• Title/Summary/Keyword: 전기 아연도금강판

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Evaluation of the Corrosion Resistance of Zn-Coated Steel as a Function of the Temperature of the Cr-free Solution Used to Coat the Steel (Cr-free 코팅액에 의한 아연도금강판의 열처리 온도에 따른 내식특성)

  • Seo, Hyun-Soo;Moon, Hee-Joon;Kim, Jong-Soon;Ahn, Seok-Hwan;Moon, Chang-Kwon;Nam, Ki-Woo
    • Journal of Ocean Engineering and Technology
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    • v.24 no.5
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    • pp.60-66
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    • 2010
  • Zinc has a number of characteristics that make it well suited for use as a coating to protecting iron and steel products from corrosion. Its excellent corrosion resistance in most environments accounts for its successful use as a protective coating on a variety of products and in many exposure conditions. The excellent field performance of zinc coatings results from their ability to form dense, adherent films that corrode at a rate that ranges from 1% to 10% of the corrosion rate of ferrous materials, depending on the environment. Recently, EU RoHS and EU ELV prohibited the use of materials that adversely affect the environment, such as Pb, Hg, Cd, and $Cr^{+6}$. In this study, environmentally-friendly, Cr-free solutions (epoxy solution, acrylic solution, and urethane solution S-700) and organic/inorganic solution with Si; LRO-317) were used to evaluate the corrosion resistance of zinc-coated steel subjected to a saltwater spray for 72 hours. The coating of urethane solution (S-700) was best among the three kinds of solution with heat treatment during five minutes at $190^{\circ}F$. Test specimens with S-700 and LRO-317 coating were heat treated in a drying oven at 170, 180, 190, 200, and $210^{\circ}C$ for five minutes. The results show that the optimum corrosion resistance was $190^{\circ}C$ in EGI and $170^{\circ}C$ in HDGI, respectively.

Measurement of Al Concentration in Liquid Zinc by E.M.F Method with $CaF_2$ ($CaF_2$ 기전력법에 의한 용융아연 중 알루미늄 농도의 측정)

  • Park Jin Sung;Kim Hang Soo;Jung Woo-Gwang;Katayama I.;Kim Jong Sang
    • Journal of the Korean Electrochemical Society
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    • v.3 no.4
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    • pp.204-210
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    • 2000
  • The control of dissolved aluminum concentration in the hot dip zinc galvanizing bath is greatly important in producing galvannealed steel sheets. The purpose of present study is to provide basic data for measurement of the aluminum concentration in site in hot dip zinc bath at the temperature of $460^{\circ}C\~500^{\circ}C$ using $CaF_2$ solid electrolyte sensor with three kinds of reference electrode. Good workability and stability of the sensor were confirmed with the $Bi+BiF_3$ reference electrode from the emf measurement. In order to measure the aluminum concentration in Zn-Al bath, the galvanic cell of fluorine ion was constructed with $CaF_2$ solid electrolyte as follows; $$(-)W|Zn-Al,\;AlF_3|CaF_2|Bi,BiF_3|W(+)$$. The emf measurement was made at the temperature of $460\pm10^{\circ}C$ in the Zn-Al bath. The following correlationship between aluminum concentration and emf was obtained by the least square regression analysis; $$E/mV=56.795log[\%Al]+1881.7\;R=0.9704$$,$$0.026wt\%{\leq}[\%Al]{\leq}0.984wt\%$$

An Electrochemical Study on the Corrosion Resistance Improvement of Galvanizing Steel by Dipping to Solution with Inhibitor (인히비터 첨가용액의 침지에 의한 용융아연도금 강판의 내식성 개선에 관한 전기화학적 연구)

  • Moon, Kyung-Man;Cho, Hwang-Rae;Kang, Tae-Young;Lee, Myung-Hoon;Kim, Yun-Hae
    • Journal of Advanced Marine Engineering and Technology
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    • v.31 no.2
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    • pp.173-181
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    • 2007
  • Recently, galvanizing method is predominantly being used not only a economical point of view but also due to it s stability and long life. For example, guard rail of high way, all kinds of structures for ship etc. were protected with galvanizing and demand of galvanized structural materials was being increased with more and more. However, galvanized structures were inevitably being deteriorated with time eventually because they were corroded with solution of galvanizing film and exfoliation of it s film in the present severe corrosive environment. Therefore, it is necessary to improve the corrosion resistance of the galvanizing film through various methods such as variation of chemical composition of galvanizing bath, chromate treatment and coating treatment. In this study, three test specimens such as pure galvanizing, galvarium, and chromate treatment were submerged at tap water with inhibitor addition. And the effect of their corrosion resistance improvement was comparatively investigated with electrochemical method. Corrosion current density of the galvanized steel was the largest among three specimens, however, the galvarium steel showed the lowest corrosion current density. Futhermore, these three kinds of test specimens indicated considerably excellent corrosion resistance by dipped at tap water with inhibitor addition. Especially, the galvanized steel showed the best effect of corrosion resistance improvement than other test specimens.

Corrosion Resistance of Sol-Gel Films Coated on Meal with Inhibitors (부식 억제제와 결합된 졸-겔 코팅막의 내부식성 특성)

  • 황영영;김재홍;석상일
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.03a
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    • pp.206-206
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    • 2003
  • 현재, 메탈의 내부식성 코팅막 제조에 사용되고 있는 크로메이트 기반 코팅제는 유독성 물질에 대한 환경 규제에 따라 조만간 사용이 금지 될 예정이다. 본 연구에서는 이러한 유독성 금속 내부식성 코팅제를 대체할 새로운 코팅 재료로 부식 억제제가 결합된 수용성 졸을 제조하고 그 특성을 보고하고자 한다 부식 억제제가 결합된 수용성 졸은 부분 가수 분해된 GPS((3-glycidoxypropyltriethoxysilane)에 Zirconiumoxychlorideoctahydrate 혹은 cerium nitrate를 일정 양 첨가하고 이온 교환수에 희석하여 제조하였다. 이 코팅 졸을 아연 도금 강판에 딥 코팅법으로 코팅한 후 상온에서 건조하고, 80~15$0^{\circ}C$에서 열처리하여 염수 분무 시험으로 백청 발생 정도를 관찰하여 내 부식성을 조사하였다. 코팅막의 두께는 수직으로 절단한 면을 전자 현미경으로 관찰하여 측정하였으며, 표면의 경도는 연필 경도계로 조사하였다. 또한 코팅막의 부식 전위는 전기화학적인 방법으로 분석되어 부식억제제의 종류에 따른 효과도 정량적으로 비교되었다.

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A Study on the Weldability & Indentation Depth Evaluation of Electrochemical Galvanized Steel Sheet according to the Welding Conditions (전기아연도금 강판의 점용접성에 미치는 용접조건과 압흔깊이에 관한 연구)

  • 정영훈;허우진;백승세;권일현;양성모;유효선
    • Proceedings of the KWS Conference
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    • 2003.11a
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    • pp.162-164
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    • 2003
  • Spot welding, a kind of electric resistance welding, has been used in many fields such as automobile, aircraft, and appliance industry. This paper is to investigate the relationship between tensile shear strength and indentation depth under various welding conditions. The tensile shear strength increases with increasing the welding current in the range of 6-l3kA. The optimum welding conditions were 200∼250kg welding force and 10∼15 cycles welding time at 9kA welding current for EZNCEN. The indentation depth for optimum welding condition was 0.6mm at 9kA welding curent and 200kg welding force, 0.17mm at 9kA welding current and 300kg welding force, 0.19mm at 9kA welding current and 10cycle, 0.17mm at 9kA welding current and 15cycle welding time, respectively.

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Molybdate Chemical Conversion Coating of Electro-Galvanized Steel (전기아연도금 강판의 몰리브데이트 화성처리)

  • 김헌태;김인수
    • Journal of the Korean institute of surface engineering
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    • v.37 no.4
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    • pp.200-207
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    • 2004
  • Molybdate chemical conversion coating layer formed on EGI has been studied in view of corrosion resistance, surface morphologies, and phases formed. It was found that coating layer consists of$ MoO_3$, $MoO_2$, Mo oxides having lower valences than 4 and ZnO. It is interesting to note that the coating layer formed at high Mo concentration (30 g/l) in the temperature range of $40-60^{\circ}C$ exhibited relatively high corrosion resistance, although thickness of coating layer is nearly identical with those formed under the other conditions. It was believed that an increase of driving force due to high Mo concentration plays an important role in the formation of corrosion-resistant coating layer, probably due to tile formation of dense coating layer.

Thermal diffusion behaviors of electrogalvanized steel sheets (전기아연도금강판의 열확산 거동)

  • 김영근
    • Journal of the Korean institute of surface engineering
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    • v.28 no.5
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    • pp.320-328
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    • 1995
  • The electroplated steel sheets were heated during the short periods(10~60 seconds) at high temperature ($360^{\circ}C$$500^{\circ}C$) in order to investigate thermal diffusion behaviors. When the steel sheets were heated for 10 seconds, all the coated layers were alloyed at $420^{\circ}C$ but at temperature lower than $400^{\circ}C$ the $\eta$ phase partially remained on the coated surface. At higher temperature, the longer the time for heat treatment the iron contents were increased in coated layer but the glossiness and whiteness of the coated surface were decreased. While the alloying phases of $\eta$, $\zeta$, $\delta_1$ and $\Gamma$ were appeared in the coated layer at the heat treatment temperature of $360^{\circ}C$, the phase was disappeared at $420^{\circ}C$ but the rests grew in size at the temperature of $440^{\circ}C$. When the heat treatment temperature and heating time were increased, the thickness of $\Gamma$ phase was rapidly increased to 0.8 $\mu\textrm{m}$. The optimum conditions for the heat treatment to prevent powdering of coated layer were obtained to heat it for 30 seconds at $400^{\circ}C$ and 10 seconds at $440^{\circ}C$, and the iron content in coated layer was suited to be 10 percents.

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The Thickness Determination of Silicone Resin on Zinc Electroplated Steels using Compton Scattering (Compton 산란선을 이용한 아연계 전기도금강판 표면의 Slicone Resin Film 두께측정)

  • Jae Chun So;Do Hyung Lee
    • Journal of the Korean Chemical Society
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    • v.35 no.5
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    • pp.539-544
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    • 1991
  • A method to determine the thickness of silicone resin film on zinc eletroplated steel using X-ray compton scattering was investigated. On the basis of the fact that compton scattering process predominates over photoelectric absorption for the light elements such as C, H, O and Si, the compton scattered line of RhK$_{\alpha}$ was used to determine the thickness of silicone resin. In this method, the standard calibration curve for thickness determination of silicone resin film was found to be linear in the range of 0.2~5.0 ${mu}$m film thickness. The analytical results agreed well with those obtained by the gravimetric method and the accuracy was found to be 0.22 ${mu}$m.

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A Comparative Study of Single-Phase AC and Inverter DC on Electrode Life for Resistance Spot Welded Electrogalvanized Steel Sheets (전기아연 도금 TRIP강판의 저항 점용접 시 연속타점 수명에 미치는 단상 AC와 인버터 DC의 비교 연구)

  • Son, Jong Woo;Park, Yeong-Do;Kang, Mun Jin;Kim, Dong Cheol
    • Korean Journal of Metals and Materials
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    • v.47 no.12
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    • pp.834-841
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    • 2009
  • A study on the welding of electrogalvanized TRIP (Transformation-Induced Plasticity) steels was done to compare the life of the electrode and the alloying phenomena on the electrode tip surface using singlephase AC and inverter-DC resistance welding processes. A longer life of the electrode (>200 welds) was achieved using the inverter-DC welding process. The tensile shear strength was higher in the electrode life test when welded with the inverter DC welding machine it maintained a higher value even when the welding nugget diameter was smaller than specified. When spot-welding was conducted using the single-phase AC welding process, a higher wear rate of the electrode was observed compared to that with the inverter-DC process. An alloying layer used to determine the rate of electrode growth showed differences in the metallurgical features of the surface alloying and Zn penetration depending on whether the single-phase AC process or the inverter-DC welding process was used. Moreover, changes in the dynamic resistance during the electrode life test were correlated with the electrode wear (or growth) rate.

Study on the Room Temperature Degreasing Conditions of Steel Sheet for Electrogalvanizing (전기아연도금용 강판의 상온 탈지 조건 연구)

  • Tae-Yeon Park;Chae-Won Kim;Su-Mi Yang;Hee-Jun Hong;In-Chul Choi
    • Journal of the Korean Society for Heat Treatment
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    • v.37 no.1
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    • pp.16-22
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    • 2024
  • The conventional degreasing process involves removing oil and contaminants at temperatures above 80℃, resulting in excessive energy consumption, increased process costs, and environmental issues. In this study, we aimed to find the optimal degreasing conditions for the pre-treatment process of electro-galvanizing cold-rolled steel sheets, conducted efficiently at room temperature without the need for a separate heating device. To achieve this, we developed a room temperature degreasing solution and a brush-type degreasing tool, aiming to reduce energy consumption and normalize the decrease in degreasing efficiency caused by temperature reduction. Alkaline degreasing solution were prepared using KOH, SiO2, NaOH, Na2CO3, and Sodium Lauryl Sulfate, with KOH and NaOH as the main components. To enhance the degreasing performance at room temperature, we manufactured additives including sodium oleate, sodium stearate, sodium palmitate, sodium lauryl sulfate, ammonium lauryl sulfate, silicone emulsion, and EDTA-Na. Room temperature additives were added to the alkaline degreasing solution in quantities ranging from 0.1 to 20 wt.%, and the uniformity of degreasing and the adhesion of the galvanized layer were evaluated through Dyne Test, T-bending Test, OM, SEM, and EDS analyses. The results indicated that the optimal degreasing solution composition consisted of NaOH (30 g/L), Na2CO3 (30 g/L), SLS (6 g/L), and room temperature additives (≤1 wt%).