Anti-sulphates corrosive test method and test device of cement concrete

A cement concrete and sulfate-resistant technology, which is used in measuring devices, using stable tension/pressure to test material strength, material weighing, etc. problems, to achieve the effect of small test intensity, short cycle and accurate test results

Inactive Publication Date: 2009-05-20
CHONGQING UNIV
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Problems solved by technology

The obvious disadvantage of this method is that the labor intensity of the testers is high. At the same time, the key point is that after 50 dry-wet cycles, although the strength of the concrete will be lost, for some concrete, the quality will increase instead of decrease, which cannot be true. Ref

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  • Anti-sulphates corrosive test method and test device of cement concrete
  • Anti-sulphates corrosive test method and test device of cement concrete
  • Anti-sulphates corrosive test method and test device of cement concrete

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Embodiment Construction

[0022] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0023] The test method for sulfate corrosion resistance of cement concrete involved in the present invention uses the principle of electroosmotic pulse technology to promote the diffusion of sulfate ions to the interior of cement concrete and promote the reaction with cement concrete hydration products, thereby achieving rapid detection of cement concrete resistance to sulfuric acid The purpose of salt corrosion ability. Specific steps are as follows:

[0024] Step 1: Prepare the cement concrete test specimen. The cement concrete test specimens used in this test can be the test samples specially prepared by the existing technology for the test, or directly take samples from the used concrete as the test specimens. The method of preparing the test sample: pour the concrete into the concrete mold, and the concrete mixture is vibrated ...

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Abstract

The invention relates to a method for testing the sulphate erosion resistance of cement concrete and a device thereof. The method utilizes a principle of electroosmosis pulse technology, promotes the diffusion of sulphate ions to the inside of the cement concrete and rapidly detects the performance of sulphate erosion resistance of the cement concrete; and the capacity for resisting sulphate erosion of the cement concrete is judged according to the quality change and the strength loss value of the cement concrete. In the testing method, a concrete test piece is placed into a sulphate environment; and according to the condition of reaction between the sulphate ions and a hydration product of the concrete test piece under the action of pulse voltage, the performance of sulphate erosion resistance of the concrete is rapidly judged. The testing method has small testing strength and short period; the whole testing process is completed by only 7 days; and a testing result is rather accurate and can really reflect the situation of the concrete eroded in the sulphate environment.

Description

technical field [0001] The invention relates to the field of building material testing, in particular to a testing method and testing device for testing the sulfate corrosion resistance of cement concrete. Background technique [0002] Cement concrete is the most widely used structural material in the world. Due to its internal structure and hydration products, cement concrete is susceptible to chemical erosion by harmful components in air, groundwater and soil, resulting in a decrease in its strength, volume deformation and service life. Among the many types of chemical attack, sulfate corrosion is an important factor affecting the durability of concrete. Sulfate ions contained in soil and groundwater penetrate into concrete and react with cement hydration products, causing concrete damage such as swelling, cracking, and spalling, so that structural concrete will prematurely fail to reach its expected design service life. Destruction occurs. Therefore, it is necessary to...

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Application Information

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IPC IPC(8): G01N33/38G01N5/00G01N3/08
Inventor 王冲彭小芹杨长辉刘芳白光
Owner CHONGQING UNIV
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