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Ultra-fine grain refinement and tensile properties of titanium alloys obtained through protium treatment

机译:通过pro处理获得的钛合金的超细晶粒细化和拉伸性能

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摘要

One of the few methods available for creating fine grains is protium treatment, which easily produces a fine-grain size of 1 to 3μm inα+βTi-6Al-4V alloys. However the minimum grain size obtainable by this treatment is not yet known. The purpose of present investigation is to obtain submicron grain size through improvement of the protium treatment conditions by varying the protium absorption content and lowering the protium desorption temperature. The experimental results obtained are as follows. The grain size of titanium alloy becomes ultra-fine grain (grain size : 0.3~0.5μm) through a process in which 0.5mass% of protium is absorbed and the protium desorption temperature is lowered from 973K to 873K. Theβ phase percentage in theα phase matrix tends to increase as a result of the protium treatment. The yield strength of ultrafine grained materials is improved by protium treatment in accordance with the Hall-Petch's law. Such materials show high elongation for high strength.
机译:生成细晶粒的几种可用方法之一是pro处理,它可以在α+βTi-6Al-4V合金中轻松产生1至3μm的细晶粒尺寸。然而,通过这种处理可获得的最小晶粒尺寸尚不清楚。本研究的目的是通过改变varying的吸收量并降低pro的解吸温度来改善improvement的处理条件,从而获得亚微米级的晶粒尺寸。获得的实验结果如下。通过吸收0.5质量%的and,使de的解吸温度从973K降低到873K,钛合金的晶粒尺寸变为超细晶粒(晶粒尺寸:0.3〜0.5μm)。由于pro处理,α相基质中的β相百分比趋于增加。根据霍尔-帕奇定律,通过pro处理可以提高超细颗粒材料的屈服强度。这样的材料显示出高伸长率以实现高强度。

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