Investigation of aluminum oxide coatings created by electrolytic plasma method in different potential regimes

  • سال انتشار: 1399
  • محل انتشار: فصلنامه کامپوزیت ها و ترکیبات، دوره: 2، شماره: 4
  • کد COI اختصاصی: JR_JRCC-2-4_002
  • زبان مقاله: انگلیسی
  • تعداد مشاهده: 102
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نویسندگان

Mahsa Amiri

Material and Metallurgical Engineering Department, Amirkabir University of Technology, Hafez Street, Tehran, Iran

Saman Padervand

Material and Metallurgical Engineering Department, Amirkabir University of Technology, Hafez Street, Tehran, Iran

Vahid Tavakoli Targhi

Material and Metallurgical Engineering Department, Amirkabir University of Technology, Hafez Street, Tehran, Iran

Seyed Mohammad Mousavi khoei

Material and Metallurgical Engineering Department, Amirkabir University of Technology, Hafez Street, Tehran, Iran

چکیده

One of the most important coating methods on aluminum surfaces is the electrolytic plasma method. The main objective of the present study is to investigate the potential of aluminum oxide coatings created by electrolytic plasma method. Aluminum series ۲ and the electrolyte of sodium silicate, sodium tetraphosphate, sodium aluminate, and potassium hydroxide were used. The results showed that the appropriate voltage to achieve uniform coating with ideal thickness and morphology is ۵۰۰ V. Adding sodium silicate to the electrolyte solution will create porosity and non-adhesion to the substrate. On the other hand, the use of tetra sodium pyrophosphate increases the adhesion of the coating by penetrating phosphorus into the metal/coating interface. The optimum solution for plasma electrolytic oxidation coatings composed of ۱۰, ۳, and ۳ g/l of tetra sodium pyrophosphate, sodium aluminate, and KOH, respectively. DC pulsed coating was shown to control the coating process and coating uniformity. Also the appropriate frequency to apply coating was DC pulse potential at ۱۰۰۰ Hz frequency under the ۳۰% duty cycle.

کلیدواژه ها

Electrolyte plasma method, Aluminum oxide coatings, Potential applied regime

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