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C170 strength-grade concrete for formed steel concrete composite structure

A technology of strength grade and combined structure, applied in the field of building materials, can solve the problems of poor natural bonding performance and poor natural bonding performance between profile steel and ultra-high-strength high-performance concrete, and achieve improved natural bonding performance and good compatibility. , the effect of enhancing durability and shear stability

Inactive Publication Date: 2015-06-10
XI'AN UNIVERSITY OF ARCHITECTURE AND TECHNOLOGY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The strength grades of concrete used for steel-concrete composite structures in the prior art include high-strength high-performance concrete of C60, C70, C80, C90 and C100 and the preparation technology of ultra-high-strength high-performance concrete of C110, C120, C130, C140 and C150, the above-mentioned Concrete of each strength grade significantly improves the bonding performance between steel and (ultra) high-strength concrete, and improves the durability of the structure; however, there are still ultra-high-strength high-performance concrete that cannot be extended to higher strength, and will When it is used in steel-concrete composite structures, it cannot solve the problem of poor natural bonding between steel and ultra-high-strength high-performance concrete, so it cannot meet the needs of civil engineering buildings extending to the air, underground and water, that is, super-high buildings, super-large spans Requirements for the application and development of this trend, such as globalization, undergroundization, offshore or underwater, ultra-durable and heavy-duty, giant and novel structural engineering
In addition, in the prior art, there are also some preparation technologies for ultra-high strength and ultra-durability of concrete, but none of them involve or solve the poor natural bonding performance between steel and ultra-high-strength high-performance concrete when used in SRC structures The problem

Method used

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  • C170 strength-grade concrete for formed steel concrete composite structure
  • C170 strength-grade concrete for formed steel concrete composite structure
  • C170 strength-grade concrete for formed steel concrete composite structure

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Experimental program
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Embodiment

[0047] (1) Raw materials

[0048] 1. Cement

[0049] Select Qinling brand P·O62.5R cement with stable quality and good performance, and conduct an adaptability test with polycarboxylate concrete superplasticizer before use. The test method adopts the current building materials industry standard "Cement and Reducer Water agent compatibility test method "JC / T1083-2008 method, good compatibility with polycarboxylate concrete superplasticizer. The performance indicators of the selected cement meet the requirements of the relevant current national standards, and its alkali content is low, its heat of hydration is low, and its water demand is also low.

[0050] 2. Aggregate

[0051] The fine aggregate adopts medium-to-coarse and Bahe sand with smooth particles, hard texture, and good gradation. The quality of the sand conforms to the current building material industry standard "Sand and Stone Quality and Inspection Method Standard for Ordinary Concrete" JC / T52-2006 and the nationa...

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Abstract

The invention discloses a C170 strength-grade concrete for a formed steel concrete composite structure, which is composed of 465 parts of cement, 816 parts of fine aggregate, 1094 parts of coarse aggregate, 96 parts of water, 16 parts of concrete superplasticizer, 1 part of defoaming agent, 70 parts of silicon powder, 115 parts of fly ash and 6 parts of activator. The preparation method comprises the following steps: blending the concrete superplasticizer and activator into weighed water to obtain a mixture, sequentially adding the fine aggregate and 1 / 3 of the mixture into a stirrer according to parts by weight, and stirring; adding the coarse aggregate and 1 / 3 of the mixture, and stirring; adding the cement, silicon powder and fly ash, and stirring; and adding the defoaming agent and the rest of mixture, stirring and discharging. The concrete can obviously improve the bonding property between the formed steel and the concrete in a natural state, effectively displays the respective mechanical properties and the synergic working performance of the steel and concrete, greatly enhances the loading capacity, service performance and durability of the structural member, and has favorable working performance and economical efficiency.

Description

technical field [0001] The invention belongs to the technical field of building materials, and relates to an ultra-high-strength high-performance concrete with a strength grade of C170 for steel-concrete composite structures. Background technique [0002] The invention of Portland cement in 1824 led to the rapid development of concrete technology. Its consumption is large and its scope of application ranks the highest in the world. Although concrete is a traditional man-made building material, because of its irreplaceable advantages (abundant raw materials, simple production process, high cost performance, etc.) and the continuous progress of concrete material science and technology, concrete has become the main body of civil engineering materials. , It will also be one of the indispensable main materials in future civil engineering and national construction. At the same time, with the continuous expansion of the city, the continuous increase of the population, the continuo...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B28/04
Inventor 郑山锁王帆杨威侯丕吉孙龙飞秦卿兰昆左河山郑捷
Owner XI'AN UNIVERSITY OF ARCHITECTURE AND TECHNOLOGY
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