DEVELOPMENT OF THE PROCESS OF STAMPING BY ROLLING OF TUBULAR PREPARATIONS USING INDUCTION HEATING

V. Matviychuk, V. Savkiv, Maksym Bohatiuk
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Abstract

Methods of pressure treatment of metals based on the action of technological load in the conditions of a localized plastic cell. The main purpose of such methods is that the change in shape at any time is performed only on a fraction of the volume of the workpiece and when moving the deformation center covers the entire volume. These are well-studied and widely used in the production of free forging, rotary forging, rolling, etc. A relatively new method of MP - stamping by rolling, is characterized by a number of positive effects: - reduction of deformation force in comparison with traditional methods in 5-30 times; - the possibility of processing metal in the cold state with the same technological effort as in hot processing; - the equipment corresponds to a high level of labor safety; - reducing the size, weight and cost of equipment; - the possibility of implementing various technological operations. Modern mechanical engineering, instrument making and other metalworking industries widely use and manufacture parts with a large ratio of cross-sectional dimensions, the production of which by existing methods of metal forming is either inefficient or impossible. The most technological are the processes of SHO, in which the workpiece has a tubular or annular shape. Such blanks are well amenable to induction heating, which while providing a high frequency electromagnetic field allows them to be heated quickly and efficiently. This can heat a limited amount of workpiece material. Thus, the use of induction heating in the processes of SHO significantly expands their technological capabilities, which determines the relevance of the chosen topic. The main advantages of induction heating include: transmission of electrical energy does not require contact devices, is carried out directly into the workpiece, which increases the heating rate; due to the possibility of controlling the frequency of the current, the maximum power is released in the limited thickness of the surface layer of the product, which is especially effective when heating the pipe blanks; induction heating can increase productivity and improve working conditions.
采用感应加热轧制管状制品冲压工艺的开发
在局部塑性单元条件下,基于工艺载荷作用的金属压力处理方法。这种方法的主要目的是,任何时候的形状变化只在工件体积的一小部分上进行,当移动变形中心覆盖整个体积时。这些都得到了很好的研究,并广泛应用于自由锻造、旋转锻造、轧制等生产中。一种相对较新的MP冲压方法——轧制冲压,具有许多积极的效果:与传统方法相比,变形力减少了5-30倍;在冷状态下加工金属的可能性与热加工相同的技术努力;设备符合高度的劳动安全;设备的重量和成本;-实施各种技术操作的可能性。现代机械工程、仪器制造和其他金属加工行业广泛使用和制造具有大截面尺寸比的零件,用现有的金属成形方法生产这些零件要么效率低下,要么不可能。最具技术性的是SHO工艺,其中工件具有管状或环状形状。这种毛坯很适合感应加热,感应加热在提供高频电磁场的同时,使它们能够快速有效地加热。这可以加热有限数量的工件材料。因此,在SHO的过程中使用感应加热显着扩展了他们的技术能力,这决定了所选主题的相关性。感应加热的主要优点包括:电能的传递不需要接触装置,直接向工件内进行,从而增加了加热速度;由于可以控制电流的频率,在产品表层的有限厚度内释放出最大功率,在加热管坯时特别有效;感应加热可以提高生产率,改善工作条件。
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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