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Development of a Computer Aided Beam Deflection Analysis (CABDA) Program for Simply Supported Loaded Beams

机译:简易支撑梁的计算机辅助梁挠度分析(CABDA)程序的开发

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摘要

Beam-like members such as shafts, levers, frame components, beam structures, etc. are regularly designed and constructed in the field of mechanical and civil engineering. It is pertinent to know the structural integrity of the design before construction or fabrication. Beam deflection and stress calculations can be cumbersome and results from commercial simulation packages are not devoid of truncation and/or round-off errors because they are based on numerical schemes. To reduce or eliminate these issues, a computational tool, CABDA, has been designed and developed on matlab. The algorithm is based on analytic equations of beam deflection and bending stress theories; a design flow chart and graphic user interface were done to implement the algorithm. Experiments and simulations have been carried out for steel and brass rectangular beams which were compared with results obtained from CABDA for the same beam model. Average deflection errors recorded for steel beam are -0.4 and -0.015; for brass beam are -0.69 and -0.1 for experiment and simulation respectively. Average bending stress error recorded is -0.19 for simulation. It is observable that simulation results compare closely but CABDA gives exact results and therefore is very appropriate for simple beam problems.
机译:在机械和土木工程领域中,通常会设计和构造类似轴的构件,例如轴,杠杆,框架部件,梁结构等。在构造或制造之前了解设计的结构完整性是适当的。梁的挠度和应力计算可能很麻烦,而且商业仿真软件包的结果并非没有截断和/或舍入误差,因为它们是基于数值方案的。为了减少或消除这些问题,已经在matlab上设计和开发了一种计算工具CABDA。该算法基于梁挠度和弯曲应力理论的解析方程。完成了设计流程图和图形用户界面以实现该算法。对钢和黄铜矩形梁进行了实验和模拟,并将其与从CABDA获得的相同梁模型的结果进行了比较。钢梁记录的平均挠度误差为-0.4和-0.015;对于黄铜束,对于实验和仿真,分别为-0.69和-0.1。记录的平均弯曲应力误差为-0.19,用于仿真。可以看到,模拟结果进行了比较,但是CABDA给出了准确的结果,因此非常适合于简单的梁问题。

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