Titre : |
Caractérisation d'une céramique dentaire nanostructurée utilisant le système IPS E-max |
Type de document : |
texte imprimé |
Auteurs : |
Badis Rahal, Auteur ; Merzoug Bouchear, Directeur de thèse |
Editeur : |
Constantine : Université Mentouri Constantine |
Année de publication : |
2011 |
Importance : |
117 f. |
Format : |
31 cm |
Note générale : |
Magister
2 copies imprimées disponibles |
Langues : |
Français (fre) |
Catégories : |
Français - Anglais Physique
|
Tags : |
Céramique dentaire IPS e.max calorimétrie différentielle à balayage (DSC) et ifrarouge à transformée de fourier (FTIR) Dental ceramic differential scanning calorimetry (DSC) Fourier
Transformed InfraRed (FTIR) سيراميك الأسنان IPS e.maxالتجميل التحليل الحراري التفاضلي ) (DSC
تحول فوريه بالأشعة دون الحمراء )(FTI |
Index. décimale : |
530 Physique |
Résumé : |
The objective of this work is to study the characterization of a dental ceramic
nanostructured using the IPS e.max system based lithium disilicate and fluoroapatite, which
has recently been developed to meet clinical needs, while trying to get closer to the aspect
natural teeth.
For this, we used several experimental methods: Differential Scanning Calorimetry
(DSC), X-ray diffraction, Microhardness measurements, Fourier Transformed InfraRed
(FTIR), Electrochemical Characterization and the index of refraction.
The results of our investigations have revealed that lithium disilicate, the centerpiece of
the prosthetic reinforcement is better than the fluoroapatite used to achieve the cosmetic part
of the piece. On the other hand, given the characterization obtained for two materials based on
the lithium disilicate and fluoroapatite, we can say that these materials can correctly replace
the natural teeth. |
Diplôme : |
Magistère |
En ligne : |
../theses/physique/RAH5972.pdf |
Format de la ressource électronique : |
pdf |
Permalink : |
index.php?lvl=notice_display&id=5908 |
Caractérisation d'une céramique dentaire nanostructurée utilisant le système IPS E-max [texte imprimé] / Badis Rahal, Auteur ; Merzoug Bouchear, Directeur de thèse . - Constantine : Université Mentouri Constantine, 2011 . - 117 f. ; 31 cm. Magister
2 copies imprimées disponibles Langues : Français ( fre)
Catégories : |
Français - Anglais Physique
|
Tags : |
Céramique dentaire IPS e.max calorimétrie différentielle à balayage (DSC) et ifrarouge à transformée de fourier (FTIR) Dental ceramic differential scanning calorimetry (DSC) Fourier
Transformed InfraRed (FTIR) سيراميك الأسنان IPS e.maxالتجميل التحليل الحراري التفاضلي ) (DSC
تحول فوريه بالأشعة دون الحمراء )(FTI |
Index. décimale : |
530 Physique |
Résumé : |
The objective of this work is to study the characterization of a dental ceramic
nanostructured using the IPS e.max system based lithium disilicate and fluoroapatite, which
has recently been developed to meet clinical needs, while trying to get closer to the aspect
natural teeth.
For this, we used several experimental methods: Differential Scanning Calorimetry
(DSC), X-ray diffraction, Microhardness measurements, Fourier Transformed InfraRed
(FTIR), Electrochemical Characterization and the index of refraction.
The results of our investigations have revealed that lithium disilicate, the centerpiece of
the prosthetic reinforcement is better than the fluoroapatite used to achieve the cosmetic part
of the piece. On the other hand, given the characterization obtained for two materials based on
the lithium disilicate and fluoroapatite, we can say that these materials can correctly replace
the natural teeth. |
Diplôme : |
Magistère |
En ligne : |
../theses/physique/RAH5972.pdf |
Format de la ressource électronique : |
pdf |
Permalink : |
index.php?lvl=notice_display&id=5908 |
|