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Analysis of forming properties during the isothermal upsetting of cylindrical workpieces in the viscous-plasticity mode

机译:粘性塑性模式中圆柱形工件等温镦释期间的形成性能分析

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In the manufacturing of axisymmetric parts made of high-strength alloys, slow hot deformation is widely used, which makes it possible to increase significantly the plasticity properties of the material and to reduce the deformation force, as well as to achieve greater deformation. However, currently there are few studies discussing the issues of high-strength materials formation theory. This article considers the isothermal upsetting of cylindrical workpieces made of hard-to-deform alloys in the viscous-plasticity mode. The article introduces isothermal upsetting models regarding the short-term creep mode. The article reveals the influence of technological parameters and friction conditions existing on the contact surfaces of the working tool and workpiece on the material flow kinematics, stressed and deformed states, and the force conditions. The results obtained during their development can be used to create design methods for innovative, science-intensive, competitive technological processes of next generation for manufacturing axisymmetric geometrically-complex parts by means of isothermal deformation methods.
机译:在由高强度合金制造的轴对称部件的制造中,广泛使用缓慢的热变形,这使得可以显着增加材料的可塑性和减小变形力,以及实现更大的变形。然而,目前有很少的研究讨论了高强度材料形成理论的问题。本文认为,在粘性可塑性模式下由硬质变形合金制成的圆柱形工件的等温镦锻。本文介绍了关于短期蠕变模式的等温镦粗模型。本文揭示了技术参数和摩擦条件在材料流动运动学,压力和变形状态的工具和工件上存在的摩擦条件的影响,以及力条件。在其开发期间获得的结果可用于通过等温变形方法制造用于制造轴对称几何复杂部件的下一代的创新,科学密集型,竞争技术过程的设计方法。

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