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Creep and microstructure of near-gamma TiAl alloys

机译:近γTiAl合金的蠕变和组织

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摘要

Greep strength and microstructure of Ti-48Al-2Cr-2Nb- 1B and Ti -46Al-2W-0.5Si-(0.7B) alloys are compared. The influence of a prior -to-creep heat treatment on the initial microstructure is investigated. The isothermally forged and heat treated Ti-48Al-2Cr-2Nb- 1B alloy was tested in nearly lamellar and equiaxed modifications while the cast and HIP-ped Ti-46Al-2W-0.5Si alloy was either nearly lamellar or duplex before creep. All these microstructural variants were crept in tension at 1023 K and at different applied stresses. Experimental results obtained in the present study suggest that, in spite of creep strength variations resulting from the different microstructural states, the Ti-46Al~2W-0.5Si alloy performs better than the Ti-48Al-2Cr-2Nb-lB alloy. Transmission electron microscopy analysis provided evidence that W- and Si-rich phases that precipitate both, on the lamellar boundaries and inside the gamma grains, contribute to the superior creep strength of the Ti-46Al-2W-0.5Si alloy.
机译:比较了Ti-48Al-2Cr-2Nb-1B和Ti-46Al-2W-0.5Si-(0.7B)合金的蠕变强度和显微组织。研究了先蠕变热处理对初始显微组织的影响。对经等温锻造和热处理的Ti-48Al-2Cr-2Nb-1B合金进行了近似层状和等轴变形的测试,而铸造和HIP掺杂的Ti-46Al-2W-0.5Si合金则在蠕变之前几乎为层状或双相。所有这些微结构变体都在1023 K和不同的施加应力下蠕变。本研究获得的实验结果表明,尽管由于不同的微结构状态而引起的蠕变强度变化,但Ti-46Al〜2W-0.5Si合金的性能优于Ti-48Al-2Cr-2Nb-1B合金。透射电子显微镜分析提供了证据,表明在片状边界和伽马晶粒内部都沉淀的富W和富Si相有助于Ti-46Al-2W-0.5Si合金的优异蠕变强度。

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