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Fatigue Crack Growth Study and Remaining Life Assessment of High Strength and Ultra High Strength Concrete Beams

机译:高强和超高强混凝土梁的疲劳裂纹扩展研究及剩余寿命评估

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This paper presents the details of crack growth study and remaining life assessment of concrete specimens made up of high strength concrete (HSC, HSC1) and ultra high strength concrete (UHSC). Flexural fatigue tests have been conducted on HSC, HSC1 and UHSC beams under constant amplitude loading with a stress ratio of 0.2. It is observed from the studies that (i) the failure patterns of HSC1 and UHSC beams indicate their ductility as the member was intact till the crack propagated up to 90% of the beam depth and (ii) the remaining life decreases with increase of notch depth (iii) the failure of the specimen is influenced by the frequency of loading. A "Net K" model has been proposed by using non-linear fracture mechanics principles for crack growth analysis and remaining life prediction. SIF (K) has been computed by using the principle of superposition. SIF due to the cohesive forces applied on the effective crack face inside the process zone has been obtained through Green's function approach by applying bi-linear tension softening relationship to consider the cohesive the stresses acting ahead of the crack tip. Remaining life values have been have been predicted and compared with the corresponding experimental values and observed that they are in good agreement with each other.
机译:本文详细介绍了由高强度混凝土(HSC,HSC1)和超高强度混凝土(UHSC)组成的混凝土试样的裂纹扩展研究和剩余寿命评估。在恒定振幅载荷下,应力比为0.2的情况下,已对HSC,HSC1和UHSC梁进行了弯曲疲劳测试。从研究中可以观察到:(i)HSC1和UHSC梁的破坏模式表明了它们的延性,因为该构件完好无损,直到裂纹扩展到梁深度的90%为止;(ii)剩余寿命随着切口的增加而减少深度(iii)试样的破坏受加载频率的影响。通过使用非线性断裂力学原理提出了“ Net K”模型,用于裂纹扩展分析和剩余寿命预测。 SIF(K)已使用叠加原理进行了计算。通过格林函数方法,通过应用双线性张力软化关系来考虑凝聚力作用在裂纹尖端之前的应力,通过施加在加工区内有效裂纹面上的内聚力获得了SIF。已经预测了剩余寿命值,并将其与相应的实验值进行比较,并观察到它们彼此之间具有很好的一致性。

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