A series of triaxial compression tests were arried out by means of composite-reinforced soil samples to simulate the interaction between soil and pile. The samples are made of gravel or lime-soil with different length...A series of triaxial compression tests were arried out by means of composite-reinforced soil samples to simulate the interaction between soil and pile. The samples are made of gravel or lime-soil with different length at the center. The experiment indicates that the strength of the composite samples can not be obtained by superimposure of reinforcing pile and soil simply according to their replacement proportion. It also indicates the law for stress ratio of reinforcing column to soil. The stress ratio of reinforcing column to soil increases and reaches peak rapidly while load and strain is small. Then the ratio decreases. This law is in accordance with the measuring resuits in construction site.展开更多
文摘为研究湿陷性黄土地区DDC法(孔内深层强夯法)进行地基处理时合理桩间距的控制问题,在代表性场地采用不同桩间距处理地基,对其处理前后地基土的干密度和湿陷系数等指标做了比对,并分析其挤密效果,得出当桩间距为预成孔直径d的3倍时,地基土受到挤密所产生的侧向力是相对均匀的,当桩间距>3.0d时,三桩间土体的挤密效果明显较两桩间差,故挤密法处理湿陷性黄土地基时的有效挤密区为3.0d,即DDC处理地基时的合理桩间距为3.0 d.
文摘A series of triaxial compression tests were arried out by means of composite-reinforced soil samples to simulate the interaction between soil and pile. The samples are made of gravel or lime-soil with different length at the center. The experiment indicates that the strength of the composite samples can not be obtained by superimposure of reinforcing pile and soil simply according to their replacement proportion. It also indicates the law for stress ratio of reinforcing column to soil. The stress ratio of reinforcing column to soil increases and reaches peak rapidly while load and strain is small. Then the ratio decreases. This law is in accordance with the measuring resuits in construction site.