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首页> 外文期刊>RSC Advances >Mechanical and thermal properties and cytotoxicity of Al2O3 nano particle-reinforced poly(ether-ether-ketone) for bone implants
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Mechanical and thermal properties and cytotoxicity of Al2O3 nano particle-reinforced poly(ether-ether-ketone) for bone implants

机译:用于骨植入物的Al2O3纳米颗粒增强聚(醚 - 醚 - 酮)的机械和热性质和细胞毒性

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Weak mechanical properties and mismatching of elastic modulus to human bone restricts the use of PEEK as a bone implant material. By introducing reinforcing particles in polymers, composite material properties could be tailored to meet specific design requirements. In this work, composite materials with PEEK as a matrix and Al2O3 as reinforcing fillers were prepared by an injection molding method. Subsequently, the effects of different particle sizes (30 nm, 0.2 mu m, 5 mu m) and distinct contents (2.5 wt%, 5.0 wt%, 7.5 wt%, 10.0 wt%, 12.5 wt%, 15.0 wt%) of Al2O3 powder on the mechanical properties of the composites, such as tensile strength, bending strength, impact strength, Vickers hardness and modulus, were investigated by an electronic universal testing machine. Thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC) were used to compare the thermal properties of composites with different proportions. Besides, the cross-section fractography of the composites after the tensile strength test was characterized by scanning electron microscopy (SEM) to analyze the interface bonding effect. Moreover, mouse fibroblast L929 cells were used for cytotoxicity testing of CCK-8 kit to evaluate cell compatibility of the composite in vitro and cell morphology was observed by inverted fluorescence microscopy. Based on the obtained results, Al2O3 reinforcement enhanced many properties in some aspects, which makes the Al2O3/PEEK composite one of the most promising candidates for human bone implantation, reconstruction, orthopedic and trauma applications.
机译:弱机械性能和弹性模量与人骨的不匹配限制了Peek作为骨植入物材料的使用。通过在聚合物中引入增强颗粒,可以根据特定的设计要求量身定制复合材料特性以满足特定的设计要求。在这项工作中,通过注射成型方法制备具有PEEK作为基质和Al2O3作为基质的复合材料作为增强填料。随后,不同粒度(30nm,0.2μm,5μm)和不同内容物(2.5wt%,5.0wt%,7.5wt%,10.0wt%,12.5wt%,15.0wt%的Al 2 O 3的影响通过电子通用试验机研究了复合材料的机械性能,例如拉伸强度,弯曲强度,冲击强度,维氏硬度和模量。热重分析(TGA)和差示扫描量热法(DSC)用于比较具有不同比例的复合材料的热性质。此外,通过扫描电子显微镜(SEM)以分析界面粘合效果,表征复合材料的横截面断裂。此外,使用小鼠成纤维细胞L929细胞用于CCK-8试剂盒的细胞毒性试验,以评估体外复合体的细胞相容性,并通过倒置荧光显微镜观察细胞形态。基于所得的结果,Al2O3增强在某些方面提高了许多性质,这使得Al2O3 / PEEK复合材料成为人骨植入,重建,整形外科和创伤应用中最有前途的候选物之一。

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    《RSC Advances 》 |2019年第59期| 共10页
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  • 正文语种 eng
  • 中图分类 化学 ;
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