首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Mechanical Engineering >Crack Estimation of Beam Under the Moving Mass Using the Dynamic Characteristics Based on Two Contact Point Theory
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Crack Estimation of Beam Under the Moving Mass Using the Dynamic Characteristics Based on Two Contact Point Theory

机译:基于两个接触点理论的动态特性,移动质量下梁裂纹估计

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摘要

It is important to identify the presence of damage present in the structures like bridge which undergoes the excitation due to moving vehicles. In such type of problems, modal analysis and dynamic displacement response analysis are not sufficient to portray the crack presence. The presented work emphases on the analysis of acceleration response to investigate the crack presence. A mathematical model is developed by considering the two masses with fixed distance between them traversing on the Euler-Bernoulli beam having a crack. The acceleration response analysis can be effective to present the qualitative explanation of the fault present in the beam. A key features of the acceleration response of beam having a crack includes discontinuity at the crack location which vary with change in distance between the front and rear wheel and a greater response value compare to that for healthy in the last phase of travel from the time front wheel exits the beam. However, the effectiveness of the presentation of the crack through acceleration response depends upon the fixed distance between the front and rear wheel and the bridge length. The discontinuity will be higher for the higher ratio of distance between the front and rear wheel to the bridge length.
机译:重要的是要识别存在于桥中的结构中存在的损坏的存在,这是由于移动车辆而受到激励的。在这种问题类型中,模态分析和动态位移响应分析不足以描绘裂缝存在。所提出的工作重点是分析加速响应,以研究裂缝存在。通过考虑它们之间的两个群体来开发了数学模型,它们之间穿过具有裂缝的欧拉伯努利光束。加速度响应分析可以有效地呈现梁中存在的故障的定性说明。具有裂缝的光束的加速度响应的关键特征包括在裂缝位置处的不连续性,该裂缝位置随着前轮和后轮之间的距离而变化的变化,并且比较从时间前沿的最后一个阶段的健康的响应值相比车轮退出光束。然而,通过加速响应的裂缝呈现的有效性取决于前轮和后轮之间的固定距离和桥梁长度。对于前轮和后轮之间的距离与桥梁长度的距离比较较高的不连续性将更高。

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