Disintegration repairing device for making high quality sand and stone from construction waste

A technology for construction waste and repairing materials, applied in climate sustainability, sustainable waste treatment, solid waste management, etc., can solve the problems of fuel consumption, low cost, low heat rate, etc., to increase employment opportunities and protect the social and ecological environment. and the effect of the natural environment

Pending Publication Date: 2019-05-07
长沙紫宸科技开发有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the above-mentioned method can obtain high-quality recycled sand, stone aggregates and activated cement stone materials, there are the following problems: one needs to carry out heat treatment, consumes fuel, and the decomposition of fuel combustion and limestone aggregates produces air pollution and a large amount of carbon Second, it...

Method used

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  • Disintegration repairing device for making high quality sand and stone from construction waste
  • Disintegration repairing device for making high quality sand and stone from construction waste
  • Disintegration repairing device for making high quality sand and stone from construction waste

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] Such as figure 1 , 2As shown, the disintegration and repairing device of this embodiment adopts the form of a first-level disintegration and repairing mechanism, mainly including a disintegration and repairing mechanism 1, a high-pressure water system 2, and an inspection and discharge mechanism 3. The disintegration and repairing mechanism Mechanism 1 is a wet-type centrifugal grinding disintegration and repairing mechanism, which mainly includes a bracket 11, a cylinder body 12, a wear-resistant lining plate 13, an overflow grate plate 14, a wear-resistant impeller throwing tray 15, a main shaft 16, an overflow hole 17, The discharge port 18, the feed port 19, the discharge port 110, the cylinder body 12 are fixed on the bracket 11, the wear-resistant liner 13 is fixed on the inner wall of the cylinder body 12, and the overflow hole 17 is arranged on the cylinder body 12 on the side wall, the overflow grate plate 14 adopts the characteristics of holes of different si...

Embodiment 2

[0030] Such as image 3 As shown, the disintegration and repairing device of this embodiment adopts a dry disintegration and repairing device with a first-level disintegration and repairing mechanism, mainly including a disintegration and repairing mechanism 1, an inspection and discharge mechanism 3, a power mechanism 4, Material circulation mechanism6. The disintegration and repairing mechanism 1 mainly includes a bracket 11, a cylinder body 12, a wear-resistant lining plate 13, an overflow grate plate 14, a wear-resistant impeller throwing tray 15, a main shaft 16, an overflow hole 17, and a discharge port 18 , feed port 19, discharge port 110, dust collection port 111, the cylinder 12 is fixed on the support 11, the wear-resistant liner 13 is fixed on the inner wall of the cylinder 12, and the overflow hole 17 is arranged on the cylinder On the side wall of the body 12, the overflow grate 14 is fixed at the overflow hole 17, and the discharge port 110 is arranged at the o...

Embodiment 3

[0032] Such as Figure 4 As shown, the disintegration and repairing device of this embodiment adopts a three-stage wet disintegration and repairing mechanism, mainly including disintegration and repairing mechanism 1, disintegration and repairing mechanism 1IA, disintegration and repairing mechanism II1B, and high-pressure water system 2 , Overhaul discharge mechanism 3, power mechanism 4, power mechanism Ⅰ4A, power mechanism Ⅱ4B, discharge port 8. Among them, the material inlet and outlet of the disintegration and repairing mechanism 1IA are respectively connected with the outlet of the disintegration and repairing mechanism 1, and the material inlet of the disintegration and repairing mechanism II1B is connected to form a three-stage disintegration and repairing mechanism , the three-stage disintegration and repairing mechanism basically adopts the same structural form, and the disintegration and repairing mechanism 1 includes a bracket 11, a cylinder body 12, a wear-resista...

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Abstract

The invention discloses a disintegration repairing device for making high quality sand and stone from construction waste. The device includes disintegration repairing mechanisms, each mechanism consists of a bracket, a barrel, a wear-resistant liner plate, an overflow grate board, 1-3 wearproof impeller material throw discs, and a main shaft. The side wall of the barrel is equipped with overflow holes, the lowermost part of the barrel is equipped with a discharge valve, the barrel is fixed on the bracket, the wear-resistant liner plate is fixed on the inner wall of the barrel body, the overflow grate board is fixed at the overflow holes, the main shaft is fixed at the center of the barrel, and the wearproof impeller material throw discs are sequentially fixed on the main shaft at interval.The disintegration repairing device provided by the invention has the characteristics of simple technological process and equipment, small land occupation, low investment, and high disintegration separation efficiency, is conducive to resource utilization and popularization of construction waste, is conducive to protecting the social ecological environment and natural environment, and is conducive to increasing employment opportunities, and also can solve the shortage problem of admixture sources in cement enterprises to a certain extent.

Description

technical field [0001] The invention relates to the technical field of environmental protection equipment, in particular to a disintegration and repairing device for making high-quality sand and stones from construction waste. Background technique [0002] As we all know, the production of cement required for engineering construction requires high energy consumption and high pollution, and consumes a large amount of non-renewable clay-type aluminosilicate minerals and calcareous minerals (such as limestone) resources; Due to the influence of mining, coupled with the gradual depletion of high-quality sand and gravel resources, the supply of sand and gravel for engineering is tight and expensive. Due to cost reasons, gravel with high mud content (especially the mud content of sand used for concrete is generally as high as 5-22%) and sand gravel with high chloride salt (sea sand generally contains 0.1-1.5% chloride salt, cleaning The sea sand containing chlorine salt is still ...

Claims

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Application Information

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IPC IPC(8): C04B20/02C04B18/16
CPCY02W30/91
Inventor 尹小林韩建英
Owner 长沙紫宸科技开发有限公司
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