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A new technological procedure using sucrose as porogen compound to manufacture porous biphasic calcium phosphate ceramics of appropriate micro- and macrostructure

机译:利用蔗糖作为致孔剂的新工艺制备具有适当的微观和宏观结构的多孔双相磷酸钙陶瓷

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摘要

In the domain of implantable materials, the porosity and pore size distribution of a material in contact with bone is decisive for bone ingrowth and thus the control of the porosity is of great interest. The use of a new porogen agent, i.e. sucrose is proposed to create a porosity in biphasic calcium phosphate blocks. The technological procedure is as follows: sucrose and mineral powder are mixed, then compressed by isostatic compression and sintering finally eliminates sucrose. Blocks obtained were compared to a manufactured product: Triosite~R (Zimmer, Etupes, France) which porosity is created through a naphthalene sublimation process. Results have shown that the incorporation of sucrose allows the preparation of porous blocks with controlled porosity varying from 40 to 80% and with macro-, meso- and microporosity characteristics depending on the percentage of sucrose added as well as on the granulometry of both sucrose and mineral powder.
机译:在可植入材料的领域中,与骨骼接触的材料的孔隙率和孔径分布对于骨骼向内生长起决定性作用,因此对孔隙率的控制非常感兴趣。提出使用新的成孔剂,即蔗糖以在双相磷酸钙嵌段中产生孔隙。工艺步骤如下:将蔗糖和矿物粉混合,然后通过等静压压缩,并通过烧结最终除去蔗糖。将获得的块与制造的产品:Triosite_R(Zimmer,Etupes,法国)进行比较,该孔隙是通过萘的升华过程产生的。结果表明,蔗糖的掺入可以制备孔隙率控制在40%至80%之间的多孔块,并且其孔隙率,介孔率和微孔率取决于蔗糖的添加量以及蔗糖和蔗糖的粒度。矿物粉。

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