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Experimental study of the mechanical anisotropy of aerated concretes and of the adjustment parameters of the Introduced porosity

机译:加气混凝土力学各向异性和孔隙率调整参数的实验研究

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The aerated concrete manufacturing process consists in the creation of macro porosity in a micro-mortar matrix with the help of an expansive agent (aluminum powder), which reacts with the water and the lime liberated by the hydration of the binder. Theoretical studies previously conducted on the idealization of aerated concrete have shown that its behavior can present mechanical and thermal anisotropies due to the configuration of the porosity (form, distribution and orientation of pores). Compared with spherical pores, ellipsoidal pores flattened uniaxially, with equal porosity, may improve the mechanical performances in the direction parallel to their long axis and the thermal performances in the perpendicular direction. The aim of this work is to evaluate the development of the macro-porosity by adjusting the different parameters of composition. The quantitative aspect and the qualitative aspect of the macro-porosity were considered at the same time; the former concerns the quantity of pores and the latter their geometrical configuration. Different compositions of non-autoclaved aerated concretes were studied, in which the nature of the binder, the quantity of water, the quantity of sand and the proportioning and the nature of the expansive agent varied. At first the paper presents the study of the influence of each parameter on the introduced porosity. This one is calculated as the difference between the apparent density of the basic matrix and the apparent density of the corresponding lightweight material. Then the incidence of the introduced porosity on the mechanical strengths and anisotropy of the material is studied. The results show a relationship between the quantitative and qualitative aspects of the introduced porosity. This relation is studied with respect to the relativity of the kinetics of setting and expansion, which seems to be a major parameter to optimize properties of aerated concretes.
机译:加气混凝土的生产过程包括在膨胀剂(铝粉)的帮助下,在微型砂浆基质中产生大孔隙度,膨胀剂与水和因粘合剂水合而释放的石灰反应。先前对加气混凝土的理想化进行的理论研究表明,由于孔隙结构(孔隙的形状,分布和方向),其行为会表现出机械各向异性和热各向异性。与球形孔相比,具有相同孔隙率的单轴扁平孔可改善平行于其长轴方向的机械性能以及垂直方向的热性能。这项工作的目的是通过调整组成的不同参数来评估宏观孔隙的发展。同时考虑了大孔隙的定量和定性。前者涉及孔的数量,而后者涉及几何形状。研究了非蒸压加气混凝土的不同组成,其中粘合剂的性质,水的量,沙的量以及膨胀剂的比例和性质均发生变化。首先,本文介绍了每个参数对引入孔隙率的影响的研究。该值被计算为基本基质的表观密度与相应轻质材料的表观密度之间的差。然后研究了引入的孔隙率对材料的机械强度和各向异性的影响。结果显示了所引入孔隙率的定量和定性方面之间的关系。关于凝固和膨胀动力学的相对性研究了这种关系,这似乎是优化加气混凝土性能的主要参数。

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