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Simplified Stress Correction Factor To Study The Dynamic Behavior Of A Cracked Beam

机译:简化应力校正因子以研究裂隙梁的动力特性

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In this work a simplified formula for the stress correction factor in terms of the crack depth to the beam height ratio, f(a/h), is presented. The modified formula is compared to a well-known similar factor in the literature, and shows a good agreement for a/h lower than 0.5. The modified formula is used to examine the lateral vibration of an Euler-Bernoulli beam with a single-edge open crack. This is done through introducing the flexibility scalar. This scalar can be generated from the Irwins's relationship using the modified factor f(a/h). The crack in this case is represented as rotational spring. With the modified model, beam configurations with classical and non-classical support conditions could be studied.rnThe mode shapes for the cracked and the uncracked beam are obtained using this model. They are displayed graphically for selected values of the system parameters; the crack depth ratio a/h, and the crack location ratio s/L. The shift in the mode shape due to the existence of a crack is highlighted. The obtained results showed good agreement with similar published studies.
机译:在这项工作中,提出了根据裂纹深度与梁高之比f(a / h)的应力校正因子的简化公式。将修改后的公式与文献中众所周知的类似因子进行比较,并显示a / h低于0.5的良好一致性。修改后的公式用于检查具有单边开口裂纹的Euler-Bernoulli梁的横向振动。这是通过引入灵活性标量来完成的。可以使用修正因子f(a / h)从Irwins关系生成此标量。在这种情况下,裂纹表示为旋转弹簧。利用改进的模型,可以研究具有经典和非经典支撑条件的梁的构型。使用该模型,可以得到开裂和未开裂梁的模态形状。它们以图形方式显示系统参数的选定值。裂纹深度比a / h和裂纹位置比s / L。由于裂纹的存在,模态形状的偏移被突出显示。获得的结果与相似的已发表研究显示出很好的一致性。

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