含聚烯烃纤维自密实轻骨料混凝土的性能

Hameed S. Hasan, A. Al-Hadithi, Yousif Kh. Yousif
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引用次数: 1

摘要

自密实混凝土(S.C.C.),在过去的三十年中,由于其强大的能力,增加耐久性和减少出血,并与钢筋良好的粘合,在建筑领域很受欢迎。另一方面,sc的制造需要大量的骨料。各种装置的轻量化是减少静载的关键要求。然而,用轻粗骨料(bonza骨料)代替传统的细混凝土可以生产轻质建筑混凝土。纤维增强scc对新拌混凝土的质量有不利影响,但对其力学特性有有利影响。研究了不同比例(0%、0.25%、0.5%、0.75%、1%)的聚烯烃纤维对轻质自密实混凝土(LWSCC)混合料随时间变化的新鲜特性和力学性能的影响。为评价聚烯烃纤维增强LWSCC混合料的硬化特性,进行了干容重试验、吸水孔隙率试验、渗透试验、抗压试验、抗劈裂拉伸试验、抗弯曲试验、弹性模量试验、超声脉冲速度试验和导热系数试验。聚烯烃纤维的最佳掺量为0.25%,降低了新拌混凝土的性能,提高了混凝土的硬化性能。28日龄时,抗压强度、劈裂强度、抗弯强度和弹性模量分别提高3%、17%、1%和11%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Properties of self-compacting lightweight aggregate concrete containing polyolefin fibers
Self-compacting concrete (S.C.C.) has, In the last three decades, been popular in construction sectors due to its strong capacity to increase durability and minimize bleeding with excellent bonding with reinforcement. The manufacturing of S.C.C., on the other hand, needs a large amount of aggregates. Light weighting of various installations is a critical requirement for reducing dead loads. Nevertheless, substituting the conventional coarse aggregate in S.C.C. with lightweight coarse aggregate (bonza aggregate) could result in lightweight construction concrete being produced. Fiber strengthened S.C.C. has a detrimental impact on the qualities of fresh concrete while having a beneficial impact on its mechanical characteristics. The influence of varying five proportions (0%,0.25%,0.5%,0.75%, 1%) polyolefin fibers on the time-dependent fresh features and mechanical behavior of lightweight self-compacting concrete (LWSCC) mixture was examined in this study. To evaluate the hardening features of the LWSCC mixture which strengthened with polyolefin fiber, several tests were conducted, including the dry bulk density test, water absorption and porosity test, penetration test, compressive resistance test, splitting tensile resistance test, flexural resistance test, modulus of elasticity test, ultrasonic pulse velocity test, and thermal conductivity test. The optimum ratio of polyolefin fibers is 0.25%, reducing the properties of fresh concrete and increasing its hardening properties. At the age of 28 days, it increases the compressive strength, split strength, flexural strength, and modulus of elasticity by 3%, 17%, 1%, 11, respectively.
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