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Densification Process of OH Controlled Hydroxyapatite Ceramics by Spark Plasma Sintering

机译:火花等离子烧结OH控制羟基磷灰石陶瓷的致密化过程

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Calcium hydroxyapatite, Ca10(PO4)6(OH)2:HA, is the inorganic principle component of natural bones and teeth. It has been already suggested that the amount of OH ion in the crystal structure of HA is closely related to the biocompatibility. The amount of OH ion in current HA, however, has not been controlled. In order to prepare more functional HA ceramics, the amount of OH ion must be controlled. In this study, HA ceramics with different OH amount were prepared from fine HA crystals by spark plasma sintering (SPS). In order to reveal the ideal sintering conditions for preparation of transparent ceramics, densification process on SPS was investigated. The samples were pressed uniaxialy under 60 MPa, and then they were heated by SPS at 800 °C, 900 °C and 1000 °C for 10 min with the heating rate of 25 °C·min–1. The quantity of OH ion in HA ceramics sintered by SPS was decreased with increasing temperature of sintering. Transparent HA ceramics were prepared by SPS at 900 °C and 1000 °C. In analysis of the densification behavior during sintering of HA by SPS, dominant sintering mechanism was plastic flow of densification. Transparent ceramics should be the most suitable materials to investigate the interface between human cells and ceramics.
机译:羟基磷灰石,Ca10(PO4)6(OH)2:HA是天然骨骼和牙齿的无机原理成分。已经提出,HA晶体结构中的OH离子的量与生物相容性密切相关。然而,目前HA中的OH离子量尚未被控制。为了制备更多功能性HA陶瓷,必须控制OH离子的量。在本研究中,通过火花血浆烧结(SPS)由细颈晶体中具有不同OH量的HA陶瓷。为了揭示用于制备透明陶瓷的理想烧结条件,研究了SPS上的致密化过程。将样品在60MPa下压制下缀,然后通过SPS在800℃,900℃和1000℃下加热10分钟,加热速率为25℃·min-1。随着SPS烧结的HA陶瓷中OH离子的量随着烧结温度的增加而降低。通过SPS在900°C和1000℃下制备透明HA陶瓷。在通过SPS烧结期间的致密化行为的分析中,主导烧结机构是致密化的塑性流动。透明陶瓷应是研究人体细胞和陶瓷之间的界面的最合适的材料。

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