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Experimental characterization of the constitutive materials composing an old masonry vaulted tunnel of the Paris subway system

机译:构成巴黎地铁系统中旧砌体拱形隧道的构成材料的实验表征

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摘要

A significant proportion of the Paris metro tunnels comprise a masonry vault built out of stone blocks and mortar joints, and sidewalls and slabs made of unreinforced concrete. In order to provide the necessary data for future structural evaluation, an extensive laboratory testing programme has been conducted to characterize the materials of the tunnel separately, i.e., mortar, stone, and concrete. The tests, carried out on specimens taken from cores extracted from a 1930s tunnel, enabled to determine the mechanical properties, including direct tensile, shear strength, and mode I fracture energy, as well as the properties of the stone-mortar interface. Results show that the masonry mortar joints could reach 10 cm in width, and that blocks of stone varied in composition and porosity, thus producing a wide range of mechanical properties. The concrete was composed of large-sized aggregates and showed low stiffness and strength. Based on these experimental results, ratios between mechanical characteristics are hereby proposed. Perspectives on the use of this experimental data in a finite element model are then discussed.
机译:巴黎地铁隧道的很大一部分包括由石块和砂浆缝制成的砖砌拱顶,以及由非钢筋混凝土制成的侧壁和平板。为了为将来的结构评估提供必要的数据,已经进行了广泛的实验室测试程序以分别表征隧道的材料,即砂浆,石头和混凝土。对取自1930年代隧道的岩心的样本进行的测试能够确定机械性能,包括直接拉伸,剪切强度和I型断裂能,以及石材砂浆界面的性能。结果表明,砌筑砂浆缝可以达到10 cm的宽度,并且石块的成分和孔隙率各不相同,从而产生广泛的机械性能。混凝土由大型骨料组成,显示出较低的刚度和强度。基于这些实验结果,据此提出机械特性之间的比率。然后讨论了在有限元模型中使用此实验数据的观点。

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