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Examining the trend in loss of flexural stiffness of simply supported RC beams with various crack severity using model updating

机译:使用模型更新检查具有不同裂缝严重程度的简支钢筋混凝土梁的抗弯刚度损失趋势

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The flexural stiffness of simply supported cracked reinforced concrete beams was determined by model updating. The beams were 150 mm wide, 250 mm deep and 2200 mm long. Different FE models were created which include a datum and models with a single crack at three different locations along the length of the beam. The mode shape equation was obtained by using non-linear regression. The equation used in the regression was the generalized solution of transverse vibration of a prismatic beam. Local flexural stiffness, El, at each coordinate point was derived by substituting the regressed data by using the centered-finite-divided-difference formula. Experimental modal analysis was performed on a control beam and beams with load-induced cracks at predetermined loading. Results from FE analyses showed the trend in the loss of stiffness was similar to the results obtained on the experimental beams. The more severe the damage, the higher the loss of stiffness and the loss patterns are similar for damage at different locations along the beam. The updating technique is able to indicate the trend in the loss of stiffness as a result of cracks of varying severity in the RC beams showing good agreement with experimental results.
机译:通过模型更新确定了简单支撑的开裂钢筋混凝土梁的抗弯刚度。光束为150毫米宽,250毫米深和2200毫米长。创建了不同的有限元模型,其中包括基准面和在梁长度上三个不同位置具有单个裂纹的模型。通过使用非线性回归获得模式形状方程。回归中使用的方程是棱形梁横向振动的广义解。通过使用中心有限差分除法公式替换回归数据,可以得出每个坐标点的局部弯曲刚度El。对控制梁和在预定荷载下具有荷载引起的裂缝的梁进行了实验模态分析。有限元分析的结果表明,刚度损失的趋势与实验梁的结果相似。损伤越严重,刚度的损失就越大,并且沿着梁的不同位置处的损伤的损失模式相似。更新技术能够指示由于RC梁强度不同的裂缝而导致的刚度损失的趋势,与实验结果吻合良好。

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