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Microstructure and mechanical properties of open cellular Ti-6Al-4V prototypes fabricated by electron beam melting for biomedical applications

机译:电子束熔化制备的用于生物医学的开孔Ti-6Al-4V原型的微观结构和力学性能

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摘要

Titanium and titanium alloys with open cellular structures and foams possess low Young's modulus matching to human bone and the capability to provide space for bone tissue ingrowth to reach a better fixation, which have been thought as a good choice for the replacement of commercial dense implants. However, currently developed fabrication methods of titanium cellular alloys, such as powder sintering, reveal shortcomings like the low porosity and poor control over the size, shape and distribution of the pores. Recently, additive manufacturing using the electron beam melting method has been applied successfully to fabricate titanium cellular meshes and foams. Compared to other reported methods, this technique has the advantages of accurate control of internal pore architectures and complex cell shapes. In the present paper, the authors briefly review the fabrication, Young's modulus, mechanical properties and biocompatibility of Ti-6Al-4V cellular structures fabricated by electron beam melting techniques, along with future development trends.
机译:具有开孔结构和泡沫的钛和钛合金具有与人体骨骼相匹配的低杨氏模量,并具有为骨骼组织向内生长以达到更好固定的能力,这些被认为是替代商业密集植入物的理想选择。然而,当前开发的钛蜂窝合金的制造方法,例如粉末烧结,显示出诸如低孔隙率和对孔的尺寸,形状和分布的控制差的缺点。近来,使用电子束熔化法的增材制造已成功地应用于制造钛多孔网和泡沫。与其他已报道的方法相比,该技术具有精确控制内部孔结构和复杂细胞形状的优势。在本文中,作者简要回顾了通过电子束熔化技术制备的Ti-6Al-4V细胞结构的制备,杨氏模量,力学性能和生物相容性,以及未来的发展趋势。

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