Assessment of Impact Strength of Two-layer Fibrous Concrete Slab Using Polypropylene & Steel Fiber with Mineral Admixture

IF 0.1 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
V. Chandrasekaran
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Abstract

Introduction. The impact strength through of Two-layer (600 mm × 600 mm × 60 mm) concrete slab was experimentally investigated by the following method using Weight falling test (ACI committee 544). Result. Nine numbers of slab specimens were cast (S1 to S9), with one specimen (S1) was normal plain cement concrete slab (control specimen). The purpose of the study, The addition of Polypropylene fibre (PPF) in the top 30 mm depth of the slab was from 0.2 % to 0.8 % in step of 0.2 % and the addition of hooked end steel fibre (SF) in the bottom 30 mm depth of the slab was from 0.5 % to 2 % in step of 0.5 % for the other two layered slab specimens (S2 to S9). Also, a fixed 20 % (out of the total requirement of the binder) of mineral admixture namely Ground Granulated Blast Furnace Slag (GGBS) was used as a partial replacement of binder in all the slab specimens. Each specimen was tested under weight falling test. The number of blows required to obtain final crack failures in specimens was 30, 98, 168, 125, 252, 102, 153, 245 and 46 respectively for S1 to S9. Conclusions. The comparative analysis of crack pattern and impact strength of 2-layer fibre reinforced concrete slab specimens (S2 to S9) were presented. The performance of slab specimen S5 was the best among other slab specimen and it had absorbed more impact energy and controlled crack less than the normal plain cement concrete slab specimen (S1).
矿物掺合料聚丙烯-钢纤维双层纤维混凝土板冲击强度评价
介绍。采用落重试验(ACI委员会544)的方法,对双层(600mm × 600mm × 60mm)混凝土板的冲击强度进行了试验研究。结果。共浇筑9个板试件(S1 ~ S9),其中1个试件(S1)为普通清水水泥混凝土板(对照试件)。研究的目的,聚丙烯纤维(PPF)在板的顶部30 mm深度的添加量从0.2%到0.8%,在板的底部30 mm深度的钩端钢纤维(SF)的添加量从0.5%到2%,在其他两个分层板试件(S2至S9)。此外,在所有的板坯试样中,使用固定的20%(粘结剂总需求量外)矿物掺合料,即磨粒高炉渣(GGBS)作为部分替代粘结剂。每个试样都进行了落重试验。S1至S9试件达到最终裂纹破坏所需击打次数分别为30次、98次、168次、125次、252次、102次、153次、245次和46次。结论。对2层纤维混凝土板试件(S2 ~ S9)的裂缝形态和冲击强度进行了对比分析。其中S5板试件性能最好,吸收冲击能多,控制裂缝的能力小于普通清水水泥混凝土板试件(S1)。
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来源期刊
Russian Journal of Building Construction and Architecture
Russian Journal of Building Construction and Architecture CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
50.00%
发文量
28
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