Design and Fabrication of a Three-Point Bending Test Rig to Evaluate Strength and Stiffness of I-Beam

M. I. Rokhim, M. Yob, M. J. A. Latif, F. Munir
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引用次数: 1

Abstract

I-beam is widely used as main structures in the automotive and oil and gas industries due to their ability to sustain axial load at very minimum weight. For any structure, the important parameter should put into considerations are strength and stiffness. A Three-point bending test is a well-known method to evaluate the strength and stiffness of a beam. The existing machine to perform a three-point bending test is the Instron® 5585 Universal Testing Machines (UTM). However, these machines can only measure specimen within 500 mm which is insufficient for a longer specimen. In this study, a new design testing rig was proposed to evaluate the strength and stiffness of the longer specimen of I-beam. For this study, the design of the testing rig was evaluated using finite element analysis for 3 different lengths to determine its strength and rigidity. From this analysis, it is found that the proposed design of a testing rig shows satisfactory strength and rigidity for the length of 500 mm to 1000 mm when loaded with 10 kN force.
工字钢强度和刚度三点弯曲试验台的设计与制造
由于工字钢能够以最小的重量承受轴向载荷,因此在汽车和石油天然气工业中被广泛用作主要结构。对于任何结构,强度和刚度都是需要考虑的重要参数。三点弯曲试验是一种众所周知的评估梁的强度和刚度的方法。现有的执行三点弯曲测试的机器是Instron®5585通用试验机(UTM)。然而,这些机器只能测量500毫米以内的样品,这对于较长的样品是不够的。本文提出了一种新型的工字梁强度刚度试验装置。在本研究中,使用有限元分析对3种不同长度的试验台设计进行了评估,以确定其强度和刚度。通过分析发现,所设计的试验台在载荷为10千牛的情况下,在长度为500 ~ 1000毫米的范围内具有令人满意的强度和刚度。
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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