桥式起重机4150钢锻造驱动桥的疲劳断裂

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引用次数: 0

摘要

用于高速电动桥式起重机(额定重量为6800公斤,或7吨,每天处理220次,平均每次提升3625至5440公斤,或4至6吨)的阶梯式驱动桥(淬火和回火结果化4150钢锻造)在使用15个月后断裂。目视检查显示骨折面有三个骨折区。主要裂缝发生在距离阶梯桥上大直径键槽部分的驱动端约50毫米(2英寸)处,距离起重机轮毂与桥连接的键槽一端约38毫米(1英寸)处。宏观、微观和化学检查表明,成分基本在4150钢的正常范围内。这一证据支持了这样的结论:裂缝开始于与键槽大致相反的位置,最终断裂是由于韧性和脆性混合断裂。起重机车轮在运行过程中由于过盈配合不足而产生轴向偏移,是造成车轮疲劳开裂的主要原因。建议包括重新设计车轴,将临界直径从140毫米增加到150毫米(5.5到6英寸),并增加一个窄肩,以防止驱动轮在操作过程中移位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fatigue Fracture of a Forged 4150 Steel Drive Axle in an Overhead Crane
A stepped drive axle (hardened and tempered resulfurized 4150 steel forging) used in a high-speed electric overhead crane (rated at 6800 kg, or 7 tons, and handling about 220 lifts/day with each lift averaging 3625 to 5440 kg, or 4 to 6 tons) broke after 15 months of service. Visual examination of the fracture surface revealed three fracture regions. The primary fracture occurred approximately 50 mm (2 in.) from the driven end of the large-diam keywayed section on the stepped axle and approximately 38 mm (1 in.) from one end of the keyway where the crane wheel was keyed to the axle. Macroscopic, microscopic, and chemical examination revealed composition that was basically within the normal range for 4150 steel. This evidence supports the conclusion that cracking initiated at a location approximately opposite the keyway, and final fracture was due to mixed ductile and brittle fracture. Axial shift of the crane wheel during operation, because of insufficient interference fit, was the major cause of fatigue cracking. Recommendations included redesigning the axle to increase the critical diameter from 140 to 150 mm (5.5 to 6 in.) and to add a narrow shoulder to keep the drive wheel from shifting during operation.
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