Fracture of a 1040 Steel Fan Shaft Resulting From Use of an Improper Material

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Abstract

The fan drive support shaft, specified to be made of cold-drawn 1040 to 1045 steel, fractured after 2240 miles of service. It was revealed by visual examination of the shaft that the fracture had initiated near the fillet at an abrupt change in shaft diameter. The cracks originated at two locations approximately 180 deg apart on the outer surface of the shaft and propagated toward the center. Features typical of reversed-bending fatigue were exhibited by the fracture. A tensile specimen was machined from the center of the shaft and it indicated much lower yield strength (369 MPa) than specified. It was disclosed by metallographic examination that the microstructure was predominantly equiaxed ferrite and pearlite which indicated that the material was in either the hot-worked or normalized condition. An improvement of fatigue strength of the shaft by the development of a quenched-and-tempered microstructure was recommended.
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1040钢风机轴因材料使用不当而断裂
风扇驱动支撑轴,指定由冷拔1040至1045钢制成,在使用2240英里后断裂。通过对轴的目视检查发现,断裂是在轴直径突然变化的圆角附近开始的。裂缝起源于轴外表面约180度的两个位置,并向中心扩展。断裂表现出典型的反向弯曲疲劳特征。从轴的中心加工拉伸试样,其屈服强度(369 MPa)比规定的低得多。金相组织以等轴铁素体和珠光体为主,表明材料处于热加工或正火状态。建议通过发展调质组织来提高轴的疲劳强度。
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