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Development of novel bioactive glass-ceramics in the Na2O/K2O-CaO-MgO-SiO2-P2O5-CaF2 system

机译:Na2O / K2O-CaO-MgO-SiO2-P2O5-CAF2系统新型生物活性玻璃陶瓷的研制

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This paper reports on the development of novel bioactive glass-ceramics (GCs) in the Na2O/K2O-CaO-MgO-SiO2-P2O5-CaF2 system for dental implant applications. The influence of partial substitution of Mg for Ca and of complete substitution of K for Na on bioactivity performance, mechanical properties, and aesthetics, was thoroughly investigated. Dense and well-crystallized GCs were produced, where the K-free GCs were comprised of diopside, wollastonite, and fluorapatite, and the K-containing ones consisted of diopside, fluorapatite, and alpha-potassium magnesium silicate (alpha-PMS). The experimental results suggest that wollastonite and alpha-PMS favored the bioactivity performance, reflected in the ability of the GCs to spontaneously form hydroxyapatite on their surface. It was also demonstrated that the above substitutions in the produced GCs enable suitable tuning of their mechanical properties in order to approach the physical properties of natural jaw bones (i.e. reduction of modulus of elasticity, increase of fracture toughness) better than the commercial zirconia and titanium implants.
机译:这对Na 2 O的/ K2O - 氧化钙 - 氧化镁 - 二氧化硅-P2O5-氟化钙系统用于牙科植入物的应用新颖的生物活性玻璃陶瓷(GCS)的发展纸张报告。彻底研究了Mg为Ca的偏取代和K对于生物活性性能,机械性能和美学的完全取代的影响。制备致密且结晶的GCS,其中k-Fair GCS由硫代缺口,硅铁矿和氟磷灰化物组成,含K含磷酸盐和α-钾 - 硅酸镁(α-PMS)组成。实验结果表明,硅灰石和α-PMS赞成生物活性性能,反映了GCS在其表面上自发地形成羟基磷灰石的能力。还证明了所生产的GCS中的上述取代使其机械性能合适调整它们的机械性能,以便比商业氧化锆和钛更好地接近自然钳口骨骼的物理性质(即,骨折的模量,骨折韧性的增加)植入物。

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