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The Possibility of Manufacturing Long-Length Metal Products with Ultra-Fine Grain Structure by Combination of Strain Effects

机译:通过应变效应的组合制造具有超细晶粒结构的长度金属制品的可能性

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It is shown that combination of strain effects leads to possessing the ultra-fine grain structure in carbon wire. The continuous method of wire deformation nanostructuring was developed on the basis of simultaneous applying of tension deformation by drawing, bending deformation when going through the system of rolls and torsional deformation on a continuously moving wire. One of the main advantages of the developed method is that various hardware devices and tools already applied for steel wire production can be used to implement this method thus simplifying its introduction to the current industrial equipment. The efficiency estimation of the developed continuous method of deformation nanostructuring was carried out using carbon wire with different carbon content. It is shown that the mechanical properties of the wire after combination of different kinds of strain can vary over a wide range. This method makes it possible to choose such modes of strain effect, which can provide the necessary combination of strength and ductile properties of carbon wire depending on its further processing modes and application.
机译:结果表明,应变效应的组合导致具有碳线中的超细晶粒结构。基于通过绘制的辊子和扭转变形在连续移动的线上的卷材变形时同时施加张力变形,开发了线变形纳米结构的连续方法。开发方法的主要优点之一是已经应用于钢丝生产的各种硬件设备和工具可用于实现该方法,从而简化其对当前工业设备的引入。使用具有不同碳含量的碳丝进行变形纳米结构发育连续方法的效率估计。结果表明,不同种类应变组合后的电线的机械性能可以在很宽的范围内变化。该方法使得可以选择这种应变效应模式,这可以根据其进一步的处理模式和应用提供碳钢线的强度和延展性性能的必要组合。

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