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首页> 外文期刊>Materials transactions >Mechanical Properties of Biocompatible Beta-Type Titanium Alloy Coated with Calcium Phosphate Invert Glass-Ceramic Layer
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Mechanical Properties of Biocompatible Beta-Type Titanium Alloy Coated with Calcium Phosphate Invert Glass-Ceramic Layer

机译:磷酸钙反相玻璃陶瓷层包覆的生物相容性β型钛合金的力学性能

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The presence of calcium phosphate invert glass-ceramic (designated as CPIG) layer on the surface of artificial implant products can improve the bonding between these products and bones. In this study, the morphology of the CPIG layer on the surface of a ,8-type titanium alloy, Ti-29Nb-13Ta-4.6Zr (TNTZ), was investigated for biomaterial applications by a dip-coating treatment. Furthermore, the mechanical properties of TNTZ coated with the CPIG layer were also investigated. In the CPIG layer, a compositionally gradient zone with a thickness of approximately 2.0 Lim exists on the surface of the TNTZ. The titanium concentration in the zone increases with the decreasing distance from the CPIG surface toward the base materials. On the other hand, calcium and phosphorus concentrations in the zone increase with the distance from the TNTZ surface. The tensile bonding strength between TNTZ and the CPIG layer is 25 MPa and that between aged TNTZ and the CPIG layer is 18.6 MPa. For easily understanding the change in mechanical properties by a dip-coating treatment, the values of those on TNTZ and TNTZ coated with CPIG layer were shown as follows. The tensile strength increases remarkably by a dip-coating treatment as compared with that of as-solutionized TNTZ while the elongation is a reverse trend. Young's modulus of TNTZ and aged TNTZ coated with the CPIG increases by 15 to 27GPa after the dip-coating treatment as compared with that of as-solutionized TNTZ (approximately 60GPa). The fatigue limit of TNTZ coated with the CPIG layer is nearly equal to that (approximately 300 MPa) of as-solutionized TNTZ. On the other hand, the fatigue limit of aged TNTZ coated with the CPIG layer is a 100 MPa higher than that of as-solutionized TNTZ.
机译:人造植入产品表面上存在磷酸钙倒置玻璃陶瓷(指定为CPIG)层可以改善这些产品与骨骼之间的结合力。在这项研究中,通过浸涂处理研究了8型钛合金Ti-29Nb-13Ta-4.6Zr(TNTZ)表面上CPIG层的形貌,以用于生物材料。此外,还研究了涂覆有CPIG层的TNTZ的机械性能。在CPIG层中,TNTZ的表面上存在厚度约为2.0 Lim的成分梯度区。该区域中的钛浓度随着从CPIG表面到基材的距离的减小而增加。另一方面,该区域中的钙和磷浓度随距TNTZ表面的距离而增加。 TNTZ和CPIG层之间的拉伸粘结强度为25 MPa,时效TNTZ和CPIG层之间的拉伸粘结强度为18.6 MPa。为了容易理解通过浸涂处理引起的机械性能的变化,在TNTZ和涂有CPIG层的TNTZ上的那些值如下所示。与固溶的TNTZ相比,通过浸涂处理的拉伸强度显着提高,而伸长率却是相反的趋势。与溶液化的TNTZ(约60GPa)相比,浸涂处理后的TNTZ和涂有CPIG的老化TNTZ的杨氏模量增加了15至27GPa。涂有CPIG层的TNTZ的疲劳极限几乎等于固溶TNTZ的疲劳极限(大约300 MPa)。另一方面,涂有CPIG层的老化TNTZ的疲劳极限比固溶TNTZ的疲劳极限高100 MPa。

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