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首页> 外文期刊>Journal of Materials Science >Origin and mechanism of torsion fracture in cold-drawn pearlitic steel wires
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Origin and mechanism of torsion fracture in cold-drawn pearlitic steel wires

机译:冷拔珠光体钢丝扭转断裂的起源及机理

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摘要

The structural and mechanical factors that control the torsion fracture behavior of cold-drawn eutectoid steel wires are examined. Two types of the fracture are identified; namely, flat- and cleavage-type. Torsion cracks are found to initiate in ferrite and propagate along the ferrite/cementite interface. The shear stress distribution within the wires is affected not only by the applied torque, but also by the residual stress. The maximum shear stress occurs halfway from center to the surface, where the cracks initiated. The growth of torsion cracks is sensitive to the orientation of cementite lamellas in pearlite grains. The influence of thermal history on the occurrence of cleavage fracture is ascertained, with the assistance of atom probe. It shows that the cleavage fracture results from a decrease in dislocation mobility, caused by thermally activated diffusion of carbon atoms into ferrite.
机译:研究了控制冷拔共析钢丝的扭转断裂行为的结构和机械因素。确定了两种类型的骨折:即扁平型和分裂型。发现扭转裂纹在铁素体中产生,并沿着铁素体/渗碳体界面传播。导线内的剪切应力分布不仅受到施加的扭矩的影响,还受到残余应力的影响。最大剪切应力发生在从中心到裂纹开始处的表面的一半。扭转裂纹的增长对珠光体晶粒中渗碳体薄片的取向很敏感。在原子探针的帮助下,确定了热历史对断裂断裂的影响。结果表明,断裂断裂是由于位错迁移率降低而引起的,该位错迁移率是由碳原子热活化扩散到铁素体中引起的。

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