분리될 때의 표면장력을 측정하였을 때는 26.5-33.5 mN/m의 값이 측정되었다. 점도는 4^{\circ}C$28^{\circ}C$에서 측정했으며 측정온도에 따라 온도가 낮을수록 높게 측정되었고, MPS의 온도 28^{\circ}C$에서 점도는 9.5-65.5 cps를, 4^{\circ}C$에서는 6.5-13.7 cps의 값을 보였다. RGP lens MpS는 soft lens MPS에 비해 접촉각과 표면장력은 낮고, 점도는 높아서 습윤성이 더 우수하였고 제조회사에 따라 습윤성의 차이가 있었다.

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에틸알코올 용매를 이용한 주조철제유물의 탈염 실험 연구 (Experimental Study of Desalting Methods Using Ethyl Alcohol for Archaeological Cast Iron Objects)

  • 이혜연;조주혜
    • 보존과학회지
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    • 제31권2호
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    • pp.95-104
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    • 2015
  • 주조철제유물은 발굴 후 보존환경이 맞지 않은 경우 부식이 급속하게 진행되며 특히 블록형 파손이 발생하고 최종에는 분말화 된다. 따라서 부식 요인, 즉 $Cl^-$ 이온을 제거하는 탈염처리가 중요하다. 그러나 주조철제유물은 탈염과정 중 형태가 파손되는 경우가 빈번히 발생하여 탈염 과정을 생략하거나 탈수 등의 안정화처리로 그치는 경우가 많다. 기존의 탈염 방법은 주로 물을 이용한 알칼리 수용액 방법이다. 그러나 물의 수산화이온은 부식을 촉진시키고 높은 표면 장력으로 내부 균열을 확대시켜 주조철제유물의 탈염 과정 중 파손 원인으로 판단된다. 따라서 본 연구에서는 표면 장력이 낮은 에틸알코올을 이용하여 탈염을 실시하고 그 탈염 효과를 알아보았다. 실험 결과 에틸알코올 탈염방법은 상온의 알칼리 수용액 방법과 유사하거나 더 높은 $Cl^-$ 이온 용출 효과를 보여주었다. 또한 에틸알코올 방법은 수용액 방법보다 유물의 파손이 적고 Fe의 용출이 거의 없어 탈염의 안전성 측면에서 우수함을 확인하였다. 본 실험은 현장적용 가능한 유기 용매 탈염 방법을 검토한 것으로 추가 연구를 통하여 주조철제유물의 안전하고 효율적인 안정화 방안을 마련하고자 한다.

커먼레일 분사시스템에서 바이오에탄올 및 디젤연료 혼합 바이오디젤의 분무 특성 (Spray Characteristics of Biodiesel Fuel by Blending Bioethanol and Diesel Fuel in a Common Rail Injection System)

  • 박수한;서현규;김형준;이창식
    • 한국자동차공학회논문집
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    • 제17권2호
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    • pp.82-89
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    • 2009
  • In order to investigate the spray characteristics according to diesel and bioethanol blending with biodiesel fuel, macroscopic spray characteristics were analyzed from the comparison of the effect of the injection pressure, ambient pressure and density on the spray tip penetration and spray cone angle. In addition, spray atomization characteristics were studied with local and overall Sauter mean diameter (SMD) and the contour map of SMD distribution at various injection conditions. It was revealed that the spray tip penetration of biodiesel fuels blended with diesel and ethanol was shorter than that of an undiluted biodiesel fuel at low injection pressure. However, the difference of spray tip penetration among three test fuels reduces at a high injection pressure. Increase of the ambient gas density leads to the decrease of the spray tip penetration of three test fuels. When diesel and ethanol fuels add to an undiluted biodiesel fuel, spray cone angle increases due to the decrease of the fuel density at the same ambient pressure condition. On the other hand, the droplet mean diameter decreases due to the reduction of the kinematic viscosity and surface tension.

베릴륨 용가재를 사용한 핵연료피복재 지르칼로이-4 브레이징에 대한 연구 (A Study on the Zircaloy-4 Brazing with Beryllium Filler Metal for the Nuclear Fuel)

  • 고진현;김형수
    • Journal of Welding and Joining
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    • 제11권4호
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    • pp.70-78
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    • 1993
  • An attempt was made to investigate the effect of brazing time on microstructure, microhardness, and corrosion of Zircaloy -4as well as the beryllium diffusion into its sheet. The sheets were coated with beryllium and brazed at $1020^{\circ}C$ for 20-40 minutes in $2{\times}10^{-5}$ torr vacuum atmosphere. 1. Microstructurally the brazed zone was largely divided into three regions: a region of continuous or partially formed of eutectic liquid films along grain boundaries; a region of precipitation in both grains and grain boundaries; a region of elongated wide structure of .alpha.-laths, which was not affected by beryllium. 2. Due to the precipitates, the beryllium-migrated region was hardened and the width of the hardened region increased with increasing brazing time. 3. Beryllium brazed Zircaloy -4 sheets showed a higher corrosion rate than those of as-received and heat-treated at a brazing temperature. 4. Diffusion coefficient of beryllium into Zircaloy -4 at $1020^{\circ}C$ for 30 minutes was $7.67{\times}10^{-7}cm^2/sec.$ It seemed that Be penetrated Zircaloy -4 by forming eutectic liquid films along grain boundaries in the proximity of Be/Zr interface and it, thereafter, diffused into Zircaloy mainly by interstitial solid solution.

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산업용 압전 잉크젯 헤드의 구동신호에 따른 특성 (The Effects of Driving Waveform for Piezoelectric Drop On Demand Industrial Inkjet Head)

  • 김영재;유영석;심원철;박창성;정재우;오용수
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제55권8호
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    • pp.417-422
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    • 2006
  • This paper presents the effect of driving waveform for piezoelectric bend mode inkjet printhead with optimized mechanical design. Experimental and theoretical studies on the applied driving waveform versus jetting characteristics were performed. The inkjet head has been designed to maximize the droplet velocity, minimize voltage response of the actuator and optimize the firing frequency to eject ink droplet. The head design was carried out by using mechanical simulation. The printhead has been fabricated with Si(100) and SOI wafers by MEMS process and silicon direct bonding method. To investigate how performance of the piezoelectric ceramic actuator influences on droplet diameter and droplet velocity, the method of stroboscopy was used. Also we observed the movement characteristics of PZT actuator with LDV(Laser Doppler Vibrometer) system, oscilloscope and dynamic signal analyzer. Missing nozzles caused by bubbles in chamber were monitored by their resonance frequency. Using the water based ink of viscosity of 4.8 cps and surface tension of 0.025 N/m, it is possible to eject stable droplets up to 20 kHz, 4.4 m/s and above 8 pl at the different applied driving waveforms.

인발 선재의 잔류응력에 미치는 공정변수의 영향 및 잔류응력 완화 (Influence of Process Parameters on Residual Stress and Reducing Residual Stress in Drawn Wire)

  • 이상곤;황원호;김병민;배철민
    • 소성∙가공
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    • 제14권8호통권80호
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    • pp.704-711
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    • 2005
  • The influence of process parameters in drawn wire on residual stresses was investigated. Based on a FE-simulation of the wire drawing process, the effects of process parameters such as semi-die angle, reduction, friction coefficient and bearing length on the residual stresses were investigated. The validity of the FE-simulation results was verified by the comparison of the previous simulated results with experimental data. In this study, semi-die angle and die reduction have significant effect on the residual stresses at the surface of drawn wire. Several methods such as, addition of axial tension, application of skin pass, straightening in multi-roll straightener etc, were suggested in the previous studies to reduce the residual stresses. In this study, the results show that the concurrent application of skin pass with low die reduction and low semi-die angle at the final stage of drawing operation reduces dramatically the both axial and hoop residual stresses after drawing

평판인쇄의 축임물 조성이 교과서 인쇄품질에 미치는 영향 (Effect of Dampening Component on Printed Quality of Textbook in lithography printing)

  • 구철회;심우석;하영백
    • 펄프종이기술
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    • 제48권1호
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    • pp.134-141
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    • 2016
  • Dampening in printing is not only used with plain water but also used with various substances like dampening additive, in order to improve the wetting property by lowering the surface tension and to control material for modifing the ink transfer characteristic with proper emulsification. We have studied the printing quality according to these, looking into interrelationship among the dampening solution's pH, electrical conductivity and IPA content, prescribing the proper usage and minimum usage of fountain solution and dampening additive. In this study, it shows good result when mixing at the 7 wt% dampening with additive solution, which is result from the color density of printed sheets in accordance with the change of dampening solution condition. And the printed density value calculated 1 hour after printing, it shows relatively safe value at the etch liquid 4 wt% and IPA addition 2 wt%. The dry down at this test showed similar results regardless of various dampening conditions on coated paper, but in case of uncoated paper, the dry down showed a quite gap of different due to the fast penetration to the paper.