Computer Aided Simulation of a 4BL Problem With MATHLAB

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Abstract

In this chapter, the synthesis and analysis of four link bar (4BL) mechanisms problem, which is a well-known classical design problem, is discussed. However, limitations to the classical theory of this problem potentially limit its application to certain real-world problems by virtue of the small number of precision points and unspecified order. A prototype of the problem was designed and simulated for visualizing a four-bar link (4BL – simple movable closed chain linkage) mechanism engineering problem using MATLAB software. The aim is to facilitate the analysis, dynamic simulation of the four-bar mechanisms. First, a brief review of some of the current computer-aided learning software for four-bar mechanisms is presented. These software packages provide two-dimensional visualization and computational capabilities necessary to synthesize and analyze four-bar mechanisms. The chapter also reviews the kinematics of four-bar mechanisms as they pertain to their geometric modelling followed by the design approach of the graphical MATLAB simulation for 4BL mechanisms. A preliminary validation test using pre- and posttest questionnaires and focus group discussion with student participation in using the MATLAB simulation has facilitated in visualizing the engineering concepts of 4BL mechanism at UNITEN.
用MATHLAB进行4BL问题的计算机辅助模拟
本章讨论了四连杆机构问题的综合与分析,这是一个众所周知的经典设计问题。然而,该问题经典理论的局限性,由于精度点的数量少和未指定的顺序,潜在地限制了它在某些现实问题中的应用。为实现四杆机构工程问题的可视化,利用MATLAB软件对该问题进行了原型设计和仿真。目的是为了方便四杆机构的分析、动态仿真。首先,简要回顾了目前一些四杆机构的计算机辅助学习软件。这些软件包提供二维可视化和必要的计算能力,以综合和分析四杆机构。本章还回顾了四杆机构的运动学,因为它们涉及到它们的几何建模,然后是4BL机构的图形MATLAB仿真的设计方法。采用测试前和测试后问卷的初步验证测试,以及学生参与的焦点小组讨论,使用MATLAB模拟,促进了UNITEN 4BL机制的工程概念的可视化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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