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Transmission Electron Microscopy Characterization of the Bake-Hardening Behavior of Transformation-Induced Plasticity and Dual-Phase Steels

机译:转变诱导可塑性和双相钢的烘烤硬化行为的透射电子显微镜表征

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摘要

The effect of prestraining (PS) and bake hardening (BH) on the microstructures and mechanical properties has been studied in transformation-induced plasticity (TRIP) and dual-phase (DP) steels after intercritical annealing. The DP steel showed an increase in the yield strength and the appearance of the upper and lower yield points after a single BH treatment as compared with the as-received condition, whereas the mechanical properties of the TRIP steel remained unchanged. This difference appears to be because of the formation of plastic deformation zones with high dislocation density around the “as-quenched” martensite in the DP steel, which allowed carbon to pin these dislocations, which, in turn, increased the yield strength. It was found for both steels that the BH behavior depends on the dislocation rearrangement in ferrite with the formation of cell, microbands, and shear band structures after PS. The strain-induced transformation of retained austenite to martensite in the TRIP steel contributes to the formation of a complex dislocation structure.
机译:在临界退火后的相变诱发塑性(TRIP)和双相(DP)钢中,研究了预应变(PS)和烘烤硬化(BH)对组织和力学性能的影响。与原样相比,单次BH处理后DP钢的屈服强度有所提高,并且出现了较高和较低的屈服点,而TRIP钢的机械性能保持不变。这种差异似乎是由于在DP钢中“淬火”马氏体周围形成了高位错密度的塑性变形区,这使碳钉扎了这些位错,从而提高了屈服强度。对于两种钢,发现BH行为取决于PS后在铁素体中的位错重排,并形成了孔,微带和剪切带结构。 TRIP钢中应变诱发的残余奥氏体向马氏体的转变有助于形成复杂的位错结构。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第10期|2442-2454|共13页
  • 作者单位

    Department of Materials Engineering Monash University Clayton VIC 3800 Australia;

    Center for Material and Fiber Innovation Deakin University Geelong VIC 3217 Australia;

    School of Mechanical Material and Mechatronics Engineering University of Wollongong Wollongong NSW 2500 Australia;

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