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The Tensile Strength and Damage Characteristic of Two Types of Concrete and Their Interface

机译:两种类型混凝土及其界面的抗拉强度和破坏特性

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摘要

In this study, tensile splitting tests and corresponding numerical simulations are performed on high strength concrete, low strength concrete, the interface between the two types of concrete, and the interface reinforced by steel fiber, respectively. The tensile splitting strength, crack initiation load, and damage characteristics are analyzed based on experiment data and fracture surface of samples. It can be concluded that tensile splitting strength and crack initiation load have the descending order of ‘HT’ (high strength concrete sample) > ‘LT’ (low strength concrete sample) > ‘FT’ (interface reinforced by steel fiber) > ‘OT’ (interface). The tensile splitting strength is related not only to the roughness of the fracture surface, but also to the percentage of fractured aggregates. The steel fiber can increase initiation cracking load, peak load and residual strength of the interface. The existing of interface composited by two types of material can cause asymmetric distribution of the stress state, even if geometry and the load are symmetrical for samples.
机译:在这项研究中,分别对高强度混凝土,低强度混凝土,两种类型混凝土之间的界面以及钢纤维增强的界面进行了拉伸劈裂试验和相应的数值模拟。根据实验数据和样品的断裂面,分析其拉伸断裂强度,裂纹萌生载荷和破坏特性。可以得出的结论是,抗拉劈裂强度和裂纹萌生载荷的降序为“ HT”(高强度混凝土样品)>“ LT”(低强度混凝土样品)>“ FT”(钢纤维增强界面)>“ OT” '(界面)。拉伸断裂强度不仅与断裂表面的粗糙度有关,而且与断裂的聚集体的百分比有关。钢纤维可以增加界面的初始开裂载荷,峰值载荷和残余强度。即使样品的几何形状和载荷是对称的,由两种材料复合而成的界面的存在也会导致应力状态的不对称分布。

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