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Testing device for unconfined compression fluid deformation of solution environmental action rock mass

A test device and environment technology, applied in the field of uniaxial rheological test device, can solve the problems of insufficient attention to the rheological law of rock mass, and achieve the effect of easy disassembly and replacement

Inactive Publication Date: 2009-12-16
DALIAN MARITIME UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Most of the traditional methods focus on the rheological properties of the rock itself, and pay insufficient attention to the rheological laws of the rock mass caused by the corrosion of groundwater and the weakening effect of the structural plane of the rock mass, and the expensive testing instruments are not conducive to the extensive research on the rheology of the rock mass

Method used

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  • Testing device for unconfined compression fluid deformation of solution environmental action rock mass
  • Testing device for unconfined compression fluid deformation of solution environmental action rock mass
  • Testing device for unconfined compression fluid deformation of solution environmental action rock mass

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] Embodiment 1: as figure 1 The rock mass unconfined compression rheological test device for the solution environment effect shown in the figure includes: a corrosion-resistant solution cylinder 5, a corrosion-resistant base 7, a corrosion-resistant pressure head 9, a fixed rod frame 2 and a pressure rod 11; the corrosion-resistant base 7 is fixed At the bottom of the corrosion solution cylinder 5; the fixed rod frame 2 is located on both sides of the corrosion solution cylinder 5, and the pressure rod 11 is arranged on the fixed rod frame 2, directly above the corrosion solution cylinder 5, and can move up and down along the fixed rod frame 2; Corrosion-resistant pressure head 9 is provided at the position corresponding to corrosion-resistant base 7 at the lower part of pressure rod 11; Between the corrosion-resistant indenter 9, load weights 3 at both ends of the pressure rod 11, and at the same time, a displacement dial indicator 1 (which can be replaced by a displacem...

Embodiment 2

[0017] Embodiment 2: For the convenience of application, the corrosion-resistant base 7 and the corrosion-resistant pressure head 9 are made into detachable structures, such as figure 2 and image 3 As shown, wherein the corrosion-resistant base 7 includes: the bottom pressure head 201 of the test piece and the connecting block 203; the connecting block 203 is connected with the bottom of the corrosion solution cylinder 5 by threads, and a rubber protective layer 201 is arranged on the outside thereof, and the rubber protective layer 201 is covered with the entire inner wall of the corrosion solution cylinder 5; the bottom indenter 2 of the test piece is fastened with the connecting block 4 through threads, and a sealing rubber ring 3 is provided at the joint, so that the bottom indenter 2 of the test piece and the rubber protective layer 201 are tightly connect. The corrosion-resistant indenter 9 includes: the test piece top pressure head 301 and the corrosion-resistant lin...

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Abstract

The invention discloses a testing device for the unconfined compression fluid deformation of a solution environmental action rock mass. The testing device is characterized by comprising a corrosion-resistant solution vat, a corrosion-resistant base, a corrosion-resistant press head, fixed bar racks and a press bar, wherein the corrosion-resistant base is fixed at the bottom of the corrosion-resistant solution vat; the fixed bar racks are located at both sides of the corrosion-resistant solution vat, the press bar is arranged on the fixed bar racks, is located right above the corrosion-resistant solution vat and can move up and down along the fixed bar racks; a position on the lower part of the press bar corresponding to the corrosion-resistant base is provided with the corrosion-resistant press head; and when being used, a test piece is soaked in the corrosion-resistant solution vat filled with solution and is put between the corrosion-resistant base and the corrosion-resistant press head, both ends of the press bar are loaded with weights, and simultaneously the upper part of the press bar is connected with a displacement micrometer gauge used for measuring the deformation degree of the test piece. The testing device has simple structure and low cost, so the testing device is especially suitable for extensive popularization in the unconfined compression fluid deformation test of the solution environmental action rock mass.

Description

technical field [0001] The invention relates to a test device for uniaxial rheology under the action of water-rock, in particular to a device capable of reflecting the rheological characteristics of rock mass containing structural planes under the action of solution corrosion. Background technique [0002] Rheological phenomenon is a relatively common phenomenon in rock and soil mass, which refers to the phenomenon that the deformation of rock mass changes with time under a certain force. The currently known rock rheology is regarded as an inherent mechanical property of rock, and the testing instruments are relatively expensive. In fact, the rock mass is a complex medium containing many structural planes. In many cases, the rock mass is in the groundwater environment, and the groundwater rich in various complex components has complex interactions with the rock mass. Important cause of rheology. Most of the traditional methods focus on the rheological properties of the roc...

Claims

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Application Information

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IPC IPC(8): G01N3/28
Inventor 姜谙男
Owner DALIAN MARITIME UNIVERSITY
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