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Sintered hydroxyfluorapatites. Part III: Sintering and resultant mechanical properties of sintered blends of hydroxyapatite and fluorapatite.

机译:烧结的羟基氟磷灰石。第三部分:羟基磷灰石和氟磷灰石的烧结混合物的烧结及其力学性能。

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摘要

The presence of chemically dissimilar apatites occurs widely in biological systems as a result of exposure to chemically enriched media, but also to optimize the mechanical properties. The use of mechanical blends of apatites can be used to manufacture high temperature processed fluoride containing hydroxyapatites with improved properties. Mechanical blends of fluorapatite and hydroxyapatite were produced with 0%, 20%, 40%, 60%, 80% and 100% fluorapatite. Pellets were sintered at 1150 degrees C, 1200 degrees C and 1250 degrees C and the density determined by the Archimedes method. Mechanical properties including hardness, elastic modulus and fracture toughness were measured using indentation. It was found that mechanical blends of 150nm sized hydroxyapatite and 300nm sized fluorapatite lead to solid solutions after sintering. The mechanical blends do not sinter as effectively as homogeneous hydroxyfluorapatite solid solutions and exhibit a minimum density at 80wt.% fluorapatite. The hardness, elastic modulus and brittleness decreases with a higher flourapatite content, attributed primarily to a decrease in density. The higher fracture toughness for mechanical blends indicates that these materials are more crack resistant and provide a means for improving mechanical properties.
机译:化学异质磷灰石的存在由于暴露于化学富集的介质而在生物系统中广泛发生,而且还优化了机械性能。磷灰石的机械共混物的使用可用于制造具有改善的性能的高温处理的含羟基磷灰石的氟化物。氟代磷灰石和羟基磷灰石的机械共混物与0%,20%,40%,60%,80%和100%的氟磷灰石一起生产。在1150℃,1200℃和1250℃下烧结粒料,并通过阿基米德法测定密度。使用压痕测量包括硬度,弹性模量和断裂韧性的机械性能。发现在烧结后,150nm尺寸的羟基磷灰石和300nm尺寸的氟磷灰石的机械共混导致固溶体。机械共混物的烧结效果不如均质羟基氟磷灰石固溶体,并且在80wt。%的氟磷灰石下具有最小密度。氟磷灰石含量越高,硬度,弹性模量和脆性越低,这主要归因于密度的降低。机械共混物的较高断裂韧性表明这些材料具有更高的抗裂性,并提供了改善机械性能的手段。

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