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Performance evaluation of the lightweight concrete tapered piles under hammer impacts

机译:锤击下轻量级混凝土锥形桩的性能评价

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摘要

Lightweight concrete (LWC) provides an attractive alternative to conventional piles by improving the durability of deep foundations. In this paper, the drivability of cylindrical and tapered piles made of lightweight and common concrete (CC) under hammer impacts was investigated by performing field tests and numerical analysis. The different concrete mixtures were considered to compare the mechanical properties of light aggregate which replaced instead of the natural aggregate. Driving tests were also conducted on different piles to determine how the pile material and geometric configurations affect driving performance. The results indicated that the tapering shape has an appropriate effect on the drivability of piles and although lower driving stresses are induced in the LWC tapered pile, their final penetration rate was more than that of CC cylindrical pile under hammer impact. Also by analyzing wave propagation in the different rods, it was concluded that the LWC piles with greater velocity than others had better performance in pile driving phenomena. Furthermore, LWC piles can be driven more easily into the ground than cylindrical concrete piles sometimes up to 50% lower hammer impacts and results in important energy saving.
机译:轻质混凝土(LWC)通过提高深层基础的耐用性,提供了传统桩的有吸引力的替代品。本文通过进行现场测试和数值分析,研究了由轻质和常见混凝土(CC)制成的圆柱形和锥形桩的驾驶性,并进行锤击冲击。认为不同的混凝土混合物比较替代的光聚集体的机械性能,而不是自然骨料。还在不同的桩上进行驾驶测试,以确定桩材料和几何配置如何影响驾驶性能。结果表明,锥形形状对桩的驾驶性具有适当的影响,尽管在LWC锥形桩中诱导较低的驱动应力,但它们的最终渗透率大于锤击下的CC圆柱桩的效果。另外,通过分析不同杆中的波传播,得出结论,LWC桩具有比其他速度更大的速度更大,在桩驾驶现象中具有更好的性能。此外,LWC桩可以比圆柱混凝土桩更容易地进入地面,有时撞击锤击率下降50%,并导致重要节能。

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