Test equipment for simulating reinforced concrete structure corrosion in seawater wave splashing environment

A reinforced concrete and simulated seawater technology, which is applied in the fields of weather resistance/light resistance/corrosion resistance, measuring devices, instruments, etc., can solve the problems of limited research, high transportation costs, slow corrosion speed, etc., and reduce the interference of human factors, test Reliable results, water saving effect

Inactive Publication Date: 2018-11-06
LIAONING TECHNICAL UNIVERSITY
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Problems solved by technology

[0004] The manufacturing methods of the rusted components needed to study the durability of concrete materials and structures are: full-wet method, semi-wet method, etc. However, the rusted components used in the laboratory obtained by using these methods have large errors, because the concrete structure in the ocean The corrosion situation is more complex and needs to be determined by multiple factors such as chloride ions, moisture, oxygen, and carbon dioxide. The above methods cannot well simulate the real situation of concrete structures in the splash z

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  • Test equipment for simulating reinforced concrete structure corrosion in seawater wave splashing environment
  • Test equipment for simulating reinforced concrete structure corrosion in seawater wave splashing environment

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[0022] The present invention will be further described in detail below with reference to the drawings and embodiments.

[0023] Such as figure 1 with figure 2 As shown, a test equipment for simulating corrosion of reinforced concrete structures in a seawater splash environment includes a pool 1, a cushion block 2 is arranged in the middle of the pool 1, and the pool 1 is filled with a sodium chloride solution 3 and chlorine The height of the sodium chloride solution 3 is lower than the height of the cushion block 2. The top of the cushion block 2 is provided with a reinforced concrete member 4, and three tenths of the circumference of the bottom end of the reinforced concrete member 4 is provided with an epoxy resin coating 5. The setting of the epoxy resin coating 5 prevents the sodium chloride solution 3 in this area from penetrating into the concrete, causing test deviations. Four-tenths of the side walls of the reinforced concrete member 4 on the top of the epoxy resin coati...

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Abstract

The invention discloses test equipment for simulating reinforced concrete structure corrosion in a seawater wave splashing environment. The test equipment comprises a water tank, a cushion block, a sodium chloride solution, a reinforced concrete component, an epoxy resin coating, a PVC thermoplastic pipe, a plastic hose, a water pump, a direct current power supply and stainless steel sheet metal.The device cannot produce harmful gas or impurities in the testing process and can be recycled, the water resource is saved, excessive resources are not consumed, raw materials of the equipment are pollution-free, and waste and waste residues cannot be produced. After the device is used for simulating corroded reinforced concrete components in a wave splashing area in the sea environment, the interference of human factors can be greatly reduced, the test process can be controlled according to the test result, the test result can better represent actual environment of the site, and the test result is reliable. The device is applicable to tests of sample in different sizes and can carry out simulation of wave splashing conditions of small samples as well as mass reinforced concrete.

Description

technical field [0001] The invention belongs to the technical field of test equipment, and in particular relates to a test equipment for simulating corrosion of reinforced concrete structures in seawater splashing environment. Background technique [0002] Concrete structures in marine environments are very common for steel corrosion caused by chloride ions in seawater to cause structural damage. The phenomenon of damage caused by the reaction of alkali aggregates. Tianjin Xingang built 25 berths from 1958 to 1985. The coastline is as long as 6000m. year. [0003] The factors affecting the durability of concrete structures in seawater environments are very complex, such as structural exposure time, tidal changes, ambient temperature, seawater salinity, and exposure locations (atmospheric areas, splash areas, water level fluctuation areas, underwater areas) and other factors will affect the structure. has a huge impact on durability. [0004] The manufacturing methods of t...

Claims

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Application Information

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IPC IPC(8): G01N17/00
CPCG01N17/006
Inventor 杨晓明杨亮
Owner LIAONING TECHNICAL UNIVERSITY
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