Fatigue Fracture of a 1040 Steel Coil Hook

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Abstract

A 10,890-kg coil hook torch cut from 1040 steel plate failed while lifting a load of 13,600 kg after eight years of service. The normal ironing (wear) marks were exhibited by the inner surface of the hook. It was revealed by visual examination that cracking had originated at the inside radius of the hook. Beach marks (typical of fatigue fracture) were found extending over approximately 20% of the fracture surface. Numerous cracks were revealed by macroscopic examination of the torch-cut surfaces. It was revealed by macrograph of an etched specimen that the cracks had initiated in a hardened martensitic zone at the torch-cut surface and had extended up to the coarse pearlite structure beneath the martensitic zone. The fatigue fracture was concluded to have initiated in the brittle martensitic surface while failure was contributed by the 25% overload. As a corrective measure, the coil hooks were flame cut from ASTM A242 fine-grain steel plate, ground to remove the material damaged by flame cutting and stress relieved at 620 deg C.
1040钢卷钩的疲劳断裂
一个从1040钢板上切割下来的10890公斤的线圈钩炬在吊起13600公斤的负载时发生故障,经过8年的使用。钩的内表面显示出正常的熨烫(磨损)痕迹。目视检查发现,裂纹起源于钩的内侧半径。发现海滩痕迹(典型的疲劳断裂)延伸到约20%的断口表面。通过对火炬切割表面的宏观检查,发现了大量的裂纹。刻蚀试样的宏观图显示,裂纹起源于火炬切割表面的硬化马氏体区,并扩展到马氏体区下方的粗珠光体组织。疲劳断裂主要发生在脆性马氏体表面,而25%的过载导致了疲劳断裂。作为一项纠正措施,线圈钩从ASTM A242细晶粒钢板上火焰切割,研磨以去除火焰切割损坏的材料,并在620℃下解除应力。
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