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ROLE OF CRACKS ON STRENGTH, DUCTILITY AND DURABILITY

机译:裂缝对强度,延展性和耐久性的作用

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Failure of concrete under load occurs in three phases: 1) distributed microcracking, 2) development of a macrocrack through the coalescence of microcracks and 3) macrocrack widening. This process governs the mechanical response of the material and has a strong impact on the durability of the concrete and the structure in which it is used. The strength of concrete, typically determined by the macrocrack development, can be increased by densifying the matrix through the use of low water-to-cement ratios and supplementary cementitious materials. However, this occurs at the expense of ductility, which is derived from energy-absorbing, distributed cracking. Conventional macrofibre reinforcement, with fibres greater than 0.5 mm in diameter, can slow the opening of macrocracks and impart post-peak ductility to the material. However, the presence of macrocracks provides avenues for the ingress of water and aggressive water-borne agents that can limit durability of concrete. Microfibre reinforcement, with fibre diameters less than 0.03 mm, slows the process by which microcracks evolve into macrocracks and so reduces permeability. To maximize the ductility and durability of concrete, crack development must be controlled. A hybrid blend of micro- and macrofibres is one method to achieve this control.
机译:载荷下混凝土的失效发生在三个阶段:1)分布式微捕发,2)通过微裂纹的聚结的MacRecrack开发,3)MacRecrack扩大。该过程管辖该材料的机械响应,对混凝土的耐久性和使用它的结构产生强烈影响。通常通过MacRecrack发育的混凝土强度可以通过使用低水与水泥比和补充水泥材料来致密基质来增加。然而,这发生了延展性的牺牲性,这是从能量吸收,分布式裂缝的延伸。常规的大型纤维增强件,直径大于0.5mm的纤维,可以减缓MacRecracks的开口并赋予材料后峰值延展性。然而,MacRecracks的存在为可以限制混凝土耐久性的水和侵蚀性水性的药剂的进入提供途径。纤维直径小于0.03mm的微纤维增强,减慢了微裂纹进化到MacRecrack的过程中,因此降低了渗透性。最大限度地提高混凝土的延展性和耐久性,必须控制裂缝开发。微型和大纤维的杂化混合物是实现该控制的一种方法。

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