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End bearing capacity of embedded pile with inclined base plate: Field dynamic and static tests

机译:嵌入式底板嵌入式桩的末端承载力:现场动态和静态测试

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The objective of this study is to investigate the effects of incorporating inclined base plates on the end bearing capacities of embedded piles by conducting dynamic pile tests and static load tests. Two types of embedded piles were prepared - conventional piles with a 50-cm-diameter flat base plate and piles with a 56-cm-diameter inclined base plate. The dynamic pile tests were conducted during pile construction, and the static load tests were conducted after curing the cement paste to investigate the end bearing capacities of the test piles. Test results indicate that the base resistances of piles with inclined base plates are greater than those of conventional piles and that the base resistances increase with an increase in the inclination angle. The increased projected area, increased contact area, extended rupture surface, and enhanced slime discharge due to the inclined base plate may result in an increase in the end bearing capacity of the pile. This study demonstrates that the end bearing capacities of the embedded piles may be maximized by incorporating inclined plates to the pile base. Thus, the pile with the inclined base plate may be effectively used for the construction of embedded piles.
机译:本研究的目的是研究通过进行动态桩测试和静电载荷测试将倾斜基板掺入嵌入式桩端轴承容量的影响。制备了两种类型的嵌入式桩 - 具有50cm - 直径的扁平基板和具有56厘米直径的倾斜底板的堆叠的常规桩。在桩结构期间进行动态桩试验,并在固化水泥浆料以研究试验桩的端部承载能力后进行静载试验。试验结果表明,具有倾斜基板的桩的基本电阻大于传统桩的桩,并且基部电阻随着倾斜角的增加而增加。增加的投影区域,增加的接触面积,延伸的破裂表面和由于倾斜的基板引起的增强的粘液放电可能导致桩的端部承载能力增加。本研究表明,通过将倾斜的板掺入绒状基座,可以最大化嵌入式桩的端部承载能力。因此,具有倾斜底板的堆可以有效地用于构造嵌入式桩。

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