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Effect of ultrasonic nanocrystal surface modification on the fatigue behaviors of plasma-nitrided S45C steel

机译:超声纳米晶表面改性对等离子渗氮S45C钢疲劳性能的影响

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摘要

An ultrasonic nanocrystal surface modification (UNSM) technique with different striking numbers (34,000mm~(-2) and 69,000mm~(-2)) was employed to modify the surface of plasma-nitrided S45C steel. After the UNSM treatment, the fatigue strength of the 8h plasma-nitrided specimen (N8) was clearly improved, and the sub-surface cracks were nearly restrained, while the 48h plasma-nitrided specimen (N48) showed no improvement of fatigue strength. The mechanical properties of the specimens before and after UNSM treatment were characterized, such as the microhardness, the surface roughness, and the surface compressive residual stress. A grain refinement layer was formed on the surface of the specimens due to the severe plastic deformation induced by the dense striking, and the grain distribution was analyzed by using X-ray diffraction. The grain refinement layer played an important role in the improved mechanical properties. The fatigue limit enhancement mechanism was examined by analyzing the stress intensity factor from fish-eye cracks. For the fish-eye cracks, the stress intensity factor in the facet area, K_(facet), was found to be a constant value of approximately 4.08MPa.m~(1/2), regardless of either the UNSM treatment or the nitriding duration.
机译:采用不同击打数(34,000mm〜(-2)和69,000mm〜(-2))的超声纳米晶体表面改性(UNSM)技术对等离子氮化S45C钢的表面进行改性。经过UNSM处理后,经过8h等离子氮化的试样(N8)的疲劳强度得到明显改善,并且几乎抑制了表面下的裂纹,而经过48h等离子氮化的试样(N48)的疲劳强度没有改善。表征了样品在UNSM处理前后的机械性能,例如显微硬度,表面粗糙度和表面压缩残余应力。由于密集的撞击引起的严重塑性变形,在试样的表面上形成了晶粒细化层,并使用X射线衍射分析了晶粒分布。晶粒细化层在改善机械性能方面起着重要作用。通过分析鱼眼裂纹的应力强度因子来研究疲劳极限增强机制。对于鱼眼裂纹,无论采用UNSM处理还是渗氮处理,小平面区域的应力强度因子K_(小平面)均为恒定值,约为4.08MPa.m〜(1/2)。持续时间。

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