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首页> 外文期刊>Journal of the European Ceramic Society >Key parameters for spark plasma sintering of wet-precipitated iodate-substituted hydroxyapatite
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Key parameters for spark plasma sintering of wet-precipitated iodate-substituted hydroxyapatite

机译:湿沉淀碘酸盐取代的羟基磷灰石火花等离子体烧结的关键参数

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A possible strategy for the management of radioactive iodine-129 is to incorporate it under the form of iodate in hydroxyapatite matrices (HA-CaI) intended to be stored in deep geological repositories. To meet disposal requirements, powder materials that were here obtained by a wet-precipitation route required shaping. In this work, we demonstrate that sintering of HA-CaI could be achieved by spark plasma sintering (SPS) at low temperature (T <300 degrees C) without iodine volatilization. Such densification was only possible if a non apatitic hydrated calcium phosphate layer was present at the surface of grains, the content of which directly depended on synthesis conditions. The higher the proportion of hydrated layer, the better uniaxial cold compaction and densification during sintering. For an optimised HA-CaI powder, a relative density of 88% could be reached using a pressure of 100 MPa, a dwell temperature of 250 degrees C and a heating rate of 30 degrees C min(-1). (C) 2016 Elsevier Ltd. All rights reserved.
机译:管理放射性碘129的一种可能策略是将其以碘酸盐的形式掺入羟基磷灰石基质(HA-CaI)中,该基质打算储存在深部地质处置库中。为了满足处置要求,此处通过湿沉淀途径获得的粉末材料需要成型。在这项工作中,我们证明可以通过在低温下(T <300摄氏度)进行火花等离子体烧结(SPS)来实现HA-CaI的烧结而不会碘挥发。只有在颗粒表面存在非脂族水合磷酸钙层时,这种致密化作用才可能发生,其含量直接取决于合成条件。水合层的比例越高,烧结期间的单轴冷压制和致密化越好。对于优化的HA-CaI粉末,使用100 MPa的压力,250摄氏度的驻留温度和30摄氏度的min(-1)加热速率可以达到88%的相对密度。 (C)2016 Elsevier Ltd.保留所有权利。

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