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Experimental investigation of the ultimate bearing capacity of deformed segmental tunnel linings strengthened by epoxy-bonded steel plates

机译:环氧粘结钢板增强变形节段隧道衬里终极承载力的实验研究

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摘要

In order to develop an effective method to increase the load-bearing capacity of deformed segmental tunnel linings, full-scale tests concerning the ultimate bearing capacity of the linings, strengthened by steel plates, were conducted. The design of the tested linings and the loading scheme are described in this paper. In addition to the bearing capacity, the failure mechanisms of the tested linings were investigated. It was found that bonding of steel plates to the deformed segmental tunnel linings is an effective and practical method for strengthening segmental tunnel linings, thereby enhancing both their ultimate bearing capacity and their overall stiffness. The behaviour of these structures under loading is similar, no matter whether they are strengthened by full-ring or so-called semi-ring steel plates. The failure of the strengthened linings is the consequence of local failure of the bond between the steel plates and the tunnel segment. Therefore, the success of the proposed strengthening method strongly depends on the bonding capacity.
机译:为了开发一种有效的方法来增加变形节段隧道衬里的承载能力,进行了钢板增强的衬里的最终承载能力的全规模测试。本文描述了测试的衬里和装载方案的设计。除承载力外,还研究了测试衬里的故障机制。发现钢板与变形的节段隧道衬里的粘合是一种强化节段隧道衬里的有效和实用的方法,从而提高了它们的最终承载力及其总刚度。无论它们是由全环或所谓的半环钢板加强,这些结构都是相似的。强化衬里的失效是钢板与隧道段之间的邦的局部失效的结果。因此,提出的加强方法的成功强烈取决于粘合能力。

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