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Masonry wall panels retrofitted with thermal-insulating GFRP-reinforced jacketing

机译:砌筑墙板,采用隔热的GFRP增强护套

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摘要

Today there is a need to provide thermally efficient walls, while at the same time to increase the mechanical properties of old unreinforced masonry walls that will not require large amounts of energy in the retrofitting or deconstruction processes. To address this problem, this paper gives the results of shear tests carried out on masonry panels made of solid bricks retrofitted with a new technique based on the use of glass fiber-reinforced polymers (GFRP) grids inserted into a thermal insulating jacketing. This was made of different low-strength lime-based mortars. Tests were carried out in laboratory and results were used for the determination of the shear modulus and strength of the wall panels before and after the application of the GFRP reinforcement. Retrofitted panels exhibited a significant enhancement in the lateral capacity when compared to the control panels. The thermal performance of the proposed mortars was also investigated both with and without GFRP. Low values of thermal conductivity were found, especially for the samples with GFRP; a reduction of the thermal transmittance value in the 34–45 % range was also obtained by applying 45 mm layer of coating in conventional masonry walls.
机译:如今,需要提供热效率高的墙,同时要增加旧的无筋砌体墙的机械性能,而在翻新或解构过程中将不需要大量的能量。为了解决这个问题,本文给出了在使用新技术改造的实心砖制成的砖石面板上进行的剪切试验的结果,该新技术是基于将玻璃纤维增​​强的聚合物(GFRP)网格插入隔热套中的。它是由不同的低强度石灰基砂浆制成的。在实验室中进行了测试,结果用于确定在施加GFRP增强之前和之后的墙板的剪切模量和强度。与控制面板相比,翻新面板的侧向承载能力显着增强。在有和没有GFRP的情况下,还对建议的砂浆的热性能进行了研究。发现热导率较低,尤其是对于带有GFRP的样品;通过在常规砌体墙中涂覆45 mm的涂层,还可以使热透射率值降低34-45%。

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