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Influence of the Blocks and Mortar's Compressive Strength on the Flexural Bond Strength of Concrete Masonry

机译:砌块和砂浆抗压强度对混凝土砌体弯曲粘合强度的影响

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This work presents an experimental investigation of the influence of concrete blocks and mortar's compressive strength on the flexural bond strength, normal to the bed joints, of concrete structural masonry. Third-point beam tests were performed on concrete prisms, considering two different kinds of concrete blocks (compressive strength of 5.9 and 8.2 MPa) and six different cement-lime mortar compositions (compressive strength around 30, 70, and 120% of the blocks' net area compressive strength). Units' absorption and mortar's initial flow and water retentivity were not varied, but remained within the suitable range for use in structural masonry. For both types of concrete blocks, it was observed an increase on the prism's flexural bond strength with the increase of the mortars' compressive strength. A lower mortar's water-cement ratio led to higher bond strength. When fixing the ratio between mortar's and concrete block's compressive strength, it was noticed that the increase on the blocks' strength contributed to a slight increase on the masonry's flexural bond strength, except when using high strength mortar, in which the increase was significantly greater.
机译:这项工作提出了混凝土砌块和砂浆抗压强度对混凝土结构砌体的弯曲粘合强度对弯曲粘合强度的影响的实验研究。在混凝土棱镜上进行第三点光束试验,考虑到两种不同的混凝土块(压缩强度为5.9和8.2MPa)和六种不同的水泥 - 石灰砂浆组合物(抗压强度约为30,70和120%的块'净区域抗压强度)。单位的吸收和砂浆的初始流量和水保持性不变,但保持在适当的结构范围内,用于结构砌体。对于两种类型的混凝土块,观察到棱镜抗压强度的增加增加了棱镜的抗压强度。较低的砂浆的水柱比导致更高的粘合强度。当固定砂浆和混凝土砌块的抗压强度之间的比率时,注意到块的强度的增加导致砌体的弯曲粘合强度略有增加,除非使用高强度砂浆,其中增加显着更大。

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