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Microstructure and Mechanical Behavior of Porous Ti–6Al–4V Processed by Spherical Powder Sintering

机译:球形粉末烧结多孔Ti - 6al - 4V的微观结构与力学行为

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摘要

Reducing the stiffness of titanium is an important issue to improve the behavior of this material when working together with bone, which can be achieved by generating a porous structure. The aim of this research was to analyze the porosity and mechanical behavior of Ti–6Al–4V porous samples developed by spherical powder sintering. Four different microsphere sizes were sintered at temperatures ranging from 1300 to 1400 °C for 2, 4 and 8 h. An open, interconnected porosity was obtained, with mean pore sizes ranging from 54.6 to 140 μm. The stiffness of the samples diminished by as much as 40% when compared to that of solid material and the mechanical properties were affected mainly by powder particles size. Bending strengths ranging from 48 to 320 MPa and compressive strengths from 51 to 255 MPa were obtained.
机译:降低钛的硬度是改善这种材料与骨骼一起工作时的行为的重要问题,这可以通过生成多孔结构来实现。这项研究的目的是分析通过球形粉末烧结开发的Ti-6Al-4V多孔样品的孔隙率和力学行为。将四种不同大小的微球在1300至1400°C的温度下烧结2、4和8 h。获得了开放的互连孔隙率,平均孔径范围为54.6至140μm。与固体材料相比,样品的刚度降低了多达40%,机械性能主要受粉末颗粒尺寸的影响。获得的弯曲强度为48至320 MPa,抗压强度为51至255 MPa。

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