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Uplift capacity of enlarged base piles in sand

机译:砂土中扩大基桩的抗拔能力

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摘要

Pile foundations, also known as substructure, are used to carry and transfer the load of the structure to the bearing ground located at some depth below ground surface. The main components of the foundation are the pile cap and the piles. Piles are long and slender members which transfer the load through the shallow soil of lower bearing capacity to deeper soil or rock of high bearing capacity. They are also used in normal soil condition to resist uplift forces or in poor soil condition to resist lateral forces. Most of the piles are made from three main types of material which are wood, steel and concrete. Piles are normally driven, drilled or jacked into the ground and connected to pile caps. Based on a few number of laboratory model results many investigators reported the uplift response of piles in cohesionless soil, a review of related previous works shows that not much research has been done to define the uplift capacity in cohesionless soil, a problem that is often encountered in field. The paper observed that the ultimate uplift capacity is dependent on the relative undrained/drained shear strength of cohesionless soil, the depth ratio of embedment and soil thickness ratio. © 2012 ejge.
机译:桩基(也称为子结构)用于将结构的载荷传递和传递到位于地面以下一定深度的轴承地面。基础的主要组成部分是桩帽和桩。桩是细长的构件,它们将载荷通过承载力较低的浅层土壤传递到承载力较高的较深土层或岩石上。它们还用于正常土壤条件下以抵抗上拉力,或在恶劣土壤条件下抵抗侧向力。大多数桩是由三种主要类型的材料制成的,它们是木材,钢和混凝土。通常将桩打入,钻入或顶入地下并连接到桩帽。根据一些实验室模型的结果,许多研究人员报告了无粘性土中桩的抬升反应,对相关先前工作的回顾表明,没有太多的研究来定义无粘性土中的抬升能力,这是一个经常遇到的问题在现场。文章观察到,最终的抗拔能力取决于无粘性土的相对不排水/排水抗剪强度,埋深比和土厚比。 ©2012 ejge。

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