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Fabrication Structure and Mechanical and Ultrasonic Properties of Medical Ti6Al4V Alloys Part I: Microstructure and Mechanical Properties of Ti6Al4V Alloys Suitable for Ultrasonic Scalpel

机译:医用Ti6Al4V合金的制备结构力学和超声性能第一部分:适用于超声刀的Ti6Al4V合金的组织和力学性能

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摘要

Ti6Al4V alloy has been considered as a key component used in ultrasonic scalpels. In this series of papers, the fabrication, structure, and mechanical and ultrasonic properties of medical Ti6Al4V alloys suitable for ultrasonic scalpel are studied systemically. These alloys with low elastic modulus and present a typical bimodal microstructure with relatively high β phase content (~40%) and lamellar α thickness of ≤ 0.9 µm. In the first paper, the relationship between the microstructure and mechanical properties of hot-rolled Ti6Al4V alloys treated by heating treatment is discussed. In the second paper, the dependence of the ultrasonic properties on the microstructure of the heat-treated Ti6Al4V alloys is reported. With increasing solid solution temperature, the content and size of the primary α phase decrease. In contrast, the content and size of the lamellar α phase increase. Additionally, the β phase content first increases and then decreases. The microstructure of Ti6Al4V alloys could be slightly changed by aging treatment. When the solid solution treatment temperature increases to 980 °C from 960 °C, the average size of the lamellar α phase in the alloys increases by 1.1 µm. This results in a decrease in the average yield strength (93 MPa). The elastic modulus of alloys is mainly controlled by the β phase content. The microstructure of alloys by solution-treatment at 960 °C shows the highest β phase content and lowest average elastic modulus of 99.69 GPa, resulting in the minimum resonant frequency (55.06 kHz) and the highest average amplitude (21.48 µm) of the alloys at the length of 41.25 mm.
机译:Ti6Al4V合金已被认为是超声手术刀中使用的关键成分。在这一系列论文中,系统地研究了适用于超声手术刀的医用Ti6Al4V合金的制备,结构以及力学和超声性能。这些合金的弹性模量低,具有典型的双峰显微组织,具有较高的β相含量(〜40%)和层状α厚度≤0.9 µm。在第一篇论文中,讨论了热处理后的热轧Ti6Al4V合金的组织与力学性能之间的关系。在第二篇论文中,报道了超声性能对热处理的Ti6Al4V合金微观组织的依赖性。随着固溶温度的升高,初级α相的含量和尺寸减小。相反,层状α相的含量和尺寸增加。另外,β相含量首先增加然后减少。 Ti6Al4V合金的时效处理可能会稍微改变其组织。当固溶处理温度从960°C升至980°C时,合金中层状α相的平均尺寸增加1.1 µm。这导致平均屈服强度(93 MPa)降低。合金的弹性模量主要由β相含量控制。合金在960°C固溶处理后的显微组织显示出最高的β相含量和最低的平均弹性模量99.69 GPa,从而导致合金的最低共振频率(55.06 kHz)和最高平均振幅(21.48 µm)在长度为41.25毫米。

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