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Comparing multi-scale cracking mechanisms in man-made composites and natural materials

机译:人造复合材料和天然材料中多尺度裂纹机理的比较

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Man-made composites, like reinforced and fiber-reinforced concrete elements, behave similarly to natural composite structures (e.g., brittle rocks lying on a ductile substratum). In both cases, the cracking Phenomenon of brittle layers depends on the scale of observation and is ruled by the Golden Ratio. Thus, a unique size-effect relationship, herein called Golden Scaling Law (GSL), is introduced and used to predict the crack pattern of concrete and rock structures. In accordance with several experimental data, GSL permits to calculate the values of crack width and crack spacing when the geometry of crack patter is known at a lower scale. Moreover, GSL can be applied to large composite structures without knowing the material performances, but by testing prototypes of lower dimensions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:人造复合材料,例如增强和纤维增强的混凝土元件,其行为与天然复合结构(例如,位于韧性基底上的脆性岩石)相似。在这两种情况下,脆性层的开裂现象都取决于观测范围,并由黄金比例决定。因此,引入了一种独特的尺寸效应关系,在本文中称为“黄金比例定律”(GSL),用于预测混凝土和岩石结构的裂缝模式。根据一些实验数据,GSL允许以较低的比例已知裂纹图案的几何形状时计算裂纹宽度和裂纹间距的值。而且,GSL可以在不知道材料性能的情况下应用于大型复合结构,而只需测试较小尺寸的原型即可。 (C)2016 Elsevier Ltd.保留所有权利。

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