Improvement of the comprehensive automation control system for dynamic processes of hot deformation processing on thermoelastic presses

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Abstract

The researches results of the automated control system improvement for a thermoelastic press in the implementation of the processes of isothermal deformation and metallic materials stamping in a state of superplasticity are considered. It is established that the deviation from the optimal temperature-speed deformation regimes leads to the defect formation in the article body in the form of sinks, clamps, oxide films drawn into the article from the surface of the semi-finished product. These defects are stress concentrators that can lead to the destruction of loaded parts. The main problem that prevents the active industrial use of automated control systems for considered equipment is determined — their inertia. Measures to eliminate the inertia of the automated control system for thermocompression plants are proposed. It is shown that the main and most effective method for solving this problem is the use of digital extropolation algorithms for short-term prediction of the measuring and control system behavior. The improved automated control system has been successfully tested at stamping of finned aircraft panels and shells made from aluminum alloys D16, V95, V96ts, 01420. The system provided control of the temperature and speed parameters for metal materials stamping in the state of superplasticity and under isothermal stamping conditions with a heating accuracy of 2... 4 °С and the accuracy of the speed parameter compliance (deformation rate) up to 0.1 mm/s. Keywords isothermal forging, thermal compression, thermal expansion, defects, automated control system, system inertia
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热弹性压力机热变形动态过程综合自动化控制系统的改进
考虑了热弹性压力机在实现等温变形和金属材料超塑性冲压过程中自动控制系统改进的研究结果。确定了偏离最佳温度-速度变形制度导致缺陷在物品主体中以下沉,夹钳,从半成品表面拉入物品的氧化膜的形式形成。这些缺陷是应力集中点,可导致加载部件的破坏。阻碍工业上对所考虑的设备使用自动控制系统的主要问题是确定的——它们的惯性。提出了消除热压装置自动控制系统惯性的措施。研究表明,解决这一问题的主要和最有效的方法是使用数字外推算法对测控系统行为进行短期预测。改进后的自动化控制系统已成功用于D16、V95、V96ts、01420铝合金制造的飞机翅片板和壳体的冲压试验。该系统为金属材料在超塑性状态和等温冲压条件下的冲压提供了温度和速度参数的控制,加热精度为2…4°С和精度的速度参数顺应性(变形率)可达0.1 mm/s。关键词:等温锻造,热压缩,热膨胀,缺陷,自动化控制系统,系统惯性
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