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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications >Experimental and numerical analysis of the deformation in mild steel wire during dieless drawing
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Experimental and numerical analysis of the deformation in mild steel wire during dieless drawing

机译:无模拉拔低碳钢丝变形的实验与数值分析

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摘要

Dieless wire drawing is the process of causing a reduction in a wire diameter without the use of conventional wire drawing dies. The wire, axially loaded with a force, is heated to an elevated temperature to initiate plastic deformation. The mechanics of this novel drawing process and a theoretical analysis of the deformation are discussed in this paper. The results of an experimental drawing programme carried out with mild steel wire at temperatures between 400 and 900°C are also presented. Mathematical models were developed and used to describe and predict the process deformation and both the stress and temperature distribution profile along the workpiece. A machine was designed and manufactured to facilitate an experimental programme of dieless drawing. The machine permitted continuous drawing of wire, while the reduction ratio, drawing load and temperature were automatically controlled using a personal computer. A finite element (FE) model of the wire was developed, and the results obtained from the FE analysis show good agreement with those obtained from both the experimental work and the mathematical modelling. Results obtained confirm that a complicated interdependence of the process parameters exists during the dieless drawing process.
机译:无模拉丝是在不使用常规拉丝模的情况下减小线直径的过程。轴向受力的金属丝被加热到高温以引发塑性变形。本文讨论了这种新颖的拉伸过程的力学原理以及变形的理论分析。还介绍了使用低碳钢线在400至900°C之间进行的实验绘图程序的结果。开发了数学模型,并将其用于描述和预测过程变形以及沿工件的应力和温度分布曲线。设计并制造了一台机器,以促进无模拉伸的实验程序。该机器允许连续拉丝,而缩径比,拉丝负荷和温度由个人计算机自动控制。建立了线的有限元模型,从有限元分析中获得的结果与从实验工作和数学建模中获得的结果显示出良好的一致性。获得的结果证实,在无模拉伸过程中存在工艺参数的复杂相互依存关系。

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