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用于骨科植入应用的粉末冶金制备的Ti-28Nb-35.4Zr合金的力学性能和体外生物相容性

The Mechanical Properties and In Vitro Biocompatibility of PM-Fabricated Ti-28Nb-35.4Zr Alloy for Orthopedic Implant Applications.

作者信息

Xu Wei, Li Ming, Wen Cuie, Lv Shaomin, Liu Chengcheng, Lu Xin, Qu Xuanhui

机构信息

Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China.

School of Engineering, RMIT University, 3083 Melbourne, Australia.

出版信息

Materials (Basel). 2018 Mar 30;11(4):531. doi: 10.3390/ma11040531.

Abstract

A biocompatible Ti-28Nb-35.4Zr alloy used as bone implant was fabricated through the powder metallurgy process. The effects of mechanical milling and sintering temperatures on the microstructure and mechanical properties were investigated systematically, before in vitro biocompatibility of full dense Ti-28Nb-35.4Zr alloy was evaluated by cytotoxicity tests. The results show that the mechanical milling and sintering temperatures have significantly effects on the density and mechanical properties of the alloys. The relative density of the alloy fabricated by the atomized powders at 1500 °C is only 83 ± 1.8%, while the relative density of the alloy fabricated by the ball-milled powders can rapidly reach at 96.4 ± 1.3% at 1500 °C. When the temperature was increased to 1550 °C, the alloy fabricated by ball-milled powders achieve full density (relative density is 98.1 ± 1.2%). The PM-fabricated Ti-28Nb-35.4Zr alloy by ball-milled powders at 1550 °C can achieve a wide range of mechanical properties, with a compressive yield strength of 1058 ± 35.1 MPa, elastic modulus of 50.8 ± 3.9 GPa, and hardness of 65.8 ± 1.5 HRA. The in vitro cytotoxicity test suggests that the PM-fabricated Ti-28Nb-35.4Zr alloy by ball-milled powders at 1550 °C has no adverse effects on MC3T3-E1 cells with cytotoxicity ranking of 0 grade, which is nearly close to ELI Ti-6Al-4V or CP Ti. These properties and the net-shape manufacturability makes PM-fabricated Ti-28Nb-35.4Zr alloy a low-cost, highly-biocompatible, Ti-based biomedical alloy.

摘要

通过粉末冶金工艺制备了一种用作骨植入物的生物相容性Ti-28Nb-35.4Zr合金。系统研究了机械球磨和烧结温度对微观结构和力学性能的影响,随后通过细胞毒性试验评估了全致密Ti-28Nb-35.4Zr合金的体外生物相容性。结果表明,机械球磨和烧结温度对合金的密度和力学性能有显著影响。由雾化粉末在1500℃制备的合金的相对密度仅为83±1.8%,而由球磨粉末制备的合金在1500℃时相对密度可迅速达到96.4±1.3%。当温度升至1550℃时,由球磨粉末制备的合金达到全致密(相对密度为98.1±1.2%)。在1550℃下由球磨粉末制备的PM-Ti-28Nb-35.4Zr合金可实现广泛的力学性能,抗压屈服强度为1058±35.1MPa,弹性模量为50.8±3.9GPa,硬度为65.8±1.5HRA。体外细胞毒性试验表明,在1550℃下由球磨粉末制备的PM-Ti-28Nb-35.4Zr合金对MC3T3-E1细胞无不良影响,细胞毒性等级为0级,几乎与ELI Ti-6Al-4V或纯钛相当。这些性能和净形制造能力使PM-Ti-28Nb-35.4Zr合金成为一种低成本、高生物相容性的钛基生物医学合金。

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