首页> 外文期刊>Applied Surface Science >The role of α' orthorhombic phase content on the tenacity and fracture toughness behavior of Ti-22Nb-10Zr coating used in the design of long-term medical implants
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The role of α' orthorhombic phase content on the tenacity and fracture toughness behavior of Ti-22Nb-10Zr coating used in the design of long-term medical implants

机译:α“正交相含量对长期医学植入物设计中使用的Ti-22Nb-10Zr涂层的韧性和断裂韧性行为的影响

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摘要

Tenacity and fracture toughness of a novel beta/alpha '' Ti-22Nb-10Zr (wt.%) coating processed by magnetron sputtering were modified as a result of the martensitic transformation (beta - alpha '') activated by the presence of compressive residual stresses when the coating deposition is performed at high bias voltage values. Mechanical properties, such as hardness, H, and Young's modulus, E, values, and therefore elastoplastic response of the coating were characterized through H/E, and H-3/E-2 ratios as a function of the extent of the martensitic transformation. These ratios were correlated to the elastic response and to the resistance to plastic deformation of a surface subjected to sliding mechanical contact, respectively. The usefulness of both ratios to design "hard and tough" coatings, suitable for enhancing of its wear resistance, is compared with the tenacity, G, the semiquantitative, FT, and the quantitative, K-I, fracture toughness values obtained from nano-scratch characterization. Results show that Ti-22Nb-10Zr (wt.%) coating with the highest and lowest hardness and Young's modulus values, and therefore the highest H/E and H-3/E-2, has the highest cracking resistance and fracture toughness. Under linearly ramped loading from 0.1 to 5 and 100 mN it was impossible to produce fracture of the coating when it was deposited with a bias voltage of -63 V. In return, the coating deposited with a bias voltage of - 148 V shows an almost complete elastic recovery until the moment of its fracture and delamination, which is an evidence of its high tenacity and superior fracture toughness. The K-I value is similar to 21 MPa*m(1/2), which is higher than typical values of bio-ceramics (Al2O3 and ZrO2) used in medical applications, demonstrating that this coating could be used in components subjected to high wear and cyclic impacts, e.g. on femoral heads in artificial hip joints.
机译:磁控溅射处理后的新型β/α''Ti-22Nb-10Zr(wt。%)涂层的韧性和断裂韧性由于存在压缩而活化的马氏体转变(β->α-)而得到改善在高偏置电压值下执行涂层沉积时的残余应力。机械性能,例如硬度,H和杨氏模量,E值,以及涂层的弹塑性响应,通过H / E和H-3 / E-2比值随马氏体转变程度的函数进行表征。这些比率分别与经受滑动机械接触的表面的弹性响应和抗塑性变形有关。将这两种比率对设计“硬而坚硬”的涂层(适用于增强其耐磨性)的有用性与从纳米级获得的韧度G,半定量FT和定量KI断裂韧性值进行了比较。划痕表征。结果表明,Ti-22Nb-10Zr(wt。%)涂层具有最高和最低的硬度和杨氏模量值,因此具有最高的H / E和H-3 / E-2,具有最高的抗裂性和断裂韧性。在从0.1到5到100 mN的线性斜升载荷下,当以-63 V的偏置电压沉积涂层时,不会产生涂层破裂。作为回报,以-148 V的偏置电压沉积的涂层几乎显示出完全恢复弹性,直至断裂和分层,这是其高韧性和优异断裂韧性的证据。 KI值类似于21 MPa * m(1/2),高于医疗应用中使用的生物陶瓷(Al2O3和ZrO2)的典型值,表明该涂层可用于承受高磨损和高磨损的部件。周期性影响,例如在人工髋关节的股骨头上。

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