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The Theoretical And Experimental Research On The Forward Slipcoefficient In Rail Universal Rolling

机译:铁路万能轧制中前滑系数的理论和实验研究

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In rail universal rolling, the forward slip coefficient is one of the most important parameters. For simplifying the analytic model, the vertical roll with box pass has been simplified as an equivalent flat roll firstly. Then the equation of neutral line and the area of forward slip zone on the flank of horizontal roll have been derived. Furthermore, the horizontal resultant force acting on the rolled workpiece has been obtained and the forward slip coefficient of rail universal rolling has been proposed. For verifying the theoretical model, the universal rolling process of 60kg/m heavy rail and 18kg/m light rail have been simulated by the Rigid-Plastic FEM software DEFORM-3D V5.0, and the universal rolling experiments of 18kg/m light rail has been accomplished in the Yanshan University Rolling Laboratory. Moreover, the theoretical results and numerical simulation results of forward slip coefficient are in agreement with the experimental data basically. So, this theoretical model can be applied in rail universal rolling.
机译:在铁路万能轧制中,前滑系数是最重要的参数之一。为了简化分析模型,首先将带盒通过的垂直辊简化为等效的平辊。然后推导了中性线方程和水平轧辊侧面的前滑区面积。此外,已经获得了作用在轧制工件上的水平合力,并提出了铁路万能轧制的前滑系数。为了验证该理论模型,通过Rigid-Plastic FEM软件DEFORM-3D V5.0对60kg / m重轨和18kg / m轻轨的通用轧制过程进行了仿真,并进行了18kg / m轻轨的通用轧制实验。已在燕山大学滚动实验室完成。此外,前滑系数的理论结果和数值模拟结果与实验数据基本吻合。因此,该理论模型可以应用于铁路万能轧制。

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