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Effect of Deformation Parameters on Microstructure and Mechanical Properties of Internal Crack Healing in As-Cast 30Cr2Ni4MoV Steel

机译:变形参数对铸造30Cr2Ni4mov钢内裂纹愈合微观结构和力学性能的影响

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Crack defects seriously affected the quality of heavy forgings, which needed to be eliminated by forging process. In this study, the healing process of internal crack defects was studied under different deformation parameters. The internal crack was produced by drilling the sample of 30Cr2Ni4MoV steel and then compressing the sample with different deformation. The microstructure of the crack healing zone was observed using an optical microscope. Meanwhile, the static and dynamic mechanical properties of the crack healing zone were tested by room-temperature tensile tests and impact tests, respectively. The results showed that dynamic recrystallization (DRX) and grain growth were the main factors for internal crack healing. When the forging ratio (FR) was 1.5, the cracks at the corner of the void began to heal, which was caused by DRX. At FR 2.0, the DRX was completed and the center crack was completely healed. The tensile properties of crack healing zones were restored to more than 95% of the base material. As the FR increased to 2.2, the elongation increased slightly and the yield strength decreased slightly, which indicated that the grain growth played an important role in the plastic recovery and DRX played an important role in strength recovery. The dynamic mechanical properties of the crack healing zone gradually increased with the increase of deformation. Furthermore, the maximum value of impact toughness reached FR 2.0, and the recovery rate of impact toughness was above 96%. When the deformation continues to increase, the grains grew up after DRX, which made the impact energy decrease.
机译:裂缝缺陷严重影响了重型锻件的质量,需要通过锻造过程消除。在这项研究中,在不同变形参数下研究了内裂纹缺陷的愈合过程。通过钻孔30Cr2Ni4MoV钢样品来生产内裂,然后用不同的变形压缩样品。使用光学显微镜观察裂纹愈合区的微观结构。同时,通过室温拉伸试验和冲击试验测试裂纹愈合区的静态和动态力学性能。结果表明,动态重结晶(DRX)和籽粒生长是内部裂纹愈合的主要因素。当锻造比率(FR)为1.5时,空隙的拐角处的裂缝开始愈合,这是由DRX引起的。在FR 2.0,DRX完成,中心裂缝完全愈合。裂纹愈合区的拉伸性能恢复到95%以上的基础材料。随着FR增加到2.2,伸长率略微增加,屈服强度略有下降,这表明晶粒生长在塑料回收中发挥了重要作用,DRX在强度恢复中发挥着重要作用。随着变形的增加,裂纹愈合区的动态力学性能逐渐增加。此外,冲击韧性的最大值达到Fr 2.0,冲击韧性的回收率高于96%。当变形持续增加时,DRX后颗粒在DRX后长大,这使得冲击能量减少。

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