Determination of Resultant Forces for 2D Hyperstatic Frames using Android-Based Frame Design Application and Finite Element Analysis

S. A. R. S. Hasibuan, H. Prayuda
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Abstract

The slope deflection method assumes all joints are considered rigid, which means the angle does not change under any loads. This ensures that compatibility and deflection are neglected due to shear and axial stress. The numerical determination of forces and deformation in structures through applying the slope deflection method necessitates a relatively extended computational time and demands high-precision results. An effective tool can efficiently and precisely determine internal forces and structural deformations. This study utilizes the Frame Design Application version 5177, initially released on 24 June 2012 and has since been updated as of 2 February 2022, an Android-based application. Utilizing the Frame Design Application facilitates the expeditious and precise determination of internal forces and structural deformations. It is a valuable tool for professionals in civil engineering, mechanical engineering, and architecture, as well as students seeking to build 2D hyperstatic frames through Finite Element Analysis (FEA). The primary objective of this paper is to evaluate the precision of the Frame Design Application to determine its suitability for educational purposes. This paper will also evaluate the precision of the analysis outcomes by manual calculations and the utilization of SAP2000 Software. The provided analysis results exhibit negligible disparities. The Frame Design Application is a highly recommended tool for those in civil engineering, mechanical engineering, architecture and students seeking to design 2D hyperstatic frames through Finite Element Analysis (FEA).
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利用基于 Android 的框架设计应用程序和有限元分析确定二维超静定框架的结果力
斜坡挠度法假定所有接头都是刚性的,这意味着在任何荷载作用下角度都不会发生变化。这确保了剪应力和轴向应力引起的相容性和挠度被忽略。采用斜坡挠度法对结构中的力和变形进行数值确定,需要相对较长的计算时间,并要求高精度的结果。一个有效的工具可以高效、精确地确定内力和结构变形。本研究使用了框架设计应用程序 5177 版,该版本最初于 2012 年 6 月 24 日发布,并于 2022 年 2 月 2 日更新,是一款基于安卓系统的应用程序。利用框架设计应用程序可以快速、精确地确定内力和结构变形。对于土木工程、机械工程和建筑领域的专业人士以及希望通过有限元分析(FEA)构建二维超静定框架的学生来说,这是一个非常有价值的工具。本文的主要目的是评估框架设计应用程序的精度,以确定其是否适合教育目的。本文还将评估手动计算和使用 SAP2000 软件分析结果的精度。所提供的分析结果显示出的差异可以忽略不计。对于希望通过有限元分析(FEA)设计二维超静态框架的土木工程、机械工程、建筑学领域的人员和学生来说,框架设计应用程序是一款值得强烈推荐的工具。
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