Low-temperature dynamic triaxial apparatus

A triaxial, low-temperature technology, applied in the direction of applying stable tension/pressure to test the strength of materials, can solve the problems of unable to control the constant temperature freezing state of soil samples, unable to simulate the freezing process of soil samples, and unable to simulate natural freezing of soil samples, etc.

Inactive Publication Date: 2014-04-16
BEIJING JIAOTONG UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] (1) The temperature cannot be adjusted and set, and the soil sample cannot be controlled to maintain a constant temperature and frozen state;
[0005] (2) The process of natural freezing of soil samples cannot be simulated
This cannot be achieved with existing dynamic triaxial instruments
[0006] Therefore, the existing dynamic triaxial instrument cannot meet the needs of simulation of frozen soil behavior under dynamic load conditions, cannot simulate the freezing process of soil samples, maintain the state of soil samples, and cannot effectively test the dynamic parameters of frozen soil. Development of dynamic triaxial instrument for frozen soil

Method used

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  • Low-temperature dynamic triaxial apparatus

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Embodiment

[0016] Example: such as figure 1 As shown, it includes chassis 1, direct interface of confining pressure 2, lower plate cold bath circulation inlet 3, surrounding cold bath circulation entrance 4, permeable stone 5, soil sample 6, external shaft chamber 7, cold bath circulation chamber 8, tie rod 9, Upper plate cold bath circulation inlet 10, upper cover of pressure chamber 11, upper plate cap 12, ball head screw 13, piston 14, joint 15, upper plate cold bath circulation outlet 16, rubber hose 17, surrounding cold bath circulation outlet 18, lower plate Seat 19, lower plate cold bath circulation outlet 20, pore water pressure pressure measurement interface 21, internal shaft chamber 22, the side of chassis 1 is equipped with confining pressure direct interface 2 and pore water pressure pressure measurement interface 21 respectively, and the sides of lower plate seat 19 are respectively The lower plate cooling bath circulation inlet 3 and the lower plate cold bath circulation o...

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Abstract

The invention relates to the field of civil engineering, and particularly to a low-temperature dynamic triaxial apparatus. A confining pressure direct interface and a pore water pressure measuring interface are respectively formed in the side surface of a chassis, a footwall cold bath loop inlet and a footwall cold bath loop outlet are respectively formed in the side surface of a footwall base, an interior shaft chamber is arranged above the footwall base, a hanging wall cap is arranged at the top part of the interior shaft chamber, an exterior shaft chamber is arranged at the periphery of the interior shaft chamber, a cold bath loop chamber is arranged at the periphery of the exterior shaft chamber, a peripheral cold bath loop inlet and a peripheral cold bath loop outlet are respectively formed in the side surface of the cold bath loop chamber, a hanging wall cold bath loop inlet and a hanging wall cold bath loop outlet respectively penetrate the exterior shaft chamber, the cold bath loop chamber and two sides of hanging wall cap, a piston is arranged above the hanging wall cap and is fixed through a ball screw, and a pressure chamber upper cover is arranged at the periphery of the piston. The low-temperature dynamic triaxial apparatus has the following advantages that the temperatures of the top end and the bottom of the soil sample can be controlled, the soil sample freezing process can be simulated, the freezing and thawing state of the soil sample is kept, the temperatures of different parts of the soil sample are monitored, and the deformation and the strength of the soil sample are measured.

Description

technical field [0001] The invention relates to the field of civil engineering, in particular to a low-temperature dynamic triaxial instrument. Background technique [0002] In recent years, with the construction of a large number of expressways in my country and the expansion and reconstruction of existing roads, the traffic volume and the intensity and frequency of dynamic loads have been greatly increased, and the requirements for the stability of roadbed deformation are also getting higher and higher. Greater attention must be given to deformation induced by action and subsequent weakening of subgrade strength by melting. In-depth research on the impact of highway, especially the dynamic load of expressway vehicles on subgrade frost heave deformation and subsequent mud pouring, research on new standards for anti-freezing damage of subgrade fillings, research on construction and maintenance technology for road subgrades in cold regions under dynamic load conditions, and re...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N3/18
Inventor 刘建坤李旭田亚护沈宇鹏崔颖辉刘景宇王鹏程吕鹏
Owner BEIJING JIAOTONG UNIV
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