Kędzia Olga, Lubas Małgorzata, Dudek Agata, Jasiński Jarosław
Department of Materials Engineering - Doctoral School, Czestochowa University of Technology, Armii Krajowej 19, Czestochowa, 42-200, Poland.
Department of Materials Engineering, Czestochowa University of Technology, Armii Krajowej 19, Czestochowa, 42-200, Poland.
Sci Rep. 2024 Dec 5;14(1):30297. doi: 10.1038/s41598-024-82224-x.
This study determines the possibilities of synthesis of porous glass-ceramic materials based on Bioglass 45S5 using different methods obtained porous materials. In this work used foaming with sintering method for the set: bioglass 45S5 + glass cullet (CRT) + glass water (WG) and method sintering with forming-pore agents for the: bioglass + glass water (WG) + dried banana peels. The sets were melting and the next step sintering process. The resulting foams were examined and analysed for structural, microstructural, and physical properties. The research allowed for a quantitative and qualitative assessment of the foaming process generated by the presence of WG with the addition of CRT cullet and WG together with dried banana peel. It was found that WG with the addition of CRT cullet was a solution that offered the possibility of obtaining a large number of evenly distributed pores and higher total porosity compared the second set (WG + banana peel). Moreover, the use of CRT cullet and banana peel allowed the introduction of biogenic elements such as strontium, barium and potassium into the obtained materials, which have a positive effect on the stimulation of osteogenesis.
本研究确定了使用不同方法获得的多孔材料合成基于生物玻璃45S5的多孔微晶玻璃材料的可能性。在这项工作中,对以下两组采用了发泡烧结法:生物玻璃45S5 + 碎玻璃(阴极射线管)+ 玻璃水(WG),以及对以下一组采用了添加造孔剂的烧结法:生物玻璃 + 玻璃水(WG)+ 干燥香蕉皮。将这些组进行熔化,然后进行下一步烧结过程。对所得泡沫进行结构、微观结构和物理性能的检查与分析。该研究对添加阴极射线管碎玻璃和WG以及WG与干燥香蕉皮一起存在时产生的发泡过程进行了定量和定性评估。结果发现,添加阴极射线管碎玻璃的WG是一种解决方案,与第二组(WG + 香蕉皮)相比,它提供了获得大量均匀分布的孔隙和更高总孔隙率的可能性。此外,使用阴极射线管碎玻璃和香蕉皮能够将锶、钡和钾等生物成因元素引入所得材料中,这对成骨刺激具有积极作用。