EVALUATION OF DEFORMABILITY OF MATERIAL DURING PLANTING OF ELEMENTS OF PREPARATIONS BY ROLLING STAMPING METHOD

V. Matviychuk, V. Mikhalevich, M. Kolisnyk
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引用次数: 2

Abstract

The article presents the results of development and research of technological schemes of planting flanges on tubular (ring) workpieces by stamping by rolling cylindrical and conical rolls. It is shown that the achievement of significant dimensions of the various elements of the workpiece is possible by providing a directed flow of metal by changing the relative position of the roll and the workpiece. Planting of external flanges is one of the most effective operations of stamping by rolling, as it allows you to form a wide range of products with advanced geometric elements. To assess the technological capabilities of the flange landing operation, the most dangerous from the destruction positions of the workpiece zone was identified and the analysis of the stress-strain state of the material using the method of grids, hardness measurement and microstructural analysis. According to the results of the research, the ways of deformation of the particles of the material of the peripheral surface of the flange in the coordinates "intensity of deformations - an indicator of the stress state" are schematically constructed. These deformation paths are given against the background of curves of ultimate deformations of steels, which are built on the results of uniaxial compression and torsion of cylindrical specimens and using tested approximations. A mathematical model of deformation trajectories is constructed, for which a one-parameter function is taken as a basis, which is "glued" from the elementary function of the sine and tangent to it at some point in the line. To determine the used plasticity resource, a damage summation model with a power approximation of the damage function was adopted. As a result, we have for the first time described the general expression of the linear damage summation model for the case of the parametric deformation path problem. The graphical representation on the constructed model of accumulation of damages in material of a dangerous zone of a flange at landing by a method of SHO is resulted. Based on the constructed model, it is possible to model the accumulation of damage by changing the values of the model parameters for different materials and deformation paths, which, in turn, depend on the relative geometric parameters of the workpiece and its location relative to the rolling roll.
用滚压冲压法加工零件时材料变形性能的评定
本文介绍了圆柱辊和圆锥辊冲压管(环)件加法兰工艺方案的开发研究成果。结果表明,通过改变轧辊和工件的相对位置来提供金属的定向流动,可以实现工件各元素的显著尺寸。外法兰的种植是滚压冲压最有效的操作之一,因为它可以让您形成各种先进的几何元素的产品。为了评估法兰着陆作业的技术能力,从工件区域的最危险破坏位置进行识别,并采用网格法、硬度测量和显微组织分析等方法对材料的应力-应变状态进行分析。根据研究结果,在“变形强度-应力状态指标”坐标下,构造了法兰周边表面材料颗粒的变形方式。这些变形路径是在钢的极限变形曲线的背景下给出的,这些曲线是基于圆柱形试样的单轴压缩和扭转结果并使用测试近似建立的。构造了一种变形轨迹的数学模型,该模型以单参数函数为基,将其与直线上某点的正弦和正切初等函数“粘”在一起。为了确定所使用的塑性资源,采用了损伤函数幂次逼近的损伤求和模型。本文首次给出了参数变形路径问题的线性损伤求和模型的一般表达式。给出了用SHO法建立的着陆翼缘危险区域材料损伤累积模型的图形表示。基于所构建的模型,可以通过改变不同材料和变形路径的模型参数值来模拟损伤的累积,而变形路径又取决于工件的相对几何参数及其相对于轧制辊的位置。
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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