Brzyski Przemysław, Barnat-Hunek Danuta, Suchorab Zbigniew, Łagód Grzegorz
Faculty of Civil Engineering and Architecture, Lublin University of Technology, 40 Nadbystrzycka Str., 20-618 Lublin, Poland.
Faculty of Environmental Engineering, Lublin University of Technology, 40B Nadbystrzycka Str., 20-618 Lublin, Poland.
Materials (Basel). 2017 May 7;10(5):510. doi: 10.3390/ma10050510.
The article presents the results obtained in the course of a study on prospective application of flax/hemp wastes as a filling material of lime-based composites in the construction of low-energy buildings. The utilized filler comprised the hydrated lime with clay and Portland cement used as additives. The analysis involved evaluation of such properties as porosity, density, thermal conductivity, absorptivity, permeability, as well as compressive and flexural strength. Depending on the quantity of the filler, the properties of the composite changed. This, in turn, enabled to evaluate whether the utilized composite met the thermal requirements established for low-energy buildings. Afterwards, the obtained data were cross-referenced with the results gathered in the case of a room built of autoclaved aerated concrete. In order to prevent reaching the critical surface humidity, the internal surface temperature had to be calculated. Moreover, the chances of interstitial condensation occurring in the wall made of the analyzed lime-flax-hemp composite were determined as well. The study showed that the composite exhibits low strength, low density, low thermal conductivity, and high absorptivity. The external walls made of the lime-flax-hemp composite receive a limited exposure to condensation, but not significant enough to constitute any threat. The requirements established for low-energy buildings can be met by using the analyzed composite.
本文介绍了一项关于将亚麻/大麻废料作为低能耗建筑中石灰基复合材料填充材料的前瞻性应用研究结果。所用填料包括熟石灰与用作添加剂的粘土和波特兰水泥。分析内容包括对孔隙率、密度、导热系数、吸收率、渗透率以及抗压强度和抗弯强度等性能的评估。复合材料的性能随填料用量的不同而变化。据此可以评估所用复合材料是否满足低能耗建筑设定的热性能要求。之后,将所得数据与由蒸压加气混凝土建造的房间的相关结果进行交叉比对。为防止表面湿度达到临界值,必须计算内表面温度。此外,还确定了由所分析的石灰-亚麻-大麻复合材料制成的墙体中发生间隙冷凝的可能性。研究表明,该复合材料强度低、密度低、导热系数低且吸收率高。由石灰-亚麻-大麻复合材料制成的外墙受冷凝影响有限,但程度不足以构成任何威胁。使用所分析的复合材料能够满足低能耗建筑设定的要求。