Fatigue Fracture that Originated on the Ground Surface of a Medium- Carbon Steel Forging with a Notch-Sensitive Band Structure

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Abstract

The connecting end of two forged medium-carbon steel rods used in an application in which they were subjected to severe low-frequency loading failed in service. The fractures extended completely through the connecting end. The surface hardness of the rods was found to be lower than specifications. The fractures were revealed to be in areas of the transition regions that had been rough ground to remove flash along the parting line. The presence of beach marks, indicating fatigue failure, was revealed by examination. The fracture origin was confirmed by the location and curvature of beach marks to be the rough ground surface. An incipient crack 9.5 mm along with several other cracks on one of the fractured rods was revealed by liquid penetration examination. Metallographic examination of the fractured rods indicated a banded structure consisting of zones of ferrite and pearlite. It was established that the incipient cracks found in liquid-penetrant inspection had originated at the surface in the banded region, in areas of ferrite where this constituent had been visibly deformed by grinding. Closer control on the microstructure, hardness of the forgings and smooth finish in critical area was recommended.
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一种缺口敏感带结构中碳钢锻件的表面疲劳断裂
两根锻造中碳钢棒的连接端在遭受严重低频载荷的应用中失效。裂缝完全延伸至连接端。发现棒的表面硬度低于规格。裂缝显示在过渡区域的粗糙地面上,以消除沿分离线的闪光。检查发现了表明疲劳破坏的滩痕。根据滩痕的位置和曲率确定裂缝的成因为粗糙的地面。液体渗透检查发现,其中一根断裂棒上有一条9.5 mm的早期裂纹和其他几条裂纹。断口棒材的金相检查显示为带状组织,由铁素体和珠光体带组成。在液体渗透检查中发现的早期裂纹起源于表面的带状区域,在铁素体的区域,该成分已明显变形的磨削。建议对锻件的显微组织、硬度和关键部位的光洁度进行更严格的控制。
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