Surface Analysis of the PEKK Coating on the CP Ti Implant Using Laser Technique.

Objective: Evaluation of the poly ether keton keton polymer (PEKK) coating material on the commercial pure titanium disks (CP Ti) with or without laser surface structuring. Design: In vitro experimental study of PEKK polymer coated material on the CP Ti disks with or without laser surface structurin...

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Publicado en:International Medical Journal Vol. 28; pp. 29 - 33
Autores principales: Al-Khafaji, Aseel Mohammed, Hamad, Thekra Ismael
Formato: pictorial research tables/charts Journal Article
Publicado: Japan International Cultural Exchange Foundation 2021 Supplement
Acceso en línea:Ver este registro en EBSCOhost
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      pub: Japan International Cultural Exchange Foundation
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        atl: Surface Analysis of the PEKK Coating on the CP Ti Implant Using Laser Technique.
      aug:
        au:
          Al-Khafaji, Aseel Mohammed
          Hamad, Thekra Ismael
        affil: Assistant professor, Department of Prosthodontics, College of Dentistry, University of Baghdad Iraq
      sug:
        subj:
          Surface Properties
          Ethers
          Ketones
          Polymers
          Lasers
          Titanium
          Dental Materials
          Dental Implants
          Dental Prosthesis Design
          Carbon Dioxide
          Microscopy, Electron, Scanning Methods
          Dental Bonding
          Dental Alloys
      ab: Objective: Evaluation of the poly ether keton keton polymer (PEKK) coating material on the commercial pure titanium disks (CP Ti) with or without laser surface structuring. Design: In vitro experimental study of PEKK polymer coated material on the CP Ti disks with or without laser surface structuring. Materials and methods: coating the surface of the commercial pure titanium (CP Ti) disks with PEKK polymer was performed via using frictional mode CO2 laser, then the samples disks analyzed by using FESEM. Results: the FESEM reveal good adherence and distribution of the PEKK coated material over the CP Ti substrate by using the frictional mode CO2 laser at 2 watt and 6 ms pulse duration. Conclusion: the frictional mode CO2 laser considered an effective and suitable method for PEKK coating on the CP Ti substrate.
      pubtype: Academic Journal
      doctype:
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        research
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        Journal Article
      ougenre: Article
    language: English
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