不同类型丸剂低强度喷丸强化调质高强钢的抗疲劳性能研究

E. Segurado, Belzunce Fj, I. FernándezPariente
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引用次数: 1

摘要

本研究的目的是研究抗拉强度为2000 MPa的AISI4340钢经喷丸强化表面处理后的调质疲劳寿命的提高。这些处理在材料的表层产生压缩残余应力场,同时在表面引起某种损伤。选择不同类型的弹丸(陶瓷弹丸和钢弹丸)进行处理,研究其对试样疲劳寿命的影响。用粗糙度仪和扫描电子显微镜对试样的表面形貌进行了分析。利用x射线衍射仪(XRD)和电抛光仪测量了这些处理引起的压缩残余应力分布。随后,采用四点旋转弯曲试验研究了处理后试样的疲劳行为,并用扫描电镜对其断口进行了分析。在8A Almen强度下,用陶瓷珠喷丸强化后,其疲劳性能最好。在相同强度下使用钢丝切割弹进行处理的主要区别是,陶瓷弹与钢丝切割弹相比,其表面损伤要小得多,这反过来又证明了前者具有更高的几何完美性和硬度。此外,在8A强度下,陶瓷珠喷丸疲劳试样总是在残余压应力作用区外产生内部疲劳裂纹。此外,疲劳启动总是与硬刚体氧化铝夹杂物的存在有关,这些夹杂物起着微结构应力集中剂的作用。
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Fatigue Resistance Study of Quenched and Tempered High-Strength Steel Submitted to Low Intensity Shot Peening Treatments with Different Types of Shots
The aim of this research is to study the fatigue life enhancement produced in quenched and tempered AISI4340 steel with a tensile strength of 2000 MPa after being submitted to shot peening surface treatments. These treatments generate compressive residual stress fields in a superficial layer of the material at the same time as inducing some kind of damage on the surface. Different kind of projectiles were chosen to perform the treatment (ceramic and steel shots), studying the way these affected the fatigue life of the specimens. The surface topography of the samples was analysed using a roughness tester and by means of scanning electron microscopy (SEM). The compressive residual stress profile induced by these treatments was measured using X-ray diffraction (XRD) plus electro-polishing. The fatigue behaviour of the treated samples was subsequently studied by means of 4-point rotating bending tests and their fracture surfaces were analysed using SEM. The best fatigue performance was obtained after shot peening with ceramic beads under 8A Almen intensity. The main difference in relation to the treatment performed under the same intensity but using steel cut wire shots was the much lower surface damage induced by the impacts with the ceramic shots compared with the cut wire projectiles, which in turn is justified by the greater geometric perfection and hardness of the former. Furthermore, fatigue specimens shot peened with ceramic beads under 8A intensity always gave rise to internal fatigue crack initiation, which took place outside the zone subjected to residual compressive stresses. Moreover, fatigue initiation was always linked to the presence of hard and rigid alumina inclusions, which acted as microstructural stress concentrators.
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