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Fracture Surface Fractal Characteristics of Alkali-Slag Concrete under Freeze-Thaw Cycles

机译:冻融循环下碱渣混凝土的断裂表面分形特征

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摘要

Fractal theory is introduced in fracture surface research of alkali-slag concrete (ASC) under freeze-thaw cycles; crack distribution of ASC fracture surface and freeze-thaw damage zone were calculated. Through fractal analysis of ASC sample fracture surfaces, relevance between section fractal dimension and fracture toughness and relationship between material composition and section fractal dimension are clarified. Results show that the specimen’s cracks before freeze-thaw extend along force direction gently, and there are more twists and turns after freezing and thawing; the fractal dimension D also grows from 1.10 to 1.33. SEM internal microcracks’ D of ASC internal microstructure after freezing and thawing is 1.37; 0 to 300 times ASC fractal dimension under freezing and thawing is between 2.10 and 2.23; with freeze-thaw times increasing, ASC fracture toughness decreases and fractal dimension increases, the fractal dimension and fracture toughness have a good linear relationship, and the fractal dimension can reflect the toughening effect of ASC. It is very feasible to evaluate ASC fracture behaviour under freezing and thawing with the fractal theory. Fractal dimension generally increases with activator solution-slag (A/S for short) or slag content. The greater the amount of A/S or slag content, the lower the dimension.
机译:冻融循环下碱渣混凝土(ASC)裂缝表面研究介绍了分形理论;计算ASC断裂表面和冻融损伤区的裂纹分布。通过ASC样品骨折表面的分形分析,阐明了分形尺寸和材料组合物和截面分形尺寸之间的断裂韧性和关系之间的相关性。结果表明,冻融沿着轻轻地延伸冻结前的标本的裂缝,冷冻和解冻后有更多的曲折和转动;分形尺寸D也从1.10增加到1.33。冷冻和解冻后SEM内部微观结构的ASC内部微观结构为1.37;冻结和解冻下的0至300倍的ASC分形尺寸为2.10和2.23之间;随着冻融时间的增加,ASC断裂韧性降低,分形尺寸增加,分形尺寸和断裂韧性具有良好的线性关系,分形维数可以反映ASC的增韧效果。评估冻结下的ASC断裂行为并用分形理论解冻是非常可行的。分形尺寸通常随活化剂溶液 - 渣(A / S用于短)或渣含量增加。 A / S或炉渣含量的量越大,尺寸越低。

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