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Mechanical and clinical properties of titanium and titanium-based alloys (Ti G2, Ti G4 cold worked nanostructured and Ti G5) for biomedical applications

机译:用于生物医学的钛和钛基合金(Ti G2,Ti G4冷加工纳米结构和Ti G5)的机械和临床特性

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Commercially pure titanium (Ti G2 and Ti G4) and the Ti–6Al–4V (Ti G5) alloy have limitations for biomedical applications, due to either low mechanical strength (Ti G2, Ti G4) or the possible release of toxic ions (Ti G5). Since Ti alloys have a low hardening coefficient, it is very difficult to improve their mechanical properties by work hardening. The purpose of this work was to compare the mechanical and clinical properties of Ti G4 nanostructured after severe plastic deformation by ECAP (Ti G4 Hard) with those of Ti G2, Ti G4 and Ti G5. Bars, disks and dental implants made with Ti G2, Ti G4, Ti G5 and Ti G4 Hard were tested. Mechanical tests (tension, compression, hardness, elastic modulus, fatigue and torque) and roughness measurements were performed. The results of the mechanical tests showed that Ti G4 Hard has a higher mechanical strength and a lower elastic modulus than Ti G2, Ti G4 and Ti G5. Scanning electron microscopy and roughness measurements results showed that acid etched Ti G4 Hard nanostructured has better surface morphological features than Ti G2, Ti G4 and Ti G5. The clinical performances of Ti G4 and Ti G4 Hard were similar. The high mechanical strength of Ti G4 Hard means that it can be used to replace Ti G5 in several clinical applications, with the advantage of not releasing toxic ions. The Ti G4 Hard dental implants have adequate mechanical properties and can be inserted in areas with low bone volume.
机译:商业纯钛(Ti G2和Ti G4)和Ti-6Al-4V(Ti G5)合金由于机械强度低(Ti G2,Ti G4)或可能释放有毒离子(Ti)而在生物医学应用方面受到限制。 G5)。由于钛合金的硬化系数低,因此很难通过加工硬化来提高其机械性能。这项工作的目的是比较经ECAP(Ti G4 Hard)严重塑性变形后的Ti G4纳米结构的力学性能和临床性能,以及Ti G2,Ti G4和Ti G5的力学性能。测试了用Ti G2,Ti G4,Ti G5和Ti G4 Hard制成的棒,牙盘和牙科植入物。进行了机械测试(拉伸,压缩,硬度,弹性模量,疲劳和扭矩)和粗糙度测量。力学测试结果表明,Ti G4 Hard具有比Ti G2,Ti G4和Ti G5更高的机械强度和更低的弹性模量。扫描电子显微镜和粗糙度测量结果表明,酸刻蚀的Ti G4 Hard纳米结构比Ti G2,Ti G4和Ti G5具有更好的表面形态特征。 Ti G4和Ti G4 Hard的临床表现相似。 Ti G4 Hard的高机械强度意味着它可以在一些临床应用中代替Ti G5,其优点是不会释放有毒离子。 Ti G4硬质牙科植入物具有足够的机械性能,可以插入骨量较小的区域。

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