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Fracture kinematics of reinforced concrete slabs failing in punching

机译:冲孔失败的钢筋混凝土板断裂运动学

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Over the past decades, a large number of punching shear resistance models with different backgrounds have been developed. Among them, punching shear resistance models based on kinematic failure mechanisms have been found to be in good agreement with punching tests on slender slabs. The existing kinematic models generally determine the punching strength based on suitable failure criteria relating punching failure to a certain slab rotation. Hence, slab deformations are assumed to occur as a result of flexural deformations only. Yet, measurements taken from recent punching tests with varying slenderness reveal differences between fracture kinematics of slender slabs (e.g. flat slabs) and compact slabs (e.g. column bases). In this context, the deformation behavior of compact slabs is rather governed by translational deformations. Consequently, a general application of the existing models to both slender and compact slabs might yield inconsistent results.
机译:在过去的几十年中,已经开发出许多具有不同背景的抗冲切剪切力的模型。其中,已经发现基于运动学破坏机理的冲切剪切力模型与细长板的冲切测试非常吻合。现有的运动学模型通常基于将冲压失败与某个板坯旋转相关的合适的破坏准则来确定冲压强度。因此,假定平板变形仅是由于弯曲变形而发生的。然而,从最近的具有不同细长度的冲压试验中获得的测量结果表明,细长板(例如,平板)和紧凑板(例如,柱底)的断裂运动学之间存在差异。在这种情况下,紧密平板的变形行为主要由平移变形控制。因此,将现有模型同时应用于细长板和紧凑板可能会产生不一致的结果。

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