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METHOD OF FABRICATION OF NANOCRYSTALLINE TITANIUM, IN PARTICULAR FOR MEDICAL IMPLANTS, AND TITANIUM MEDICAL IMPLANT

机译:纳米钛的制造方法,特别是用于医疗植入物和钛医疗植入物

摘要

The method consists of subjecting a coarse-grained titanium semi-product (1) with the pure titanium content of at least 99 wt % to a plastic deformation. In said plastic deformation the transverse cross-section surface area of the titanium semi-product is reduced by hydrostatic extrusion in which the titanium semi-product is the billet (1) extruded through the die (4). The reduction (R) of the transverse cross-section of the titanium billet (1) is realized in at least three but not more than five consecutive hydrostatic extrusion passes at the initial temperature of the billet (1) not above 50° C. and the extrusion velocity not above 50 cm/s. Prior to each hydrostatic extrusion pass, the titanium billet is covered with a friction-reducing agent. During the first hydrostatic extrusion pass, the reduction of the transverse cross-section surface area of the titanium semi-product is at least four, whereas during the second and third hydrostatic extrusion pass it is at least two and a half.
机译:该方法包括使纯钛含量至少为99 wt%的粗晶粒钛半成品( 1 )发生塑性变形。在所述塑性变形中,通过静液压挤压减小了钛半成品的横截面表面积,其中,钛半成品是通过模具()挤出的坯料( 1 )。 4 )。钛坯料( 1 )的横截面减小率(R)是在坯料的初始温度( > 1 )不高于50°C,挤出速度不高于50 cm / s。在每次静液压挤压通过之前,将钛坯料用减摩剂覆盖。在第一次静液压挤压过程中,钛半成品的横截面表面积的减小至少为四倍,而在第二次和第三次静液压挤压过程中,减小了至少二分之一。

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