Calculation of stress-strain state of stamp rigging elements
DOI:
https://doi.org/10.15587/1729-4061.2013.19423Keywords:
stress-strain state, stamp, contact interaction, stamp rigging element, technological systemAbstract
The approach to the study of the stress-strained state of stamp rigging elements, taking into account the contact interaction is proposed in the paper. For this purpose, the integrated mathematical model was proposed, differing by the new approach: to determine the stress-strain state, instead of the traditional single-level mathematical model, the integrated multi-level mathematical model is used, taking into account the contact interaction of punches, matrixes and punch-matrixes, blanks and base plates of stamps.
The first-level model is the most effective in terms of assessment of SSS (stress-strain state) of cutting elements of SD (shearing die). Each element of the technological system in it is considered separately from the others, and the interaction forces are known from previous experimental, analytical and numerical studies.
The second-level model considers the contact interaction of elements of stamps with the blank, but only up to the stage of plastic deformation of the stamped material.
The entire interaction process up to the modeling of the division of stamped material is investigated using the third-level mathematical model.
Undoubted advantage of the models of the second and third levels is the ability to determine the contact zones and contact forces, arising between the elements of stamps and blank.
The developed integrated mathematical model is realized in the form of the set of models using the method of finite elements, which allow to conduct a great number of multivariate studies of the stress-strained state of the shearing dies in the automated mode. This makes them valuable for carrying out scientific researches and practical calculations.
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