首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >(152636)Effect of Ti addition on mechanical properties and corrosion resistance of Ni-free Zr-based bulk metallic glasses for potential biomedical applications
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(152636)Effect of Ti addition on mechanical properties and corrosion resistance of Ni-free Zr-based bulk metallic glasses for potential biomedical applications

机译:(152636)Ti添加对潜在生物医学应用的无Ni无Zr基块状金属玻璃的机械性能和耐腐蚀性

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Toxic element free-Zr-based bulk metallic glasses (BMGs) have attracted considerable attentions for biomedical applications, in term of their excellent bio-corrosion and mechanical properties. In the present work, we fabricated a series of Zr_(65-x)Ti_xCu_(20)Al_(10)Fe_5 (x = 0, 2,4, 6 and 8) alloys using the injection copper-mold casting method, and reported the significant effect of Ti addition both on mechanical performance and corrosion behavior. It is found the glass forming ability (GFA) and plasticity are significantly improved by increasing Ti content up to 2 at.%, but deteriorated after excess Ti additions. The obtained Zr_(63)Ti_2Cu_(20)Al_(10)Fe_5 amorphous alloy provides the largest supercooled liquid region width of 73 K, compressive fracture strength of 1905 MPa and plasticity of 8.57%, which are much higher than 67 K, 1854 MPa and 5.43% of the pristine Zr_(65)Ti_2Cu_(20)Fe_5Al_(10) BMG. However, the electrochemical measurements show that as-prepared Zr_(63)Ti_2Cu_(20)Al_(10)Fe_5 alloy exhibits a terrible passivation ability and inferior corrosion resistance in phosphate-buffered saline (PBS) solution, which is mainly ascribed to the numerous defects in the passive films. On the contrary, further addition of Ti to 4-6 at.% promotes the intactness of passive film for Zr-based BMGs and enhances their resistance to pitting corrosion, in despite giving rise to unsatisfied mechanical performance.
机译:在其出色的生物腐蚀和机械性能的术语中,毒性元素自由Zr基散装金属玻璃(BMG)吸引了对生物医学应用的相当大的注意。在本作工作中,我们使用注射铜模塑铸造方法制造了一系列Zr_(65-x)Ti_xcu_(20)Al_(10)Fe_5(x = 0,2,4,6和8)合金,并报道在机械性能和腐蚀行为上添加了TI的显着影响。结果发现玻璃形成能力(GFA)和可塑性通过增加Ti含量高达2at。%,但在过量的Ti添加后劣化。得到的Zr_(63)Ti_2Cu_(20)Al_(10)Fe_5非晶合金提供最大过冷液位宽度为73k,压缩断裂强度为1905MPa,可塑性为8.57%,高于67 k,1854MPa和5.43%的原始Zr_(65)Ti_2Cu_(20)Fe_5Al_(10)BMG。然而,电化学测量表明,如制备的Zr_(63)Ti_2Cu_(20)Al_(10)Fe_5合金在磷酸盐缓冲盐水(PBS)溶液中表现出可怕的钝化能力和劣质耐腐蚀性,这主要归因于众多被动胶片中的缺陷。相反,进一步加入Ti至4-6。%促进了基于Zr的BMG的无源膜的完整性,尽管产生了不满意的机械性能,但尽管产生了不满意的机械性能,因此增强了它们对蚀腐蚀的抗性。

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