Artificial agglomerated stone waste residue recycling device

By designing the structure of the filter box and the crushing box, and combining the motor and filter plate to adsorb dust, and the cleaning liquid to clean the filter plate, the problem of dust pollution and blockage in the recycling process of artificial quartz waste residue is solved, and efficient and environmentally friendly waste residue recycling is achieved.

CN223587236UActive Publication Date: 2025-11-25GUANGXI HEZHOU LONGGUANG STONE IND CO LTD +1
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Patent Information

Application Number
CN202422811603.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-11-25
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

Existing artificial quartz stone waste recycling equipment generates a large amount of dust during the recycling process, which affects the health of processing personnel, damages equipment, and has low production efficiency.

Method used

A device comprising a filter box, a crushing box, and a recycling box was designed. It uses a fan, a motor, and a filter plate structure to adsorb dust, and cleans the filter plate with a cleaning fluid. Combined with a crushing hammer and a screening plate structure, it prevents clogging and improves production efficiency.

Benefits of technology

It effectively filters and recycles dust generated during the process, protects equipment, improves production efficiency, reduces pollution, prevents waste residue from clogging the feed inlet, and improves processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an artificial agglomerated stone waste residue recycling device, which belongs to the technical field of artificial agglomerated stone waste residue treatment and comprises a support used for supporting artificial agglomerated stone waste residue recycling, a filter box is mounted at the top of the support, an air inlet pipe is connected to the side face of the filter box, a fan is mounted in the air inlet pipe, and the fan is connected with the filter box. A third motor is installed on the vertical inner wall of the filtering box, an output shaft of the third motor is connected with a cross-shaped connecting frame through a coupler, round filtering frames are welded to the four ends, away from the third motor, of the cross-shaped connecting frame, and round filtering plates are arranged in the round filtering frames; a square filtering frame is slidably installed in the filtering box, a square filtering plate is arranged in the square filtering frame, and an air outlet is connected to the top of the filtering box. The device can filter a large amount of dust generated in the recycling process, can prevent a feeding port from being blocked, utilizes raw materials to the maximum extent, and improves the product quality.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to artificial stone waste residue processing technical field especially, one kind is artificial stone waste residue recycling device. BACKGROUND

[0002] With the rapid development of artificial stone industry, a large amount of waste residue produced in the production process of artificial stone has become a problem to be solved. These waste residues not only occupy a large amount of land resources, but also pollute the environment, the existing artificial stone waste residue recycling device can meet the basic recycling of artificial stone waste residue, but a large amount of dust will be generated in the recycling process, affecting the health of processing personnel, damaging equipment and reducing production efficiency.

[0003] After searching, Chinese patent document (authorized announcement number CN218925198U), the utility model provides a kind of artificial stone waste residue recycling device, is related to artificial stone waste residue recycling technical field.The artificial stone waste residue recycling device includes box body, the box body is rotatably connected with sleeve inside, the sleeve is slidably connected with threaded rod inside, the threaded rod outside is fixedly connected with two mill plates, the mill plate bottom is provided with first filter screen.The artificial stone waste residue recycling device removes the artificial stone waste residue clamped inside first filter screen, prevents artificial stone waste residue from blocking first filter screen, and is further provided with smaller filter hole than first filter screen, so that smaller artificial stone waste residue can be screened by second filter screen, then large-particle artificial stone waste residue is screened to the edge of second filter screen, this structure is conducive to screening artificial stone waste residue more thoroughly, so as to facilitate recycling of artificial stone waste residue, the device can meet the basic recycling of artificial stone waste residue, but a large amount of dust will be generated in the recycling process, affecting the health of processing personnel, damaging equipment and reducing production efficiency. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a kind of artificial stone waste residue recycling device to solve the problems in the background art.

[0005] In order to achieve the above object, the utility model provides the following technical scheme: A kind of artificial stone waste recovery and utilization device, including support for supporting artificial stone waste recovery and utilization, the top of the support is equipped with filter box, the side of the filter box is connected with air inlet pipe, the inside of the air inlet pipe is equipped with fan, the vertical inner wall of the filter box is equipped with third motor, the output shaft of the third motor is connected with cross connecting frame by coupling, the four end portions of the cross connecting frame away from third motor are welded with circular filter frame, the inside of the circular filter frame is provided with circular filter plate, the inside of the square filter frame that the filter box is slidably installed is provided with square filter plate, the top of the filter box is connected with air outlet, the top of the filter box is provided with second sealing mouth and first sealing mouth.

[0006] Preferably, the top of the support is connected with a crushing box, the inside of the crushing box is equipped with a crushing hammer, the vertical inner wall of the crushing box is connected with an air inlet cover, one end of the air inlet cover is connected with the air inlet pipe, the bottom of the crushing box is welded with a guide plate, the top of the crushing box is connected with a feeding box for the artificial stone waste to enter.

[0007] Preferably, the vertical inner wall of the feeding box is connected with a connecting column, the outer periphery of the connecting column is welded with a baffle, the side of the feeding box is equipped with a first motor, the output shaft of the first motor is connected with a rotating shaft by a coupling.

[0008] Preferably, the outer periphery of the rotating shaft is equipped with a first cam, the vertical inner wall of the feeding box is connected with a rotating shaft, the outer periphery of the rotating shaft is welded with a discharging plate, the side of the discharging plate is equipped with a first hitting block.

[0009] Preferably, the bottom of the crushing box is equipped with a recovery box, the vertical inner wall of the recovery box is equipped with two fixed plates, the side of the two fixed plates is connected with a spring, the end of the spring away from the fixed plate is connected with a first screening plate and a second screening plate respectively, the side of the first screening plate and the second screening plate is equipped with a second hitting block.

[0010] Preferably, the vertical inner wall of the recovery box is connected with a supporting column, one end of the supporting column is equipped with a second motor, the output shaft of the second motor is connected with a second cam by a coupling, the bottom of the recovery box is provided with a fine material recovery box, the side of the recovery box is provided with a coarse material recovery box.

[0011] Preferably, the top of the support is equipped with a driving mechanism for driving, the output shaft of the driving mechanism is connected with the crushing hammer.

[0012] Compared with the prior art, the technical effect and advantages of the utility model are:

[0013] The artificial stone waste residue recycling device, thanks to the structure of the filter box, opens the fan, and the dust generated by feeding and crushing enters the filter box through the air inlet pipe, the dust is adsorbed by the circular filter plate, and finally is discharged through the square filter plate and the air outlet; after running for a period of time, the third motor is opened, the output shaft of the third motor drives the cross connecting frame to rotate, the cross connecting frame drives the circular filter frame to rotate, the circular filter plate is in contact with the cleaning liquid at the bottom of the filter box, and the circular filter plate is cleaned; when the circular filter frame rotates, the dust entering the filter box can continue to be adsorbed by the square filter plate, and the dust is filtered; finally, the square filter plate and the circular filter plate can be replaced through the second sealing port and the first sealing port; the cleaning liquid in the filter box can be discharged and replaced through the side discharge port; compared with the traditional artificial stone waste residue recycling device which directly collects waste, the structure can complete the recycling of artificial stone waste residue, filter a large amount of dust generated in the recycling process, reduce the pollution caused by waste residue filling, protect the production equipment and improve the production efficiency.

[0014] The artificial stone waste residue recycling device, thanks to the structure of the filter box, opens the fan, and the dust generated by feeding and crushing enters the filter box through the air inlet pipe, the dust is adsorbed by the circular filter plate, and finally is discharged through the square filter plate and the air outlet; after running for a period of time, the third motor is opened, the output shaft of the third motor drives the cross connecting frame to rotate, the cross connecting frame drives the circular filter frame to rotate, the circular filter plate is in contact with the cleaning liquid at the bottom of the filter box, and the circular filter plate is cleaned; when the circular filter frame rotates, the dust entering the filter box can continue to be adsorbed by the square filter plate, and the dust is filtered; finally, the square filter plate and the circular filter plate can be replaced through the second sealing port and the first sealing port; the cleaning liquid in the filter box can be discharged and replaced through the side discharge port; compared with the traditional artificial stone waste residue recycling device which directly collects waste, the structure can complete the recycling of artificial stone waste residue, filter a large amount of dust generated in the recycling process, reduce the pollution caused by waste residue filling, protect the production equipment and improve the production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the following will briefly introduce the drawings needed to be used in the specific embodiments or the prior art description. Obviously, the drawings described below are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.

[0016] Figure 1 It is a structural schematic diagram of the present application;

[0017] Figure 2 It is an internal structural schematic diagram of the present application;

[0018] Figure 3 It is a sectional view of the present application;

[0019] Figure 4 It is an internal structural schematic diagram of the filter box of the present application;

[0020] Figure 5 It is an internal structural schematic diagram of the filter box of the present application; Figure 2 It is an enlarged view of A in the present application;

[0021] Figure 6 It is the structure schematic view of the utility model fixed plate.

[0022] Mark explanation:

[0023] In the drawing: 1, drive mechanism;101, support;2, feed box;201, connecting column;202, baffle;203, rotating shaft;204, blanking plate;205, first motor;206, rotating shaft;207, first cam;208, first beating block;3, crushing box;301, air inlet cover;302, fan;303, air inlet pipe;304, crushing hammer;305, guide plate;4, recycling box;401, second motor;402, second cam;403, first screening plate;404, second screening plate;405, second beating block;406, fine material recycling box;407, coarse material recycling box;408, support column;409, spring;410, fixed plate;5, filter box;501, air outlet;502, second sealing port;503, first sealing port;504, square filter frame;505, square filter plate;506, circular filter frame;507, circular filter plate;508, third motor;509, cross connecting frame. DETAILED DESCRIPTION

[0024] In the following description, a large number of specific details are given to provide a more thorough understanding of the utility model. However, it is obvious to those skilled in the art that the utility model can be implemented without one or more of these details. In other examples, some technical features known in the art are not described to avoid obscuring the utility model.

[0025] The connection mode can adopt existing modes such as bonding, welding, bolt connection and the like, and the actual needs are accurate.

[0026] As Figures 1 to 6The artificial stone waste recycling device shown includes a support 101 for supporting artificial stone waste recycling, a filter box 5 is installed at the top of the support 101, an air inlet pipe 303 is connected to the side of the filter box 5, a fan 302 is installed inside the air inlet pipe 303, a third motor 508 is installed on the vertical inner wall of the filter box 5, a cross connecting frame 509 is connected to the output shaft of the third motor 508 through a shaft coupling, the shaft coupling is a mechanical part used to connect two shafts (driving shaft and driven shaft), allowing them to rotate together and transmit torque. Its basic principle is to transmit power from the driving shaft to the driven shaft through mechanical connection, while allowing a certain degree of axial, radial and angular displacement to compensate for the misalignment of the two shafts during installation and operation. The four end portions of the cross connecting frame 509 away from the third motor 508 are welded with circular filter frames 506, the inside of the circular filter frames 506 is provided with circular filter plates 507, the inside of the filter box 5 is slidably installed with a square filter frame 504, the inside of the square filter frame 504 is provided with a square filter plate 505, the top of the filter box 5 is connected with an air outlet 501, the fan 302 is started, the dust generated by the feeding and crushing enters the filter box 5 through the air inlet pipe 303, the dust is adsorbed by the circular filter plate 507, and finally discharged through the square filter plate 505 and the air outlet 501. The top of the filter box 5 is provided with a second sealing port 502 and a first sealing port 503, when running for a period of time, the third motor 508 is started, the output shaft of the third motor 508 drives the cross connecting frame 509 to rotate, the cross connecting frame 509 drives the circular filter frame 506 to rotate, the circular filter plate 507 is in contact with the cleaning liquid at the bottom of the filter box 5, and the circular filter plate 507 is cleaned. When the circular filter frame 506 rotates, the dust entering the filter box 5 can continue to be adsorbed by the square filter plate 505, the dust is filtered, and finally the square filter plate 505 and the circular filter plate 507 can be replaced through the second sealing port 502 and the first sealing port 503. The cleaning liquid in the filter box 5 can be discharged and replaced through the side outlet;

[0027] The inside of the filter box 5 contains filter plate cleaning liquid, the action principle of the cleaning liquid can refer to the action principle of the alkaline cleaning liquid. For sodium hydroxide-sodium carbonate cleaning liquid, sodium hydroxide can react with oil to produce soap that can be dissolved in water, such as the reaction of glycerol stearate with sodium hydroxide to produce sodium stearate and glycerol. The alkaline environment of sodium carbonate helps to enhance the decontamination ability. In the trisodium phosphate-sodium silicate cleaning liquid, trisodium phosphate can react with some metal ions to form a precipitate, thereby removing calcium, magnesium ions and other ions in water to prevent scaling. The silica gel formed by the hydrolysis of sodium silicate can adsorb dirt and form a protective film on the surface of the filter plate.

[0028] The top of the support 101 is connected with a crushing box 3, the inside of the crushing box 3 is provided with a crushing hammer 304, the vertical inner wall of the crushing box 3 is connected with an air inlet cover 301, one end of the air inlet cover 301 is connected with an air inlet pipe 303, the bottom of the crushing box 3 is welded with a guide plate 305, the top of the crushing box 3 is connected with a feeding box 2 for the artificial stone waste residue to enter, the vertical inner wall of the feeding box 2 is connected with a connecting column 201, the outer periphery of the connecting column 201 is welded with a baffle 202, the artificial stone waste residue is poured into the feeding box 2 from the baffle 202, the artificial stone waste residue is pressed downward by the gravity of the artificial stone waste residue, the two baffles 202 are separated, the artificial stone waste residue enters the feeding box 2, the side of the feeding box 2 is provided with a first motor 205, the output shaft of the first motor 205 is connected with a rotating shaft 206 through a shaft coupling.

[0029] The outer periphery of the rotating shaft 206 is provided with a first cam 207, the vertical inner wall of the feeding box 2 is connected with a rotating shaft 203, the outer periphery of the rotating shaft 203 is welded with a discharging plate 204, the side of the discharging plate 204 is provided with a first beating block 208, the first motor 205 is started, the output shaft of the first motor 205 drives the rotating shaft 206 to rotate, the rotating shaft 206 drives the first cam 207 to rotate, the first cam 207 beats the first beating block 208, the first beating block 208 drives the discharging plate 204 to swing, so that the artificial stone waste residue is prevented from blocking the feeding port.

[0030] The bottom of the crushing box 3 is provided with a recovery box 4, the vertical inner wall of the recovery box 4 is provided with two fixed plates 410, the side of each of the two fixed plates 410 is connected with a spring 409, the end of the spring 409 away from the fixed plate 410 is connected with a first screening plate 403 and a second screening plate 404 respectively, the vertical inner wall of the recovery box 4 is provided with a sliding groove matched with the first screening plate 403 and the second screening plate 404, so that the reciprocating motion of the first screening plate 403 and the second screening plate 404 is facilitated, the side of each of the first screening plate 403 and the second screening plate 404 is provided with a second beating block 405, the vertical inner wall of the recovery box 4 is connected with a supporting column 408, one end of the supporting column 408 is provided with a second motor 401, the output shaft of the second motor 401 is connected with a second cam 402 through a shaft coupling, the bottom of the recovery box 4 is provided with a fine material recovery box 406, the side of the recovery box 4 is provided with a coarse material recovery box 407, the artificial stone waste residue after crushing falls on the first screening plate 403 through the guide plate 305, the second motor 401 is started, the output shaft of the second motor 401 drives the second cam 402 to rotate, the second cam 402 beats the second beating block 405, the first screening plate 403 and the second screening plate 404 vibrate, the artificial stone waste residue with large particles falls into the coarse material recovery box 407, and the artificial stone waste residue with fine particles falls into the fine material recovery box 406.

[0031] The top of the support 101 is provided with a driving mechanism 1 for driving, which is mainly composed of a motor, a speed reducer, a shaft coupling and a transmission component (such as a belt, a chain or the like), which can refer to (Y series three-phase asynchronous motor), and no more description is made in the non-innovative direction of the artificial stone waste recycling device, the output shaft of the driving mechanism 1 is connected with the crushing hammer 304, the artificial stone waste falls into the crushing box 3, the driving mechanism 1 drives the crushing hammer 304 to rotate, and the crushing hammer 304 crushes the artificial stone waste according to requirements.

[0032] Working principle

[0033] When the artificial stone waste recycling device is used, first, the artificial stone waste is poured into the feeding box 2 from the baffle 202, the artificial stone waste presses the baffle 202 under the action of gravity, the two baffles 202 are separated, the artificial stone waste enters the feeding box 2, the first motor 205 is started, the output shaft of the first motor 205 drives the rotating shaft 206 to rotate, the rotating shaft 206 drives the first cam 207 to rotate, the first cam 207 hits the first hitting block 208, the first hitting block 208 drives the blanking plate 204 to swing, so as to prevent the artificial stone waste from blocking the feeding port, the artificial stone waste falls into the crushing box 3, the driving mechanism 1 drives the crushing hammer 304 to rotate, the crushing hammer 304 crushes the artificial stone waste according to requirements, the fan 302 is started, the dust generated in the feeding and crushing enters the filtering box 5 through the air inlet pipe 303, the dust is adsorbed by the circular filter plate 507, and finally is discharged through the square filter plate 505 and the air outlet 501, the crushed artificial stone waste falls on the first screening plate 403 through the guide plate 305, the second motor 401 is started, the output shaft of the second motor 401 drives the second cam 402 to rotate, the second cam 402 hits the second hitting block 405, the first screening plate 403 and the second screening plate 404 vibrate, the large-particle artificial stone waste falls into the coarse material recycling box 407, and the fine-particle artificial stone waste falls into the fine material recycling box 406, when running for a period of time, the third motor 508 is started, the output shaft of the third motor 508 drives the cross connecting frame 509 to rotate, the cross connecting frame 509 drives the circular filter frame 506 to rotate, the circular filter plate 507 is in contact with the cleaning liquid at the bottom of the filtering box 5, so as to clean the circular filter plate 507, when the circular filter frame 506 rotates, the dust in the filtering box 5 can continue to be adsorbed by the square filter plate 505, so as to filter the dust, finally, the square filter plate 505 and the circular filter plate 507 can be replaced through the second sealing port 502 and the first sealing port 503, and the cleaning liquid in the filtering box 5 can be discharged and replaced through the side discharge port.

[0034] It is to be understood that the terminology used herein such as first and second, merely for the purpose of differentiation, and is not necessarily intended to convey any actual relationship between, or sequence of, the entities or operations.

[0035] While the embodiments of the present application have been illustrated and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made therein without departing from the spirit and scope of the present application, which is defined by the appended claims and their equivalents.

Claims

1. A device for recycling artificial stone waste, comprising a support (101) for supporting the recycling of artificial stone waste, characterized in that: The top of the support (101) is provided with a filter box (5), the side of the filter box (5) is connected with an air inlet pipe (303), the inside of the air inlet pipe (303) is provided with a fan (302), the vertical inner wall of the filter box (5) is provided with a third motor (508), the output shaft of the third motor (508) is connected with a cross connecting frame (509) through a shaft coupling, the four ends of the cross connecting frame (509) away from the third motor (508) are welded with circular filter frames (506), the inside of the circular filter frame (506) is provided with a circular filter plate (507), the inside of the filter box (5) is slidably provided with a square filter frame (504), the inside of the square filter frame (504) is provided with a square filter plate (505), the top of the filter box (5) is connected with an air outlet (501), and the top of the filter box (5) is provided with a second sealing opening (502) and a first sealing opening (503).

2. The artificial stone waste recycling device according to claim 1, characterized in that: The top of the support (101) is provided with a filter box (5), the side of the filter box (5) is connected with an air inlet pipe (303), the inside of the air inlet pipe (303) is provided with a fan (302), the vertical inner wall of the filter box (5) is provided with a third motor (508), the output shaft of the third motor (508) is connected with a cross connecting frame (509) through a shaft coupling, the four ends of the cross connecting frame (509) away from the third motor (508) are welded with circular filter frames (506), the inside of the circular filter frame (506) is provided with a circular filter plate (507), the inside of the filter box (5) is slidably provided with a square filter frame (504), the inside of the square filter frame (504) is provided with a square filter plate (505), the top of the filter box (5) is connected with an air outlet (501), and the top of the filter box (5) is provided with a second sealing opening (502) and a first sealing opening (503).

3. The artificial stone waste recycling device according to claim 2, characterized in that: The top of the support (101) is provided with a filter box (5), the side of the filter box (5) is connected with an air inlet pipe (303), the inside of the air inlet pipe (303) is provided with a fan (302), the vertical inner wall of the filter box (5) is provided with a third motor (508), the output shaft of the third motor (508) is connected with a cross connecting frame (509) through a shaft coupling, the four ends of the cross connecting frame (509) away from the third motor (508) are welded with circular filter frames (506), the inside of the circular filter frame (506) is provided with a circular filter plate (507), the inside of the filter box (5) is slidably provided with a square filter frame (504), the inside of the square filter frame (504) is provided with a square filter plate (505), the top of the filter box (5) is connected with an air outlet (501), and the top of the filter box (5) is provided with a second sealing opening (502) and a first sealing opening (503).

4. The artificial stone waste recycling device according to claim 3, characterized in that: The vertical inner wall of the feeding box (2) is connected with a connecting column (201), the outer periphery of the connecting column (201) is welded with a baffle (202), the side of the feeding box (2) is provided with a first motor (205), and the output shaft of the first motor (205) is connected with a rotating shaft (206) through a shaft coupling.

5. The artificial stone waste recycling device according to claim 2, characterized in that: The outer periphery of the rotating shaft (206) is provided with a first cam (207), the vertical inner wall of the feeding box (2) is connected with a rotating shaft (203), the outer periphery of the rotating shaft (203) is welded with a discharging plate (204), and the side of the discharging plate (204) is provided with a first beating block (208).

6. The artificial stone waste recycling device according to claim 5, characterized in that: The bottom of the crushing box (3) is provided with a recovery box (4), the vertical inner wall of the recovery box (4) is provided with two fixed plates (410), the side of each of the two fixed plates (410) is connected with a spring (409), one end of the spring (409) away from the fixed plate (410) is connected with a first screening plate (403) and a second screening plate (404) respectively, and the side of each of the first screening plate (403) and the second screening plate (404) is provided with a second beating block (405). The vertical inner wall of the recovery box (4) is connected with a supporting column (408), one end of the supporting column (408) is provided with a second motor (401), the output shaft of the second motor (401) is connected with a second cam (402) through a shaft coupling, the bottom of the recovery box (4) is provided with a fine material recovery box (406), and the side of the recovery box (4) is provided with a coarse material recovery box (407).

7. The artificial stone waste recycling device according to claim 1, characterized in that: The top of the support (101) is provided with a driving mechanism (1) for driving, and the output shaft of the driving mechanism (1) is connected with the smashing hammer (304).