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COMMERCIALLY PURE NANOSTRUCTURAL TITANIUM FOR BIOMEDICINE AND A METHOD FOR MAKING A BAR THEREOF

机译:商业用纯净生物医学钛及其制造方法

摘要

Commercially pure titanium having UFG structure and enhanced mechanical and biomedical characteristics has nanocrystalline alpha-phase grains with a hexagonal close-packed lattice, in which the share of grains with a size of 0.1...0.5 µm and a grain shape coefficient of no more than 2 in the mutually perpendicular planes makes no less than 90%, over 60% of the grains having high-angle boundaries disoriented in relation to the adjacent grains by the angles from 15 to 90°.;The method for making a rod of the material provides for equal-channel angular pressing_of a billet at T ≤ 450°C with the total accumulated true strain e ≥ 4 to effect severe plastic deformation of the billet and subsequent thermomechanical treatment with a gradual decrease of the temperature in the range of 450...350°C and the strain rate of 10-2...10-4 s-1 with the strain degree from 40 to 80% to effect additional plastic deformation.
机译:具有UFG结构和增强的机械和生物医学特性的商业纯钛具有六方密堆积晶格的纳米晶α相晶粒,其中份额为0.1 ... 0.5 µm且晶粒形状系数不再为零的晶粒在相互垂直的平面中大于2的晶粒构成不小于90%的晶粒,其中超过60%的具有高角度边界的晶粒相对于相邻晶粒以15至90°的角度错位。该材料可在T≤450°C时对钢坯进行等通道角压制,使累积的总真实应变e≥4,以使钢坯发生严重的塑性变形,并随后进行热机械处理,温度逐渐降低至450范围内。 ..350°C和10 -2 ... 10 -4 s -1 的应变率,应变等级为40至80%产生额外的塑性变形。

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