Technological features of obtaining alloys and master-alloys of TI-ZR-NB-SN system in the conditions of electron beam casting technology

M. Voron, S. Schwab, R. Selin
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Abstract

Electron beam casting technology is a unique method for obtaining cast products and semi-finished products from a wide range of titanium alloys. This technology can be very promissing in production of biocompatible titanium alloys for endoprosthesis. A particularly difficult and important task in this context is preparation of Ti-Zr-Nb-Sn system alloys with high strength and low modulus of elasticity. As a result of experimental development of specified alloys melt preparation technological modes, possibility of obtaining complex titanium alloys with a high content of zirconium and niobium was shown. It is also determined, that when the niobium content in the charge is more than 30 % wt. there is a decrease in the concentration of titanium and zirconium in the melt due to their freezing on the walls of the skull. As a result, there is a change in the chemical composition of the melt, the amount of niobium in which can exceed 50 % wt. Maximum amount of tin that can be assimilated in titanium-based melts under EBCT conditions is 5 % wt., and niobium-based melts are twice less. It has been proven that obtaining melts of Ti-Zr-Nb-Sn system with a precise chemical composition, using the chosen method, is a difficult and still unsolved problem, but due to the possibility of melting alloys with a high content of niobium and zirconium in its conditions, this method is effective in the production of master alloys and ingots for the production of powders used as raw materials for additive tmanufacturing. Keywords: titanium alloys for endoprosthesis, foundry production, Ti-Zr-Nb-Sn, electron-beam casting technology.
电子束铸造条件下TI-ZR-NB-SN体系合金及中间合金的工艺特点
电子束铸造技术是一种从多种钛合金中获得铸件和半成品的独特方法。该技术在生物相容性钛合金的生产中具有广阔的应用前景。在此背景下,一项特别困难和重要的任务是制备具有高强度和低弹性模量的Ti-Zr-Nb-Sn系合金。通过对特定合金熔体制备工艺模式的实验开发,表明了制备高锆、高铌复合钛合金的可能性。还可以确定,当电荷中的铌含量超过30% wt时,由于钛和锆在颅骨壁上的冻结,熔体中的钛和锆的浓度会降低。因此,熔体的化学成分发生了变化,其中铌的含量可以超过50% wt。在EBCT条件下,钛基熔体中可以吸收的最大锡量为5% wt,而铌基熔体的锡量则少了一倍。事实证明,使用所选方法获得具有精确化学成分的Ti-Zr-Nb-Sn体系熔体是一个困难且尚未解决的问题,但由于在该条件下有可能熔化高铌和锆含量的合金,因此该方法在生产母合金和用于生产粉末的铸锭方面是有效的。关键词:假肢用钛合金,铸造生产,Ti-Zr-Nb-Sn,电子束铸造技术
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