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SEQUENTIALLY LINEAR SAW-TOOTH MODELLING OF REINFORCED STRUCTURES

机译:增强结构的顺序线性锯齿模型

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A sequentially linear saw-tooth continuum model which captures the nonlinear response via a series of linear steps is presented. In the model, the softening stress-strain curve with negative slope is replaced by a saw-tooth diagram of positive slopes, while the incremental-iterative procedure is replaced by a scaled sequentially linear procedure. Mesh-size objectivity is achieved by adjusting both the peaks and the ultimate strain of the saw-tooth diagram to the size of the finite elements, keeping the fracture energy invariant. First, considering large-scale dog-bone specimens in direct tension, it will be demonstrated that the model is capable of automatically providing the snap-back response. Furthermore, the bifurcation problem is circumvented as the scaling process triggers the lowest non-symmetric equilibrium path. Secondly, the model is extended from an isotropic to an orthotropic format, taking into account the direction of cracking and the anisotropy of the induced damage. In this way, the model can compare with classical fixed smeared crack models. This improvement allows for studying reinforced concrete structures, in which compressive struts develop parallel to the crack directions.
机译:呈现了一种序贯的线性锯齿连续体模型,呈现了通过一系列线性步骤捕获非线性响应。在该模型中,具有负斜率的软化应力 - 应变曲线被正斜面的锯齿图取代,而增量迭代过程被缩放的顺序线性过程所取代。通过将锯齿图的峰值和最终应变调节到有限元的尺寸来实现网眼尺寸的客观性,保持裂缝能量不变。首先,考虑到直接张力的大规模狗骨标本,将说明该模型能够自动提供快速响应。此外,随着缩放过程触发最低的非对称平衡路径,避免了分叉问题。其次,考虑到裂缝方向和诱导损伤的各向异性,该模型从各向同性延伸到正交格式。通过这种方式,该模型可以与经典固定涂抹裂缝模型进行比较。这种改进允许研究钢筋混凝土结构,其中压缩支柱平行于裂缝方向。

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