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Differences in flexural strengthvalues of direct bridge prototype reinforced with braided configuration and continuous configuration Poliethylene oxide-Polymethil metacrylate fiber


Introduction: Flexural strength is an important parameter to assess the mechanical
strength and stiffness of a material. The addition of fiber ...

  • CodeCallNoLokasiKetersediaan
    ITMKG1 - 150150 620.118 Ram DJatinangor (ITMKG)Tersedia namun tidak untuk dipinjamkan - No Loan
  • Perpustakaan
    Fakultas Kedokteran Gigi
    Judul Seri
    -
    No. Panggil
    620.118 Ram D
    Penerbit FKG Unpad : FKG UNPAD JATINANGOR.,
    Deskripsi Fisik
    -
    Bahasa
    English
    ISBN/ISSN
    160110180013
    Klasifikasi
    620.118
    Tipe Isi
    -
    Tipe Media
    -
    Tipe Pembawa
    -
    Edisi
    -
    Subyek
    Info Detil Spesifik
    -
    Pernyataan Tanggungjawab
  • Introduction: Flexural strength is an important parameter to assess the mechanical
    strength and stiffness of a material. The addition of fiber in this study was carried
    out to produce good flexural strength. The purpose of this study is to determine the
    difference in flexural strength between a direct dental bridge prototype reinforced
    with braided configuration and continuous configuration Polyethylene oxidePolymethyl methacrylate fiber. Materials and Methods: This study is a quasiexperimental research with a total of 32 specimens divided into two groups, 16
    composite specimens of continuous configuration PEO-PMMA fiber and 16
    composite specimens of braided configuration PEO-PMMA fiber. Specimens were
    made with a 25 x 2 x 2 mm mold. The specimens were soaked in saliva and stored
    in an incubator at 37⁰C for 24 hours before testing. Flexural strength was tested
    using Universal Testing Machine. Data was analyzed by statistical independent ttest. Results: There is a significant difference in flexural strength p < (α = 0.05).
    Conclusion: The flexural strength value of the composite direct dental bridge
    prototype reinforced with braided configuration PEO-PMMA fiber is higher than
    the flexural strength value of the composite direct ental bridge prototype reinforced
    with continuous configuration PEO-PMMA fiber
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