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Effect of coarse aggregate blending on short-term mechanical properties of self compacting concrete

机译:粗集料掺混对自密实混凝土短期力学性能的影响。

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摘要

This investigation is mainly focused on finding the unit weight, compressive strength, modulus of elasticity (MOE) and splitting tensile strength (STS) of SCC mixes with different coarse aggregate blending (60:40 and 40:60) (20 mm and 10 mm) and coarse aggregate content (28% and 32%) and these properties were compared to a conventional concrete (CC). All SCC mixes had 35% replacement of cement with class F fly ash. The coarse aggregate blending did not affect the compressive strength of SCC mixes, but it affected the unit weight, MOE and STS of SCC mixes. A new parameter called coarse aggregate points (CAPs) has been introduced to study the effect of coarse aggregate blending in a particular coarse aggregate content on mechanical properties of SCC mixes. It is observed that for the given strength, SCC mixes with the same CAP value have shown similar mechanical properties. The measured MOE of all mixes were compared with ACI 363R and AASHTO LRFD/ACI 318 predicted equations. The measured STS of all mixes were compared with ACI 363R and CEB-FIP predicted equations.
机译:这项研究主要侧重于找到具有不同粗骨料掺混比(60:40和40:60)(20 mm和10 mm)的SCC混合料的单位重量,抗压强度,弹性模量(MOE)和劈裂抗张强度(STS)。 )和粗骨料含量(28%和32%),并将这些性能与常规混凝土(CC)进行比较。所有SCC混合料均用F级粉煤灰替代了35%的水泥。粗骨料共混物不会影响SCC混合物的抗压强度,但会影响SCC混合物的单位重量,MOE和STS。引入了一个称为粗骨料点(CAPs)的新参数,以研究特定骨料中粗骨料的混合对SCC混合料力学性能的影响。可以看出,对于给定的强度,具有相同CAP值的SCC混合物显示出相似的机械性能。将所有混合物的测得的MOE与ACI 363R和AASHTO LRFD / ACI 318预测方程进行比较。将所有混合物的测得STS与ACI 363R和CEB-FIP预测方程式进行比较。

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  • 来源
    《Materials & design》 |2013年第1期|185-194|共10页
  • 作者单位

    Department of Civil Engineering, Jawaharlal Nehru Technological University, Anantapur 515 002, India;

    Department of Civil Engineering, Jawaharlal Nehru Technological University, Anantapur 515 002, India;

    Department of Civil Engineering, Sri Venkateswara University, Tirupati 517 502, India;

    Advanced Materials Lab, Structural Engineering Research Centre, Chennai 600 113, India;

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