Development of a computational software in Python, used to study the materials resistance in beams
In this research, we do a software writing in Python to calculate the efforts, bending moments and deformations in beams of different materials. This computational tool, that we developed, is of great help in area of computational physical, more exactly in resistance of materials, which serves as su...
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Zusammenfassung: | In this research, we do a software writing in Python to calculate the
efforts, bending moments and deformations in beams of different materials. This
computational tool, that we developed, is of great help in area of
computational physical, more exactly in resistance of materials, which serves
as support for researchers and teachers especially in physics and civil
engineering, of the part of statics, who wish to carry out the modeling of the
functions, involved in the calculation of resistance in beams in a practical
and simple way, using the software presented in this article. In order to carry
out this software, we are going to use the following methods: the
double-integration method and the conjugate-beam method, which will serve as
the basis of calculation to find the mathematical expressions involved in the
analysis of resistance in beams, then we will perform the implementation of the
aforementioned methods, using Python as the programming language. As a final
step in this project, the graphical interface of said calculation tool will be
made using the Python 3.0 Tkinter library. In this work, we show the results of
the graphs of the stress profiles, bending moments and deformations, for the
case of different types of beams, load and force distributions applied to them.
Where we were also able to conclude that a calculation software was
successfully built, dedicated to the analysis of efforts and deformations in
beams made of different materials. |
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DOI: | 10.48550/arxiv.2009.09448 |