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Asperity deformation, lubricant trapping and iron fines formation mechanism in cold rolling processes

机译:冷轧过程中的粗糙变形,润滑剂滞​​留和铁屑形成机理

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摘要

Contact conditions in cold rolling are decisive to improve quality and final aspect of rolled strip. The control of contact conditions is obtained by a good combination of process parameters, such as normal and tensile force, forward slip and lubrication regime. To understand and to optimise contact at roll-strip interface, a simulation test was developed in our laboratory. The upsetting rolling test (URT) permits reproduction of the main contact conditions for cold rolling. The URT is able to simulate and to define the influence of rolling parameters on the iron residue quantities, and on the quality of the final surface. In accordance with finite element simulations, we can estimate a mean Coulomb's friction coefficient. A very good correlation was found between experimental and numerical results. A complementary finite element model has been developed to predict the local behaviour of surface asperities during cold rolling. In this simulation at local scale, the roughness and trapping of lubricant are introduced, in addition to the pressure force and forward slip. It has been found that forward slip and reduction ratio modify the plastic strain behaviour of asperity through pressure and shear force. Thus, we are able to define the quantity of iron residues, as a function of the local plastic strain and the plastic energy solutions.
机译:冷轧中的接触条件对于提高轧制带材的质量和最终外观至关重要。接触条件的控制是通过将工艺参数(例如法向力和拉伸力,前滑和润滑方式)的良好组合来实现的。为了了解并优化滚动条界面上的接触,在我们的实验室中开发了一个模拟测试。 setting粗轧制测试(URT)允许复制冷轧的主要接触条件。 URT能够模拟和定义轧制参数对铁渣量和最终表面质量的影响。根据有限元模拟,我们可以估计平均库仑摩擦系数。实验和数值结果之间发现了很好的相关性。已经开发了互补的有限元模型来预测冷轧过程中表面粗糙的局部行为。在局部模拟中,除了压力和前滑之外,还引入了润滑剂的粗糙性和截留性。已经发现,前滑和减速比通过压力和剪切力改变了粗糙的塑性应变行为。因此,我们能够根据局部塑性应变和塑性能解来定义铁残留量。

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