Fatigue Fracture of Modified 1035 Steel Cap Screws

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Abstract

A drive-line assembly failed during vehicle testing. The vehicle had traveled 9022 km (5606 mi) before the failure occurred. Both the intact and fractured parts of the assembly were analyzed to determine the cause and sequence of failure. Visual examination of the assembly showed three of four bearing caps, two cap screws, and one universal-joint spider had fractured. Examination of the three fractured bearing caps and the spider showed no evidence of fatigue but showed that fracture occurred in a brittle manner. The bearing cap that was not destroyed still contained portions of the two fractured cap screws. It was found that the two cap screws failed in fatigue under service stresses. The three bearing caps and the universal-joint spider broke in a brittle manner. The properties of the material in the cap screws did not fulfill the specifications. The modified 1035 steel was of insufficient alloy content. Also, the tensile strength and endurance limit were lower than specified and were inadequate for the application. The material for the cap screw was changed from modified 1035 steel to 5140 steel.
改进1035钢帽螺钉的疲劳断裂
在车辆测试期间,驱动线组装失败。在故障发生之前,车辆已经行驶了9022公里(5606英里)。对该总成的完整和断裂部件进行了分析,以确定失效的原因和顺序。目视检查显示,四个轴承盖中的三个、两个盖螺钉和一个万向节支架断裂。对三个断裂的轴承盖和支座的检查显示没有疲劳的迹象,但表明断裂是以脆性的方式发生的。未被破坏的轴承盖仍然包含两个断裂的轴承盖螺钉的部分。结果发现,在使用应力的作用下,两个盖螺钉因疲劳而失效。三个轴瓦盖和万向节铰断裂得很脆。盖螺钉材料的性能不符合规格。改性后的1035钢合金含量不足。此外,拉伸强度和耐久极限低于规定,不适合应用。盖螺杆的材料由改良的1035钢改为5140钢。
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