Yu. N. Loginov, A. G. Illarionov, F. V. Vodolazskiy, A. Yu. Postyliakov, M. S. Karabanalov, A. A. Posokhin
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引用次数: 0
摘要
本文介绍了钛合金 Ti-3Al-2.5V 在挤压管坯初始阶段的行为建模结果。文章讨论了工具和管坯表面之间的间隙对其形状变化性质和应变状态的影响。特别是,确定了最大(按模量)应变张量值中变形最大的管坯部分。计算了 Ti-3Al-2.5V 合金管挤出力与压力垫行程的关系。最大力和稳态阶段力的计算结果与工业实验所获得的数据十分吻合。水平挤压导致变形场相对于挤压轴线的位置不对称。因此,挤压管的性能分布也不对称,这一点通过硬度测量得到了实验证实。考虑到压制过程,关于钛合金 Ti-3Al-2.5V 热压管壁厚应变分布异质性的模拟数据与管材半成品的显微和 X 射线结构研究结果之间建立了对应关系。
Initial stage of titanium alloy tube billet extrusion: simulation and experiment
This article presents the results of the modeling of the behavior of the titanium alloy Ti-3Al‑2.5V at the initial stage of extrusion of a tube billet. The influence of the gaps between the surfaces of the tool and the billet on the nature of its shape change and the strain state is discussed. In particular, the most deformed tube parts of the maximum (by modulus) strain tensor values are identified. The dependence of the Ti-3Al‑2.5V alloy tube extrusion force on the stroke of the pressure pad is calculated. The results of the calculation of the maximum forces and the forces at the steady-state stage are in good agreement with the data obtained under an industrial experiment. Horizontal extrusion leads to an asymmetry in the location of the deformation fields relative to the extrusion axis. Accordingly, an asymmetric distribution of properties arises in the extruded tube, which is experimentally confirmed using hardness measurements. Correspondence is established between the simulation data on the heterogeneity of the strain distribution over the wall thickness of the hot-pressed tube made of titanium alloy Ti-3Al‑2.5V, considering the pressing-out, with the results of micro- and X‑ray structural studies of the tube semifinished product obtained.
期刊介绍:
Metallurgist is the leading Russian journal in metallurgy. Publication started in 1956.
Basic topics covered include:
State of the art and development of enterprises in ferrous and nonferrous metallurgy and mining;
Metallurgy of ferrous, nonferrous, rare, and precious metals; Metallurgical equipment;
Automation and control;
Protection of labor;
Protection of the environment;
Resources and energy saving;
Quality and certification;
History of metallurgy;
Inventions (patents).