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首页> 外文期刊>Journal of Materials Science >Oxide dispersion-strengthened steel PM2000 after dynamic plastic deformation: nanostructure and annealing behaviour
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Oxide dispersion-strengthened steel PM2000 after dynamic plastic deformation: nanostructure and annealing behaviour

机译:动态塑性变形后氧化物弥散强化钢PM2000:纳米结构和退火行为

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The microstructure, texture and mechanical properties have been studied in PM2000 compressed via dynamic plastic deformation to a strain of 2.1. It is found that dynamic plastic deformation results in a duplex aOE (c) 111 > + aOE (c) 100 > fibre texture and refines the initial microstructure by nanoscale lamellae, which substantially increases the strength of the material, but decreases its thermal stability. In the as-deformed microstructure, the stored energy density is found to be higher in aOE (c) 111 >-oriented regions than in aOE (c) 100 >-oriented regions. Recovery during annealing at 715 A degrees C reduces the energy stored in the deformed microstructure. This reduction is more pronounced in the aOE (c) 111 >-oriented regions. Orientation-dependent recrystallisation takes place in the recovered microstructure, leading to strengthening of the aOE (c) 111 > fibre texture component at the expense of the aOE (c) 100 > fibre texture component.
机译:在通过动态塑性变形压缩到2.1应变的PM2000中,研究了其微观结构,织构和力学性能。发现动态塑性变形会导致双相aOE(c)111> + aOE(c)100>纤维织构,并通过纳米级薄片细化初始微观结构,从而显着提高材料的强度,但会降低其热稳定性。在变形后的微结构中,发现在aOE(c)111>取向区域中的存储能量密度高于在aOE(c)100>取向区域中的存储能量密度。 715 A摄氏度的退火过程中的恢复降低了变形微结构中存储的能量。在面向aOE(c)111>的区域中,这种减少更为明显。取向依赖性的再结晶在恢复的微结构中发生,从而导致aOE(c)111>纤维织构成分的增强,而aOE(c)100>纤维织构成分的损失。

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