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Effect of Higher Silicon Content and Heat Treatment on Structure Evolution and High-Temperature Behaviour of Fe-28Al-15Si-2Mo Alloy

机译:硅含量较高的影响和热处理对Fe-28Al-15Si-2MO合金结构演化和高温行为的影响

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摘要

This paper describes the structure and properties of cast Fe3Al-based alloy doped with 15 at. % of silicon and 2 at. % of molybdenum. The higher content of silicon is useful for the enhancement of high-temperature mechanical properties or corrosion resistance of iron aluminides but deteriorates their workability due to increased brittleness. It was found that the presence of both alloying elements leads to an increase of values of the high-temperature yield stress in compression. The heat treatment (annealing at 800 °C for 100 h) used for the achievement of phase stability causes the grain coarsening, so the values of the high-temperature yield stress in compression are lower at 600 °C and 700 °C in comparison to values measured for the as-cast state. This stabilization annealing significantly improves the workability/machinability of alloy. Furthermore, the higher silicon content positively affects the values of the thermal expansion coefficient that was found to be lower in the temperature range up to 600 °C compared to alloys with lower content of silicon.
机译:本文介绍了掺杂15at的铸造Fe3Al基合金的结构和性质。硅的百分比和2。钼的百分比。硅的含量较高可用于提高铁铝化物的高温机械性能或耐腐蚀性,但由于脆性增加,它们的可加工性劣化。发现两种合金元素的存在导致压缩中高温屈服应力的值的增加。用于实现相位稳定性的热处理(在800℃下为100小时的退火)导致晶粒粗化,因此压缩中的高温屈服应力的值与600℃和700℃相比较低。测量的AS铸造状态的值。这种稳定退火显着提高了合金的可加工性/可加工性。此外,与具有硅含量较低的合金相比,较高的硅含量肯定地影响发现在温度范围内的热膨胀系数的值,该值在高达600℃的温度范围内。

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