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Research for Thermal Stability of Ti-6.5A1-3.5Mo-0. 2Si

机译:Ti-6.5A1-3.5Mo-0的热稳定性研究。 2硅

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The analysis of the microstructures and mechanical properties at room temperature about Ti-6. 5A1-3. 5Mo-0. 2Si titanium alloy bar, hot exposed blanks and hot exposed specimen is in this paper. Thermal stability's changing regularity and influences of the alloy were studied. Tensile test result at room temperature showed that alloy's tensile and yield strength increased 25MPa respectively;and percentage of blank's elongtation droppedslightly,percentage of specimen's elongtation fell 1. 5% when they were exposed after keeping 1000 hours at 500°C; percentage reduction of alloy's area fell 4. 5%,and material's thermal stability dropped a little. When material had been hot exposed,primary α phase and the secondary α phase slice that was formed among |3 phase change microstructure (βPCM).didn't precipitate α2 phase;primary α phase grew bigger and formed convex by the trifurcate grain boundary; the secondary α phase slice grew slightly, β phase lessened and the inner microstructures changed, these main reasons brought about thermal stability dropping;after hot exposing there was oxide surface, the thickness was about 0. 2 μm and diffusion layer's thickness was about 1. 0μm,the oxygen effective area was 1. 2μm,these factors' effect on thermal stability was less.
机译:分析了Ti-6在室温下的显微组织和力学性能。 5A1-3。 5Mo-0。本文使用2Si钛合金棒,热暴露的毛坯和热暴露的试样。研究了合金热稳定性的变化规律和影响。室温拉伸试验结果表明,合金在500℃保温1000小时后,合金的拉伸强度和屈服强度分别提高了25MPa;坯料的伸长率略有下降,试样的伸长率下降了1. 5%。合金面积减少百分率下降4. 5%,材料的热稳定性略有下降。当材料进行热暴露后,| 3相变微结构(βPCM)之间形成的初生α相和二次α相片层没有析出α2相;初生α相变大并在三叉状晶界处形成凸面;次生α相切片略有增长,β相减少,内部微观结构发生变化,这是造成热稳定性下降的主要原因;热暴露后存在氧化物表面,其厚度约为0. 2μm,扩散层的厚度约为1。 0μm,氧气有效面积为1。2μm,这些因素对热稳定性的影响较小。

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