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Finite element modeling of shear strain in rolling with velocity asymmetry in multi-roll calibers

机译:多辊裂解速度不对称轧制剪切应变的有限元建模

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Severe plastic deformation is now recognized the most efficient way of producing ultrafine grained metals and alloys. At the present time a lot of severe plastic deformation methods have been proposed and developed. They differ in the deformation schemes. Unlike such severe plastic deformation methods as high pressure torsion and equal- channel angular pressing, rolling with the velocity asymmetry is a continuous process. It helps to solve the problem of the limited length of manufactured bars with semi ultrafine structure. Rolling process with roll velocity asymmetry generates high shear strain necessary for obtaining ultrafine structures of the processed material. A new process of asymmetric rolling of profiles in multi-roll passes has been developed. This process can be used for production of high-strength profiles such as circles, hexagons, wire rods, etc. Compression of the bar in multi-roll passes can be done not only from two, as usual, but from three or four sides. In case of a multi-crimped bar, a uniform compression scheme with large hydrostatic pressure is created in the deformation zone. It enhances the ductility of the material and allows increasing the strain intensity. Simulation in DEFORM 3D? proved that the process of asymmetric rolling in multi-roll calibers allows to obtain higher values of shear strain and strain effective.
机译:现在,严重的塑性变形现在认识到生产超细粒化金属和合金的最有效方式。目前已经提出了许多严重的塑性变形方法和开发。它们在变形方案中不同。与这种严苛的塑性变形方法不同,作为高压扭转和等气角压,滚动速度不对称是连续的方法。它有助于解决具有半超细结构的制造棒的有限长度的问题。具有辊速不对称的轧制过程产生高剪切应变,以获得加工材料的超细结构。已经开发出多辊通道中不对称型材的新方法。该过程可用于生产高强度轮廓,如圆圈,六边形,线材等。多辊通过的杆的压缩不仅可以从两个,而不是三个或四个侧面进行。在多卷曲棒的情况下,在变形区中产生具有大静静压压力的均匀压缩方案。它增强了材料的延展性并允许增加应变强度。 Deform 3D模拟?事实证明,多辊光纤中不对称轧制过程允许获得更高的剪切应变值和应变有效。

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