首页> 外文会议>RILEM Symposium on Fibre-Reinforced Concretes >STRESS TRANSFER IN THE BOND JOINT OF SUBSEQUENTLY APPLIED TEXTILE REINFORCED CONCRETE STRENGTHENING
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STRESS TRANSFER IN THE BOND JOINT OF SUBSEQUENTLY APPLIED TEXTILE REINFORCED CONCRETE STRENGTHENING

机译:随后施加纺织钢筋混凝土强化的粘合接头中的应力转移

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The application of textile reinforced composites made of endless high-performance reinforcement material and concrete permits the manufacturing of very thin layers for the service and strengthening of existing building structures. One of the special topics which arises by using the material is the question of the ultimate load introduction force from the old concrete into the textile reinforced concrete strengthening layer. Some special problems occur when using textile reinforced layers compared to other strengthening systems such as adhesive bonded steel plates or FRP-lamellas. Using the test results obtained, the behaviour of textile reinforced fine grained concrete strengthening layers for RC members within the anchoring range is being discussed and a modelling approach is given. Different possible failure modes of the bonding system are presented. The failure mode delamination is presented in more depth. Thereby the effect of the adhesive tensile strength on the required bond length is shown for two different textiles. Several special properties of the textile reinforced fine grained concrete strengthening layer are explained in detail, e. g. the crack formation within the strengthening layer, and they are compared with strengthening layers made of steel or CFRP. The resulting properties of the bond between the old concrete and the strengthening layer are derived. Hence it is shown that it becomes necessary to extend existing models accordingly.
机译:纺织品加固复合材料采用无尽高性能加固材料和混凝土制成允许制造非常薄的层,用于服务和加强现有的建筑结构。使用该材料产生的特殊主题之一是从旧混凝土进入纺织钢筋混凝土强化层的最终负载引入力的问题。与其他强化系统相比,诸如粘合粘合钢板或FRP-LAMELLAS等其他强化系统相比,发生了一些特殊问题。使用获得的测试结果,正在讨论锚定范围内的RC构件的纺织加强细粒混凝土强化层的行为,并给出了建模方法。提出了粘合系统的不同可能的故障模式。失败模式分层更深入呈现。由此,两种不同纺织品示出了粘合剂拉伸强度对所需粘合长度的影响。 e详细解释了纺织加强细粒混凝土强化层的几种特殊性能,例如G。强化层内的裂缝形成,与由钢或CFRP制成的强化层进行比较。衍生旧混凝土与强化层之间的粘合的所得性质。因此,表明需要相应地扩展现有模型。

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