Schumacher Thomas C, Volkmann Eike, Yilmaz Rumeysa, Wolf Artur, Treccani Laura, Rezwan Kurosch
Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany.
Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany.
J Mech Behav Biomed Mater. 2014 Jun;34:294-301. doi: 10.1016/j.jmbbm.2014.02.021. Epub 2014 Feb 28.
Ca3ZrSi2O9 (baghdadite) has become a major research focus within the biomaterial community due to its remarkable in-vitro and in-vivo bioactivity. Although baghdadite seems to exhibit interesting biological properties, as yet there has been no data published concerning its mechanical properties. This lack of knowledge hinders targeting this novel bioactive material towards potential applications. In this study we prepare dense Ca3ZrSi2O9 bulk ceramics for the first time, allowing the evaluation of its mechanical properties including hardness, bending strength, Young׳s modulus, and fracture toughness. The preparation of baghdadite has been accomplished by a direct solid-state synthesis in combination with conventional sintering at 1350-1450°C for 3h. Our results show that samples sintered at 1400°C exhibit the best mechanical properties, resulting in a bending strength, fracture toughness, and hardness of 98±16MPa, 1.3±0.1MPam(0.5), and 7.9±0.2GPa. With a comparable mechanical strength to hydroxyapatite, but with an increased fracture toughness by 30% and hardness by 13% baghdadite is highly suitable for potential applications in non-load bearing areas (e.g. coatings or filler materials).
Ca3ZrSi2O9(斜锆石)因其卓越的体外和体内生物活性,已成为生物材料领域的主要研究焦点。尽管斜锆石似乎展现出有趣的生物学特性,但尚未有关于其力学性能的数据发表。这种知识的匮乏阻碍了将这种新型生物活性材料应用于潜在领域。在本研究中,我们首次制备了致密的Ca3ZrSi2O9块状陶瓷,从而能够评估其力学性能,包括硬度、弯曲强度、杨氏模量和断裂韧性。斜锆石的制备是通过直接固态合成结合在1350 - 1450°C下常规烧结3小时完成的。我们的结果表明,在1400°C烧结的样品表现出最佳力学性能,其弯曲强度、断裂韧性和硬度分别为98±16MPa、1.3±0.1MPam(0.5)和7.9±0.2GPa。斜锆石具有与羟基磷灰石相当的机械强度,但断裂韧性提高了30%,硬度提高了13%,非常适合在非承重领域(如涂层或填充材料)的潜在应用。