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SCI-Expanded JCR Q3 Özgün Makale Scopus
Effect of femtosecond laser induced surface patterns on the flexural strength of monolithic zirconia
Journal of Biomedical Materials Research Part B: Applied Biomaterials 2024 Cilt 112
Scopus Eşleşmesi Bulundu
112
Cilt
Scopus Yazarları: Yener Okutan, Yasemin Gündoğdu, Mustafa Borga Donmez, Huseyin Seker, Hamdi Şükür Kılıç
Özet
To investigate how patterns generated by femtosecond (fs) laser and femtosecond laser power affect the surface roughness (Ra) and biaxial flexural strength (BFS) of monolithic zirconia. Eighty disk-shaped zirconia specimens were divided into eight subgroups (n = 10): Control (C), airborne-particle abrasion (APA), 400 mW fs laser (spiral [SP(400)], square [SQ(400)], circular [CI(400)]), and 700 mW fs laser ([SP(700)], [SQ(700)], [CI(700)]). Ra values were calculated by using a surface profilometer. One additional specimen per group was analyzed with scanning electron microscopy and x-ray diffractometry. BFS values were obtained by using the piston-on-3-ball test. One-way ANOVA and either Tukey's HSD (BFS) or Tamhane's T2 (Ra) tests were used to evaluate data (α = 0.05). Regardless of the pattern and power, fs laser groups had higher Ra than C and APA, while SP groups had lower Ra than CI and SQ groups (p ≤ 0.004). For each pattern, Ra increased with higher laser power (p < 0.001), while the laser power did not affect the BFS (p ≥ 0.793). CI and SQ groups had lower BFS than the other groups (p ≤ 0.040), whereas SP groups had similar BFS to C and APA (p ≥ 0.430). Fs laser microstructuring with spiral surface pattern increased the Ra without jeopardizing the BFS of zirconia. Thus, this treatment might be an option to roughen tested zirconia.
Anahtar Kelimeler (Scopus)
surface roughness airborne particle abrasion biaxial flexural strength femtosecond laser monolithic zirconia

Anahtar Kelimeler

surface roughness airborne particle abrasion biaxial flexural strength femtosecond laser monolithic zirconia

Makale Bilgileri

Dergi Journal of Biomedical Materials Research Part B: Applied Biomaterials
ISSN 1552-4973
Yıl 2024 / 5. ay
Cilt / Sayı 112
Makale Türü Özgün Makale
Hakemlik Hakemli
Endeks SCI-Expanded
JCR Quartile Q3
Yayın Dili İngilizce
Kapsam Uluslararası
Toplam Yazar 5 kişi
Erişim Türü Basılı+Elektronik
Erişim Linki Makaleye Git
Alan Fen Bilimleri ve Matematik Temel Alanı Fizik Atom, Molekül ve Lazer Fiziği Nanoteknoloji Spektroskopi

YÖKSİS Yazar Kaydı

Yazar Adı OKUTAN YENER,GÜNDOĞDU KABAKCI YASEMİN,DÖNMEZ MUSTAFA BORGA,ŞEKER HÜSEYİN,KILIÇ HAMDİ ŞÜKÜR
YÖKSİS ID 7983844

Metrikler

JCR Quartile Q3
Yazar Sayısı 5