Power conditions of rolling in universal calibers of modern rail-beam mills

A. R. Fastykovskii, A. V. Dobryanskii, V. Dorofeev
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Abstract

Development of rolling stock, increase in the speed of transportation, load-bearing capacity of highways and their length requires constant improvement of the production technology for railway rails. Modern rail-beam mills have in their composition a continuously reversible group of stands, which includes universal stands. Rolling of rail profiles in universal calibers is radically different from rolling in two-roll calibers, and at the moment is not well studied, both theoretically and practically. The article defines the conditions for feasibility of the rolling process in universal calibers with a pair of non-drive rolls, taking into account the values of active (reserve friction forces) acting from the drive rolls and reactive forces from the non-drive rolls and roller fittings. The energy balance method solves the problem of determining the back-up force required for deformation in non-drive rolls. When solving the equation of equilibrium of forces in the deformation center formed by the drive rolls, the reserve of friction forces is defined, the magnitude of which largely determines the possibility of the rolling process. Theoretical dependences are obtained for estimating the power balance during rolling in universal calibers of modern rail-beam mills, taking into account the reserve of friction forces provided by the drive rolls and the support required for deformation in non-drive rolls. Information about the force conditions in a universal caliber is necessary to analyze the feasibility of the rolling process in it under various deformation modes and to clarify the drawing coefficients for elements of the resulting profile. Dependencies are proposed that allow estimating the consumption of the reserve of friction forces for the operation of roller fittings serviced by universal caliber. The well-known formula of A.I. Tselikov and A. I. Grishkov on the definition of broadening was clarified in relation to rolling in universal calibers with two non-drive rolls. The support from the non-drive rolls side effects the change in size of sole and head of the rail profiles.
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现代钢梁轧机通用口径轧制的动力条件
铁路车辆的发展,运输速度的提高,公路的承载能力和长度的增加,要求铁路钢轨的生产技术不断提高。现代钢轨梁轧机在其组成中有一个连续可逆的机架组,其中包括通用机架。通用型钢轨型材的轧制与双辊型钢轨型材的轧制有着根本的不同,目前在理论和实践上都没有得到很好的研究。考虑到驱动辊的主动(备用摩擦力)值和非驱动辊及辊件的反作用力值,确定了用一对非驱动辊轧制通用口径的可行性条件。能量平衡法解决了非驱动辊变形所需要的支承力的确定问题。在求解驱动辊形成的变形中心受力平衡方程时,定义了摩擦力的储备,其大小在很大程度上决定了轧制过程的可能性。考虑驱动辊提供的摩擦力储备和非驱动辊变形所需的支撑,得到了现代钢轨梁轧机通用口径轧制过程中动力平衡的理论依赖关系。为了分析通用口径在各种变形模式下轧制工艺的可行性,并阐明所得到的型材各要素的拉深系数,需要了解通用口径的受力情况。提出的依赖关系允许估计使用通用口径服务的滚子配件操作的摩擦力储备的消耗。在用两个非驱动辊轧制通用口径时,阐明了A.I. Tselikov和A.I. Grishkov关于加宽定义的著名公式。来自非驱动辊子的支持影响了鞋底和导轨轮廓头尺寸的变化。
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