首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The effect of a small addition of nickel on the sintering, sintered microstructure, and mechanical properties of Ti-45Al-5Nb-0.2C-0.2B alloy
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The effect of a small addition of nickel on the sintering, sintered microstructure, and mechanical properties of Ti-45Al-5Nb-0.2C-0.2B alloy

机译:少量添加镍对Ti-45Al-5Nb-0.2C-0.2B合金的烧结,烧结组织和力学性能的影响

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摘要

Titanium aluminide based pre-alloyed powder is difficult to consolidate by pressureless sintering. The effect of a small addition of nickel (Ni) on the sintering, sintered microstructure, and mechanical properties of a Ti-45Al-5Nb-0.2C-0.2B alloy, compacted from pre-alloyed powder, has been investigated. The relative density of the alloy, sintered at 1375 °C for 60 min, increased progressively from 74% to >99% with increasing Ni content from 0% to 1.25 at.%. The addition of Ni leads to the formation of an intermediate hexagonal-structured Al_3NiTi_2 phase (known as the τ_3 phase) during heating prior to reaching 1150 °C. The presence of the τ_3 phase enables the formation of a Ni-containing sintering liquid through three reactions between 1250 °C and 1350 °C: τ_3 + γ -> Liquid, τ_3 + γ -> Liquid + α and τ_3 + α -> Liquid. The sintering shrinkage of the powder blend Ti-45Al-5Nb-0.2C-0.2B-1.25Ni occurs mostly before reaching the isothermal sintering temperature (1375 °C). Consequently, the sintered density increases only marginally during the subsequent isothermal sintering at 1375 °C from 15 min to 60 min and remains unchanged afterwards. However, achieving a near full lamellar structure requires a longer isothermal hold (120 min) at the single a phase region. The as-sintered Ti-45Al-5Nb-0.2C-0.2B-1.25Ni alloy shows compression strength of 2200 ± 50 MPa, yield strength of 750±20 MPa, and strain to fracture of 28 ± 0.5%.
机译:铝化钛基预合金粉末很难通过无压烧结来固结。研究了少量添加镍(Ni)对从预合金粉末压实的Ti-45Al-5Nb-0.2C-0.2B合金的烧结,烧结组织和力学性能的影响。合金的相对密度在1375°C下烧结60分钟,随着镍含量从0%增加到1.25 at。%,逐渐从74%增加到> 99%。 Ni的添加导致在达到1150℃之前的加热过程中形成中间六方结构的Al_3NiTi_2相(称为τ_3相)。 τ_3相的存在使得能够通过1250°C和1350°C之间的三个反应形成含镍的烧结液体:τ_3+γ->液体,τ_3+γ->液体+α和τ_3+α->液体。 Ti-45Al-5Nb-0.2C-0.2B-1.25Ni粉末共混物的烧结收缩主要在达到等温烧结温度(1375°C)之前发生。因此,在随后的1375°C等温烧结过程中,烧结密度从15分钟到60分钟仅略有增加,此后保持不变。但是,要获得接近完全的层状结构,则需要在单个a相区域保持更长的等温时间(120分钟)。刚烧结的Ti-45Al-5Nb-0.2C-0.2B-1.25Ni合金的压缩强度为2200±50 MPa,屈服强度为750±20 MPa,断裂应变为28±0.5%。

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