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Enhanced mechanical properties and in vitro cell response of surface mechanical attrition treated pure titanium

机译:表面机械磨损处理的纯钛增强的机械性能和体外细胞反应

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Surface mechanical attrition treatment (SMAT) was used to fabricate nanocrystalline surface layers on the commercial purity titanium. X-ray diffraction and transmission electron microscopy results indicate that the top layer contained nanograins. Enhanced strength and microhardness were achieved due to the surface nanostructure. Cell culture tests have shown a greater adhered cell density and more extensively spreading morphologies of Saos-2 cells on the SMAT substrates compared to those on the as-received Ti counterparts. Enhanced cell viability and cell cycle were also achieved on the SMAT Ti substrates. These could be attributed to the nanostructure grains with the increased surface hydrophilicity and roughness on the SMAT Ti.
机译:使用表面机械磨损处理(SMAT)在商业纯度的钛上制造纳米晶表面层。 X射线衍射和透射电子显微镜结果表明,顶层含有纳米颗粒。由于表面纳米结构,提高了强度和显微硬度。细胞培养测试表明,与原先的Ti对应物相比,SMAT基质上Saos-2细胞具有更高的粘附细胞密度和更广泛分布的形态。在SMAT Ti底物上也获得了增强的细胞活力和细胞周期。这些可以归因于在SMAT Ti上具有增加的表面亲水性和粗糙度的纳米结构晶粒。

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