Dry type recovery device for core material waste of fireproof inorganic core material aluminum composite board

By combining a crusher and a screening machine, the problems of uneven particle size and dust pollution in the recycling of core material waste are solved, achieving efficient dry recycling and clean production.

CN223655192UActive Publication Date: 2025-12-12JIANGSU ALUMEIGE NEW MATERIALS
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Patent Information

Application Number
CN202423144780.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-12-12
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

In existing core material waste recycling devices, the waste particles are of varying sizes, making them difficult to reuse, and the dust pollution is severe, leading to material waste and environmental pollution.

Method used

Waste materials are crushed by a pulverizer, drawn into a buffer tank by a fan, and dust enters a bag filter. The material is then separated by a screening machine through multiple layers, achieving dry recycling.

Benefits of technology

It improves the recycling rate of waste materials, reduces dust pollution, enhances the cleanliness of the working environment, and increases the recyclability of materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dry type core material waste recovery device for a fireproof inorganic core material aluminum composite board. The dry type core material waste recovery device comprises a support, a material receiving hopper, a driving device, a conveying belt, a pulverizer, a buffer tank, a main material screening machine, an auxiliary material screening machine, a fan and a bag-type dust collector. The receiving hopper is connected below the support, the driving device is hinged to a rotating shaft at one end of the conveying belt through a transmission chain, one end of the conveying belt is connected below the receiving hopper, and the other end of the conveying belt is connected to a receiving opening of the pulverizer. A discharge port of the crusher and an air inlet of the fan are connected with the buffer tank, an air outlet of the fan is connected with the bag-type dust collector, and a discharge port of the upper layer of the main material screening machine is connected with a feed port of the auxiliary material screening machine; compared with the prior art, the core material waste is crushed by the crusher, the crushed waste is sucked into the screening machine by the fan, effective materials are obtained through layer-by-layer screening separation, and dry type recovery of the core material waste is realized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to fireproof material production equipment technical field, especially in kind of core material waste dry recovery device of fireproof inorganic core material aluminum composite panel. BACKGROUND

[0002] At present, in order to reach fire safety standard, fireproof composite board is widely used in engineering construction, indoor decoration etc., and the fireproof effect of A2 grade fireproof inorganic core material aluminum composite panel is the most excellent, and its core plate is the key to fireproof, so in the production process, core material is the important part of fireproof aluminum composite panel, and the core material of A2 grade fireproof inorganic core material aluminum composite panel is formed by stirring multiple inorganic powders, is wrapped with non-woven fabric to extrude preliminary forming using mixed slurry, is shaped after the preliminary forming of core material and is rolled after drying, is finally trimmed by cutting device, and the long strip waste after cutting is collected and transferred to the crusher for crushing treatment, and valuable materials in waste are recovered.

[0003] In the existing core material waste recovery device, the crushing assembly of cutting tool is usually used to directly crush the core material waste and collect it into ton bag, the size proportion of recovered waste particles is uneven, and there are ingredients that are difficult to reuse, so that the materials that can be recycled and used are limited, and there is no corresponding dust treatment during processing, which seriously pollutes the working environment. UTILITY MODEL CONTENT

[0004] The utility model solves the technical problem to provide a kind of core material waste dry recovery device of fireproof inorganic core material aluminum composite panel, by using the core material waste of pulverizer, fan is inhaled into buffer tank after the waste of crushing, waste falls into screening machine from buffer tank, after layer layer screening separation, obtain effective utilization material, realize dry recovery to core material waste, the dust not falling into screening machine in buffer tank is extracted into bag-type dust collector by fan and is recycled.

[0005] The utility model realizes by the following technical scheme:

[0006] The application discloses a kind of waste dry recovery devices of fireproof inorganic core material aluminum composite panel core material, including support one, support two, support three, receiving hopper, further including pulverizer, fan and bag dust collector, receiving hopper is connected in the bottom of the inside of support one, pulverizer, fan and bag dust collector are connected respectively in the front of support two, top and one side, the air outlet of fan is connected with bag dust collector, the top surface of the bottom of support one and support two is respectively connected with driving device one and driving device two, the discharge port of receiving hopper and the feed inlet of pulverizer are connected with transmission belt, the support two above driving device two is connected with main screening machine, the top of support two is connected with buffer tank and driving device three, the feed inlet of main screening machine is connected with the bottom of buffer tank, the discharge port of pulverizer and the air inlet of fan are connected with the upper end of buffer tank, the first layer of support three is connected with auxiliary screening machine one, the second layer is connected with auxiliary screening machine two, and the discharge port of the upper layer of main screening machine is connected with the feed inlet of auxiliary screening machine.

[0007] Further, driving device one, driving device two and driving device three are motors.

[0008] Further, the output end of driving device one and driving device two is connected with the transmission belt below receiving hopper and the input shaft of pulverizer respectively by pulley, and the output end of driving device three is connected with the input shaft of fan.

[0009] Further, the vibration position of main screening machine has four layers, and each layer is connected with discharge port one, discharge port two, discharge port three and discharge port four from bottom to top, and the vibration position of auxiliary screening machine has two layers, and the two auxiliary screening machines are connected with discharge port five, discharge port six, discharge port seven and discharge port eight from bottom to top.

[0010] Further, the discharge port one and the discharge port two are connected with receiving pipe below, and the receiving pipe below discharge port two is connected with the feed inlet pipeline of pulverizer.

[0011] Further, the discharge port three and the discharge port four are connected with the feed inlet of auxiliary screening machine one and auxiliary screening machine two below respectively by connecting plate one and connecting plate two.

[0012] Further, the buffer tank is connected with the discharge port of pulverizer and the air inlet of fan, and the air outlet of fan and bag dust collector are connected by pipeline.

[0013] Compared with the prior art, the present application has the following obvious advantages:

[0014] The utility model discloses a core material waste recycling device, which comprises a support, a receiving hopper, a driving device, a conveying belt, a pulverizer, a main filter, a buffer tank, a fan, a bag dust collector, a vice screening machine and a connecting plate.

[0015] The second layer of waste material left in the main screening machine from the bottom to the top after screening falls on the connecting plate one and the connecting plate two through the discharge port three and the discharge port four respectively, slides into the feed inlet of the vice screening machine one and the vice screening machine two for secondary screening, further separates useless waste material and recyclable material, reduces the waste of recyclable material, and improves the recycling efficiency and utilization rate of core material waste.

[0016] The third layer of waste material left in the main screening machine from the bottom to the top after screening falls into the feed inlet of the vice screening machine one and the vice screening machine two through the discharge port three and the discharge port four respectively, slides into the feed inlet of the vice screening machine one and the vice screening machine two for secondary screening, further separates useless waste material and recyclable material, reduces the waste of recyclable material, and improves the recycling efficiency and utilization rate of core material waste. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the whole structure schematic view of the utility model.

[0018] Among them, the relationship between the sign and the corresponding name is as follows:

[0019] 1, support one, 2, support two, 3, support three, 4, receiving hopper, 5, driving device one, 6, conveying belt, 7, driving device two, 8, pulverizer, 9, main filter, 901, discharge port one, 902, discharge port two, 903, discharge port three, 904, discharge port four, 905, connecting plate one, 906, connecting plate two, 10, buffer tank, 11, driving device three, 12, fan, 13, bag dust collector, 14, vice screening machine one, 1401, discharge port five, 1402, discharge port six, 15, vice screening machine two, 1501, discharge port seven, 1502, discharge port eight. DETAILED DESCRIPTION

[0020] The utility model will be introduced in detail in combination with the drawings.

[0021] For example, Figure 1The utility model provides a kind of core material waste dry recovery device of fireproof inorganic core material aluminum composite board, including support one 1, support two 2, support three 3, receiving hopper 4, drive device one 5, conveying belt 6, drive device two 7, pulverizer 8, main filter 9, buffer tank 10, drive device three 11, fan 12, cloth bag dust collector 13, vice screening machine one 14, vice screening machine two 15;In the embodiment, drive device one 5, drive device two 7 and drive device three 11 are all motor, receiving hopper 4 is connected in the inside bottom of support one 1, drive device one 5 is connected on the top surface of the bottom of support one 1, pulverizer 8 is connected in the front of support two 2, conveying belt 6 is connected between the discharge port of receiving hopper 4 and the feed inlet of pulverizer 8, the output end of drive device one 5 is connected with the input shaft of conveying belt 6 by pulley.

[0022] Drive device two 7 is connected on the top surface of the bottom of support two 2, the output end of drive device two 7 is connected with the input shaft of pulverizer 8 by pulley, main screening machine 9 is connected on support two 2 above drive device two 7, the vibration position of main screening machine 9 has four layers, discharge port one 901, discharge port two 902, discharge port three 903 and discharge port four 904 are connected from below to above, discharge port one 901 and discharge port two 902 below are connected with receiving pipe, the receiving pipe below discharge port two 902 is connected with the feed inlet pipeline of pulverizer 8;Buffer tank 10, drive device three 11 and fan 12 are connected on the top of support two 2, the output end of drive device three 11 is connected with the input shaft of fan 12, the bottom of buffer tank 10 is connected with the feed inlet of main screening machine 9, the discharge port of pulverizer 8 and the air inlet of fan 12 are connected with the upper end portion of buffer tank 10 by pipeline, cloth bag dust collector 13 is connected on the side of support two 2, the air outlet of fan 12 is connected with cloth bag dust collector 13 by pipeline.

[0023] Support three 3 has two layers not in the same vertical direction, one layer is connected with vice screening machine one 14, two layers are connected with vice screening machine two 15, the vibration position of vice screening machine has two layers, vice screening machine one 14 and vice screening machine two 15 are respectively connected with discharge port five 1401, discharge port six 1402, discharge port seven 1501 and discharge port eight 1502 from below to above, the discharge port three 903 and discharge port four 904 below of main screening machine 9 are respectively connected with the feed inlet of vice screening machine one 14 and vice screening machine two 15 between connection plate one 905 and connection plate two 906.

[0024] The utility model discloses a main sieve machine 9, vice sieve machine one 14 and vice sieve machine two 15 are opened to the operator, the ton bag of bottom opening that is equipped with core material waste is placed in the top of support one 1, and the core material waste leaks from the top of support one 1, and falls into the receiving hopper, and the operator opens all drive devices, and drive device one 5 drives the transmission belt 6 to transmit the core material waste that falls from the receiving hopper 4, and the core material waste at the top end of the end of transmission belt 6 falls into the receiving port of the rubbing crusher 8 and enters the rubbing crusher 8, and drive device two 7 drives the rubbing crusher 8 to run, and the core material waste that is crushed is driven, and drive device three 11 drives the fan 12 to run, and the air in the buffer tank 10 is extracted to form negative pressure, and the core material waste that is crushed in the rubbing crusher 8 is extracted into the buffer tank 10, and after the core material waste enters the buffer tank 10, a part falls into the main sieve machine 9, and another part dust is extracted by the fan 12 and is transmitted into the bag dust collector 13 and is recycled.

[0025] The core material waste that falls into the main sieve machine 9 is sieved and separated layer by layer in the vibration process of the main sieve machine 9, and the waste that remains in the uppermost two layers respectively slides into the feed port of vice sieve machine one 14 and vice sieve machine two 15 through discharge port three 903 and discharge port four 904 and the corresponding connecting plate one 905 and connecting plate two 906 connected below, and the waste is sieved twice in vice sieve machine one 14 and vice sieve machine two 15, and the useless waste falls out from discharge port six 1402 and discharge port eight 1502, and the recyclable material obtained after filtration falls out from discharge port five 1401 and discharge port 1501; the waste that remains in the second layer of the main sieve machine 9 falls into the connecting pipe connected below through discharge port two 902, and the waste enters the feed port pipe of the rubbing crusher 8 again through the connecting pipe and is sieved again, and the waste that remains in the bottom layer of the main sieve machine 9 is the recyclable material obtained after sieving and filtering and falls into the connecting pipe connected below through discharge port one 901; the operator receives the useless waste and the recyclable material output through the ton bag connected below each discharge port and connecting pipe, and dry recycling of the core material waste is completed.

[0026] The above embodiment is only for illustrating the technical concept and characteristics of the utility model, and the purpose is to enable the person skilled in the art to understand the content of the utility model and to implement it, and it cannot limit the protection scope of the utility model. Any equivalent transformation or modification according to the spirit and essence of the utility model should be covered in the protection scope of the utility model.

Claims

1. A dry recycling device for core material waste of fireproof inorganic core aluminum composite panels, comprising a support frame one (1), a support frame two (2), a support frame three (3), a receiving hopper (4), and further comprising a crusher (8), a fan (12), and a bag filter (13), wherein the receiving hopper (4) is connected to the inner bottom of the support frame one (1), the crusher (8), the fan (12), and the bag filter (13) are respectively connected to the front, top, and side of the support frame two (2), and the air outlet of the fan (12) is connected to the bag filter (13), characterized in that: The bottom and top surfaces of the first bracket (1) and the second bracket (2) are respectively connected to the first drive device (5) and the second drive device (7). A conveyor belt (6) is connected between the discharge port of the receiving hopper (4) and the inlet of the crusher (8). The main screener (9) is connected to the second bracket (2) above the second drive device (7). The top of the second bracket (2) is connected to the buffer tank (10) and the third drive device (11). The bottom of the buffer tank (10) is connected to the inlet of the main screener (9). The discharge port of the crusher (8) and the air inlet of the fan (12) are connected to the upper end of the buffer tank (10). The first layer of the third bracket (3) is connected to the first auxiliary screener (14), and the second layer is connected to the second auxiliary screener (15). The discharge port of the upper layer of the main screener (9) is connected to the inlet of the auxiliary screener.

2. The dry recycling device for core material waste of fireproof inorganic core aluminum composite panels according to claim 1, characterized in that: The drive device one (5), drive device two (7) and drive device three (11) are all motors.

3. The dry recycling device for core material waste of fireproof inorganic core aluminum composite panels according to claim 1, characterized in that: The output ends of drive device one (5) and drive device two (7) are connected to the conveyor belt (6) below the receiving hopper (4) and the input shaft of the crusher (8) respectively via pulleys, and the output end of drive device three (11) is connected to the input shaft of the fan (12).

4. The dry recycling device for core material waste of fireproof inorganic core aluminum composite panels according to claim 1, characterized in that: The main screening machine (9) has four vibration positions, and each layer is connected from bottom to top with discharge port one (901), discharge port two (902), discharge port three (903) and discharge port four (904). The auxiliary screening machine has two vibration positions, and the two auxiliary screening machines are connected from bottom to top with discharge port five (1401), discharge port six (1402), discharge port seven (1501) and discharge port eight (1502).

5. The dry recycling device for the core material waste of a fireproof inorganic core aluminum composite panel according to claim 4, characterized in that: Below the discharge port 1 (901) and discharge port 2 (902), there is a receiving pipe. The receiving pipe below discharge port 2 (902) is connected to the feed inlet pipe of the crusher (8).

6. The dry recycling device for the core material waste of a fireproof inorganic core aluminum composite panel according to claim 4, characterized in that: Below the discharge port three (903) and discharge port four (904), there are connecting plates one (905) and two (906) respectively connected to the feed ports of auxiliary screening machine one (14) and auxiliary screening machine two (15).

7. The dry recycling device for core material waste of fireproof inorganic core aluminum composite panels according to claim 1, characterized in that: The buffer tank (10) is connected to the discharge port of the crusher (8) and the air inlet of the fan (12) through a pipeline, as is the air outlet of the fan (12) and the bag filter (13).