首页|Ti2AlNb合金粉末热等静压成形的组织和性能

Ti2AlNb合金粉末热等静压成形的组织和性能

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分别采用等离子旋转电极雾化法(Plasma rotating electrode process,PREP)和无坩埚感应熔炼超声气体雾化法(Electrode induction melting gas atomization,EIGA)制备了Ti2AlNb洁净预合金粉末,并对预合金粉末进行了表征.通过热等静压(Hot isostatic pressing,HIP)工艺制备了Ti2AlNb合金,研究了制粉工艺对Ti2AlNb合金显微组织与力学性能的影响.试验结果表明,与PREP法相比,EIGA法制备的Ti2AlNb粉末振实密度更高;基于粉末热等静压近净成形技术,在1030℃/140 MPa/3 h的条件下开展了Ti2AlNb叶轮的成形研究,有限元模拟结果显示,粉末振实密度越高,部件热等静压后变形程度越小,综合考虑构件成形,优选振实密度更高的EIGA制粉工艺制备Ti2AlNb粉末合金复杂部件.
Microstructure and Mechanical Properties of Powder Metallurgy Ti2AlNb Alloy Prepared by Hot Isostatic Pressing
Ti2AlNb pre-alloyed powders were prepared by plasma rotating electrode process(PREP)and electrode induction melting gas atomization(EIGA)respectively,and the pre-alloyed powders were characterized.Ti2AlNb alloy was prepared by hot isostatic pressing(HIP)process,and the effects of powder preparing process on microstructure and mechanical properties of Ti2AlNb alloy were investigated.The experimental results show that the compaction density of Ti2AlNb powder prepared by EIGA method is higher than that of PREP method.The forming research of Ti2AlNb impeller was carried out under the regime of 1030℃/140 MPa/3 h based on the powder metallurgy HIP near net shape technology.The finite element simulation results show that the higher the powder compaction density,the smaller the deformation degree of the HIPed component.Ti2AlNb pre-alloyed powder prepared by EIGA with higher compaction density is preferred to prepare powder metallurgy complex components.

Ti2AlNb alloyPowder metallurgyHot isostatic pressing(HIP)Near net shape formingFinite element simulation

吴杰、朱旭晖、尹一峰、尚学文、卢正冠、徐磊

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中国科学院金属研究所师昌绪先进材料创新中心,沈阳 110016

中国航发沈阳发动机研究所,沈阳 110015

中国科学技术大学,沈阳 110016

Ti2AlNb合金 粉末冶金 热等静压 近净成形 有限元仿真

国家科技重大专项中国科学院战略性先导科技专项稳定支持基础研究领域青年团队计划

J2019-VII-0005-0145XDA22010102YSBR-025

2024

航空制造技术
北京航空制造工程研究所

航空制造技术

CSTPCD北大核心
影响因子:0.403
ISSN:1671-833X
年,卷(期):2024.67(17)