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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Alloying effects on superplastic behaviour of Ti-Fe-Al-Ni alloys
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Alloying effects on superplastic behaviour of Ti-Fe-Al-Ni alloys

机译:合金化对Ti-Fe-Al-Ni合金超塑性行为的影响

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The aim of the present investigation was to develop a new titanium alloy with improved superplastic performance (higher elongation and lower forming temperature) through alloying with iron, nickel and aluminium. A total of nine alloy compositionswere used in which the iron content was fixed while nickel and aluminium contents were varied. Superplastic tension tests were conducted at various temperatures in the range 625-750℃ with a strain rate of 10{sup}-3s{sup}-1 Step strain rate tests wereperformed in a strain rate range 10{sup}-4-2.5×10{sup}-2s{sup}-1 at 700, 725. and 750℃ to study some important superplastic deformation properties. The alloy Ti-5Fe-4A1-2Ni proved to be promising in that it gave a large elongation of more than 1500% ata low deformation temperature of 650℃, which was possible mainly because of the existence of iron and nickel. Alloying with nickel within a suitable amount was found to increase the strain rate sensitivity and to decrease the flow stress, while theeffect of aluminium addition was found to be insignificant regarding superplastic behaviour but its content should be limited. Possible mechanisms for superplasticity in the present alloy system are also discussed.
机译:本研究的目的是通过与铁,镍和铝合金化来开发一种具有改善的超塑性性能(较高的伸长率和较低的成形温度)的新型钛合金。总共使用了九种合金成分,其中铁含量是固定的,而镍和铝含量是变化的。在625-750℃的各种温度下,以10 {sup} -3s {sup} -1的应变速率进行超塑性拉伸试验。在10 {sup} -4-2.5×的应变速率范围内进行阶跃应变速率试验。 10 {sup} -2s {sup} -1在700、725和750℃下研究一些重要的超塑性变形特性。事实证明,Ti-5Fe-4A1-2Ni合金是有希望的,因为它具有1500%以上的大延伸率以及650℃的低变形温度,这主要是由于铁和镍的存在。发现在适当的数量范围内与镍合金化可增加应变速率敏感性并降低流动应力,而铝的添加对超塑性行为影响不明显,但应限制其含量。还讨论了本合金系统中超塑性的可能机理。

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