Test device for simulating marine environment dynamic and static combined concrete loading

A technology of combined loading and marine environment, applied in the direction of measuring devices, applying stable tension/pressure to test material strength, instruments, etc., can solve the durability erosion mechanism, process and results of concrete structures that do not match the actual situation, lack of concrete structures Durability test methods, accelerated durability degradation of concrete structures and other issues, to achieve the effect of simple structure, high degree of automation, and labor saving

Pending Publication Date: 2019-08-16
QINGDAO TECHNOLOGICAL UNIVERSITY
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  • Abstract
  • Description
  • Claims
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AI Technical Summary

Problems solved by technology

This type of test method accelerates the durability degradation of concrete structures by increasing the temperature, relative humidity, concentration of corrosive media or introducing factors that do not exist on site (such as current, etc.), which leads to the fact that the durability erosion mechanism, process and resul

Method used

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  • Test device for simulating marine environment dynamic and static combined concrete loading
  • Test device for simulating marine environment dynamic and static combined concrete loading
  • Test device for simulating marine environment dynamic and static combined concrete loading

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Embodiment 1

[0021] The main structure of the experimental device for simulating marine environment dynamic and static joint loading concrete involved in this embodiment includes a column 1, an upper horizontal plate 2, a lower horizontal plate 3, bolts 4, screw caps 5, a support frame 7, a backing plate 8, and a force transmission plate 9. Piston 10, screw 11, test box 12, pressure sensor 13, jack 14, upper plate 15, lower plate 16, test box cover 17, test box vent 18, ceiling fan 19, upper water level sensor 20, lower water level sensor 21 , temperature and humidity sensor 22, temperature sensor 23, connecting water pipe 24, liquid storage tank 25, communication valve 26, liquid storage tank vent hole 27, pipe frame 28, water inlet pump 30, water inlet valve 31, water outlet pipe 32, water outlet pump 33. Outlet valve 34, spray water pipe 35, spray head 36, control box 37 and wire 38; four columns 1, upper horizontal plate 2 and lower horizontal plate 3 are connected to form frame 6 by bo...

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Abstract

The invention belongs to the technical field of marine engineering concrete material durability test equipment, and particularly relates to a test device for simulating marine environment dynamic andstatic combined concrete loading; compared with the prior art, the device has the advantages that 1, the structure is simple, the installation is convenient, the automation degree is relatively high,manpower and material and time cost are saved, and meanwhile, the overall control function of a control box and the real-time detection and recording function are realized, and the accuracy is improved; 2, an upper water level sensor, a lower water level sensor, a communication water pipe, a test box and a liquid storage box are matched to carry out a dry-wet circulation test, so that clear boundaries of an underwater area, a tidal area and a wave-splashing area can be ensured, the underwater area is always in the soaking environment, the tidal area is located in the soaking and drying environment, and the wave-splashing area is in a spraying environment; and 3, the characteristics of chemical and mechanical coupling and dynamic and static combined loading are considered, so that the testdevice is more suitable for the environment where the concrete is in service, and can be widely applied to the concrete durability test occasions.

Description

[0001] Technical field: [0002] The invention belongs to the technical field of durability test equipment for marine concrete materials, and in particular relates to a test device for simulating marine environment static and dynamic combined loading of concrete. [0003] Background technique: [0004] Over the years, people have conducted research on the durability of concrete caused by chloride ion attack, but most of them revolved around a single influencing factor. However, concrete in actual engineering does not work under a single factor, and generally bears the joint action of two or more factors. When multiple factors act together, the damage to concrete is not a simple superposition of the effects of each single factor. The interaction of various factors complicates the damage process of concrete in the actual service process. In practical engineering, almost all concrete will bear different types of loads, and the loads often cause the generation and expansion of mic...

Claims

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Application Information

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IPC IPC(8): G01N3/08G01N3/02
CPCG01N3/02G01N3/08G01N2203/0019G01N2203/0246
Inventor 鲍玖文魏佳楠张鹏薛善彬崔祎菲赵铁军
Owner QINGDAO TECHNOLOGICAL UNIVERSITY
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