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Freeze-Proof Durability of Concrete Incorporating Recycled Coarse Aggregate

机译:混凝土的防冻耐久性掺入再生粗骨料

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The recycle of the building and demolition waste could reduce project expenses and save natural resources as well as solve problem about environmental risks incurred during the disposal of building waste. In this study, waste C30 concrete is taken an experimental material. The mass loss, ultrasonic velocity, dynamic modulus of elasticity and cubic compressive strength of recycled coarse aggregate concrete whose coarse aggregate replacement percentage is 25%, 50%, 75%, and 100% are tested and compared with NAC when the cycles of freezing and thawing are 0, 25, 50, 75, 100, 125, 150, 175, and 200 times. The results show: (1) Generally, the loss of mass, ultrasonic velocity, dynamic modulus of elasticity and cubic compressive strength constantly increase with the growth of freezing and thawing cycles. (2) Compared with the recycled concrete of other replacement percentages, the RAC50 shows relatively close performance to NAC in mass loss, the change of dynamic modulus of elasticity and cubic compressive strength. (3) Performances of RAC25 specimens are better than the other RAC specimens for the ultrasonic wave velocity.
机译:建筑物和拆迁废弃物的回收可以减少项目费用,拯救自然资源,以及解决在制造废物处理过程中产生的环境风险问题。在这项研究中,废物C30混凝土是实验材料。回收粗骨料混凝土的质量损失,超声波速度,动态模量和立方抗压强度,其粗骨料替代百分比为25%,50%,75%和100%,并与NAC进行冻结时的循环解冻是0,25,50,75,100,125,150,175和200次。结果表明:(1)一般来说,随着冷冻和解冻循环的生长,质量损失,超声波速度,动态弹性模量和立方抗压强度不断增加。 (2)与其他替代百分比的再生混凝土相比,RAC50对NAC的质量损失相对较近的性能,动态弹性模量和立方抗压强度的变化。 (3)RAC2M样品的性能优于超声波速度的其他RAC标本。

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