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Mechanical Properties improvement of Porous Titanium-Bioglass Nanocomposites by mechanical alloying

机译:机械合金化多孔钛 - 生物胶纳米复合材料的机械性能改进

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In this study, porous titanium-10 wt.% bioglass nanocomposites were fabricated by the combination of mechanical alloying and a space holder sintering process. The mixed powders were mechanically alloyed for 15 h. The blended Ti-Bioglass was mixed with 30 wt.% carbamide as a space holder. The mixtures were uniaxially pressed and finally, the green compacts sintered at 1150°C for 5 hours. The porous structures are characterized by X-ray diffraction method (XRD) and scanning electron microscopy (SEM). The mechanical properties were examined using micro hardness and compression tests. The investigation revealed that after 15 h of milling, the Bioglass dissolved in Ti lattice. Also, results show that nanostructured Ti-10 wt.% Bioglass with 31.5 nm crystallite size possess greater hardness compared to respective microcrystalline titanium and desirable compressive strength for using in biomedical application.
机译:在该研究中,通过机械合金化和空间夹持器烧结过程的组合来制造多孔钛-10wt。通过组合制造%Bioglass纳米复合材料。将混合粉末机械合金合金15小时。将混合的Ti-BeoGlass与30重量%的氨基磺烃混合为空间夹。混合物是单轴压制的,最后,绿色块在1150℃下烧结5小时。多孔结构的特征在于X射线衍射法(XRD)和扫描电子显微镜(SEM)。使用微硬度和压缩测试检查机械性能。调查显示,在铣削15小时后,生物制品溶解在Ti晶格中。此外,结果表明,与相应的微晶钛和期望的抗压强度相比,纳米结构的Ti-10重量%的生物脂肪脂肪脂肪酸含量与31.5nm的微晶尺寸具有更大的硬度。

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