Zouai Souheila, Harabi Abdelhamid, Karboua Noureddine, Harabi Esma, Chehlatt Sihem, Barama Salah-Edine, Zaiou Soumia, Bouzerara Ferhat, Guerfa Fatiha
Ceramics Lab., Physics department, Mentouri University of Constantine, Constantine 25000, Algeria.
Ceramics Lab., Physics department, Mentouri University of Constantine, Constantine 25000, Algeria.
Mater Sci Eng C Mater Biol Appl. 2016 Apr 1;61:553-63. doi: 10.1016/j.msec.2015.12.089. Epub 2015 Dec 30.
In this work, diopside based ceramics was obtained by solid state reaction using conventional sintering (CS) and microwave sintering (MS). Moreover, different amounts of P2O5 (0.5-5.0 wt.%) have been added. It has been found that a relative density up to 95% theoretical was obtained for diopside containing 2.0 and 5.0 wt.% P2O5, sintered at 1250 °C for 2h and at 1075 °C only for 15 min using CS and MS. Excellent values of micro hardness (7.4 ± 0.1 GPa) and 3 point flexural strength (about 270 MPa) for samples containing 5 wt.% P2O5, sintered at 1075 °C for 15 min using MS were measured. Besides this, a relatively low weight loss ratio has been measured (0.01%) for diopside samples containing 5 wt.% P2O5, sintered under the same conditions, after soaking in physiological salt solution for 2 days. Additionally, the bioactivity of diopside by the possibility of formation of apatite on the surface of pure diopside and diopside containing 2 wt.% of P2O5 immersed in simulated body fluid (SBF) was also confirmed. Finally, particular nano-sized of Carbonated hydroxyapatite (CHA) crystals (rice shaped) were formed and covered the surface of these samples, soaked in SBF solution for 14 days.
在本研究中,通过传统烧结(CS)和微波烧结(MS)的固态反应制备了透辉石基陶瓷。此外,添加了不同量的P2O5(0.5 - 5.0 wt.%)。结果发现,对于含有2.0和5.0 wt.% P2O5的透辉石,采用CS和MS在1250 °C烧结2小时以及仅在1075 °C烧结15分钟,可获得高达95%理论密度的相对密度。对于含有5 wt.% P2O5、采用MS在1075 °C烧结15分钟的样品,测量得到了优异的显微硬度值(7.4 ± 0.1 GPa)和三点弯曲强度值(约270 MPa)。除此之外,对于含有5 wt.% P2O5的透辉石样品,在相同条件下烧结后,浸泡在生理盐水中2天,测得其失重率相对较低(0.01%)。此外,还证实了纯透辉石和含有2 wt.% P2O5的透辉石浸泡在模拟体液(SBF)中时,表面形成磷灰石的可能性所体现的透辉石生物活性。最后,浸泡在SBF溶液中14天的这些样品表面形成了特定纳米尺寸的碳酸羟基磷灰石(CHA)晶体(米粒状)并覆盖在其表面。