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Experimental analysis of glued-in steel plates used as shear connectors in Timber-Concrete-Composites

机译:木材-混凝土-复合材料中用作剪切连接器的粘合钢板的试验分析

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This paper describes experimental research into timber-concrete composite (TCC) connections made with discrete perforated steel plates glued in timber with epoxy adhesive. Continuous steel meshes have proven to be very strong and rigid elements in TCC structural members. This paper studies the strength and stiffness of these connectors when used in a discrete way, alone and in combination with reinforcing bars. Six types of connector were subjected to experimental tests, analysing two connection lengths and three configuration systems of the connector elements (in which bars are added longitudinally or transversally). The experimental results show that the connections made with discrete steel meshes are very strong and rigid, and that it is possible to design them for ductile failure. Comparison of the results for plates of different lengths indicates that failure occurs in the longest connections in the wood at lower average shear stresses. No significant behavioural differences were detected between connectors made only of plate and those that were reinforced with additional bars. The high slip moduli values indicate that it would be possible to design structural elements with a composite action close to 100% using this type of connection.
机译:本文介绍了用离散的多孔钢板将木材和环氧树脂粘接在一起制成的木材-混凝土复合材料(TCC)连接的实验研究。事实证明,连续钢网是TCC结构构件中非常坚固的刚性元件。本文研究了单独使用或与钢筋一起单独使用时这些连接器的强度和刚度。对六种类型的连接器进行了实验测试,分析了连接器元件的两种连接长度和三种配置系统(其中,纵向或横向添加了钢筋)。实验结果表明,用离散钢网制成的连接非常牢固和牢固,并且可以针对延性破坏进行设计。比较不同长度的板的结果表明,在平均剪切应力较低的情况下,木材中最长的连接处会发生破坏。在仅由板制成的连接器与用附加钢筋加强的连接器之间未检测到明显的行为差异。高滑动模量值表明,使用这种类型的连接可以设计出复合作用接近100%的结构元件。

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