• Title/Summary/Keyword: Electrolytic Plasma Processing

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Effect of time variation on formation of oxide layers of AZ61 magnesium alloy by Electrolytic plasma processing (EPP공정시간에 따른 AZ61 마그네슘 합금 코팅층의 특성변화)

  • Jeong, Yeong-Seung;Park, Geun-Yeong;Kim, Seong-Jae;Gu, Bon-Heun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2014.11a
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    • pp.281-282
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    • 2014
  • 본 연구는 공정시간에 따른 전해 플라즈마 공정(Electrolytic Plasma Processing, EPP) 공정에 의해 형성된 산화 코팅층의 특성 변화를 알아보고자 한다. 실험에 사용되는 전해용액은 $Na_2SiO_3$(12g/l) + $Na_2SiF_6$(0.3g/l)+NaOH(3g/l) 기본용액에 다양한 농도의 NaOH(0-5g/l) 첨가한 전해용액을 사용하였다. AZ61 마그네슘 합금을 모재($22{\Phi}{\times}10mm$)로 사용하였으며 실험은 5분-60분 동안 진행되었다. 공정시간에 변화에 따른 EPP 코팅층 특성을 측정한 결과 공정시간이 증가함에 따라 코팅층 표면의 기공 크기가 커지고 코팅층 내에 기공수가 즐어드는 것을 확인하였다. 또한 XRD 분석을 통하여 형성된 코팅층에서 MgO, Mg2SiO4 상이 나타난 것을 확인할 수 있었다.(No. 2011-0030058),(2012H1B8A2026212)

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Effect of Subsequent-Annealing Temperature on Surface Properties of Plasma Electrolytic Oxidation-Treated Mg Alloy (플라즈마 전해산화 처리된 마그네슘 합금의 표면 물성에 미치는 후-열처리 온도의 영향)

  • Ko, Y.G.;Kim, Y.M.;NamGung, S.;Shin, D.H.
    • Transactions of Materials Processing
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    • v.18 no.8
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    • pp.625-632
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    • 2009
  • The influence of the subsequent-annealing(SA) temperature on the plasma electrolytic oxidation(PEO)-treated Mgbased alloy was investigated in terms of surface properties associated with hardness and corrosion. For this purpose, a series of the SA treatments were performed on the PEO-treated samples at four different temperatures, i.e., 100, 150, 200, and $250^{\circ}C$ for 10 hrs. When compared to the sample without SA, the samples annealed at temperatures higher than $200^{\circ}C$ showed a difference in surface morphology due to the volume expansion accompanied by the dehydration reaction where the part of $Mg(OH)_2$ changed into MgO, working as harder phase. From the results of nano-indentation tests, the applied loads of the samples were seen to increase with increasing SA temperatures. However, the electro-chemical and corrosion properties of the sample annealed at $150^{\circ}C$ were higher than those of the samples annealed at three temperatures.

Surface Treatment of Mg95Zn4.3Y0.7 Alloy Powder Consolidates using Plasma Electrolytic Oxidation (플라즈마 전해산화공정을 이용한 Mg95Zn4.3Y0.7 합금분말 성형체의 표면특성제어)

  • Kim, J.H.;Choi, H.S.;Kim, D.H.;Hwang, D.Y.;Kim, H.S.;Kim, T.S.
    • Journal of Powder Materials
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    • v.15 no.2
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    • pp.95-100
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    • 2008
  • The investigation is to modify the mechanical and chemical properties of Mg alloys using a combination of rapid solidification and surface treatment. As the first approach, $Mg_{95}Zn_{4.3}Y_{0.7}$ was gas atomized and pressure sintered by spark plasma sintering process (SPS), showing much finer microstructure and higher strength than the alloys as cast. Further modification was performed by treating the surface of PM Mg specimen using Plasma electrolytic oxidation (PEO) process. During the PEO processing, MgO layer was initiated to form on the surface of Mg powder compacts, and the thickness and the density of MgO layer were varied with the reaction time. The thickening rate became low with the reaction time due to the limited diffusion rate of Mg ions. The surface morphology, corrosion behavior and wear resistance were also discussed.

The Effect of Surface Treatment on Creep Behaviors of Mg Alloy (마그네슘 합금의 크리이프 거동에 표면처리가 미치는 영향)

  • Kang, Dae-Min;An, Jung-O;Kang, Min-Cheol
    • Transactions of Materials Processing
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    • v.18 no.4
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    • pp.347-353
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    • 2009
  • The apparent activation energy, the applied stress exponent, and rupture life have been measured from creep experiments over the range of $200^{\circ}C$ to $220^{\circ}C$ and the applied stress range of 64MPa to 94MPa. The materials were used AZ31 magnesium alloys treated by plasma electrolytic oxidation of $20{\mu}m$ and $40{\mu}m$ at surface to investigate the its influence on creep behavior, and creep tests were carried out under constant applied stress and temperature. The experimental results showed that the dipper the thickness of surface treatment the higher the activation energy and stress exponent. And the higher temperature and applied stress, the lower stress exponent and activation energy, respectively. Also the dipper the thickness of surface treatment the longer creep rupture time.

The Study of Optical properties and surface roughness in AZ31B By plasma electrolytic oxidation surface treatment (플라즈마 전해 산화 표면처리 된 AZ31B 소재의 표면 조도 및 광학적 특성연구)

  • Yu, Jae-In;Yun, J-S;Yoon, Jae-Gon;Kim, Jin-Hi;Choi, Soon-Don;Yu, Jae-Yong;Jang, Ho-Kyeoung;Kim, Ki-Hong
    • Laser Solutions
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    • v.16 no.4
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    • pp.7-11
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    • 2013
  • The surface oxidation of magnesium was performed by Plasma electrolytic oxidation treatment method. And the optical reflectance spectra of the oxidation layers are studied. In the PEO process, the growth of the oxide layer take place at room temperature. Surface roughness of the obtained result, the average surface roughness is $0.08{\mu}m$ difference. The reason seems to the influence of the $Na^+$.

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Study of Parameters of the Plasma Electrolyte Polishing on the Stainless Steel (스테인레스강의 폴리싱에 미치는 전해질 플라즈마 영향)

  • Lee, W.H.;Kim, J.R.;Kim, S.G.;Kim, S.H.;Kim, S.W.
    • Journal of the Korean Society for Heat Treatment
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    • v.22 no.4
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    • pp.223-227
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    • 2009
  • The feasibility of plasma electrolytic polishing technology of stainless steel was examined. The results show that austenitic stainless steel can be polished clearly using potentiostatic regimes with various concentration of ammonium sulfate ($(NH_4)_2SO_4$) solution above certain initial temperature. The equipment and deposition produces for polishing process are described and the effect of processing parameters on the characterizations polished-samples has been investigated.

Influence of OH- Ion Concentration on the Properties of Eelectrolytic Plasma Oxide Coatings Formed on AZ61A Alloy (전해 플라즈마 공정에 의해 AZ61A 합금에 형성된 산화물층의 특성에 미치는 OH- 이온 농도의 영향)

  • Shin, Seong Hun;Jeong, Young Seung;Rehman, Zeeshan Ur;Koo, Bon Heun
    • Korean Journal of Materials Research
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    • v.26 no.10
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    • pp.513-520
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    • 2016
  • The effect of NaOH concentration on the properties of electrolytic plasma processing (EPP) coating formed on AZ61A Mg alloy is studied. Various types of EPP were employed on magnesium alloy AZ61A in a silicate bath with different concentrations of NaOH additive. Analysis of the composition and structure of the coating layers was carried out using an X-ray diffractometer (XRD) and a scanning electron microscope (SEM). The results showed that the oxide coating layer mainly consisted of MgO and $Mg_2SiO_4$; its porosity and thickness were highly dependent on the NaOH concentration. The Vickers hardness was over 900 HV for all the coatings. The oxide layer with 3 g/l of NaOH concentration exhibited the highest hardness value (1220 HV) and the lowest wear rate. Potentiodynamic testing of the 3 g/l NaOH concentration showed that this concentration had the highest corrosion resistance value of $2.04{\times}10^5{\Omega}cm^2$; however, the corrosion current density value of $5.80{\times}10^{-7}A/cm^2$ was the lowest such value.

Understanding Growth mechanism of PEO coating using two-step oxidation process

  • Shin, Seong Hun;Rehman, Zeeshan Ur;Noh, Tae Hwan;Koo, Bon Heun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2016.11a
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    • pp.173.2-173.2
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    • 2016
  • A two-step oxidation method was applied on Al6061 to debate the growth mechanism of plasma electrolytic oxidation (PEO) coating. The specimens were first oxidized in the primary electrolyte solution {$Na_3PO_4$ (8g/l), NaOH (2g/l), consequently, the specimens were transferred into a different electrolyte {$K_2ZrF_6$ (8g/l), NaOH (2g/l), $Na_2SiF_6$ (0.5g/l)} for further oxidation. The processes was conducted for various processing times. It was found the second step electrolyte component were reached to inner layers, in contrast to the primary step components which were thrustle to the outer layer. The presence of the secondary component in the inner layers were significantly varied with processing time which suggest the change in growth properties with processing time. further more the inside growth of the secondary component confirmed the increasing trend in the downward growth of the coating layer. The corrosion and hardness properties of the coatings were found highly improved with change in growth features with increasing the processing time.

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Corrosion Behavior of $Y_2O_3$ Coating in an Electrolytic Reduction Process (전해환원공정에서 $Y_2O_2$ 코팅층의 부식거동)

  • Cho, Soo-Haeng;Hong, Sun-Seok;Kang, Dae-Seung;Jeong, Myeong-Soo;Park, Byung-Heong;Hur, Jin-Mok;Lee, Han-Soo
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.8 no.1
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    • pp.33-39
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    • 2010
  • The electrolytic reduction of a spent oxide fuel involves a liberation of the oxygen in a molten LiCl electrolyte, which results in a chemically aggressive environment that is too corrosive for typical structural materials. Accordingly, it is essential to choose the optimum material for the processing equipment that handles the high molten salt. In this study, hot corrosion studies were performed on bare as well as coated superalloy specimens after exposure to lithium molten salt at $675^{\circ}C$ for 216 h under an oxidizing atmosphere. The IN713LC superalloy specimens were sprayed with an aluminized NiCrAlY bond coat and then with an $Y_2O_3$ top coat. The bare superalloy reveals an obvious weight loss due to spalling of the scale by the rapid scale growth and thermal stress. The chemical and thermal stability of the top coat has been found to be beneficial for increasing to the corrosion resistance of the structural materials for handling high temperature lithium molten salts.

Changing PEO coating formation on Mg alloys by particle additions to the treatment electrolyte

  • Blawert, Carsten;Srinivasan, Bala;Liang, Jun;Huang, Yuanding;Hoche, Daniel;Scharnagl, Nico;Heitmann, Volker;Burmester, Ulrich
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2012.11a
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    • pp.7-11
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    • 2012
  • Plasma electrolytic oxidation of magnesium alloys is a well known technique to produce corrosion and wear resistant coatings. The addition of particles to the electrolyte provides a possibility to produce coatings with an increasing range of composition by in-situ incorporation of those particles into the coating. An extensive literature review has revealed that the mode of incorporation depends mainly on the melting point of the used particles and the energy provided by the discharges of the PEO process. The spectrum ranges from inert to partly reactive incorporation, but a complete reactive incorporation and a formation of a new single phase coating was not observed so far. Thus a new approach in PEO processing is introduced using specific particles as a kind of sintering additive, changing not only the composition but lowering the melting temperature and increase the liquid phase fraction during the discharges, resulting in a new amorphous coating.

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