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A Study of the Effects of Al Cr Hf and Ti Additions on the Microstructure and Oxidation of Nb-24Ti-18Si Silicide Based Alloys

机译:AlCrHf和Ti添加对Nb-24Ti-18Si硅化物基合金的组织和氧化作用的研究

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摘要

In Nb-silicide based alloys Al, Cr, Hf, and Ti additions are crucial for achieving balance of properties. It is not known how the simultaneous addition of Hf with Al and Ti, or Hf with Al, Cr, and Ti affects macrosegregation, and how the alloying affects hardness, Young’s modulus and bulk alloy oxidation, and contamination of the solid solution Nbss and the Nb5Si3 compound by oxygen. Two alloys with nominal compositions (at.%) Nb-24Ti-18Si-5Al-5Hf (alloy NbSiTiHf-5Al) and Nb-24Ti-18Si-5Al-5Cr-5Hf (alloy NbSiTiHf-5Al-5Cr) were studied in the as-cast and heat-treated conditions and after isothermal oxidation at 800 and 1200 °C and were compared with similar alloys without Hf. In both alloys there was macrosegregation of Si and Ti, which was more severe in NbSiTiHf-5Al. Both alloys formed Nbss+βNb5Si3 eutectic. The Nbss was stable and its Al and Cr concentrations increased with increasing Ti concentration. In both conditions the βNb5Si3 was observed in the alloys NbSiTiHf-5Al and NbSiTiHf-5Al-5Cr, and the γNb5Si3 only in the alloy NbSiTiHf-5Al. In both heat-treated alloys, separate Hf-rich Nb5Si3 grains were formed. The Si and Al concentrations in Nb5Si3 respectively decreased and increased with increasing Ti concentration. Al and Cr had a stronger hardening effect in the Nbss than Al, Cr, and Hf. Al, Cr, and Ti had a stronger negative effect on the Young’s modulus of the Nbss compared with Al, Cr, Hf, and Ti. When Nb was substituted by Ti, Cr, and Hf, and Si by Al in the βNb5Si3, the Young’s modulus was reduced compared with the unalloyed silicide. At 800 °C both alloys did not exhibit catastrophic pest-oxidation after 100 h. The Nbss and Nb5Si3 were contaminated by oxygen in both alloys, the former more severely. At 1200 °C the scales spalled-off, more severely in the alloy NbSiTiHf-5Al, where substrate that was heavily contaminated by oxygen below the scale also spalled-off. In both alloys the contamination of Nb5Si3 and Nbss by oxygen was more severe compared with 800 °C, but the silicides were not contaminated by oxygen in their bulk. The Nbss was not contaminated by oxygen only in the bulk of the alloy NbSiTiHf-5Al-5Cr.
机译:在基于Nb硅化物的合金中,Al,Cr,Hf和Ti的添加对于实现性能平衡至关重要。尚不清楚同时添加Hf和Al和Ti或添加Hf和Al,Cr和Ti如何影响宏观偏析,以及合金化如何影响硬度,杨氏模量和整体合金氧化以及固溶Nbss和合金的污染。 Nb5Si3化合物由氧组成。在当时研究了两种名义成分(at。%)Nb-24Ti-18Si-5Al-5Hf(合金NbSiTiHf-5Al)和Nb-24Ti-18Si-5Al-5Cr-5Hf(合金NbSiTiHf-5Al-5Cr)的合金。铸造和热处理条件,以及在800和1200°C等温氧化后,与不含Hf的类似合金进行了比较。两种合金中均存在Si和Ti的宏观偏析,这在NbSiTiHf-5Al中更为严重。两种合金均形成Nbss +βNb5Si3共晶。 Nbss是稳定的,并且其Al和Cr的浓度随Ti浓度的增加而增加。在两种情况下,在NbSiTiHf-5Al和NbSiTiHf-5Al-5Cr合金中均观察到βNb5Si3,仅在NbSiTiHf-5Al合金中观察到γNb5Si3。在两种热处理合金中,均形成了单独的富Hf的Nb5Si3晶粒。 Nb5Si3中的Si和Al浓度随Ti浓度的增加而分别降低和增加。 Al和Cr在Nbss中的硬化作用比Al,Cr和Hf强。与Al,Cr,Hf和Ti相比,Al,Cr和Ti对Nb ss 的杨氏模量具有更大的负面影响。当βNb 5 Si 3 中的Nb被Ti,Cr和Hf取代并且Si被Al取代时,与未合金化的硅化物相比,杨氏模量降低了。在800°C下,两种合金在100 h后都没有表现出灾难性的有害生物氧化。两种合金中Nb ss 和Nb 5 Si 3 均被氧污染,前者更为严重。在1200°C时,氧化皮剥落,在合金NbSiTiHf-5Al中更严重,在该处,被氧化皮以下的氧气严重污染的基材也剥落了。在两种合金中,氧对Nb 5 Si 3 和Nb ss 的污染比800°C更为严重,但硅化物却没有被大量氧气污染。 Nb ss 仅在大部分的NbSiTiHf-5Al-5Cr合金中没有被氧污染。

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