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首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Effect of Helical Surface Area on the Performance of a Multi-Helix Anchor
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Effect of Helical Surface Area on the Performance of a Multi-Helix Anchor

机译:螺旋表面积对多螺旋锚杆性能的影响

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摘要

Anchoring temporary shelters is a repetitive and time-consuming task mostly accomplished by hand or handheld tools. Therefore, such anchors should be lightweight and easy to install. Experimental investigations on the effect of anchor geometry on ease of installation and uplift capacity of a double-helix anchor are presented. The double-helix anchor with 1.78 kN uplift capacity was tested on various soil types and conditions. Similar tests were carried out using the same anchors except that the helices were perforated for the first test and notched for the second test. The experimental setup was arranged to allow measurement of installation torque, installation time, and pullout load. It was observed that the uplift capacity and weight of the anchor dropped with the reduction in the surface area of the helices. The drop in the uplift capacities of the anchor with perforated helices and that with perforated and notched helices were 1.05 kN and 1.2 kN, respectively. Weight loss of 0.45 kg due to perforation and 0.88 kg due to notching were recorded. The minimum uplift capacity of the anchor with both perforated and notched helix was 1.84 kN. The ease of installation of the anchors was assessed based on the anchor driving torque and installation time. A general trend of reduction in the magnitude of anchor driving torque and installation time with the reduction in helix surface area was observed. Thus, perforating and notching helix surfaces could reduce the anchor weight and improve drivability.
机译:固定临时避难所是一项重复且耗时的任务,主要通过手动或手持工具完成。因此,此类锚固件应轻巧且易于安装。提出了关于锚几何形状对双螺旋锚的易于安装和提升能力的影响的实验研究。在各种土壤类型和条件下测试了具有1.78 kN提升力的双螺旋锚。使用相同的锚定器进行了类似的测试,除了在第一次测试中对螺旋进行了穿孔,在第二次测试中对螺旋进行了开槽。实验装置的布置可以测量安装扭矩,安装时间和拔出载荷。观察到,随着螺旋表面积的减小,锚的提升能力和重量下降。带有穿孔螺旋的锚和带有穿孔和缺口螺旋的锚的提升能力下降分别为1.05 kN和1.2 kN。记录了由于穿孔引起的重量损失0.45kg和由于切口引起的重量损失0.88kg。带有穿孔和有缺口螺旋的锚的最小起重能力为1.84 kN。根据锚的驱动扭矩和安装时间评估锚的安装简便性。观察到随着螺旋表面积的减小,锚驱动扭矩的大小和安装时间减小的总体趋势。因此,在螺旋表面上打孔并开槽可以减少锚的重量并改善驾驶性能。

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