Yayın: Biyouyumlu Jelatinli Filmlerin Fiziksel Ve Mekanik Özelliklerinin Belirlenmesi
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Fizik Mühendisliği
Physics Engineering
Physics Engineering
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Yayıncı
Fen Bilimleri Enstitüsü
Institute of Science and Technology
Institute of Science and Technology
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Özet
Yapılan bu tez çalışmasında, biyouyumlu filmlerin uygun mekanik mukavemetinin belirlenmesi ve kullanılan tıbbi uygulamaya göre fiziksel parametrelerinin belirlenebilmesi amaçlanmıştır. Bu tez çalışmasınıin deneysel aşamasında öncelikle biyouyumlu malzemeler kullanılarak solüsyonlar hazırlandı ve bu solüsyonlar kullanılarak biyouyumlu filmler yapıldı. Biyouyumlu malzemelerin fiziksel özellikleri; solüsyon halinde iken viskozluk ölçümü ile film halinde ise çekme deneyi ile iki aşamada belirlendi. Biyouyumlu özelliklere, deneysel çalışmalarda kullanım kolaylığına ve düşük maliyete sahip olduğundan dolayı biyouyumlu malzeme olarak jelatin, filmlerin temel malzemesi olarak seçildi. Çalışma farklı biyouyumlu malzamelerin jelatin solüsyonlarının ve filmlerinin mekanik özellikleri üzerindeki etkilerini inceleyebilmek amacıyla genişletildi. Riboflavin, glikoz ve NaCl gibi doğal biyouyumlu polimerik malzemeler seçildi.
The main aim of this thesis is to determine appropriate mechanical strength of biocompatible solutions and films and physical parameters respect to medical applications. Gelatin was chosen as a based biocompatible material. Various concentrations of gelatin were determined such as 5%, 3.3%, 2% ,1.42%, 1% and 0.6%. Films were prepared using these solutions. Viscosity measurement were done for solutions and tensile test were done for films and results of each experiments were analysed to obtain mechanical results for each material. After analysing results of experiments two concentrations of pure gelatin solution 5% which was most concentrated and 2% which had convenient results were chosen to observe influence of riboflavin, glucose and NaCl. Concentration of glucose and NaCl were altered between 1% to 5% at a rate of 1% increment. Films were prepared using these solutions. Viscosity measurement and tensile test were performed for each concentration too. Besides the glucose and NaCl riboflavin was added to pure gelatin concentration to observe affect of riboflavin which is UV sensitive material. The viscosity values and flow behaviour of each solution and Elasticity Modulus of each film were determined after experimental procedure. Viscosity and flow behavior of solutions were related with mechanical properties of fluid form and Elasticit Modulus was related with mechanical properies of solid form of each sample. These parameters were used in order to determine which material is appropriate for biomedical application.
The main aim of this thesis is to determine appropriate mechanical strength of biocompatible solutions and films and physical parameters respect to medical applications. Gelatin was chosen as a based biocompatible material. Various concentrations of gelatin were determined such as 5%, 3.3%, 2% ,1.42%, 1% and 0.6%. Films were prepared using these solutions. Viscosity measurement were done for solutions and tensile test were done for films and results of each experiments were analysed to obtain mechanical results for each material. After analysing results of experiments two concentrations of pure gelatin solution 5% which was most concentrated and 2% which had convenient results were chosen to observe influence of riboflavin, glucose and NaCl. Concentration of glucose and NaCl were altered between 1% to 5% at a rate of 1% increment. Films were prepared using these solutions. Viscosity measurement and tensile test were performed for each concentration too. Besides the glucose and NaCl riboflavin was added to pure gelatin concentration to observe affect of riboflavin which is UV sensitive material. The viscosity values and flow behaviour of each solution and Elasticity Modulus of each film were determined after experimental procedure. Viscosity and flow behavior of solutions were related with mechanical properties of fluid form and Elasticit Modulus was related with mechanical properies of solid form of each sample. These parameters were used in order to determine which material is appropriate for biomedical application.
Tanım
Tez (Yüksek Lisans) -- İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, 2015
Thesis (M.Sc.) -- İstanbul Technical University, Instıtute of Science and Technology, 2015
Thesis (M.Sc.) -- İstanbul Technical University, Instıtute of Science and Technology, 2015
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İTÜ theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission.
İTÜ theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission.
Anahtar Kelimeler
Biyomalzeme, Biyopolimerler, Esneklik, Fiziksel Parametreler, Gerilme, Viskozite, Biyouyumluluk, Biomaterial, Biopolymers, Elasticity, Physical Parameters, Stress, Viscosity, Biocompatibility
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