Fatigue Fracture of a Rolling-Tool Mandrel Initiated at Cracks Formed by Machining of a Hole

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Abstract

The A2 tool steel mandrel, part of a rolling tool used for mechanically joining two tubes was fractured after making five rolled joints. A 6.4 mm diam hole was drilled by EDM through the square end of the hardened mandrel due to difficulty was experienced in withdrawing the tool. The fracture progressed into the threaded section and formed a pyramid-shape fragment after it was initiated at approximately 45 deg through the hole in the square end. An irregular zone of untempered martensite with cracks radiating from the surface of the hole (result of melting around hole) was revealed by metallographic examination. A microstructure of fine tempered martensite containing some carbide particles was exhibited by the core material away from the hole. Brittle fracture characteristics with beach marks were exhibited by the fracture surfaces which is characteristic of a torsional fatigue fracture. As a corrective measure, the hole through the square end of the mandrel was incorporated into the design of the tool and was drilled and reamed before heat treatment and specified hardness of the threaded portion and square end of the mandrel was reduced.
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滚具芯轴的疲劳断裂是由加工孔形成的裂纹引起的
A2工具钢芯轴是用于机械连接两根管子的滚动工具的一部分,在进行了五个滚动连接后发生断裂。由于拔刀困难,用电火花在硬化心轴的方端钻了一个6.4 mm直径的孔。裂缝进入螺纹段,并在方形端孔约45度处开始形成金字塔形碎片。金相分析发现,孔表面有不规则的未回火马氏体,并有裂纹(孔周围熔化的结果)。在远离孔的地方,芯材表现出含有一定碳化物颗粒的细回火马氏体组织。断口表面呈现带滩痕的脆性断裂特征,具有扭转疲劳断裂的特征。作为一种纠正措施,将穿过心轴方端孔纳入刀具设计,在热处理前进行钻孔和扩孔,降低了螺纹部分和心轴方端规定的硬度。
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