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CHARACTERIZATION OF HOT DEFORMED MICROSTRUCTURE IN A Ti-MODIFIED AUSTENITIC STAINLESS STEEL

机译:Ti改性奥氏体不锈钢中热变形微观结构的表征

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The hot deformed microstructure of the 15Cr-15Ni-2.2Mo-Ti modified austenitic stainless steel (commonly known as alloy D9) was investigated employing electron backscatter diffraction (EBSD). Hot compression tests were conducted in a Gleeble thermo-mechanical simulator at temperatures of 1173K-1373K (in steps of 100K) with a strain rate of 10 and 100 s~(-1) to different strains. Various kinds of deformation patterns were observed inside the deformed grains. These were inferred as the development of geometrically necessary boundaries or formation of parallel set of micro-bands. Recrystallized grains were partitioned from the deformed grains employing grain orientation spread approach. Extent of dynamic recrystallization (DRX) was found to be minimal at 1173K. DRX was predominantly found to happen at and above 1273K which increases with increase in strain. DRX nucleation and development mechanisms were discussed with respect to bulging of the parent grains and sub-grain rotation. Special emphasize is given on the role of annealing twins on DRX nucleation and subsequent expansion.
机译:研究了15Cr-15Ni-2.2MO-Ti改性奥氏体不锈钢(通常称为合金D9)的热变形微观结构采用电子反向散射衍射(EBSD)。热压缩试验在1173k-1373k(步长)的温度下在Gleeble热机械模拟器中进行,应变率为10和100s〜(-1)到不同的菌株。在变形的晶粒内观察到各种变形图案。这些被推断为发展几何必要边界或平行的微带组的形成。将重结晶晶粒从采用晶粒取向传播方法的变形颗粒中分配。在1173K时发现动态再结晶(DRX)的程度最小。 DRX主要被发现发生在1273K以上,这随着菌株的增加而增加。关于母粒的凸出和亚粒旋转讨论了DRX成核和开发机制。对退火双胞胎对DRX成核和随后的扩张的作用,特别强调。

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