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Flexural design of steel or FRP plated RC beams

机译:钢或FRP镀RC梁的抗弯设计

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摘要

In recent publications by the second author and his associates, a semi-empirical model (the tooth theory) was developed for designing against the potentially dangerous (largely brittle) premature plate peeling failure of reinforced concrete (RC) beams strengthened in flexure with externally bonded steel or fibre-reinforced plastic (FRP) plates. Although previously backed by an extensive set of experimental data relating to 111 steel and 58 FRP plated beams, the original tooth model suffered from being computer-based, involving certain iterative procedures. The present paper reports the salient features of a simplified procedure, enjoying largely similar accuracy to the iterative method. The output of this simplified method is presently backed by test data relating to 317 steel and/or FRP plated RC beams with widely different beam design parameters. It is amenable to simple hand calculations, using a pocket calculator, hence of value to busy practicing engineers.
机译:在第二作者及其同事的最新出版物中,开发了一种半经验模型(牙齿理论)来设计,以应对带有外部粘结的挠曲加固的钢筋混凝土(RC)梁的潜在危险(较大的脆性)过早的板剥离失败。钢或纤维增强塑料(FRP)板。尽管以前得到了大量有关111种钢和58种FRP镀层梁的实验数据的支持,但是原始牙齿模型还是基于计算机,涉及某些迭代过程。本文报告了简化过程的显着特征,其准确性与迭代方法大致相似。这种简化方法的输出目前得到有关317个钢和/或FRP镀层RC梁的测试数据的支持,梁设计参数差异很大。使用袖珍计算器可以进行简单的手工计算,因此对于繁忙的实践工程师而言非常有价值。

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