Application of fracture energy for the assessment of frost degradation of high-strength concretes

S. Borowska, M. Kosior-Kazberuk
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Abstract

Knowledge of fracture mechanics parameters can help for a more accurate assessment of frost degradation of high-strength concrete. High strength concretes, despite the tight structure, are characterized by increased brittleness. Cracks in the concrete structure are places of accumulation of significant stresses. Additional stresses resulting from cyclic freeze/thaw stimulate the material destruction processes. The basic strength parameters of concrete do not take into account structural defects of the material and do not give a complete description of susceptibility to damage caused by, e.g., frost degradation. This study aimed to determine the relationship between frost degradation of high-strength concretes and changes in the value of their fracture energy associated with the initiation of cracking after 150, 250, 350 and 450 freeze/thaw cycles. The research was carried out using 100 × 100 × 400 mm samples, with a pre-initiated 30 mm deep notch. The I load model under a three-point bending test was used, based on the procedure recommended by RILEM. Concrete with a compressive strength of 90 MPa with steel fibres and a mixture of steel and basalt fibers was tested. The obtained results allow for the evaluation of frost degradation using fracture energy GF and critical crack tip opening displacement CTODc.
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断裂能在高强混凝土冻损评价中的应用
了解断裂力学参数有助于更准确地评估高强混凝土的霜冻退化。高强度混凝土,尽管结构紧密,其特点是脆性增加。混凝土结构中的裂缝是显著应力积累的地方。循环冻结/解冻产生的额外应力刺激了材料的破坏过程。混凝土的基本强度参数没有考虑到材料的结构缺陷,也没有给出对诸如霜冻退化等造成的损伤的易感性的完整描述。本研究旨在确定在150、250、350和450个冻融循环后,高强混凝土的霜冻退化与开裂起始相关的断裂能值变化之间的关系。研究采用100 × 100 × 400 mm的样品,预先形成30 mm深的缺口。根据RILEM推荐的程序,使用三点弯曲试验下的I荷载模型。试验了抗压强度为90 MPa的钢纤维混凝土和钢与玄武岩纤维的混合混凝土。所得结果允许使用断裂能GF和临界裂纹尖端张开位移CTODc来评估霜退化。
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来源期刊
CiteScore
0.30
自引率
0.00%
发文量
9
审稿时长
20 weeks
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