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首页> 外文期刊>NANO >FABRICATION OPTIMIZATION OF NANOHYDROXYAPATITE ARTIFICIAL BONE SCAFFOLDS
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FABRICATION OPTIMIZATION OF NANOHYDROXYAPATITE ARTIFICIAL BONE SCAFFOLDS

机译:纳米羟基磷灰石人工骨支架的制备优化

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Serious microcracks often occur on the surface of nanohydroxyapatite (n-HAP) artificial bone scaffolds prepared by selective laser sintering (SLS) technology. In this study, we found that appropriate preheating before sintering can reduce and attenuate the cracks. The microstructure and morphology of sintered n-HAP were tested at different preheating temperature and laser sintering speed with scanning electron microscopy (SEM), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FT-IR). The experiments showed that the cracks gradually reduced and then disappeared when the preheating temperature increased from 0°C to 600°C while other parameters remain unchanged. The n-HAP particles gradually fused and grew up, while the grain size of sintered n-HAP will be attenuated with the increase of preheating temperature. As the thermal conductivity of n-HAP increases with increased preheating temperature, the temperature drops quickly, inhibiting greatly the grain growth of n-HAP. We obtained a group of optimum parameters when the sintered n-HAP still maintains nanostructure and possesses the optimal comprehensive performances, that is, laser power is 26 W, spot diameter is 4 mm, sintering speed is 200 mm/min, layer thickness is 0.4 mm, layer density is 852 kg/m3, and optimized preheating temperature is 600°C. These data illustrated that the cracks of sintered n-HAP can be eliminated at appropriate preheating temperature and sintering speed. This provided experimental optimal condition for the preparation of artificial bone scaffolds with nanohydroxyapatite ceramics.
机译:通过选择性激光烧结(SLS)技术制备的纳米羟基磷灰石(n-HAP)人造骨支架表面经常会发生严重的微裂纹。在这项研究中,我们发现在烧结之前进行适当的预热可以减少和减弱裂纹。通过扫描电子显微镜(SEM),X射线衍射(XRD)和傅里叶变换红外光谱(FT-IR),在不同的预热温度和激光烧结速度下测试了n-HAP烧结体的微观结构和形貌。实验表明,当预热温度从0℃升高到600℃时,裂纹逐渐减小,然后消失,而其他参数保持不变。随着预热温度的升高,n-HAP颗粒逐渐熔化并长大,而烧结的n-HAP颗粒尺寸减小。随着预热温度的升高,n-HAP的导热系数增加,温度迅速下降,大大抑制了n-HAP的晶粒长大。当烧结的n-HAP仍保持纳米结构并具有最佳的综合性能时,我们获得了一组最佳参数,即激光功率为26 W,光斑直径为4 mm,烧结速度为200 mm / min,层厚度为0.4 mm,层密度为852 kg / m3,优化的预热温度为600°C。这些数据表明,在适当的预热温度和烧结速度下,可以消除烧结的n-HAP的裂纹。这为用纳米羟基磷灰石陶瓷制备人造骨支架提供了实验性的最佳条件。

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