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Working range of roll pass sequences in wire rod rolling with interstand tensions

机译:机架间轧制的轧制道次顺序的工作范围

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In the high speed rolling of wire rod in blocks, interstand tensions are utilised in order to keep the process stable. However, interstand tensions influence the rolling process, and especially the spread and forward slip, which are dependent of tensions between the stands. By the influence on spread, the tolerances of the rolled product depend on the tensions and usually the interstand tensions are kept as low as possible in order to obtain required tolerances. A narrow spread technology is used to utilise interstand tensions in order to increase the working range of a pass sequence and move the product range towards smaller sizes. By adapting a certain amount of interstand tensions, smaller sizes can be rolled by a given roll pass schedule. A practical problem in this method is the fixed gearings in the common blocks, which require a certain and given level of interstand tensions and corresponding reductions. In the latest generation of blocks, where the stands are arranged in units, two by two, with each unit driven by a dedicated electrical motor, it is possible to introduce 'inter unit' tensions, and by this method extend the working range of the pass sequence. A special computer program for analysis of interstand tensions has been developed by combining a program TENSION, developed at the Royal Institute of Technology in Stockholm, dealing with the basic principles of rolling with interstand tensions, with the recently published program WORKRAN, which analyses the working range of any roll pass sequence built up by common two-symmetrical grooves. From the analysis and experimental data it is shown that interstand tensions at the level of 10 percent of the yield stress of the material increase the working range in a six stand block by 2 percent and reduce the lower limit of the exit section area by about 15 percent. Higher tension levels have a larger effect both on the extension of the working range and on the reduction of the minimum exit area but it becomes more difficult to control th,e tolerances at higher tension levels. The influence of interstand tensions on the reduction and on the working range of the pass sequence is mainly obtained by the influence on the round passes, while the oval passes have a counteracting effect on the influence of interstand tensions.
机译:在成块的高速轧制线材中,利用机架间张力来保持过程的稳定。但是,机架间的张力会影响轧制过程,尤其是展宽和前滑,这取决于机架之间的张力。由于对铺展的影响,轧制产品的公差取决于拉力,通常机架间的拉力保持尽可能低,以获得所需的公差。窄幅展布技术用于利用机架间的张力,以增加通过顺序的工作范围,并将产品范围移至较小的尺寸。通过调整一定的机架间张力,可以通过给定的轧制通过计划来轧制较小尺寸的轧辊。该方法中的一个实际问题是在公共块中的固定齿轮,这需要一定和给定水平的机架间张力以及相应的减小量。在最新一代的砌块中,将机架两两地布置,每个单元由专用电动机驱动,这可能会引入“单元间”张力,并通过这种方法扩展了工作范围。通过顺序。通过结合斯德哥尔摩皇家理工学院开发的TENSION程序,开发了一种用于处理机架间张力的特殊计算机程序,该程序处理机架间张力的滚动基本原理,并结合了最近发布的程序WORKRAN,该程序对工作进行了分析。由常见的两个对称凹槽构成的任何滚动通过序列的范围。从分析和实验数据可以看出,机架间张力在材料屈服应力的10%处增加了六个机架中的工作范围2%,并使出口截面面积的下限减小了约15%。百分。较高的张力水平对工作范围的扩大和最小出口面积的减小都有较大的影响,但是在较高的张力水平下控制公差变得更加困难。机架间张力对通行次序的减小和作用范围的影响主要是通过对圆形通行的影响而获得的,而椭圆形通行对机架间张力的影响有抵消作用。

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