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Numerical approach to assessing the contact characteristics of a polymer-based waterproof membrane

机译:评估聚合物基防水膜接触特性的数值方法

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A waterproof membrane sprayed onto concrete enables faster construction compared with a conventional sheet membrane. The sprayed raw material, which is polymer mixed with water, becomes completely continuous waterproof thin membrane after a certain curing time. Such membranes have not been widely used in East Asia due to less confidence of their performance and limited applications despite of their outstanding structural properties and many projects in Europe, especially in the UK (at least 6 projects), which include higher cohesion at the interface and higher tensile strength. This study evaluates the material and contact properties of a waterproof membrane based on the results from laboratory experiments and numerical analyses. Interface properties of the waterproof membrane were calibrated from results of the linear block-support test proposed by European Federation of National Associations Representing for Concrete (EFNARC). A numerical model for simulating three-point bending tests was then developed and used to examine structural effects of the membrane. In results of numerical analysis, the contact conditions between the lining and the membrane had little effect in elastic behaviors, but tensile behavior of concrete lining had a relatively large effect.
机译:与传统的片状膜相比,喷涂到混凝土上的防水膜可加快施工速度。与聚合物混合的喷涂原料在一定的固化时间后变成完全连续的防水薄膜。尽管这种膜具有出色的结构性能,但由于其性能的信心不足和应用受限,因此尚未在东亚得到广泛使用,并且在欧洲有许多项目,尤其是在英国(至少有6个项目),其中包括界面处的内聚力更高。和更高的拉伸强度。这项研究根据实验室实验和数值分析的结果评估了防水膜的材料和接触性能。防水膜的界面特性是根据欧洲全国混凝土协会联合会(EFNARC)提出的线性块支撑测试结果进行校准的。然后,开发了用于模拟三点弯曲测试的数值模型,并将其用于检查膜的结构效应。数值分析结果表明,衬砌与膜的接触条件对弹性性能的影响很小,而混凝土衬砌的拉伸性能影响较大。

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