论文标题

在Python中开发计算软件,用于研究梁中的材料电阻

Development of a computational software in Python, used to study the materials resistance in beams

论文作者

S, Julian A Rivera, L, Alex F Estupiñán

论文摘要

在这项研究中,我们在Python上进行软件写作,以计算不同材料光束中的努力,弯曲时刻和变形。我们开发的这种计算工具在计算物理领域具有很大的帮助,更准确地具有材料的抗性,这是对研究人员和教师的支持,尤其是在物理和土木工程领域的静电量,他们希望在本文中使用的软件,涉及在实用和简单的方式中进行光束的抗药性来实现功能的建模。为了执行此软件,我们将使用以下方法:双整合方法和偶联梁方法,该方法将作为计算的基础,以找到梁中电阻分析所涉及的数学表达式,然后我们将使用Python作为程序语言执行上述方法的实现。作为该项目的最后一步,将使用Python 3.0 TKinter库制作上述计算工具的图形接口。在这项工作中,我们显示了应力曲线,弯曲矩和变形的图表的结果,即施加到它们上的不同类型的梁,载荷和力分布的情况下。在我们还可以得出结论的情况下,成功构建了计算软件,专门用于分析由不同材料制成的梁的努力和变形。

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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