首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >INTRODUCTION OF L1_2-ORDERED PRECIPITATION TO ALUMINA-FORMING AUSTENITIC HEAT-RESISTANT STEELS WITH LOW NI CONTENT
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INTRODUCTION OF L1_2-ORDERED PRECIPITATION TO ALUMINA-FORMING AUSTENITIC HEAT-RESISTANT STEELS WITH LOW NI CONTENT

机译:L1_2级沉淀法向低镍含量的成铝奥氏体耐热钢的引入

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Alumina-forming austenitic (AFA) heat-resistant steels have been reported as a promising new class of steels in recent years with potential applications in advanced ultra-supercritical power plants. It is well known that Lb-ordered y' phase is the most important precipitate for high-temperature strengthening in Ni-based superalloys and it can be stabilized by increasing the Ni content in heat-resistant steels. In the current work, the evolution of Lb-ordered precipitates were compared in the Cu-bearing AFA alloys with 20, 27 and 35 wt.% Ni. After slow tensile tests at 700°C (~2×10~(-5) s~(-1)), L1_2-ordered precipitates occurred in all the alloys. Alloy AFA27 displayed the most densely distributed L1_2-particles in the matrix, whose ultimate tensile strength was also the highest. However, the Lb-ordered precipitates were only observed in alloy AFA27 after the slow tensile test at 750°C due to the thermodynamic and kinetic reasons. Flow curves of slow tensile tests indicated different precipitation behaviors at 700°C and 750°C. Chemical composition analysis and thermodynamic calculation revealed that the occurrence of Lb-ordered Ni-Cu-Al phase depends on temperature, Ni content and the atomic ratio of Ni/A1. This opens up new opportunities to promote the formation of L1_2-ordered phase in Fe-based austenitic heat-resistant steels with low Ni content and benefits high-temperature strengthening.
机译:近年来,据报道形成氧化铝的奥氏体(AFA)耐热钢是一种有前途的新型钢,在先进的超超临界发电厂中具有潜在的应用前景。众所周知,Lb有序的y'相是Ni基高温合金中最重要的高温强化析出物,可以通过增加耐热钢中的Ni含量来使其稳定。在当前的工作中,比较了含镍20%,27%和35%(重量)的含铜AFA合金中Lb有序析出物的演变。在700°C(〜2×10〜(-5)s〜(-1))下进行缓慢拉伸试验后,所有合金中均发生了L1_2级析出。合金AFA27在基体中显示出密度最高的L1_2颗粒,其极限抗拉强度也最高。但是,由于热力学和动力学原因,在750°C的缓慢拉伸试验之后,仅在AFA27合金中观察到了Lb有序的析出物。慢拉伸试验的流动曲线表明在700°C和750°C下不同的析出行为。化学成分分析和热力学计算表明,Lb有序的Ni-Cu-Al相的出现取决于温度,Ni含量和Ni / Al的原子比。这为促进低镍含量的铁基奥氏体耐热钢中的L1_2有序相的形成提供了新的机会,并有利于高温强化。

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