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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Improvement of the mechanical properties of new calcium phosphate bone cements in the CaHPO4-alpha-Ca3(PO4)2 system: compressive strength and microstructural development.
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Improvement of the mechanical properties of new calcium phosphate bone cements in the CaHPO4-alpha-Ca3(PO4)2 system: compressive strength and microstructural development.

机译:CaHPO4-alpha-Ca3(PO4)2系统中新型磷酸钙骨水泥力学性能的改善:抗压强度和微观结构的发展。

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The hardening properties of calcium phosphate cements in the CaHPO4-alpha-Ca3(PO4)2 (DCP-alpha-TCP) system have been investigated with interest focused on the compressive strength and microstructure development. Previous studies have shown that the addition of CaCO3(CC) leads to a modification of the calcium-deficient apatite structure of the reaction product, which results in a material more similar to the apatite in bone mineral. The addition of 10% w/w of CC to the initial DCP-alpha-TCP powder mixture resulted, with time, in a retardation of the development of compressive strength. However, the optimum compressive strength reached values up to 40% higher than CC-free samples. This retarding effect also has been monitored as a function of the calcium to phosphorus (Ca/P) ratio of the DCP and alpha-TCP mixture, showing the importance of the final cement properties of the relative quantities of the reactants in the mixture.
机译:已经研究了CaHPO4-α-Ca3(PO4)2(DCP-α-TCP)系统中磷酸钙水泥的硬化性能,重点是抗压强度和微观结构的发展。先前的研究表明,添加CaCO3(CC)会导致反应产物中钙缺乏的磷灰石结构的改性,从而导致与骨矿物质中的磷灰石更相似的材料。随着时间的流逝,向初始DCP-α-TCP粉末混合物中添加10%w / w的CC会导致压缩强度的发展受阻。但是,最佳抗压强度要比不含CC的样品高40%。还已经根据DCP和α-TCP混合物的钙磷(Ca / P)比来监测了这种阻滞作用,表明了混合物中反应物相对量对于最终水泥性能的重要性。

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