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    • 2. 发明授权
    • Method involving modified hot working for the production of a titanium
alloy part
    • 涉及用于生产钛合金部件的改性热加工的方法
    • US5264055A
    • 1993-11-23
    • US882900
    • 1992-05-14
    • Bernard ChampinBernard Prandi
    • Bernard ChampinBernard Prandi
    • C22C14/00C22F1/00C22F1/18
    • C22F1/183C22C14/00
    • A method of producing a part having high strength and improved ductility from a titanium alloy having a composition, in percent by weight, or Mo equivalent 5 to 13 and Al equivalent 3 to 8, the balance being titanium and impurities, comprising the steps of hot working an ingot of the alloy including a roughing down under heat and preparation of a blank under heat, preheating to a temperature situated above the real beta transus of the hot worked alloy, and then final working of at least a part of this blank, after which the blank obtained is subjected to a solution heat treatment and then aged. The hot worked blank is cooled from the preheating temperature to a temperature for the beginning of final working which, under the conditions of the cooling of the blank, is at least 50.degree. C. below the real beta tansus and at least 10.degree. C. above the temperature of appearance of the alpha phase, so that the final working is sufficient to end within the alpha nucleation range.
    • 一种由钛合金制成的具有高强度和延展性的部件的方法,所述钛合金具有以重量%计的组成,或5当量的摩尔当量和3当量的3当量的8当量,其余为钛和杂质,包括热 加工合金锭,包括在加热下粗加工并在加热下制备坯料,预热到位于热加工合金的真实β转子上方的温度,然后在该坯料的至少一部分的最终加工之后 将所得坯料进行固溶热处理,然后老化。 热加工的坯料从预热温度冷却至开始最终加工的温度,在冷却坯料的条件下,至少比真实β丹麦低50℃,至少10℃。 高于α相的出现温度,使得最终加工足以在α成核范围内结束。