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Development of a New Inflatable Controlled Anchor System and Experimental Study of pull-out Capacity

机译:开发新的充气控制锚系统和拉出能力的实验研究

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Considering the deficiency of traditional anchors, we propose a new type of inflatable controlled anchor system in this paper. The working mechanism and its structural composition of newly designed inflatable controlled device are discussed in detail. To investigate the performance and pull-out capacity of this new anchor system, a series of field tests were carried out under different inflation pressure conditions. By comparing these test results with those of traditional grouting anchors, a full-process constitutive model of anchor-soil interface is proposed to depict the pull-out characteristics of the inflatable controlled anchor. The results show that the ultimate bearing capacity of the inflatable controlled anchor is greater than that of the traditional grouting anchor when the inflation pressure is greater than 0.2?MPa and the ultimate bearing capacity of this new anchor improves obviously with the increase of inflation pressure. When the inflation pressure reaches 0.4?MPa, the ultimate bearing capacity of the inflatable controlled anchor is 2.08 times that of the traditional grouting anchor. Through comparison with the experimental curves, the results of model calculation indicate that the proposed anchor-soil interface constitutive equation can describe the pull-out characteristics of the inflatable controlled anchor. The designed controlled anchor has the advantages of no grouting, recyclability, rapid formation of anchoring force, and adjustable anchoring force.
机译:考虑到传统锚的不足,我们提出了一种新型的充气控制锚系统。详细讨论了新设计的充气控制装置的工作机制及其结构组成。为了调查该新锚系统的性能和外拉力,在不同的充气压力条件下进行一系列现场测试。通过将这些测试结果与传统的灌浆锚定进行比较,提出了一种锚 - 土界面的全过程本构模型,以描绘充气控制锚的拉出特性。结果表明,当充气压力大于0.2Ω·mpa时,充气控制锚的最终承载力大于传统灌浆锚点的容量,并随着通胀压力的增加而显着提高了这种新锚的最终承载力。当充气压力达到0.4℃时,充气控制锚的最终承载力是传统灌浆锚的2.08倍。通过与实验曲线的比较,模型计算结果表明,所提出的锚 - 土界面本构式方程可以描述充气控制锚的拉出特性。设计的控锚具有没有灌浆,可再循环性,锚固力的快速形成的优点,以及可调节的锚固力。

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