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On the use of varying die angle for improving the resistance to hydrogen embrittlement of cold drawn prestressing steel wires

机译:关于使用不同的模具角来提高冷拔预应力钢丝的抗氢脆性

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Residual stresses produced by cold drawing are an undesirable effect of the non-uniform plastic strain distribution generated during the conforming process used for obtaining prestressing steel wires. Among the diverse parameters of the process influencing the residual stress generation, one of the most relevant is the geometry of the drawing die and, in particular, the inlet die angle. Wires drawn with die angles as low as possible will exhibit a lower and more homogeneous plastic strain state and, therefore, a smaller and more uniform residual stress state. Thus the hydrogen embrittlement (HE) susceptibility of such wires is also lower, thereby enlarging the life in service of these components. In this paper an innovative design of the drawing die is proposed using two consecutive angles (i.e., varying die angle) for reducing the residual stress and strain state in the cold drawn wires and, consequently, for improving the resistance to HE of prestressing steel wires. (C) 2014 Elsevier Ltd. All rights reserved.
机译:冷拉产生的残余应力是在用于获得预应力钢丝的整形过程中产生的不均匀塑性应变分布的不良影响。在影响残余应力产生的各种工艺参数中,最相关的参数之一是拉拔模具的几何形状,尤其是进口模具的角度。以最小的模角拉制的线将表现出较低且更均匀的塑性应变状态,因此,较小且更均匀的残余应力状态。因此,这种金属丝的氢脆性(HE)敏感性也较低,从而延长了这些部件的使用寿命。在本文中,提出了一种创新的拉拔模具设计,该方法使用两个连续的角度(即变化的模具角度)来减少冷拔钢丝中的残余应力和应变状态,从而提高预应力钢丝的耐高温性能。 (C)2014 Elsevier Ltd.保留所有权利。

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