Harbin University, Harbin, 150080, Heilongjiang, China.
Department of Higher Mathematics, Plekhanov Russian University of Economics, Stremyanny lane, 36, Moscow, Russia, 117997.
Sci Rep. 2022 May 7;12(1):7522. doi: 10.1038/s41598-022-11642-6.
Bioceramics have been commonly implemented to replace and restore hard tissues such as teeth and bones in recent years. Among different bioceramics, Baghdadite (BAG) has high bioactivity due to its ability to form apatite and stimulate cell proliferation. So, this structure is used widely for medical applications to treat bone-based diseases. Physically, we expect changes in temperature and pressure to affect the Baghdadite-based nanostructure's mechanical behaviour. So, in this computational study, we report the pressure/temperature effect on Baghdadite matrix with nanoscale size by using Molecular Dynamics (MD) approach. To this end, physical values like the total energy, temperature, final strength (FS), stress-strain curve, potential energy, and Young's modulus (YM) are reported. Simulation results indicated the mechanical properties of Baghdadite (BAG) nanostructure weakened by temperature and pressure increase. Numerically, the FS and YM of the defined structure reach 131.40 MPa/159.43 MPa, and 115.15 MPa/139.72 MPa with temperature/pressure increasing. Therefore, the increase in initial pressure and temperature leads to a decrease in the mechanical properties of nanostructures. These results indicate the importance of the initial condition in the Baghdadite-based nanostructures' mechanical behaviour that must be considered in clinical applications.
近年来,生物陶瓷已广泛应用于替代和修复牙齿和骨骼等硬组织。在不同的生物陶瓷中,由于其形成磷灰石和刺激细胞增殖的能力,Baghdadite(BAG)具有很高的生物活性。因此,这种结构广泛用于医学应用,以治疗基于骨骼的疾病。从物理角度来看,我们预计温度和压力的变化会影响基于 Baghdadite 的纳米结构的机械性能。因此,在这项计算研究中,我们通过使用分子动力学(MD)方法报告了压力/温度对纳米级 Baghdadite 基质的影响。为此,报告了总能量、温度、最终强度(FS)、应力-应变曲线、势能和杨氏模量(YM)等物理值。模拟结果表明,温度和压力的增加削弱了 Baghdadite(BAG)纳米结构的机械性能。数值上,定义结构的 FS 和 YM 分别在温度/压力增加时达到 131.40 MPa/159.43 MPa 和 115.15 MPa/139.72 MPa。因此,初始压力和温度的增加会导致纳米结构机械性能的降低。这些结果表明,初始条件对 Baghdadite 基纳米结构机械性能的重要性,在临床应用中必须加以考虑。