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为了让Ti5553合金的强度和韧性等综合性能指标达到良好匹配,充分发挥其高强高韧的特点,提出了一种新的热加工方法。首先对Ti5553合金轧棒进行充分改锻,初步得到均匀、细小、无偏析、无β斑的基体组织,然后再利用β锻造形成一种细小密集的网篮组织,并在最后的β热处理过程中,生成β晶粒内的细小片状α转相和晶界处细小分散的α转相。结果表明:采用(Tβ-30)℃两相区改锻、(Tβ-30)℃预锻与(Tβ+20)℃β锻造的联合模锻以及( Tβ+35)℃退火+600℃时效的β热处理工艺后,可获得一种理想的β型钛合金组织,使该合金的强度、塑性和断裂韧性等综合性能指标都有所提高。

In order to improve the comprehensive performance including strength and toughness of Ti 5553 alloy, and give full play to its high strength and toughness characteristics , a novel thermal processing method was proposed .Rolled Ti5553 alloy bars were forged firstly , with the purpose of obtaining smaller , no segregation , no beta spot and uniform structure , and then formed the basket lattice structure through beta forging , after beta heat treatment process , smaller plate-like alpha transfer in beta grain size and small , scattered transfer alpha in grain boundary were generated .The re-sults show that the ideal beta structure of titanium alloy can be obtained , and the comprehensive performance of Ti 5553 alloy can be improved by the novel thermal process , which is forging in alpha +beta phase of (Tβ-30)℃firstly, and then die forging at (Tβ-30)℃and (Tβ+20)℃in turns, finally annealing at (Tβ+35)℃and aging at 600℃.

参考文献

[1] 付艳艳,宋月清,惠松骁,米绪军,叶文君.热处理对VST55531钛合金的组织和拉伸性能的影响[J].稀有金属,2008(04):399-403.
[2] Vincent WAGNER;Maher BAILI;Gilles DESSEIN;Daniel LALLEMENT.Experimental characterization of behavior laws for titanium alloys: Application to Ti5553[J].Key engineering materials,2010:147-155.
[3] Jones N;Jackson M;Dye D.Comparing the hot work-ing behaviour of high strength beta alloys Ti-5Al-5Mo-5V-3Cr with that of Ti-10V-2Fe-3Al[A].Japan,2007:1005-1008.
[4] 付艳艳,宋月清,惠松骁,米绪军.用正交试验法优化VST55531钛合金的热处理工艺[J].金属热处理,2008(07):66-68.
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