• 제목/요약/키워드: Zinc plating

검색결과 55건 처리시간 0.035초

Chemical Active Liquid Membranes in Inorganic Supports for Metal Ion Separations

  • Yi, Jongheop
    • 한국막학회:학술대회논문집
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    • 한국막학회 1994년도 추계 총회 및 학술발표회
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    • pp.8-11
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    • 1994
  • Disposal of hazardous ions in the aqueous streams is a significant industrial waste problem.. Waste streams from electronics, electroplating, and photographic industries contain metal ions such as copper, nickel, zinc, chromium(IV), cadmium, aluminum, silver, and gold, amongst others in various aqueous solutions such as sulfates, chlorides, fluorocarbons, and cyanides. Typical plating solutions having similar compositions are listed in Table 1. Spent process streams in catalyst manufacturing facilities also contain precious metals such as Ag, Pt, and Pd. Developing an effective recovery process of these metal ions for reuse is important.

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A study on zinc phosphate conversion coatings on Mg alloys

  • Phuong, Nguyen Van;Lee, Kyuhwan;Chang, Doyon;Kim, Man;Lee, Sangyeoul;Moon, Sungmo
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2012년도 추계총회 및 학술대회 논문집
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    • pp.17-17
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    • 2012
  • Magnesium alloys exhibit many attractive properties such as low density, high strength/weight ratio, high thermal conductivity, very good electromagnetic features and good recyclability. However, most commercial magnesium alloys require protective coatings because of their poor corrosion resistance. Attempts have been made to improve the corrosion resistance of the Mg alloys by surface treatments, such as chemical conversion coatings, anodizing, plating and metal coatings, are commonly applied to magnesium alloys in order to increase the corrosion resistance. Among them, chemical conversion coatings are regarded as one of the most effective and cheapest ways to prevent corrosion resistance. In this study, zinc phosphate conversion coatings on various Mg alloys have been developed by selecting proper phosphating bath composition and concentration and by optimizing phosphating time, temperature. Morphology, coatings composition, corrosion resistance, adhesion and its formation and growth mechanism of the zinc phosphate conversion coatings were studied. Results have shown some attractive properties such as simplicity in operation, significantly increased corrosion protective property. However, adhesions between coatings and substrate and also between coatings and paint are still not satisfied. Resolving the problems and understanding the mechanism of phosphating process are targets of our study.

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Zn-Al系 復合電氣鍍金에 미치는 電解條件의 影響 (The Effect of Electrolysis Condition on the Zinc-Aluminum Composite Electro Plating)

  • 예길재;강식성;안덕수
    • 한국표면공학회지
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    • 제20권3호
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    • pp.118-126
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    • 1987
  • The Zn-Al composite electroplating was studied by using chloride zinc bath containing metal hydroxides $(Zn(OH)_2,\;Al(OH)_3))$ and aluminium powder. The size of Al powder codeposited in the beaker bath with Al powder of-400 mesh was under 10${\mu}m$. The Zn-Al composite was electro-deposited at 40$^{\circ}C$ in the ranges of current density of 5-50 A/$dm^2$ in the flowing electrolyte. The content of aluminium particles codeposited increased slightly with increasing flow rate of electrolyte from 0.5 m/sec to 1.0 m/sec, and decreased with increasing current density from 5 A/$dm^2$ to 50 A/$dm^2$. The content of aluminium particles codeposited by using the electrolyte containing zinc hydroxide(0.1M) was 2~4 wt%. The Al powder was codeposited mainly near the surface layer of the electrodeposits. The dissolution rate of aluminium particles in the electrolyte containing 0.1M $Zn(OH)_2$ and Boric acid was 0.41 g/l. day in comparison with 1.5 g/l. day dissolution rate in pure chloride bath.

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COG용 Solder Bump 제작을 위한 Ni 무전해 도금 공정에 관한 연구 (A Study on Ni Electroless Plating Process for Solder Bump COG Technology)

  • 한정인
    • 한국재료학회지
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    • 제5권7호
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    • pp.794-801
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    • 1995
  • LCD 모듈을 위한 실장 기술인 Chip on Glass 공정 기술을 개발함에 있어 구동 IC와 기판d의 Al 전극을 연결하기 위하여 기존의 기술과의 연관성 및 공정의 연속성, 제조단가등을 고려하여 Pb-Sn 범프를 사용하고자 하였으며 이를 위해 Al 금속 박막위에 니켈 무전해 도금하는 방법을 연구 하였다. Al 전극에 무전해 니켈 도금하기 위해서는 광레지스트 차폐막을 손상하지 않는 전처리 방법이 필요하기 때문에 전처리 방법으로서 알칼리 아연산염 처리법과 불화물을 이용한 아연산염 처리법을 선택하여 실시하였다. 이 가운데 산성불화암모늄(NH$_4$HF)을 1.5 g/$\ell$ 함유하고 황산아연(ZnSO$_4$)을 100 g/$\ell$ 함유한 산성 아연산염 용액에서는 광레지스트 차폐막이 손상되지 않았으며 처리시간을 적절히 조절함으로써 알루미늄 박막상에 선택적으로 니켈 무전해 도금을 할 수 있었다. 아연산염 응액중의 첨가제와 무전해 도금액 중의 억제제인 Thiourea는 도금층의 평활도를 높이는 역할을 하였다. 또한 아연산염 처리를 하기 전에 산세 처리를 함으로써 도금층의 균일성을 향상시킬 수 있었다.

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3가 크롬황산염의 크로메이트에 의한 아연도금내식성 증대 (Enlargement of Anti-corrosion of Zinc Plating by the Trivalent Chromium Sulfate Conversion Coating)

  • 이철태
    • 공업화학
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    • 제18권3호
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    • pp.296-302
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    • 2007
  • 6가 크롬의 크로메이트 코팅제의 대체를 위한 3가 크롬의 크로메이트 코팅용액의 제조에 관한 것이다. 본 연구에서 제안된 코팅제는 3가 크롬원으로서 $KCr(SO_4)_2$를 35~45 g/L, 인산계 화합물로서 $NaH_2PO_4$를 20~30 g/L을 주성분으로 하고 여기에 금속계 황산화물로서 $CoSO_4$ 10~20 g/L, $ZnSO_4$ 10~20 g/L의 조성으로 구성된 것이다. 이 제안된 3가 크롬 코팅용액을 사용하여 pH 2.0~2.2, 상온에서 담지시간 20~25 s의 조건하에 시안아연도금체에 코팅된 피막은 염수분무시험결과 5% 백청발생까지 120 h 이상 견디는 우수한 내식성을 발현하였다.

진공증착법과 치환도금법으로 제조한 구리박막 피복철판과 배합고무의 접착 (Adhesion between Rubber Compound and Copper-Film-Coated Steel Plate Prepared by Vacuum Sputtering and Substitution Plating Methods)

  • 문경호;한민현;서곤
    • 접착 및 계면
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    • 제4권3호
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    • pp.1-8
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    • 2003
  • 철판에 도금한 아연을 구리이온으로 치환하는 치환도금법과 철판에 직접 구리를 증착하는 진공증착법으로 두께가 다른 구리박막 피복철판을 제조하여 배합고무와 접착성질을 조사하였다. 구리박막 피복철판과 배합고무의 접착세기는 제조방법에 관계없이 구리박막 두께에 따라 결정되었다. 구리박막이 75 nm보다 얇으면 안정한 접착층이 형성되어 황동판에 못지 않게 고무와 강하게 접착되었으나, 90 nm보다 두터우면 구리황화물이 지나치게 성정하여 접착세기가 약하였다.

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Accelerated Prediction Methodologies to Predict the Outdoor Exposure Lifespan of Galvannealed Steel

  • Kim, Ki Tae;Yoo, Young Ran;Kim, Young Sik
    • Corrosion Science and Technology
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    • 제18권3호
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    • pp.86-91
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    • 2019
  • Generally, atmospheric corrosion is the electrochemical degradation of metal that can be caused by various corrosion factors of atmospheric components and weather, as well as air pollutants. Specifically, moisture and particles of sea salt and sulfur dioxide are major factors in atmospheric corrosion. Using galvanized steel is one of the most efficient ways to protect iron from corrosion by zinc plating on the surface of the iron. Galvanized steel is widely used in automobiles, building structures, roofing, and other industrial structures due to their high corrosion resistance relative to iron. The atmospheric corrosion of galvanized steel shows complex corrosion behavior, depending on the plating, coating thickness, atmospheric environment, and air pollutants. In addition, corrosion products are produced in different types of environments. The lifespans of galvanized steels may vary depending on the use environment. Therefore, this study investigated the corrosion behavior of galvannealed steel under atmospheric corrosion in two locations in Korea, and the lifespan prediction of galvannealed steel in rural and coastal environments was conducted by means of the potentiostatic dissolution test and the chemical cyclic corrosion test.

36개월간 국내 옥외폭로시험에 따른 아연도강의 부식거동 (Corrosion Behavior of Galvanized Steels with Outdoor Exposure Test in Korea for 36 Months)

  • 김기태;김영식
    • Corrosion Science and Technology
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    • 제17권5호
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    • pp.231-241
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    • 2018
  • Atmospheric corrosion is generally an electrochemical degradation process of metal. It can be caused by various corrosion factors of atmospheric component, weather, and air pollutants. Moisture, particles of sea salts, and sulfur dioxide are major factors in atmospheric corrosion. Galvanizing coating is one of the most efficient ways to protect iron from corrosion by zinc plating on the surface of the iron. Galvanized steels are being widely used in automobiles, building structures, roofing, and other industrial structures due to their high corrosion resistance compared to bare iron. Atmospheric corrosion of galvanized steel has shown complex corrosion behavior depending on coating process, coating thickness, atmospheric environment, and air pollutants. In addition, different types and kinds of corrosion products can be produced depending on the environment. Lifespan of galvanized steels is also affected by the environment. Therefore, the objective of this study was to determine the corrosion behavior of galvanized steel under atmospheric corrosion at six locations in Korea. When the exposure time was increased, content of zinc from GA surface decreased while contents of iron and oxygen tended to increase. On the other hand, content of iron was constant even after 36 months of exposure of GI.

탄약 표면 처리용 아연계 인산염 피막의 중량 및 내식성에 관한 연구 (Study on the coating weight and corrosion resistance of Zinc phosphate for surface treatment of ammunition)

  • 김명현;이승용;이현희;이영태
    • 한국산학기술학회논문지
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    • 제18권10호
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    • pp.603-610
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    • 2017
  • 탄약을 포함한 다양한 산업 분야에서 사용되는 철강 재료는 부식에 취약하므로, 표면 그대로 사용하는 것은 바람직하지 않다. 따라서 도금, 도장, 화성처리와 같은 표면 처리 이후 사용하여야 하는데, 탄약 제조 과정에서는 주로 아연계 인산염 피막 처리가 사용되고 있다. 표면 처리 기법 중 하나인 아연계 인산염 피막은 금속 표면을 화학적으로 처리하여 안정성이 높은 화합물 층을 표면에 고착시키는 방법으로, 크게 도장 하지용 경인산염 피막과 부식 방지용 중인산염 피막으로 나뉘어지는데, 아연계 인산염 피막은 전산도, 철 함량과 같은 여러 가지 인자에 의해 피막의 품질과 내식성이 결정된다. 본 연구에서는 전산도 및 철 함량이 탄약 부식 방지 목적으로 사용되는 아연계 중인산염 피막의 중량 및 내식성에 미치는 영향에 대하여 알아보았다. 철 함량에 따라 피막의 구조가 치밀해지며, 내식성이 향상되는 결과를 확인할 수 있었으나, 전산도는 피막의 두께와 중량에만 영향을 주고 내식성에는 큰 영향을 주지 못하였다. 위 결과를 토대로 탄약 제조 과정에서 사용되는 인산염 피막 처리 공정의 최적 제어 수준을 제시하였다.

자동차용 판재 성형시 드로우비드 공정인자별 인출특성에 대한 연구 (Effect of drawbead process parameters on the drawing characteristics of sheet metals for automotive parts)

  • 김원태;이동활;강우순;서만석;문영훈
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2003년도 추계학술대회논문집
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    • pp.140-143
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    • 2003
  • The drawbead is an important part in sheet metal forming for automotive part and its effect is affected by various process parameters. Therefore in this study, drawbead friction test was performed at various process parameters - panels (cold rolled and galvanized sheet steel), lubricants (having three different viscosities), bead materials(steel, iron) and surface treatment of bead (Cr plating). Circular shape bead has been used for the test. The results show that friction and drawing characteristics were mainly influenced by the nature of zinc coating, viscosity of lubricants, surface treatment of a bead and hardness of coated layer.

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