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Development of a new ultrafine grained dual phase steel and examination of the effect of grain size on tensile deformation behavior

机译:新型超细晶粒双相钢的研制以及晶粒尺寸对拉伸变形行为的影响

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Ultrafine-grained dual phase (DP) steels are among the newest grades of DP steels that incorporate the uniform distribution of fine martensite particles (in the order of 1-2 μm) within a ferrite matrix. These new grades of steels have been developed in response to the world's demand for decreasing the fuel consumption in automobiles by increasing the strength to weight ratio. In the present research, a new kind of ultrafine grained DP (UFG-DP) steel with an average grain size of about 2 μm as well as a coarse grained DP (CG-DP) steel with an average grain size of about 5.4 μm was produced by consecutive intercritical annealing and cold rolling of low carbon AISI 8620 steel. The martensite volume fraction for both microstructures was the same and about 50 percent. Scanning electron microscopy (SEM) microstructural examination and room temperature tensile deformation analyses were performed on both UFG-DP and CG-DP steels and their deformation behavior in terms of strength, elongation and strain hardening was studied and compared. Room-temperature uniaxial tensile tests revealed that for a given martensite volume fraction, yield and tensile strengths were not very sensitive to martensite morphology. However, uniform and total elongation values were noticeably affected by refining martensite particles. The higher plasticity of fine martensite particles as well as the more uniform strain distribution within the UFG-DP microstructure resulted in higher strain hardenability and, finally, the higher ductility of the UFG-DP steel.
机译:超细晶粒双相(DP)钢是DP钢的最新等级之一,它在铁素体基体中结合了细小的马氏体颗粒(1-2μm量级)的均匀分布。这些新等级的钢材是根据世界上通过增加强度/重量比来减少汽车燃料消耗的需求而开发的。在本研究中,一种新型的平均晶粒尺寸约为2μm的超细晶粒DP(UFG-DP)钢以及平均晶粒尺寸约为5.4μm的粗晶粒DP(CG-DP)钢成为通过低碳AISI 8620钢的连续临界退火和冷轧生产。两种组织的马氏体体积分数相同,约为50%。对UFG-DP和CG-DP钢进行了扫描电子显微镜(SEM)的显微组织检查和室温拉伸变形分析,并研究了它们在强度,伸长率和应变硬化方面的变形行为。室温单轴拉伸试验表明,对于给定的马氏体体积分数,屈服强度和拉伸强度对马氏体形态不是很敏感。然而,均匀和总伸长率值明显地受到细化马氏体颗粒的影响。马氏体细粉的可塑性越高,UFG-DP显微组织内的应变分布越均匀,从而导致应变硬化性更高,最终UFG-DP钢的塑性也更高。

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