初始间隙分布扰动小时相似形状体的接触相互作用

A. Grabovskiy, M. Tkachuk, Olga Kokhanovska, M. Tkachuk, N. Domina, Ganna Tkachuk, M. Saverska, S. Kutsenko, I. Klochkov, I. Voloshina, V. Tretyak
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引用次数: 0

摘要

本文在前人研究的基础上,建立了相似形状物体的接触相互作用模型。考虑了“冲压材料-基体”系统中的接触。在待冲压材料和基体之间设置一个间隙,该间隙在圆坐标中变化。确定了接触压力和接触面积随初始间隙分布规律的变化规律。还确定了负载水平对这些参数的影响。特别分析了圆方向初始间隙分布中的波数对接触面积和接触压力分布性质的影响。结果表明,在低载荷水平下,接触压力沿圆坐标分布具有明显的非均匀性。在将来,随着负载水平的增加,这种不均匀性会减少。接触压力的分布趋向于与基体表面和待冲压材料表面名义上重合的情况,即在零间隙处接触。因此,本文提出了一种具有低初始间隙分布摄动的密形体接触相互作用的解析-数值方法。并以冲压设备元件为例,建立了结构参数和工艺参数对接触相互作用的影响规律。关键词:接触交互作用;应力-应变状态;邮票元素;接触面积;接触压力
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CONTACT INTERACTION OF SIMILAR SHAPE BODIES AT SMALL DISTURBANCE OF INITIAL GAP DISTRIBUTION
In this work, on the development of previous research, a model of contact interaction of similar shape bodies is built. Contact in the system "punch - stamped material - matrix" is considered. A gap is set between the material to be stamped and the matrix, which varies in circular coordinate. The regularities of the change of contact pressure and contact areas with variation of the law of distribution of the initial gap are determined. The influence of the load level on these parameters is also determined. In particular, the analysis of the influence of the number of waves in the distribution of the initial gap in the circular direction on the nature of the distribution of contact areas and contact pressure. It is established that at low level of loads significant non-uniformity of the contact pressure distribution along the circular coordinate is realized. In the future, with increasing load levels, this unevenness decreases. The distribution of contact pressure tends to the case of contact with nominally coincident surfaces of the matrix and the material to be stamped, i.e. at zero gap. Thus, an analytical-numerical method for studying the contact interaction of closely shaped bodies with low perturbation of the initial gap distribution has been developed. Regularities of influence of constructive and technological parameters on contact interaction of these bodies on an example of elements of stamp equipment are also established. Keywords: contact interaction; stress-strain state; elements of stamps; contact area; contact pressure
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