Zaoui A, Sekkal W
Civil Engineering and geo-Environment Laboratory LGCgE- (EA 4515) Lille Nord de France, Polytech'Lille, Université des Sciences et de la Technologie de Lille. Cité Scientifique, Avenue Paul Langevin, 59655 Villeneuve D'Ascq Cedex, France.
Sci Rep. 2015 Mar 6;5:8815. doi: 10.1038/srep08815.
Research on argillite as a possible host rock for nuclear waste disposal is still an open subject since many issues need to be clarified. In the Underground Research Laboratories constructed for this purpose, a damaged zone around the excavation has been systematically observed and characterized by the appearance of micro-fissures. We analyse here -at nanoscale level- the calcite/clay assembly, the main constituents of argillite, under storage conditions and show the fragility of the montmorillonite with respect to calcite. Under anisotropic stress, we have observed a shear deformation of the assembly with the presence of broken bonds in the clay mineral, localised in the octahedral rather than the tetrahedral layers. The stress/strain curve leads to a failure strength point at 18.5 MPa. The obtained in-plane response of the assembly to perpendicular deformation is characterized by smaller perpendicular moduli Ez = 48.28 GPa compared to larger in-plane moduli Ex = 141.39 GPa and Ey = 134.02 GPa. Our calculations indicate the instability of the assembly without water molecules at the interface in addition to an important shear deformation.
将泥质板岩作为核废料处置潜在主岩的研究仍是一个开放课题,因为许多问题有待阐明。在为此目的建造的地下研究实验室中,已对开挖周围的损伤带进行了系统观测,并通过微裂隙的出现对其进行了表征。我们在此在纳米尺度上分析了泥质板岩的主要成分方解石/粘土组合在储存条件下的情况,并展示了蒙脱石相对于方解石的脆弱性。在各向异性应力下,我们观察到该组合发生了剪切变形,粘土矿物中存在断键,断键位于八面体层而非四面体层。应力/应变曲线得出在18.5兆帕时的破坏强度点。所获得的该组合对垂直变形的面内响应的特征是,与较大的面内模量Ex = 141.39吉帕和Ey = 134.02吉帕相比,垂直模量Ez = 48.28吉帕较小。我们的计算表明,除了重要的剪切变形外,界面处没有水分子时该组合不稳定。