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High-pumping LC15 ceramsite concrete and preparation method thereof

A high pumping technology of ceramsite concrete, which is applied in the field of building materials, can solve problems such as rushing to the front end of the pump pipe or blockage at the elbow, easy floating of ceramsite, delamination, segregation, and influence on the performance of the mixture. Improves compressive strength, improves workability and water retention, and prevents floating

Inactive Publication Date: 2019-07-23
青岛中建富兴商砼有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, when the ceramsite concrete is pumped in production, there are problems such as ceramsite is easy to float, delaminate, and segregate. In addition, due to the high water absorption rate of ceramsite, especially under the action of pump pressure, ceramsite will rush to the pump due to pressure. At the same time, the water in the concrete is pressed into the interior of the ceramsite during the pumping process, which has a great impact on the performance of the mixture, resulting in local concrete lumps, which can easily cause pumping difficulties or even blockage. Tube phenomenon, the smaller the bulk density of ceramsite concrete, the greater the slump and expansion, the more prone to the above problems, the current technology is basically by controlling the concrete slump below 160mm, adding fly ash, silica fume and other glue However, there are still many phenomena such as pipe plugging, ceramsite layering and segregation, and difficulty in construction.

Method used

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  • High-pumping LC15 ceramsite concrete and preparation method thereof
  • High-pumping LC15 ceramsite concrete and preparation method thereof
  • High-pumping LC15 ceramsite concrete and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

preparation example 1-3

[0037] In the preparation example 1-3, the epoxy resin is selected from the epoxy resin of E-44 sold by Guangzhou Gongying Chemical Co., Ltd., and the polyacrylamide is selected from the model FQ-XA sold by Gongyi Tenglong Water Treatment Materials Co., Ltd. The polyacrylamide and modified starch ether are selected from the modified starch ether of model S301 sold by Shanghai Shuoshi Chemical Co., Ltd., and the lignocellulose is selected from the lignocellulose and polyester of model C2800 sold by Langfang Guyuan Building Materials Technology Co., Ltd. The succinimide is selected from the polysuccinimide sold by Shandong Yuanlian Chemical Co., Ltd. with the model number PSI.

preparation example 1

[0038] Preparation Example 1: According to the ratio of raw materials in Table 1, 2kg of epoxy resin was added to 5kg of water, stirred at a speed of 2000r / min for 20min to form an epoxy resin emulsion, and 1kg of polyacrylamide was added to the ring in 2 times. In the epoxy resin emulsion, stir at a rotating speed of 500r / min. After mixing evenly, add 2.3kg modified starch ether, 0.8kg carboxymethyl cellulose sodium and 0.3kg retarder, mix evenly, and the granules of modified starch ether The diameter is 200μm, and the retarder is made by mixing the following components: 1.2kg sodium phosphate, 2.1kg lignin fiber, 1.6kg sodium gluconate and 0.7kg polysuccinimide.

[0039] The raw material ratio of pumping agent in table 1 preparation example 1-3

[0040]

preparation example 2

[0041] Preparation Example 2: According to the ratio of raw materials in Table 1, add 3kg of epoxy resin to 6.5kg of water, stir at a speed of 2500r / min for 25min to form an epoxy resin emulsion, add 1.3kg of polyacrylamide in 3 times Add 2.9kg of modified starch ether, 1.2kg of carboxymethyl cellulose sodium and 0.5kg of retarder to the epoxy resin emulsion, stir at a speed of 650r / min, and mix evenly. The particle size is 250μm, and the retarder is made by mixing the following components: 1.6kg sodium phosphate, 2.4kg lignin fiber, 1.7kg sodium gluconate and 0.9kg polysuccinimide.

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Abstract

The invention discloses high pumping LC15 ceramsite concrete and a preparation method thereof. The high pumping LC15 ceramsite concrete comprises the following components: cement, sand, ceramsite, mixing water, fly ash, an additive, ore slag powder, a pumping agent and aqueous polyurethane emulsion; the additive is a polycarboxylate superplasticizer, and the pumping agent is compounded by the following components: modified starch ether, polyacrylamide, sodium carboxymethyl cellulose, a retarder, epoxy resin and water. The high pumping LC15 ceramsite concrete enables the ceramsite to fully absorb water, and then through the aqueous polyurethane emulsion and the pumping agent, the bonding of the ceramsite with cementing materials such as the cement, the fly ash and the like is promoted, thecohesiveness and water retention of the ceramsite concrete are increased, and the ceramsite is not easy to float up, delaminate and segregate; and the aqueous polyurethane emulsion is used to adhere an inorganic heat preservation modifier to the ceramsite, and the weight of the ceramsite is increased, so that the ceramsite is not easy to float up, delaminate and segregate, and the heat preservation performance of the ceramsite concrete is improved.

Description

technical field [0001] The invention relates to the technical field of building materials, in particular to a high-pumpable LC15 ceramsite concrete and a preparation method thereof. Background technique [0002] With the reform of wall materials, building energy conservation is becoming more and more important, and the design and application of wall bodies are mainly sustainable in the direction of light weight, good energy saving and thermal insulation performance, high strength, high durability and high safety. Therefore, compared with ordinary concrete, ceramsite concrete, which has good workability, high strength and light weight, fire resistance, self-insulation, moisture and sound insulation, volume stability and durability safety, has attracted more and more attention and recognition in engineering applications. Good economic and social benefits have been achieved in reducing the weight of the structure, saving the amount of materials, comprehensively utilizing resour...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B24/38C04B28/04
CPCC04B28/04C04B40/0039C04B2201/20C04B2201/32C04B2201/50C04B24/38C04B24/2652C04B24/383C04B24/281C04B22/16C04B18/26C04B24/10C04B24/287C04B14/06C04B18/08C04B18/141C04B24/282C04B18/027C04B14/28C04B14/104C04B14/042C04B14/40
Inventor 董京峰
Owner 青岛中建富兴商砼有限公司
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