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Combination of dynamic transformation and dynamic recrystallization for realizing ultrafine-grained steels with superior mechanical properties

机译:动态转变与动态再结晶相结合以实现具有优异机械性能的超细晶粒钢

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摘要

Dynamic recrystallization (DRX) is an important grain refinement mechanism to fabricate steels with high strength and high ductility (toughness). The conventional DRX mechanism has reached the limitation of refining grains to several microns even though employing high-strain deformation. Here we show a DRX phenomenon occurring in the dynamically transformed (DT) ferrite, by which the required strain for the operation of DRX and the formation of ultrafine grains is significantly reduced. The DRX of DT ferrite shows an unconventional temperature dependence, which suggests an optimal condition for grain refinement. We further show that new strategies for ultra grain refinement can be evoked by combining DT and DRX mechanisms, based on which fully ultrafine microstructures having a mean grain size down to 0.35 microns can be obtained without high-strain deformation and exhibit superior mechanical properties. This study will open the door to achieving optimal grain refinement to nanoscale in a variety of steels requiring no high-strain deformation in practical industrial application.
机译:动态再结晶(DRX)是一种重要的晶粒细化机制,用于制造具有高强度和高延展性(韧性)的钢。即使采用高应变变形,常规的DRX机构也已达到将晶粒细化到几微米的极限。在这里,我们显示了在动态变形(DT)铁氧体中发生的DRX现象,通过该现象显着降低了DRX操作所需的应变和超细晶粒的形成。 DT铁氧体的DRX显示出非常规的温度依赖性,这为晶粒细化提供了最佳条件。我们进一步表明,通过结合DT和DRX机理可以唤起超细晶粒细化的新策略,在此基础上,可以得到平均晶粒尺寸低至0.35微米的完全超细微结构,而不会发生高应变变形,并表现出优异的机械性能。这项研究将为实现在实际工业应用中不需要高应变变形的各种钢中实现最佳晶粒细化到纳米级开辟大门。

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