• 제목/요약/키워드: Anodizing method

검색결과 90건 처리시간 0.026초

Anodizing과 Burning 공정 혼합으로 표면처리 된 마그네슘합금(AZ31) 안경테 표면의 특성 연구 (The study of characterization about magnesium alloy eye-glasses case by anodizing and mixed method (anodizing+burning))

  • 유재용;임진환;유재인;김진희;박창훈;김기홍
    • 한국진공학회지
    • /
    • 제16권3호
    • /
    • pp.231-234
    • /
    • 2007
  • 마그네슘 합금을 Anodizing과 Burning anodizing만으로만 표면 처리했을 때는 표면에 기공이 많이 발생 되었지만, anodizing 처리 후, burning 공정을 추가 하였을 때는 기공이 현저히 줄어들었다. 즉 burning 공정이 추가 되므로 인해 anodizing 공정의 단점인 기공의 봉공처리가 가능함을 알았다. 또한 막 두께도 anodizing 만 처리 했을 때 보다 더 균일하게 성장함을 보았다.

양극산화 모드 전환을 통한 기능성 알루미늄 표면 연구 (Fabrication of functional aluminum surface through anodization mode transition)

  • Park, Youngju;Jeong, Chanyoung
    • 한국표면공학회지
    • /
    • 제55권6호
    • /
    • pp.417-424
    • /
    • 2022
  • This research develops an easy-to-use, environmentally friendly method for fabricating functional 1050 aluminum alloy surfaces with excellent corrosion resistance. Functional aluminum surfaces with various nanostructures are fabricated by controlling the experimental conditions of anodizing process. The experiment used a multi-step anodizing process that alternates between two different anodizing modes, mild anodizing (MA) and hard anodizing (HA), together with a pore-widening (PW) process. Among them, the nanostructured surface with a small solid fraction shows superhydrophobicity with a contact angle of more than 170° after water-repellent coating. In addition, the surface with superhydrophobicity is difficult for corrosive substances to penetrate, so the corrosion resistance is greatly improved.

Effect of Current Density on Porous Film Formation in Two-Step Anodizing for Al Alloy

  • Lee, Seung-Jun;Kim, Seong-Jong
    • 한국표면공학회지
    • /
    • 제49권2호
    • /
    • pp.125-129
    • /
    • 2016
  • Anodizing is a technology to generate thicker and high-quality films than natural oxide films by treating metals via electrochemical methods. Electrochemical manufacturing method of nano structure is an efficient technology in terms of cost reduction, high productivity and complicated shapes, which receives the spotlight in diverse areas. Especially, artificial films generated by anodizing technology possess excellent mechanical characteristics including hardness and wear resistance. It is also easy to modify thickness and adjust shape of those artificial films so that they are mainly used in sensors, filters, optical films and electrolytic condensers. In this study, experiment was performed to observe the effect of current density on porous film formation in two-step anodizing for Al alloy. Anodizing process was performed with 10 vol.% sulfuric acid electrolyte while the temperature was maintained at $10^{\circ}C$ using a double beaker. and $10{\sim}30mA/cm^2$ was applied for 40 minutes using a galvanostatic method. As a result, both pore diameters and distances between pores tended to increase as the local temperature and electrolysis activity increased due to the increase in applied current density.

시편의 준비 방법 및 접촉저항이 알루미늄 합금의 아노다이징 피막 형성에 미치는 영향 (Effects of Specimen Preparation Method and Contact Resistance on the Formation of Anodizing Films on Aluminum Alloys)

  • 문성모
    • 한국표면공학회지
    • /
    • 제53권1호
    • /
    • pp.29-35
    • /
    • 2020
  • In this study, five different specimen preparation methods were introduced and their advantages and disadvantages were presented. One of them, an epoxy mounting method has advantages of constant exposure area, ease of surface preparation without touching the specimen surface during polishing or cleaning, use of small amount of material and ease of specimen reuse by polishing or etching. However, in order to eliminate unexpected errors resulting from preferable reaction at the specimen/epoxy interface and contact resistance between the specimen and copper conducting line for electrical connection, it is recommended to cover the wall side of the specimen with porous anodic oxide films and to remain the contact resistance lower than 1 ohm. The increased contact resistance between the specimen and Cu conducting line appeared to result in increases of anodizing voltage and solution temperature during anodizing by which thickness and hardness of anodizing film on Al2024 alloy were drastically decreased and color of the films became more brightened.

전기화학적 방법을 통한 금속 이중기공구조 형성 및 제어 (Formation and Control of Dual Porous Structures of Metal by an Electrochemical Method)

  • 하성혁;신헌철
    • 한국재료학회지
    • /
    • 제29권2호
    • /
    • pp.65-72
    • /
    • 2019
  • Dual porous structures are observed for the first time on a metallic Cu surface underneath anodic Cu oxide by the application of an anodizing voltage to Cu in oxalic acid. The as-prepared porous Cu surface contains macropores of less than $1{\mu}m$ diameter and mesopores of about tens of nanometers diameter with circular shapes. The size and density (number of pores/area) of the macropores are dependent on the applied voltage. It is likely that the localized dissolution (corrosion) of Cu in oxalic acid under the anodizing voltages is responsible for the formation of the mesopores, and the combination of a number of the mesopores might create the macropores, especially under a relatively high anodizing voltages or a prolonged anodizing time. The variations of pore structure (especailly macropores) with applied voltage and time are reasonably explained on the basis of the proposed mechanism of pore formation.

양극산화공정을 이용한 반사방지 성형용 나노 마스터 개발 (Fabrication of Nano Master with Anti-reflective Surface Using Aluminum Anodizing Process)

  • 신홍규;박용민;서영호;김병희
    • 한국생산제조학회지
    • /
    • 제18권6호
    • /
    • pp.697-701
    • /
    • 2009
  • A simple method for the fabrication of porous nano-master for the anti-reflection effect on the transparent substrates is presented. In the conventional fabrication methods for antireflective surface, coating method using materials with low refractive index has usually been used. However, it is required to have a high cost and long processing time for mass production. In this paper, we developed a porous nano-master with anti-reflective surface for the molding stamper of the injection mold, hot embossing and UV imprinting by using the aluminum anodizing process. Through two-step anodizing and etching processes, a porous nano-master with anti-reflective surface was fabricated at the large area. Pattern size Pore diameter and inter-pore distance are about 130nm and 200nm, respectively. In order to replicate anti-reflective structure, hot embossing process was performed by varying the processing parameters such as temperature, pressure and embossing time etc. Finally, antireflective surface can be successfully obtained after etching process to remove selectively silicon layer of AAO master.

  • PDF

열 피로에 미치는 알루미늄 양극산화 제조방법의 융합연구 (Convergent Study of Aluminum Anodizing Method on the Thermal Fatigue)

  • 강수영
    • 한국융합학회논문지
    • /
    • 제7권5호
    • /
    • pp.169-173
    • /
    • 2016
  • 알루미늄의 양극산화는 황산법, 수산법과 황산과 수산을 활용한 혼산법 등이 있다. 산업체에서 만들어지는 양극산화는 황산법으로 전해액속의 황산농도가 15~20 wt %이다. 연질 양극산화피막을 생성할 경우는 전해액의 온도가 $20{\sim}30^{\circ}C$ 범위에서 생산되고 있으며, 생산 전압은 직류전압으로 13~15 V 이내가 가장 많이 사용된다. 경질 양극산화피막을 생성할 경우는 전해액의 온도가 $0{\sim}-5^{\circ}C$에서 생산되어지고 있다. 본 연구에서는 황산법과 수산법을 이용하여 $50{\mu}m$ 두께의 양극산화피막(알루미나)를 제작하였다. 황산법과 수산법에 의해 시편을 제조하여 열 피로시험을 수행하였다. 황산법과 수산법의 균열발생온도는 $500^{\circ}C$$600^{\circ}C$이었다. 황산법의 균열발생온도는 수산법의 균열발생온도보다 낮았다. 시험결과 수산법의 열 피로는 황산법의 열 피로 특성보다 좋았다. 그 이유를 알루미늄과 알루미나의 열팽창계수와 제조온도로 설명하였다. 고온에서 사용되는 양극산화제품의 제조방법을 여기서의 융합 연구를 통해 제안 가능하게 되었다.

황산전해액에서 양극산화에 의한 알루미나 막 제조에 관한 연구 (Study on the Synthesis of Alumina Membrane by Anodization in Sulfuric Acid)

  • 김현;장윤호;함영민
    • 공업화학
    • /
    • 제8권5호
    • /
    • pp.756-762
    • /
    • 1997
  • 본 실험에서는 황산용액에서 전기화학적으로 금속 알루미늄판을 양극산화하여 원통형 세공구조를 갖고 있는 alumina막을 형성시켰다. 양극화에 사용된 알루미늄 시료는 전해연마, 화학연마 및 열산화와 같은 전처리 공정을 거쳐서 준비하였으며, 형성된 알루미나막의 세공분포와 두께 등을 SEM과 BET를 사용하여 조사하였다. 그 결과 산화피막이 Keller모델과 같은 기하 구조로 이루어져 있으며. 균일한 세공 분포를 지니고 있음을 볼 수 있었다. 그리고 산화막의 세공크기와 두께는 황산전해질의 농도, 반응온도 그리고 전류밀도와 같은 양극산화 공정변수에 의존함을 알수 있었다.

  • PDF

Evaluation of Life Span for Al2O3 Nano Tube Formed by Anodizing with Current Density

  • 이승준;김성종
    • 한국표면공학회:학술대회논문집
    • /
    • 한국표면공학회 2017년도 춘계학술대회 논문집
    • /
    • pp.148-148
    • /
    • 2017
  • Surface modification is a type of mechanical manipulation skills to achieve extensive aims including corrosion control, exterior appearance, abrasion resistance, electrical insulation and electrical conductivity of substrate materials by generating a protective surface using electrical, physical and chemical treatment on the surface of parts made from metallic materials. Such surface modification includes plating, anodizing, chemical conversion treatment, painting, lining, coating and surface hardening; this study conducted cavitation experiment to assess improvement of durability using anodizing. In order to observe surface characteristics with applied current density, the electrolyte temperature, concentration was maintained at constant condition. To prevent hindrance of stable growth of oxide layer due to local temperature increase during the experiment, stirring was maintained at constant speed. In addition, using galvanostatic method, it was maintained at processing time of 40minutes for 10 to $30mA/cm^2$. The cavitation experiment was carried out with an ultra sonic vibratory apparatus using piezo-electric effect with modified ASTM-G32. The peak-to-peak amplitude was $30{\mu}m$ and the distance between the horn tip and specimen was 1mm. The specimen after the experiment was cleaned in an ultrasonic bath, dried in a vacuum oven for more than 24 hours, and weighed with an electric balance. The surface damage morphology was observed with 3D analysis microscope. As a result of the study, differences were observed surface hardness and anti-cavitation characteristics depending on the development of oxide film with the anodizing process time.

  • PDF

아노다이징된 알루미늄 합금에 대한 TiAlN 코팅, 무전해 Ni-P 도금의 트라이볼로지 특성 비교 (A Comparative Study on Tribological Characteristics between Ni-P Electroless Plating and TiAlN Coating on Anodized Aluminum Alloy)

  • 이규선;배성훈;이영제
    • Tribology and Lubricants
    • /
    • 제26권1호
    • /
    • pp.68-72
    • /
    • 2010
  • A ceramic coating is a surface treatment method that is being used widely in the industrial field, recently. Ni-P plating is also being used widely because of its corrosion resistance and low cost. An anodizing method is applicable to aluminum alloy. An anodizing method generates a thick oxide layer on the surface and then, that heightens hardness and protects the surface. These surface treatments are applied to various mechanical components and treated surfaces relatively move one another. In this study, tribological characteristics of Ni-P plating and TiAlN coating on anodized Al alloy are compared. The counterpart, anodized Al alloy, is worn out abrasively by Ni-P plating and TiAlN coating that have higher hardness. Abrasively worn debris accumulated on the surfaces of Ni-P plating and TiAlN coating, and then transferred layer is formed. This transferred layer affects the amplitude of variation of friction coefficient, which is related to noise and vibration. The amplitude of variation of friction coefficient of Ni-P plating is lower than those of TiAlN coating during the tests.