压实压力对生物陶瓷材料烧结的影响

M. Ivin, V. Vereschagin, V. Ignatov
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引用次数: 0

摘要

陶瓷材料的用途是多种多样的,这取决于它们的特性和应用领域。骨科和创伤学对多孔材料在骨缺损重建中的应用有很大的需求。羟基磷灰石HA (Ca5(PO4)3OH)和三磷酸钙(Ca3(PO4)2)是最接近天然骨结构和生物学特性的材料,传统上用于生产磷酸钙陶瓷。高温反应可以得到孔隙率最小的粗晶材料。与致密的磷酸钙陶瓷相比,制备具有较大比表面积的磷酸钙材料有助于活性骨的形成。确定了压实压力和填料指数取决于物料的分散性。当压实压力增加时,材料的开孔率降低10-15%。在1100 ~ 1300℃范围内烧结致密陶瓷时,材料样品的强度提高到130 ~ 160 MPa,开孔率降低到8 ~ 10%;在此温度范围内烧结过程剧烈。引入成孔剂,在1250 ~ 1350℃下烧结,强度随烧结温度的升高而提高,开孔率在20 ~ 40%之间,孔径大小与成孔剂颗粒大小相对应。研究结果建立了成孔添加剂的用量、烧结温度和包装指数对制备HA陶瓷过程中气孔大小和数量的影响规律。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compaction pressure influence on the sintering of bioceramic materials
The use of ceramic materials varies and is determined by their properties and area of application. Orthopedics and traumatology have demand for porous materials for reconstruction of osseous defects. The material most closely fitting the natural bone in its structure and biological properties is hydroxyapatite HA (Ca5(PO4)3OH) and triple-calcium phosphate (Ca3(PO4)2) traditionally used to produce calcium-phosphate ceramics. High-temperature reactions lead to obtaining coarse-crystalline material with minimum porosity. Preparation of calcium-phosphate materials with large specific surface of the material contributes to the active bone formation compared to the dense calcium-phosphate ceramics. It was determined that compacting pressure and the packing index depends on the dispersion of materials. When compaction pressure is increased the open porosity of the material decreases by 10-15%. When sintering dense ceramics in the temperature range of 1100-1300°C the strength of the material samples increases to 130-160 MPa and open porosity decreases to 8-10%; total is 25-40% It characterizes an intensive sintering process in this temperature range. Introducing a pore-forming agent and sintering at 1250-1350°C showed that the strength improves with the increase of sintering temperature, while the open porosity ranges from 20-40% and the pore size corresponds to the size of the particles of a pore-forming agent. The results of the work allowed establishing the regularity of the influence of the quantity of pore-forming additives, sintering temperature, and the packaging index on the process of adjusting the size and number of pores for obtaining HA ceramics.
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