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Interface shear strength characteristics of steel piles in frozen clay under varying exposure temperature

机译:不同曝光温度下冷冻粘土钢桩的界面剪切强度特性

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摘要

The ultimate shaft capacity of pile foundations in frozen grounds has long been correlated to the long-term shear strength of the surrounding frozen soils using a surficial roughness factor "m". This roughness factor is different for different pile materials (e.g., steel, concrete, and timber), but is often assumed to be constant for any soil type, ground temperature, or stress condition. The current study evaluates the validity of the proposed roughness factor "m" for steel piles embedded in frozen clay and exposed to different scenarios of ground temperatures and normal stress levels. Interface element tests were utilized to characterize the shear strength of frozen Leda clay and the adfreeze strength of the pile-frozen clay interface and to investigate the proposed roughness factor "m" for steel piles exposed to various temperatures and normal stress conditions. The experiments were carried out in a walk-in temperature-controlled environmental chamber. Roughness factor "m" was found not to be a constant number for a given pile material, but rather to decrease with an increase in the freezing temperature. A frictional factor "n", analogous to roughness factor "m", was also introduced to correlate the frictional resistance of frozen soil to the frictional resistance of the pile-soil interface. A temperature-dependent empirical equation was also proposed for predicting the shaft capacity of steel piles based on the shear strength parameters of the surrounding ice-rich clay soil. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:冻结地面桩基础的极限轴容量长期以来,使用曲面粗糙度因子“M”与周围的冷冻土壤的长期剪切强度相关。这种粗糙度因子对于不同的绒毛材料(例如,钢,混凝土和木材)是不同的,但通常假设对于任何土壤类型,地面温度或应力条件,通常是恒定的。目前的研究评估了嵌入在冷冻粘土中的钢桩的粗糙因子“M”的有效性,并暴露于不同的地温和正常应力水平的不同情况。界面元件测试用于表征冷冻LEDA粘土的剪切强度和桩冷冻粘土界面的Adfreeze强度,并研究暴露于各种温度和正常应力条件的钢桩的所提出的粗糙度因子“M”。实验在步入式温度控制的环境室中进行。发现粗糙因子“M”不是给定绒头材料的恒定数,而是随着冷冻温度的增加而降低。还引入了类似于粗糙因子“M”的摩擦因子“N”,以将冻土的摩擦阻力与桩土界面的摩擦阻力相关联。还提出了一种温度依赖性经验方程,用于预测基于周围富含冰块土壤的剪切强度参数的钢桩的轴容量。 (c)2019年Elsevier B.V的生产和托管代表日本岩土工会。

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