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Numerical Simulations of Restrained Shrinkage Cracking in Glass Fibre Reinforced Shotcrete Slabs

机译:玻璃纤维增​​强喷射混凝土板约束收缩裂缝的数值模拟

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摘要

Modern tunnels in hard rock are usually constructed by drill and blast with the rock reinforced by shotcrete (sprayed concrete) in combination with rock bolts. The irregular rock surface and the projection method of shotcrete lead to a tunnel lining of varying thickness with unevenly distributed stresses that affect the risk of cracking during shrinkage of the young and hardening material. Depending on water conditions, shotcrete is sprayed directly either onto the rock surface or over a drainage system, creating a fully restrained or an end-restrained structural system. In this paper, a method for nonlinear numerical simulations has been demonstrated, for the study of differences in stress build-up and cracking behaviour of restrained shotcrete slabs subjected to shrinkage. Special focus was given to the effects of the irregular shape and varying thickness of the shotcrete. The effects of glass fibre reinforcement and bond were implemented in the study by changing the fracture energy in bending and in the interaction between shotcrete and the substrate. The study verifies that an end-restrained shotcrete slab is prone to shrinkage induced cracking and shows the importance of a continuous bond to avoid wide shrinkage cracks when shotcrete is sprayed directly onto the rock.
机译:坚硬岩石中的现代隧道通常是通过钻孔和爆破来建造的,而岩石则通过喷浆混凝土(喷浆混凝土)与锚杆的组合来加固。不规则的岩石表面和喷射混凝土的喷射方法导致隧道衬砌的厚度不同,应力分布不均匀,从而影响年轻硬化材料收缩期间的开裂风险。根据水的条件,将喷射混凝土直接喷到岩石表面或排水系统上,从而形成完全约束或末端约束的结构系统。本文介绍了一种非线性数值模拟方法,用于研究受约束的喷射混凝土板在收缩时应力累积和开裂行为的差异。特别关注喷射混凝土的不规则形状和厚度变化的影响。通过改变弯曲时的断裂能以及喷射混凝土与基体之间的相互作用,实现了玻璃纤维增​​强和粘结的效果。这项研究验证了最终约束的喷射混凝土板易于收缩引起的开裂,并表明了在将喷射混凝土直接喷洒到岩石上时,连续粘结的重要性,以避免大范围的收缩裂纹。

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  • 来源
    《Advances in civil engineering》 |2017年第2017期|8987626.1-8987626.11|共11页
  • 作者单位

    KTH Royal Institute of Technology, Division of Concrete Structures, 100 44 Stockholm, Sweden;

    KTH Royal Institute of Technology, Division of Concrete Structures, 100 44 Stockholm, Sweden;

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