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添加SiO、CaO和MgO的氮化硅陶瓷的力学性能及体外生物活性。

Mechanical properties and in vitro bioactivity of silicon nitride ceramics with SiO , CaO, and MgO additions.

作者信息

Sona Filho Celso Ricardo, Machado de Souza Carvalho Flávio, Chaves Guedes-Silva Cecilia

机构信息

Instituto de Pesquisas Energéticas e Nucleares, IPEN-CNEN/SP, São Paulo, SP, Brazil.

Departamento de Mineralogia e Geotectônica, Instituto de Geociências, Universidade de São Paulo, USP, SP, Brazil.

出版信息

J Biomed Mater Res B Appl Biomater. 2022 Mar;110(3):507-516. doi: 10.1002/jbm.b.34930. Epub 2021 Sep 4.

DOI:10.1002/jbm.b.34930
PMID:34480786
Abstract

Silicon nitride ceramics with SiO , CaO, and MgO as sintering aids were investigated in view of biomedical applications. In the current study, samples with four different compositions were pressureless sintered at 1750 for 1 h under a nitrogen atmosphere. The samples were evaluated concerning densification, microstructure, mechanical properties, and in vitro bioactivity. Microstructures with elongated β-Si N grains dispersed in an intergranular phase and with densities from 78.77 to 97.14% of the theoretical density were obtained. Higher contents of SiO resulted in the best densification and mechanical properties. Besides, replacements of CaO by MgO in the initial compositions affected Young's modulus and in vitro bioactivity. Considering the samples with relative density higher than 94.14%, those with lower values of Young's modulus had lower SiO /MgO ratios. After immersion in SBF (Simulated Body Fluid), the samples with high porosity and/or partial replacements of CaO by MgO had their surfaces coated with a layer rich in calcium and phosphorus, morphologically similar to hydroxyapatite. Hence, producing silicon nitride ceramics with the potential to be used as orthopedic implants must consider ideal amounts of additives. In this article, the best combination of mechanical properties and mineralization capability was reached by the composition with low content of MgO, and high content of SiO and CaO.

摘要

对以SiO、CaO和MgO作为烧结助剂的氮化硅陶瓷进行了生物医学应用方面的研究。在本研究中,将四种不同成分的样品在氮气气氛下于1750℃无压烧结1小时。对样品的致密化、微观结构、力学性能和体外生物活性进行了评估。获得了具有细长β-SiN晶粒分散在晶间相中的微观结构,密度为理论密度的78.77%至97.14%。较高的SiO含量导致了最佳的致密化和力学性能。此外,在初始成分中用MgO替代CaO会影响杨氏模量和体外生物活性。对于相对密度高于94.14%的样品,杨氏模量值较低的样品具有较低的SiO/MgO比率。在模拟体液(SBF)中浸泡后,具有高孔隙率和/或用MgO部分替代CaO的样品表面覆盖有一层富含钙和磷的层,形态上类似于羟基磷灰石。因此,生产具有用作骨科植入物潜力的氮化硅陶瓷必须考虑理想的添加剂用量。在本文中,通过低MgO含量、高SiO和CaO含量的成分实现了力学性能和矿化能力的最佳组合。

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