Determination method and apparatus for coefficient of earth pressure at rest

A static earth pressure and measurement method technology, which is applied in the direction of applying stable tension/pressure to test the strength of materials, etc., can solve the problems of radial stress measurement error, reliability of the measured static earth pressure coefficient, small static earth pressure coefficient, etc. , to improve test efficiency, shorten consolidation time, and improve accuracy

Inactive Publication Date: 2012-12-19
CHINA UNIV OF MINING & TECH
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Problems solved by technology

The actual liquid can be compressed under high pressure conditions. Method ① has good applicability under normal pressure conditions, but with the continuous increase of consolidation stress, the liquid in the pressure chamber will be compressed, and the soil sample will expand and deform, making the measured static The earth pressure coefficient is too small
However, the method based on radial deformation sensor constraints can only control the deformation at the middle position of the soil sample, and cannot strictly guarantee that the r

Method used

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  • Determination method and apparatus for coefficient of earth pressure at rest
  • Determination method and apparatus for coefficient of earth pressure at rest

Examples

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Embodiment 1

[0020] Example 1: In figure 1 Among them, the pressure chamber used in the measurement of static earth pressure coefficient includes: pressure chamber 1, base 2, piston 3, drain hole 4, exhaust hole 5, inlet and outlet holes 6 and hydraulic sensor 8; the bottom of pressure chamber 1 is connected with The base 2 has a protruding seat in the middle of the base in the pressure chamber, and there is a soil sample 7 on the protruding seat, a piston protrudes from the pressure chamber on the protruding seat, and a through drainage hole is arranged on the protruding seat; There is a through liquid inlet and outlet hole 6, a hydraulic sensor 8 is connected to the inlet and outlet hole 6, and an exhaust hole 5 is arranged at the upper end of the pressure chamber.

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Abstract

The invention provides a determination method and a determination apparatus for the coefficient of earth pressure at rest, belonging to coefficient measuring methods and apparatuses for soil tests. In a conventional triaxial pressure chamber, an axial deformation constrained radial loading test is carried out on a soil sample so as to obtain a ratio of axial stress to radial stress; according to a two-dimensional asymptotic state criterion, relationship between a starting friction angle and a triaxial compression friction angle in the axial deformation constrained radial loading test satisfies equation I described in the specification, and relationship between the starting friction angle and the triaxial compression friction angle in a radial deformation constrained axial loading test satisfies equation II described in the specification. According to calculation results, the coefficient of earth pressure at rest in the axial deformation constraint radial loading test is 0.5 time of the ratio of axial stress to radial stress in the axial deformation constraint radial loading test. According to the method, errors generated when fixed section radial deformation control is used to substitute radial deformation control in a vertical direction of the soil sample in the radial deformation constrained axial loading test for the coefficient of earth pressure at rest can be avoided, and the method and the apparatus are suitable for accurate determination of coefficients of earth pressure at rest of saturated sand.

Description

technical field [0001] The invention relates to a method and a device for measuring a coefficient of a soil engineering test, in particular to a method and a device for measuring a static earth pressure coefficient. Background technique [0002] Static earth pressure coefficient is the ratio of radial pressure to axial pressure obtained under the premise of ensuring that the lateral deformation of the soil sample is zero. express. Therefore, effectively controlling the radial deformation of the soil sample and accurately obtaining the radial stress on the soil sample become the key to the success or failure of the determination of the static earth pressure coefficient. At present, according to the radial deformation control method of soil samples, the indoor measurement methods of static earth pressure coefficient can be divided into two categories: ① rigid pressure chamber, flexible confinement conditions or radial deformation sensor constraints. Airless water or oil is ...

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Application Information

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IPC IPC(8): G01N3/12
Inventor 赵晓东周国庆王英杰王建州况联飞王涛商翔宇
Owner CHINA UNIV OF MINING & TECH
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