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Role of Mortar Joints in Textile Reinforced Mortar-to-Masonry Bond

机译:砂浆接头在纺织加固砂浆到砌体键的作用

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In this paper, the role of masonry joints in the textile reinforced mortar (TRM)-to-substrate bond is investigated through an experimental program employing double-lap/double-prism (DL/DP) shear bond tests. The TRM system is composed of a dry glass fiber textile and a cementitious mortar applied as an overlay onto unreinforced wall prisms made from solid clay bricks and a cement/lime based masonry mortar. Specimens with different bond lengths (BLs) and various mortar joints-to-bonded area ratios are examined. For all specimens, the shear bond strength of the TRM/masonry interface is larger than the respective strength of the textile/matrix interface the shear failure of which was the governing failure mechanism. For the BLs considered, an increase in the mortar joints/BL surface ratio led to an increase in the transferable shear load of the joints indicating a substrate dependent behavior. A critical discussion on the characteristics of this dependence is included in this paper highlighting the effect of the substrate on the modification of the in situ properties of the composite's matrix. Finally, for BLs larger than the effective BL an existing indirect bond-slip model was applied, therefore, a cohesive material law could be determined for each substrate modified textile/matrix combination. (C) 2020 American Society of Civil Engineers.
机译:本文通过采用双圈/双棱镜(DL / DP)剪切键试验,研究了纺织增强砂浆(TRM)-to底物键的作用。 TRM系统由干燥的玻璃纤维纺织品和胶水砂浆组成,覆盖物作为由固体粘土砖和水泥/石灰基的砌体砂浆制成的未原始的壁棱镜。检查具有不同粘合长度(BLS)和各种砂浆接头到键合面积比的标本。对于所有标本,TRM /砌体界面的剪切键强度大于纺织/矩阵界面的相应强度,其剪切失效是控制故障机制。对于所考虑的BLS,砂浆接头/ BL表面比的增加导致接头的可转移剪切载荷的增加,所述接头表示基板依赖性行为。本文突出了对该依赖性的特征的关键探讨,突出了基材对复合材料原位性质的改性的影响。最后,对于大于有效BL的BLS应用现有的间接粘合模型,因此可以针对每个底物修饰的纺织/基质组合来确定粘性材料定律。 (c)2020年美国土木工程师协会。

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