Production line for fireproof heat-insulating wall plates, and method for on-site processing of fireproof heat-insulating wall plates by utilizing production line

A technology of fire prevention, heat preservation and on-site processing, which is applied in the direction of manufacturing tools, ceramic molding workshops, ceramic molding machines, etc., which can solve the problems of bulky elevators, poor economic benefits, and large investment, and achieve transportation cost savings, simple equipment, and low investment. Effect

Inactive Publication Date: 2012-10-03
山东信发环保科技有限责任公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The existing multi-layer fireproof and thermal insulation wall panel processing equipment, including conveyor belts and elevators, are bulky, occupy a large area, and require a large investment. They cannot be processed and produced on site, and the finished products must be transported long distances before they can

Method used

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  • Production line for fireproof heat-insulating wall plates, and method for on-site processing of fireproof heat-insulating wall plates by utilizing production line
  • Production line for fireproof heat-insulating wall plates, and method for on-site processing of fireproof heat-insulating wall plates by utilizing production line
  • Production line for fireproof heat-insulating wall plates, and method for on-site processing of fireproof heat-insulating wall plates by utilizing production line

Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0034] Example 1: as Figure 1-2 As shown, the production line of this fireproof and thermal insulation wallboard includes a mixer 1, a pouring truck 2 and two rows of pouring molds 3. The mixer 1 includes a stirring tank 101. The stirring tank 101 is provided with a stirring paddle driven by an external motor. The stirring tank 101 The top is provided with a liquid feeding device and a solid feeding device, and the bottom of the stirring tank 101 is provided with a discharging valve 102. The stirring tank 101 is fixed on a bracket 113. The bracket is provided with four feet, and the four feet support the stirring tank 101. , forming a passing space 103 .

[0035] The liquid feeding device includes a water storage tank 104, the water storage tank 104 is provided with a liquid level gauge 105, the bottom of which is communicated with the stirring tank 101 through a discharge pipe, and a valve 106 is provided on the discharge pipe; the solid The feeding device includes a feedin...

Example Embodiment

[0047] Embodiment 2: In the 1st step of processing fire-proof thermal insulation wallboard: 50 parts by weight of high-strength concrete, 32 parts by weight of sawdust, orange pole or other plant fiber powder, 40 parts by weight of fly ash, 48 parts by weight of water Drop into the stirring tank and stir for 2.5 minutes to obtain the pouring slurry; in step 3: indoor curing is 3.5 hours, indoor curing is 5 days, and outdoor natural curing time is 18 days, and the remaining steps and operations are as shown in Example 1 .

Example Embodiment

[0048] Embodiment 3: In the 1st step of processing fire-proof thermal insulation wallboard: 55 parts by weight of high-strength concrete, 35 parts by weight of sawdust, orange pole or other plant fiber powder, 40 parts by weight of fly ash, 40 parts by weight of water Drop into the stirring tank and stir for 2-3 minutes to obtain the pouring slurry; in the 3. step: indoor curing is 4.5 hours, indoor curing is 4 days, and outdoor natural curing time is 20 days, and the remaining steps and operations are as in Example 1 shown.

[0049] The cement foam insulation board used in the above embodiment is made according to the following method:

[0050] The first method of manufacturing the cement foam insulation board:

[0051] ⑴. Take 50 parts by weight of 525 cement, 36 parts by weight of fly ash, 1.3 parts by weight of calcium stearate (GB) and 0.4 parts by weight of sodium hexametaphosphate (GB), put into the mixer through a solid feeding device, uniform dry mixing;

[0052] ...

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PUM

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Abstract

The invention relates to a production line for fireproof heat-insulating wall plates, and a method for on-site processing of the fireproof heat-insulating wall plates by utilizing the production line, and solves the problems that the conventional multi-layer fireproof heat-insulating wall plate processing equipment has a large occupied area, high investment and failure in on-site processing. Therefore, the production line comprises a stirrer, a pouring vehicle, and two lines of pouring molds, wherein the stirrer comprises an agitation tank; a stirring paddle driven by an external motor is arranged in the agitation tank; the agitation tank is provided with a liquid feeding device, a solid feeding device and a baiting valve, and is fixed on four support legs; the pouring vehicle comprises a vehicle body and a wagon box; the wagon box is fixed on the vehicle body; wheels are arranged below the vehicle body; the opening of the wagon box faces upwards; an emptying gate is arranged at the rear part of the wagon box; and a scraping plate is arranged on a fixing bracket behind the emptying gate. The invention further relates to a corresponding processing method. The production line has the advantages of low investment and small occupied area, ensures on-site processing, saves transportation cost, and is an ideal upgrading product for the conventional fireproof heat-insulating wall plate production line.

Description

technical field [0001] The invention relates to a production equipment and method of fireproof and heat-preserving wallboards, in particular to a production line of fireproof and heat-preserving wallboards and a method for on-site processing of fireproof and heat-preserving wallboards using the production line. Background technique [0002] The existing multi-layer fireproof and thermal insulation wall panel processing equipment, including conveyor belts and elevators, are bulky, occupy a large area, and require a large investment. They cannot be processed and produced on site, and the finished products must be transported long distances before they can be transported to the construction site for construction. building. The economic benefit is poor, and the prior art is in urgent need of a device with less investment and less land occupation, which can be transported to the construction site and processed on-site for fireproof and thermal insulation wall panels. Contents o...

Claims

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Application Information

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IPC IPC(8): B28B15/00B28B1/52B28B1/50B28B1/29C04B28/04
Inventor 刘恒水刘可光
Owner 山东信发环保科技有限责任公司
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