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Thermal stability evaluation of microstructures and mechanical properties of tungsten vanadium alloys

机译:钨钒合金的组织和力学性能的热稳定性评价

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摘要

The thermal stability is important for tungsten based alloys as plasma facing materials to survive against high heat flux in fusion reactors. In this work, the thermal stability of W-5%V alloy fabricated following a powder metallurgy route by spark plasma sintering technique has been studied. To investigate the impact of temperature on the mechanical properties and microstructures, the alloy was subjected to heat treatment for 2 h over the temperature range 900-1500?C in a pure argon furnace. The micro-hardness values of the heat treated alloys were highly stable as compared to pure tungsten. A slight decrease flexural strength was observed with increasing annealing temperature. The maximum change flexural strength at the highest treated temperature was noted about 14% lower. The morphology analyses of the crack surfaces by scanning electron microscopy did not identify a drastic change in tungsten grain size, after heat treatment. The results indicate that the addition of vanadium in tungsten improves the overall thermal stability of microstructures and mechanical properties.
机译:对于钨基合金而言,其热稳定性对于面对等离子体的材料而言至关重要,以使其能够抵抗聚变反应堆中的高热通量。在这项工作中,研究了通过火花等离子体烧结技术按照粉末冶金路线制造的W-5%V合金的热稳定性。为了研究温度对机械性能和微观结构的影响,在纯氩气炉中于900-1500°C的温度范围内对该合金进行了2小时的热处理。与纯钨相比,热处理合金的显微硬度值非常稳定。随着退火温度的升高,弯曲强度略有下降。注意到在最高处理温度下的最大变化挠曲强度降低了约14%。通过扫描电子显微镜对裂纹表面进行形态分析,未发现热处理后钨晶粒尺寸的急剧变化。结果表明,在钨中添加钒改善了组织的整体热稳定性和机械性能。

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