Increasing the Energy Efficiency of Sheet Bending Equipment

T. Haikova, S. Chernenko, E. Klimov, A. Chernysh, Mykhailo Burlyga
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Abstract

It is shown that energy saving and energy efficiency increase should be considered as one of the main sources of future economic growth. The equipment that is used for the manufacture of products in the press shops has powerful electric motors. They are the main consumers of electrical energy. Replacing powerful electric motors with low-power ones will lead to energy savings. Crank bending machines are mainly used in mass production press shops. This calculation method makes it possible to control the deformation force and decrease it to reduce the overall operation of the press and its energy consumption. This will allow the use of less powerful presses for bending. It is shown that deformation occurs in two stages of sequential loading of the workpiece, which leads to splitting up the deformation process and, thereby, to decreasing the required force compared to the initial one. Using these analytical dependences for calculating the geometric dimensions of the resulting rift, it is possible to simplify the structure and design of the deforming tool, create a method for calculating technological and design parameters. The minimum force of the buffer, which must be used in the first operation, can be calculated based on the condition of maintaining the straightness of the workpiece and overcoming the resistance forces.
提高板材弯曲设备的能效
研究表明,节能和提高能源效率应被视为未来经济增长的主要来源之一。在冲压车间中用于生产产品的设备有强大的电动机。他们是电能的主要消费者。用低功率电动机代替大功率电动机将节省能源。曲柄折弯机主要用于大批量生产的冲压车间。这种计算方法使控制变形力和减小变形力成为可能,从而降低压力机的整体运行和能耗。这将允许使用功率较小的压力机进行弯曲。结果表明,变形发生在工件顺序加载的两个阶段,这导致了变形过程的分裂,从而使所需的力比初始阶段减少。利用这些分析相关性来计算产生的裂缝的几何尺寸,可以简化变形工具的结构和设计,创建计算工艺和设计参数的方法。根据保持工件直线度和克服阻力的条件,可以计算出第一次操作时必须使用的缓冲器的最小力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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