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排序方式: 共有367条查询结果,搜索用时 15 毫秒
1.
S. Abiraman H. K. Varma T. V. Kumari P. R. Umashankar Annie John 《Bulletin of Materials Science》2002,25(5):419-429
This study investigates quantitatively and qualitatively the sol-gel derived bioactive glass-ceramic system (BGS)—apatite-wollastonite
(AW) type granules in the size range of 0.5–1 mm, as an effective graft material for bone augmentation and restoration. Scanning
electron micrographs (SEM) of the sintered granules revealed the rough material surface with micropores in the range 10–30
μm. X-ray diffraction (XRD) pattern of the granules revealed the presence of crystalline phases of the hydroxyapatite and
wollastonite, and the functional groups of the silicate and phosphates were identified by Fourier transform infrared spectroscopy
(FT-IR). Thein vitro cell culture studies with L929 mouse fibroblast cell line showed very few cells adhered on the BGS disc after 24 h. This
could be due to the highly reactive surface of the disc concomitant with the crystallization but not due to the cytotoxicity
of the material, since the cellular viability (MTT assay) with the material was 80‰ Cytotoxicity and cytocompatibility studies
proved that the material was non-toxic and biocompatible. After 12 weeks of implantation of the BGS granules in the tibia
bone of New Zealand white rabbits, the granules were found to be well osteointegrated, as observed in the radiographs. Angiogram
with barium sulphate and Indian ink after 12 weeks showed the presence of microcapillaries in the vicinity of the implant
site implicating high vascularity. Gross observation of the implant site did not show any inflammation or necrosis. SEM of
the implanted site after 24 weeks revealed good osteointegration of the material with the newly formed bone and host bone.
New bone was also observed within the material, which was degrading. Histological evaluation of the bone healing with the
BGS granules in the tibial defect at all time intervals was without inflammation or fibrous tissue encapsulation. After 2
weeks the new bone was observed as a trabeculae network around the granules, and by 6 weeks the defect was completely closed
with immature woven bone. By 12 weeks mature woven bone was observed, and new immature woven bone was seen within the cracks
of the granules. After 24 weeks the defect was completely healed with lamellar bone and the size of the granules decreased.
Histomorphometrically the area percentage of new bone formed was 67.77% after 12 weeks and 63.37% after 24 weeks. Less bone
formation after 24 weeks was due to an increased implant surface area contributed by the material degradation and active bone
remodeling. The osteostimulative and osteoconductive potential of the BGS granules was established by tetracycline labelling
of the mineralizing areas by 2 and 6 weeks. This sol-gel derived BGS granules proved to be bioactive and resorbable which
in turn encouraged active bone formation. 相似文献
2.
一种可切削玻璃陶瓷的压痕断裂特性 总被引:4,自引:2,他引:2
将断裂韧性测试的压痕方法与压痕弯曲方法相结合,独立地分离出了压痕残余应力因子x,使其成为可测参量,并建立了压痕一压痕弯曲的断裂韧性测试方法.将这种方法应用于一种可切削玻璃陶瓷的测试,获得的K1c值为K1c=2.03MPa·m1/2,与单边切口法(SENB)获得的K1c值有较好的一致性.测得的残余应力因子X=0.093,符合Anstis经验公式的预测. 相似文献
3.
纳米晶镁铝尖晶石透明微晶玻璃的晶化行为研究 总被引:1,自引:0,他引:1
利用DTA、XRD和TEM研究了制备工艺对微晶玻璃晶化行为的影响,并制备出具有纳米镁铝尖晶石为晶相的微晶玻璃。 相似文献
4.
5.
利用熔融浇注法对包钢稀选尾矿微晶玻璃在生产过程中的流动性进行了研究,利用DSC,XRD,SEM等手段研究了尾矿和Na2O含量对微晶玻璃的析晶特性及其他物理性能的影响.结果表明,当其它成分不变时,随着尾矿含量的增加,流动性增强;当其它成分不变时,随着Na2O含量的增加,流动性增强;在本实验条件下,尾矿加入量较佳范围为40%~50%;Na2O较佳范围为3%~6%. 相似文献
6.
采用正交实验方法对CaO-Al2O3-SiO2系微晶玻璃的热处理工艺进行探讨,通过分析各热处理工艺参数对微晶玻璃烧结耐酸性和耐碱性的影响,找出其最佳热处理工艺参数,并采用XRD和SEM对热处理后的微晶玻璃的物相和形貌进行分析.结果表明:热处理工艺参数对微晶玻璃的耐腐蚀性能影响明显. 相似文献
7.
Maximina Romero María Isabel Martín Luisa Barbieri Fernanda Andreola Isabella Lancellotti Aurora López-Delgado 《Journal of the American Ceramic Society》2021,104(2):776-784
This work reports the results of an investigation aimed at the development of sintered glass-ceramic tiles by the sinter-crystallization of mixtures composed of aluminum slag and reclaimed packaging glass. The thermal behaviors of mixtures incorporating 50 and 60 wt% Al slag were established by differential thermal analysis (DTA). Green compacts were sintered in a temperature range of 800°C-1050°C and then soaked for 10-60 minutes. The mineralogical characterizations of the sintered materials were obtained by X-ray diffraction (XRD). The achieved results indicated that the sintering of aluminum slag and packaging glass reclaimed led to a glass-ceramic material composed mainly of needle-like crystals of wollastonite (CaSiO3). The bloating of samples during firing was evaluated according to a Cougny predictive diagram. After initial observations and according to bending strength characterizations, sintered tiles prepared from aluminum slag and glassy sand are appropriate for floor pavement and wall covering. 相似文献
8.
Yingjie Zhang Tao Wei Alan Xu Pranesh Dayal Daniel J. Gregg 《Journal of the American Ceramic Society》2021,104(11):5981-5989
As potential waste forms for immobilizing actinide-rich radioactive wastes, Eu2Ti2O7 (Eu as a surrogate for minor actinides) pyrochlore glass-ceramics were fabricated via hot isostatic pressing (HIPing) at 1200°C. The structure and microstructure at the reaction interface between the glass-ceramic waste form and the stainless steel (SS) canister under HIPing conditions were carefully investigated with scanning electron microscopy (SEM), transmission electron microscopy (TEM), and synchrotron single crystal X-ray diffraction (SC-XRD). The interactions at the reaction interface led to the formations of a ~10-µm-thick Cr2O3 layer as the oxidation front of the SS and a layer of a mixed oxide phase (Eu1.25SiCr0.8Ti1.2O7.5) on the glass-ceramic side of the reaction interface. The crystal structure of such a unique mixed oxide phase was revealed indubitably with a combination of synchrotron SC-XRD and TEM assisted with a focused ion beam (FIB) SEM system. The improved structural understanding of the reaction interface will help to support the utilization of HIPing as a versatile hot consolidation process for the treatment of radioactive wastes. 相似文献
9.
Na2O-PbO-Nb2O5-SiO2 glass-ceramic were synthesized by melt-quench process.The crystallization processing of the dielectric phases were carried out at temperature range from 750 to 900 ℃.The effects of Na2O content on crystallization and dielectric properties of Na2O-PbO-Nb2O5-SiO2 glass-ceramic were investigated by means of differential thermal analysis(DTA), X-ray diffraction (XRD) and dielectric constant measurements.The results show that Pb2Nb2O7, NaNbO3 and PbNb2O6 are the crystallization phases which would be formed from the Na2O-PbO-Nb2O5-SiO2 glass at the temperature range from 750 to 900 ℃.For a definite Na2O content, the dielectric constant increases with crystallization temperature.The initial crystallization temperature of NaNbO3 phase decreases with the increase of Na2O content, leading to the increase of dielectric constant of the glass-ceramic.Formation of PbNb2O6 phase at 850 and 900 ℃ would greatly increase the dielectric constant of Na2O-PbO-Nb2O5-SiO2 glass-ceramics, but the increase of Na2O content will inhibit the crystallization of PbNb2O6 phase. 相似文献
10.
钱觉时 《武汉理工大学学报(材料科学英文版)》2012,27(1):45-49
Electrolytic manganese residue (EMR) is a waste from electrolytic manganese industry that contains high concentration of toxic substances. Since the EMR disposal in landfill sites has a serious environmental impact, new ways of EMR utilization are being sought. Considering the melting of EMR to a glass at high temperature was a relatively less energy-intensive process, EMR was first made into a base glass and then the ground base glass was heat-treated in a certain procedure to make a glass-ceramic and the crystallization process was studied. It was determined by X-ray diffraction (XRD) that the primary crystalline phases of the EMR glass-ceramic were diopside and anorthite, which formed the surface crystallization mechanism with a crystallization activation energy of 429 kJ/mol. Scanning electron microscopy (SEM) observation showed that a layer of small spherical particles with an average size of about 0.5 μm were covered on the glass matrix surface, and among them there were some big particles. The low melting temperature and crystallization activation energy make it promising to reuse EMR for glass-ceramic production. 相似文献