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Effect of concrete mixture components, proportioning, and compressive strength on fracture parameters

机译:混凝土混合物组分,比例和抗压强度对骨折参数的影响

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Splitting cracks in pre-tensioned concrete members often occur at the early stages after detensioning. To prevent these splitting failures, concrete members need to be resistant to crack growth at the strengths in which the beam is detensioned. In this paper, the effect of different concrete parameters including aggregate shape and content, water-to-cementitious (w/c) ratio, fly ash, paste and air void content on the crack resistance of concrete used in concrete railroad ties were investigated using Two-Parameter Model (TPM). For each mixture evaluated, twelve three-point prisms were tested at 27.5, 41.3 and 55.1 MPa concrete compressive strengths (4000, 6000 and 8000 psi) to determine the effect of concrete compressive strength on crack growth potential. In addition, splitting tensile tests were conducted on three samples at each compressive strength for all mixtures. Finally, the results were analyzed and the function of utilized method was discussed. The results show that increasing angularity, aggregate size and volume, and decreasing w/c ratio improve fracture toughness by 30% whereas changing paste, fly ash and air void content negligibly influence fracture toughness. However, all improving factors were seen to be most effective at low strengths. The obtained fracture toughness values from this study could lead to a significant improvement of splitting crack resistance in pre-stressed concrete members where high amount of transverse stress is often introduced at low compressive strengths. (C) 2019 Elsevier Ltd. All rights reserved.
机译:预张紧混凝土构件中的分裂裂缝通常在延伸后的早期阶段发生。为了防止这些分裂故障,混凝土构件需要抵抗光束被压延的强度处的裂纹生长。在本文中,研究了不同混凝土参数,包括骨料形状和含量,水 - 水泥(w / c)比,粉煤灰,糊剂和空隙率对混凝土铁路领域中使用的混凝土裂缝电阻的影响双参数模型(TPM)。对于评估的每种混合物,在27.5,41.3和55.1MPa混凝土压缩强度(4000,6000和8000psi)中测试了12个三点棱镜,以确定混凝土抗压强度对裂纹生长潜力的影响。此外,对所有混合物的每个抗压强度的三个样品进行分裂拉伸试验。最后,分析了结果,讨论了利用方法的功能。结果表明,成角度,骨料大小和体积增加,并且随着W / C的降低而降低裂缝韧性,而更换糊状物,粉煤灰和空隙含量可忽略地影响断裂韧性。然而,所有改进因素都被认为是低强度最有效的。本研究中获得的裂缝韧性值可能导致在预应力的混凝土构件中分裂裂缝阻力的显着改善,其中通常以低压缩强度引入大量的横向应力。 (c)2019 Elsevier Ltd.保留所有权利。

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