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Novel light reinforced concrete wall material produced by mixing sintered aggregates and production method

A technology for reinforced concrete and lightweight walls, applied in ceramic molding machines, manufacturing tools, etc., can solve the problems of waterproof, fireproof, sound insulation and other performances that are difficult to meet the design and use requirements, lack of raw material sources, high production costs, etc., to achieve compression resistance The effect of superior anti-level performance, abundant sources, and low production cost

Active Publication Date: 2012-05-30
JIANHUA CONSTR MATERIALS (JIANGSU) CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the prior art, there are many methods for the production of reinforced concrete lightweight wall materials for construction, such as the high-strength composite material perlite building material whose patent number is 02131375.X, which discloses the use of magnesium oxide and various inorganic magnesium salts and Expanded perlite is a method for making building materials; the patent No. 96116414 steel fiber reinforced cement wallboard and its preparation method discloses that ordinary cement, inorganic light materials, steel fibers, coagulants, etc. are used as raw materials to The method for making cement wallboard; Patent No. 96116216.3 discloses that the cement / gypsum reed fiber composite material and its production method use reed fiber as a reinforcing material, cement or gypsum as a cementing raw material, and also includes filling materials, additives and water A method for making composite materials; the patent No. 96119059.0 of the ceramsite light-weight wallboard and its manufacturing process discloses that cement is used as a gelling agent, ceramsite is used as an aggregate, and expanded perlite is used as a filler, and special building materials are added. Glue, and the method of making light-weight wallboards with alkali-resistant glass fiber mesh reinforcement on the surface layer; these methods all have complex procedures, large environmental pollution, waste of resources, lack of raw material sources, high processing costs, and the strength of the produced products. Low, large shrinkage, waterproof, fireproof, sound insulation and other performances are difficult to meet the design and use requirements, and the production cost is relatively high.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] Produce the reinforced concrete lightweight novel wall material that the present invention mixes ceramsite and produce, first according to following ratio batching:

[0027] Cementitious material: sand: ceramsite: water reducer: water: foaming agent = 1: 0.8: 0.1: 0.0050: 0.16: 0.0021.

[0028] The inside is honeycomb, the particle size is 1-5mm, and the bulk density is 200kg / m 3 Saturation and wetting of the ceramsite, and then normal stirring and cutting, the sequence is to add a certain amount of sand to cover the bottom of the mixer, and then start to add cementitious materials, ceramsite to sand and 100% cementitious material, which is described The cementitious material is cement and fly ash admixture of grade 42.5 or above. After dry mixing the above materials for 5 seconds, add about 90% of the set water consumption, stir for 15 seconds, and then add 100% naphthalene-based high-efficiency reducing Water agent and foaming agent, then observe the slump to supplem...

Embodiment 2

[0030] Produce the reinforced concrete lightweight novel wall material that the present invention mixes ceramsite and produce, first according to following ratio batching:

[0031] Cementitious material: sand: ceramsite: water reducer: water: foaming agent = 1:1.50:1.2:0.0095:0.16~0.50:0.0050.

[0032] The inside is honeycomb shape, the particle size is 20-30mm, and the bulk density is 900kg / m 3 Saturation and wetting of the ceramsite, and then normal stirring and cutting, the sequence is to add a certain amount of sand to cover the bottom of the mixer, and then start to add cementitious materials, ceramsite to sand and 100% cementitious material, which is described The cementitious material is cement and fly ash admixture of grade 42.5 or above. After dry mixing the above materials for 40s, add about 90% of the set water consumption, stir for 40s, and then add 100% fatty acid in 30s. Water agent and foaming agent, then observe the slump to supplement the remaining 10% of wat...

Embodiment 3

[0034] Produce the reinforced concrete lightweight novel wall material that the present invention mixes ceramsite and produce, first according to following ratio batching:

[0035] Cementitious material: sand: ceramsite: water reducer: water: foaming agent = 1: 1.2: 0.8: 0.0075: 0.32: 0.0036.

[0036] The inside is honeycomb, the particle size is 5-15mm, and the bulk density is 500kg / m 3 Saturation and wetting of the ceramsite, and then normal stirring and cutting, the sequence is to add a certain amount of sand to cover the bottom of the mixer, and then start to add cementitious materials, ceramsite to sand and 100% cementitious material, which is described The cementitious material is cement and fly ash admixture of grade 42.5 or above. After dry mixing the above materials for 25 seconds, add about 90% of the set water consumption, stir for 30 seconds, and then add 100% fatty acid in 20 seconds. Water agent and foaming agent, then observe the slump to supplement the remaini...

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PUM

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Abstract

The invention discloses a novel light reinforced concrete wall material produced by mixing sintered aggregates, which is characterized in that the wall material comprises gelled materials, sands, sintered aggregates, water reducing agents, water, foaming agents and reinforcement cages, wherein the weight ratio of the components is 1 : 0.8-1.50 : 0.1-1.2 : 0.0050-0.0095 : 0.16-0.50 : 0.0021-0.0050. The invention aims to overcome the shortcomings of the prior art and provide a novel light reinforced concrete light wall material produced by mixing sintered aggregates with abundant raw material source, low production energy consumption and relatively lower production cost, and the invention also aims to provide a method for producing the novel light reinforced concrete light wall material produced by mixing sintered aggregates.

Description

technical field [0001] The invention relates to a new lightweight reinforced concrete wall material for construction produced by mixing ceramsite, and also relates to a production method for producing the new lightweight wall material. Background technique [0002] In the prior art, there are many methods for the production of reinforced concrete lightweight wall materials for construction, such as the high-strength composite material perlite building material whose patent number is 02131375.X, which discloses the use of magnesium oxide and various inorganic magnesium salts and Expanded perlite is a method for making building materials; the patent No. 96116414 steel fiber reinforced cement wallboard and its preparation method discloses that ordinary cement, inorganic light materials, steel fibers, coagulants, etc. are used as raw materials to The method for making cement wallboard; Patent No. 96116216.3 discloses that the cement / gypsum reed fiber composite material and its p...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B28/00B28B1/08C04B111/72
Inventor 许景新
Owner JIANHUA CONSTR MATERIALS (JIANGSU) CO LTD
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