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Cement-cork mortars for thermal bridges correction. Comparison with cement-EPS mortars performance

机译:用于热桥校正的水泥软木砂浆。与水泥EPS砂浆性能比较

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The aim of this paper is to demonstrate the advantage of cork-mortars for renderings when compared to EPS-mortars, from a thermal characteristics point of view, namely in steady and unsteady conditions. It was intended to develop specific rendering mortars able to be applied in thermal bridges to reduce condensation effects and heat transfer in buildings envelopes. The impact of this solution is significant, especially in building typologies as framed reinforced concrete structures. Cement mortars and cement-EPS mortars are used as a reference as their properties are easily recognized compared to cement-cork mortars, which are made with by-products from the cork industry. Several studies were made concerning fresh and hardened state behaviour of mortars, namely: rheological and mechanical properties, micro-structure evolution with time and thermal behaviour. For a cement based mortar, different cork dosages (from 0% to 80%) were tested (as sand replacement by mass). Microstructural analyses show that the mechanical properties of cement-cork blends are not only controlled by cork's low density, but also by interaction of cork extractives with the cement hydration process. Thermal conductivity presents a linear decrease for an increasing cork dosage in mortars. Concerning the effect on thermal delay, cork-mortars seem to behave better than EPS-mortars.
机译:本文的目的是从热特性的角度,即在稳定和不稳定的条件下,证明软木砂浆与EPS砂浆相比具有渲染效果。旨在开发能够在热桥中使用的特定抹灰砂浆,以减少凝结效果和建筑物围护结构中的热传递。该解决方案的影响非常显着,尤其是在框架钢筋混凝土结构的建筑类型中。水泥砂浆和EPS水泥砂浆可作为参考,因为与使用软木行业副产品制成的水泥软木砂浆相比,它们的性能易于识别。关于砂浆的新鲜状态和硬化状态,进行了几项研究,即:流变学和机械性能,随时间和热行为的微观结构演变。对于水泥基砂浆,测试了不同的软木剂量(从0%到80%)(以质量代替沙子)。微观结构分析表明,水泥软木混合物的机械性能不仅受软木的低密度控制,而且受软木萃取物与水泥水化过程的相互作用控制。随着砂浆中软木剂量的增加,导热系数呈线性下降。关于对热延迟的影响,软木砂浆似乎比EPS砂浆表现更好。

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