An adhesive processing and treatment equipment for plywood production

By designing closed multi-group reaction tank systems and adhesive joints in plywood production, the automated production and recycling of adhesives are achieved, and the problem of improper bonding treatment in the prior art is solved, and the production efficiency and product quality are improved.

CN116476187BActive Publication Date: 2025-07-01SHANDONG CHANGXING WOOD MACHINERY CO LTD
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Patent Information

Application Number
CN202310683768.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-10
Publication Date
2025-07-01
Estimated Expiration
2043-06-10

AI Technical Summary

Technical Problem

In the production of existing plywood, the treatment of adhesives has problems such as manual control, volatile harmful substances, uneven distribution of glue, and drip pollution, which affects workers' health and production efficiency.

Method used

A closed multi-group reaction tank system is designed to perform automatic production and control of adhesive glue, and a glue joint groove is set under the glue-drawing square tube to realize the recycling and filtration of adhesive glue and improve production efficiency.

Benefits of technology

Through automated control and bonding glue recycling, the impact of the volatile harmful gases of bonding glue on the human body is reduced, the efficiency of plywood production and product quality are improved, and equipment pollution is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a processing device for adhesives used in plywood production, which includes a frame, a support platform, a grinding pump, a reaction tank I, a reaction tank II, a cooling water tank, an air conditioner, a hydraulic station, a plunger pump, and a feeding pipe. A support platform is provided above the frame, and a staircase is provided on one side of the support platform. A number of guardrails are provided on the support platform and the staircase. Inside the frame, starting from one side of the staircase, there are successively arranged a reaction tank I, a reaction tank II, a cooling water tank, and an air conditioner. A grinding pump is provided below the reaction tank I. The input end of the grinding pump is connected to the reaction tank I through a valve pipeline, and the output end of the grinding pump is connected to the reaction tank II through a valve pipeline. The present invention completes the production of adhesives through a closed multi-group reaction tank, realizes automatic control, and realizes the recycling of glue by adding a glue receiving tank below the glue spraying square pipe, thereby improving the production and processing efficiency of plywood.
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Description

Technical Field

[0001] The present invention belongs to the technical field of plywood production and processing, and particularly relates to an adhesive processing and treatment device for plywood production. Background Art

[0002] In the process of plywood production, a large amount of adhesive is required. Since the adhesive dries quickly, an on-site adhesive processing and treatment device is needed to supply devices such as glue spraying or brushing devices. The existing adhesive processing and treatment devices have the following problems in use: 1) Multiple manual controls are required for each link of adhesive processing, but harmful substances are easily volatilized during the production process of the adhesive, affecting the health of workers; 2) The glue spraying on the wooden board is unevenly distributed, and dripping occurs at the joints or sides of the wooden board, contaminating the conveying device and causing the conveying device to be unable to smoothly transport the wooden board. Summary of the Invention

[0003] The purpose of the present invention is to overcome the deficiencies in the prior art and provide an adhesive processing and treatment device for plywood production. The production of the adhesive is completed through a closed multi-group reaction tank to achieve automatic control, and a glue receiving tank is added below the glue spraying square pipe to realize the recycling of glue, thereby improving the production and processing efficiency of plywood.

[0004] In order to achieve the above purpose, the technical solution adopted by the present invention is:

[0005] An adhesive processing and treatment device for plywood production, comprising a frame, a support platform, a grinding pump, a reaction tank I, a reaction tank II, a cooling water tank, an air conditioner, a hydraulic station, a plunger pump, a feed pipe, a support frame, a cleaning water tank, a glue tank, a screw pump, a connecting pipe, a shunt pipe, a glue spraying square pipe, a driving motor, a driving roller, a support roller, a conveyor belt, a guardrail, a staircase, a cooling water inlet II, a cooling water inlet II, a high-low basket filter, a Y-type filter, an adjusting roller, and an adjusting wheel. A support platform is provided above the frame. A staircase is provided on one side of the support platform. A number of guardrails are provided on the support platform and the staircase. Inside the frame, starting from one side of the staircase, there are successively arranged a reaction tank I, a reaction tank II, a cooling water tank, and an air conditioner. A grinding pump is provided below the reaction tank I. The input end of the grinding pump is connected to the reaction tank I through a valve pipeline, and the output end of the grinding pump is connected to the reaction tank II through a valve pipeline. The hydraulic station is provided below the air conditioner. Plunger pumps are provided on both sides of the hydraulic station. The input end of the plunger pump is connected to the three-way joint at the bottom of the reaction tank II through a pipeline valve, and the output end is connected to the glue tank through a feed pipe. A cleaning water tank is provided on one side of the glue tank. The cleaning water tank and the glue tank are fixedly installed on the support frame. The bottom of the glue tank is fixedly connected to the screw pump. The output end of the screw pump is fixedly connected to the connecting pipe through a high-low basket filter. The other end of the connecting pipe is fixedly connected to the shunt pipe through a Y-type filter. The shunt pipe is fixedly connected to the glue spraying square pipe. Uniform through holes are provided at the bottom of the glue spraying square pipe. Two groups of support rollers are provided on the support frame above the cleaning water tank. Driving rollers are provided on both sides of the support rollers. An adjusting roller is provided on the support frame inside the cleaning water tank. A driving roller is provided on one side of the adjusting roller, and an adjusting wheel is provided on the other side through a connecting plate. A conveyor belt is wound around the outside of the adjusting wheel and the driving roller. One end of one group of driving rollers is fixedly connected to the output end of the driving motor. The sprockets provided at the same end of the three groups of driving rollers are meshed and connected through a chain for transmission.

[0006] The feeding port I provided at the top of the reaction tank I is fixedly connected to a screw conveyor. The other end of the screw conveyor is fixedly connected to a hopper. An observation port is provided on one side of the feeding port I and is fixedly installed on the reaction tank I. A stirring motor is fixedly installed at the top of the reaction tank I. The output end of the stirring motor is fixedly connected to a rotating shaft. Stirring blades are provided on the rotating shaft. A cleaning water inlet is provided on the side wall of the reaction tank I. The cleaning water inlet is fixedly connected to the output end of a water pump II. The water pump II is fixedly installed on the frame. The input end of the water pump II is externally connected to a water source. A sewage discharge port and a discharge port I are provided at the bottom of the reaction tank I. One end of the discharge port I is connected to the input end of the grinding pump through a valve pipeline. One end of the sewage discharge port is connected to an external collection tank through a valve pipeline.

[0007] A stirring motor is fixedly installed at the top of the reaction tank II. The output end of the stirring motor is fixedly connected to a rotating shaft, and stirring blades are arranged on the rotating shaft. A cooling layer is arranged inside the reaction tank II. One side of the cooling layer is provided with a cooling water outlet I and a cooling water inlet I. The other end of the cooling water outlet I is fixedly communicated with the cooling water inlet II on one side of the cooling water tank. One end of the cooling water inlet I is fixedly communicated with the output end of the water pump III. The water pump III is fixedly installed on the frame. The output end of the water pump III is communicated with the cooling water inlet II at the bottom of the cooling water tank through one end of a three-way joint by a valve pipeline, and the other end is communicated with an external water source or a collection pool through a valve pipeline; when drainage is required, the valve at the bottom of the cooling water inlet II is opened, the valve at the other end of the three-way joint communicated with the external collection pool is opened, and the water pump III is closed. At this time, the cooling water in the cooling water tank can flow into the external collection pool. When replenishing cooling water is required, the valve at the bottom of the cooling water inlet II is opened, the other end of the three-way joint is communicated with the external water source, and the water pump III is started, and the external water source can be pumped into the cooling water circulation system; a feed inlet II is fixedly communicated inside the reaction tank II. The feed inlet II is communicated with the three-way joint through a pipeline. One end of the three-way joint is communicated with the output end of the water pump I through a pipeline valve. The input end of the water pump I is communicated with external cleaning water. The water pump I is fixedly installed on the frame. The other end of the three-way joint is communicated with the output end of the grinding pump through a pipeline valve. The bottom of the reaction tank II is fixedly communicated with a discharge port II. The other end of the discharge port II is communicated with the three-way joint. One end of the three-way joint is communicated with a plunger pump through a pipeline valve, and the other end is communicated with an external collection pool through a pipeline valve.

[0008] A glue receiving groove I is arranged at the bottom of the glue spraying square pipe. The glue receiving groove I is movably installed on the guide rod. The guide rod is fixedly installed on the support frame. One end of the bottom of the glue receiving groove I is connected to one end of the telescopic cylinder. The other end of the telescopic cylinder is fixedly installed on the fixed cross beam. The fixed cross beam is fixedly installed on the support frame; the telescopic cylinder drives the glue receiving groove I to reciprocate along the guide rod. When there is no wooden board on the conveyor belt, the glue receiving groove I moves along the guide rod to the lower part of the glue spraying square pipe to realize the function of receiving glue and avoid the glue directly dripping on the conveying device.

[0009] A connection valve is fixedly communicated at the top of the glue spraying square pipe. The connection valve can be externally connected to a water source for backwashing inside.

[0010] A brush roller is arranged on the support frame at the bottom of the cleaning water tank. The sprocket arranged at one end of the brush roller is meshed and connected with the sprocket arranged at one end of the driving roller through a chain. The brush roller can perform rolling cleaning on the conveyor belt to prevent glue from adhering to the conveyor belt and affecting the conveying effect of the wooden board.

[0011] A glue receiving groove II is arranged inside the cleaning water tank. One end of the glue receiving groove II is communicated with the glue tank and is provided with a filter screen I. A filter screen II is arranged below the filter screen I. The recycled glue is filtered through two-stage filter screens to prevent impurities such as wood chips in the glue from affecting the glue quality.

[0012] A protective cover is arranged on the outside of the frame to protect the internal pipeline valves.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] 1) The raw materials enter the reaction tank I through the screw feeder for stirring and mixing. The irregular stirring blades can quickly break up the raw materials to improve the stirring efficiency. After stirring and mixing, they enter the grinding pump to grind large particles to ensure that the adhesive is fully mixed and prevent large particles from affecting the quality of the adhesive. The ground fine materials enter the reaction tank II again for stirring and mixing to complete the processing of the adhesive, improve the efficiency of automated production, and reduce the impact of harmful gases emitted by the adhesive on the human body;

[0015] 2) Both reaction tanks I and II can control the entry and discharge of cleaning water through pipeline valves, thereby completing the cleaning of the pipeline and the inside of the tank body, avoiding the adhesive staying in the pipeline for a long time and causing blockage and affecting the use;

[0016] 3) The temperature of the cooling water in the cooling water tank can be controlled in real time through the air conditioner, thereby ensuring the temperature control of the reaction tank II, so that the reaction tank II is always kept at a suitable temperature, ensuring the stirring effect and yield rate of the adhesive;

[0017] 4) During glue spraying, a movable glue connection slot I and a fixed glue connection slot II are arranged under the glue spraying square tube. When a wooden board passes through, the glue connection slot I moves along the guide rod to the side of the glue spraying square tube under the drive of the telescopic cylinder. At this time, the adhesive will drip evenly onto the wooden board through the glue spraying square tube. Even if the adhesive drips at the joint or both sides of the wooden board, it will drip into the glue connection slot II for collection, and then flow back into the glue box after being filtered through two sets of filters. When the wooden board does not pass under the glue spraying square tube for a long time, the glue connection slot I moves along the guide rod to the bottom of the glue spraying square tube under the drive of the telescopic cylinder, catches the adhesive dripping from the glue spraying square tube, and flows back into the glue box for recycling, which can realize the timely recovery of the adhesive, reduce costs, and prevent the adhesive from dripping on mechanical equipment and affecting the use of the equipment;

[0018] 5) By setting a synchronously rotating brush roller under the conveyor belt, the conveyor belt is cleaned to prevent adhesive from adhering to the conveyor belt for a long time and affecting the transmission of the wooden boards, thereby ensuring the transmission efficiency of the wooden boards. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Attached Figure 1 It is a schematic diagram of the structure of an adhesive processing device for plywood production according to the present invention;

[0020] Attached Figure 2 It is a schematic diagram of the side structure of an adhesive processing device for plywood production according to the present invention;

[0021] Attached Figure 3 is a schematic diagram of the frame structure;

[0022] Attached Figure 4 is a schematic diagram of the grinding pump structure;

[0023] Attached Figure 5 is a schematic diagram of the internal structure of Reactor I;

[0024] Attached Figure 6 is a schematic diagram of the internal structure of Reactor II;

[0025] Attached Figure 7 is a schematic diagram of the stirring blade structure;

[0026] Attached Figure 8 is a schematic diagram of the cooling water tank structure;

[0027] Attached Figure 9 is a schematic diagram of the support frame structure;

[0028] Attached Figure 10 is a schematic diagram of the internal structure of the glue tank;

[0029] Attached Figure 11 is a schematic diagram of the glue spraying square pipe structure;

[0030] Attached Figure 12 is a schematic diagram of the glue receiving tank II structure;

[0031] Attached Figure 13 is a schematic diagram of the internal structure of the cleaning water tank;

[0032] In the figure: 10, frame; 11, support platform; 12, grinding pump; 13, reaction tank I; 14, reaction tank II; 15, cooling water tank; 16, air conditioner; 17, hydraulic station; 18, water pump I; 19, water pump II; 20, water pump III; 21, hopper; 22, screw feeder; 23, stirring motor; 24, plunger pump; 25, feeding pipe; 26, support frame; 27, cleaning water tank; 28, glue tank; 29, screw pump; 30, connecting pipe; 31, shunt pipe; 32, glue spraying square pipe; 33, glue receiving tank I; 34, glue receiving tank II; 35, driving motor; 36, driving roller; 37, supporting roller; 38, brush roller; 39, wooden board; 40, conveyor belt; 101, protective cover; 111, guardrail; 112, staircase; 131, feed inlet I; 132, observation port; 133, cleaning water inlet; 134, sewage outlet; 135, discharge outlet I; 141, feed inlet II; 142, cooling water outlet I; 143, cooling water inlet I; 144, discharge outlet II; 145, cooling layer; 151, cooling water inlet II; 152, cooling water inlet II; 231, rotating shaft; 232, stirring blade; 291, high and low basket filter; 301, Y-type filter; 321, connecting valve; 331, guide rod; 332, telescopic cylinder; 333, fixed crossbeam; 341, filter screen I; 342, filter screen II; 361, adjusting roller; 362, adjusting wheel. Detailed implementation manners

[0033] For the convenience of understanding by those skilled in the art, the technical solutions of the present invention will be further specifically described below in conjunction with the attached Figures 1-13 , drawings.

[0034] An adhesive processing and treatment device for plywood production, including a frame 10, a support platform 11, a grinding pump 12, a reaction tank I 13, a reaction tank II 14, a cooling water tank 15, an air conditioner 16, a hydraulic station 17, a plunger pump 24, a feed pipe 25, a support frame 26, a cleaning water tank 27, a glue tank 28, a screw pump 29, a connecting pipe 30, a shunt pipe 31, a glue-spraying square pipe 32, a driving motor 35, a driving roller 36, a support roller 37, a conveyor belt 40, a guardrail 111, a staircase 112, a cooling water inlet II 151, a cooling water inlet II 152, a high-low basket filter 291, a Y-type filter 301, an adjusting roller 361, and an adjusting wheel 362. Above the frame 10 is provided a support platform 11. On one side of the support platform 11 is provided a staircase 112. A number of guardrails 111 are provided on the support platform 11 and the staircase 112. Inside the frame 10, starting from one side of the staircase, there are successively arranged a reaction tank I 13, a reaction tank II 14, a cooling water tank 15, and an air conditioner 16. Below the reaction tank I 13 is provided a grinding pump 12. The input end of the grinding pump 12 is connected to the reaction tank I 13 through a valve pipeline, and the output end of the grinding pump 12 is connected to the reaction tank II 14 through a valve pipeline. Below the air conditioner 16 is provided a hydraulic station 17. On both sides of the hydraulic station 17 are provided plunger pumps 24. The input end of the plunger pump 24 is connected to a three-way joint at the bottom of the reaction tank II 14 through a pipeline valve, and the output end is connected to the glue tank 28 through a feed pipe 25. On one side of the glue tank 28 is provided a cleaning water tank 27. The cleaning water tank 27 and the glue tank 28 are fixedly installed on the support frame 26. The bottom of the glue tank 28 is fixedly connected to a screw pump 29. The output end of the screw pump 29 is fixedly connected to the connecting pipe 30 through a high-low basket filter 291. The other end of the connecting pipe 30 is fixedly connected to the shunt pipe 31 through a Y-type filter 301. The shunt pipe 31 is fixedly connected to the glue-spraying square pipe 32. The bottom of the glue-spraying square pipe 32 is provided with uniform through holes. On the support frame 26 above the cleaning water tank 27 are provided two groups of support rollers 37. On both sides of the support rollers 37 are provided driving rollers 36. On the support frame 26 inside the cleaning water tank 27 is provided an adjusting roller 361. On one side of the adjusting roller 361 is provided a group of driving rollers 36, and on the other side is provided an adjusting wheel 362 through a connecting plate. A conveyor belt 40 is wound around the outside of the adjusting wheel 362 and the driving rollers 36. One end of one group of driving rollers 36 is fixedly connected to the output end of the driving motor 35. The sprockets provided at the same end of the three groups of driving rollers 36 are connected and driven through a chain.

[0035] The feeding port I 131 provided at the top of the reaction tank I 13 is fixedly communicated with the screw feeder 22, and the other end of the screw feeder 22 is fixedly communicated with the hopper 21. One side of the feeding port I 131 is provided with an observation port 132, and the observation port 132 is fixedly installed on the reaction tank I 13. A stirring motor 23 is fixedly installed on the top of the reaction tank I 13. The output end of the stirring motor 23 is fixedly connected to the rotating shaft 231, and stirring blades 232 are arranged on the rotating shaft 231. A cleaning water inlet 133 is arranged on the side wall of the reaction tank I 13, and the cleaning water inlet 133 is fixedly communicated with the output end of the water pump II 19. The water pump II 19 is fixedly installed on the frame 10, and the input end of the water pump II 19 is externally connected to a water source; a sewage outlet 134 and a discharging port I 135 are arranged at the bottom of the reaction tank I 13. One end of the discharging port I 135 is connected to the input end of the grinding pump 12 through a valve pipeline, and one end of the sewage outlet 134 is communicated with an external collection tank through a valve pipeline.

[0036] A stirring motor 23 is fixedly installed on the top of the reaction tank II 14. The output end of the stirring motor 23 is fixedly connected to the rotating shaft 231, and stirring blades 232 are arranged on the rotating shaft 231. A cooling layer 145 is arranged inside the reaction tank II 14. One side of the cooling layer 145 is provided with a cooling water outlet I 142 and a cooling water inlet I 143. The other end of the cooling water outlet I 142 is fixedly communicated with the cooling water inlet II 151 on one side of the cooling water tank 15. One end of the cooling water inlet I 143 is fixedly communicated with the output end of the water pump III 20. The water pump III 20 is fixedly installed on the frame. The output end of the water pump III 20 is connected to one end of a tee joint through a valve pipeline. One end of the tee joint is communicated with the cooling water inlet II 152 at the bottom of the cooling water tank 15 through a valve pipeline, and the other end is communicated with an external water source or a collection tank through a valve pipeline; when draining water, the valve at the bottom of the cooling water inlet II 152 is opened, the valve connecting the other end of the tee joint to the external collection tank is opened, and the water pump III 20 is closed. At this time, the cooling water in the cooling water tank 15 can flow into the external collection tank. When replenishing cooling water, the valve at the bottom of the cooling water inlet II 152 is opened, the other end of the tee joint is communicated with the external water source, and the water pump III 20 is started, and the external water source can be pumped into the cooling water circulation system.

[0037] An internal feeding port II 141 is fixedly communicated inside the reaction tank II 14. The feeding port II 141 is communicated with a tee joint through a pipeline. One end of the tee joint is communicated with the output end of the water pump I 18 through a pipeline valve. The input end of the water pump I 18 is communicated with external cleaning water. The water pump I 18 is fixedly installed on the frame 10. The other end of the tee joint is communicated with the output end of the grinding pump 12 through a pipeline valve. The discharging port II 144 is fixedly communicated at the bottom of the reaction tank II 14. The other end of the discharging port II 144 is communicated with a tee joint. One end of the tee joint is communicated with the plunger pump 24 through a pipeline valve, and the other end is communicated with an external collection tank through a pipeline valve.

[0038] The bottom of the glue - applying square pipe 32 is provided with a glue - receiving groove Ⅰ33. The glue - receiving groove Ⅰ33 is movably installed on the guide rod 331, and the guide rod 331 is fixedly installed on the support frame 26. One end of the bottom of the glue - receiving groove Ⅰ33 is connected to one end of the telescopic cylinder 332, and the other end of the telescopic cylinder 332 is fixedly installed on the fixed cross - beam 333. The fixed cross - beam 333 is fixedly installed on the support frame 26. The telescopic cylinder 332 drives the glue - receiving groove Ⅰ33 to reciprocate along the guide rod. When there is no wooden board 39 on the conveyor belt 40, the glue - receiving groove Ⅰ33 moves along the guide rod to the lower part of the glue - applying square pipe 32 to realize the function of receiving glue, avoiding the glue dripping directly onto the conveying device.

[0039] The top of the glue - applying square pipe 32 is fixedly communicated with a connection valve 321, and the connection valve 321 can be externally connected to a water source for back - flushing the inside.

[0040] A brush roller 38 is provided on the support frame 26 at the bottom of the cleaning water tank 27. The sprocket provided at one end of the brush roller 38 is meshed and connected with the sprocket provided at one end of the driving roller through a chain. The brush roller 38 can perform rolling cleaning on the conveyor belt 40 to prevent glue from adhering to the conveyor belt 40 and affecting the conveying effect of the wooden board 39.

[0041] A glue - receiving groove Ⅱ34 is provided in the cleaning water tank 27. One end of the glue - receiving groove Ⅱ34 is communicated with the glue tank 28 and is provided with a filter screen Ⅰ341. A filter screen Ⅱ342 is provided below the filter screen Ⅰ341. The recycled glue is filtered through two - stage filter screens to prevent impurities such as wood chips in the glue from affecting the quality of the glue.

[0042] A protective cover 101 is provided outside the frame 10 to protect the internal pipelines and valves.

[0043] A glue - processing and treatment device for plywood production works as follows: The raw materials are put into the hopper and pumped into the reaction tank Ⅰ by a screw feeder for stirring and mixing. After the stirring and mixing in the reaction tank Ⅰ is completed, it enters the grinding pump through a pipeline for grinding large - particle materials, and is pumped through the pipeline to the reaction tank Ⅱ for re - stirring and mixing. The cooling water tank is cooled by an air conditioner, and the cooling water circulates through the cooling layer in the reaction tank Ⅱ to complete the temperature control of the reaction tank Ⅱ. Subsequently, the materials mixed in the reaction tank Ⅱ enter the plunger pump through a pipeline, and the plunger pump pumps the adhesive through the feeding pipe into the glue tank for collection and use.

[0044] The glue that enters the glue tank is pumped into the glue-spraying square pipe by a screw pump. During the pumping process, it passes through the high-low basket filter and the Y-type filter to achieve the filtration of large particles. The adhesive glue uniformly drops in the glue-spraying square pipe. The wooden board is transported by the conveyor belt and passes under the glue-spraying square pipe at a constant speed to complete the glue-spraying operation. When there is no wooden board passing by, the glue-receiving tank Ⅰ moves along the guide rod to the lower part of the glue-spraying square pipe to achieve the function of receiving glue, and the adhesive glue is recycled to the glue tank to prevent the glue from directly dripping onto the conveyor belt. During the glue-spraying process, when the adhesive glue drips at both sides or joints of the board, it will drip into the glue-receiving tank Ⅱ. The adhesive glue in the glue-receiving tank Ⅱ flows back to the glue tank through the filter screen Ⅰ and then the filter screen Ⅱ. During the transportation of the wooden board, it will drive the brush roller in the cleaning water tank to rotate to complete the cleaning work of the conveyor belt.

[0045] The above content is only an example and explanation of the structure of the present invention. Those skilled in the art of this technology can make various modifications or supplements or use similar methods to replace the specific embodiments described, as long as they do not deviate from the structure of the invention or exceed the scope defined by this claim book, they should all belong to the protection scope of the present invention.

Claims

1. An adhesive processing and treatment device for plywood production, comprising a frame, a support platform, a grinding pump, reaction tank I, reaction tank II, a cooling water tank, an air conditioner, a hydraulic station, a plunger pump, a feeding pipe, a support frame, a cleaning water tank, a glue tank, a screw pump, a connecting pipe, a shunt pipe, a glue spraying square pipe, a driving motor, a driving roller, a support roller, a conveyor belt, a cooling water inlet II, a cooling water inlet II, a high and low basket filter, a Y-type filter, an adjusting roller, and an adjusting wheel. It is characterized in that Above the frame is provided a support platform. On one side of the support platform is a staircase, and there are several guardrails on the support platform and the staircase. Inside the frame, starting from one side of the staircase, there are successively arranged reaction tank I, reaction tank II, a cooling water tank, and an air conditioner. Below reaction tank I is a grinding pump. The input end of the grinding pump is connected to reaction tank I through a valve pipeline, and the output end of the grinding pump is connected to reaction tank II through a valve pipeline. Below the air conditioner is a hydraulic station. On both sides of the hydraulic station are plunger pumps. The input end of the plunger pump is connected to the three-way joint at the bottom of reaction tank II through a pipeline valve, and the output end is connected to the glue tank through a feeding pipe. On one side of the glue tank is a cleaning water tank. The cleaning water tank and the glue tank are fixedly installed on the support frame. The bottom of the glue tank is fixedly connected to a screw pump. The output end of the screw pump is fixedly connected to a connecting pipe through a high and low basket filter. The other end of the connecting pipe is fixedly connected to a shunt pipe through a Y-type filter. The shunt pipe is fixedly connected to the glue spraying square pipe, and the bottom of the glue spraying square pipe is provided with uniform through holes. On the support frame above the cleaning water tank are provided two groups of support rollers. On both sides of the support rollers are driving rollers. On the support frame inside the cleaning water tank is an adjusting roller. On one side of the adjusting roller is a group of driving rollers, and on the other side is provided an adjusting wheel through a connecting plate. The adjusting wheel and the outer sides of the driving rollers are wound with a conveyor belt. One end of one group of driving rollers is fixedly connected to the output end of the driving motor, and the sprockets arranged at the same end of the three groups of driving rollers are connected and driven through a chain. The feeding port I provided at the top of reaction tank I is fixedly connected to a screw feeder. The other end of the screw feeder is fixedly connected to a hopper. On one side of the feeding port I is an observation port, which is fixedly installed on reaction tank I. At the top of reaction tank I is fixedly installed a stirring motor. The output end of the stirring motor is fixedly connected to a rotating shaft, and stirring blades are arranged on the rotating shaft. On the side wall of reaction tank I is a cleaning water inlet, which is fixedly connected to the output end of a water pump II. The water pump II is fixedly installed on the frame, and the input end of the water pump II is externally connected to a water source. At the bottom of reaction tank I are provided a sewage discharge port and a discharge port I. One end of the discharge port I is connected to the input end of the grinding pump through a valve pipeline, and one end of the sewage discharge port is connected to an external collection tank through a valve pipeline. A stirring motor is fixedly installed at the top of the reaction tank II. The output end of the stirring motor is fixedly connected to a rotating shaft, and stirring blades are arranged on the rotating shaft. A cooling layer is arranged inside the reaction tank II. One side of the cooling layer is provided with a cooling water outlet I and a cooling water inlet I. The other end of the cooling water outlet I is fixedly communicated with the cooling water inlet II on one side of the cooling water tank. One end of the cooling water inlet I is fixedly communicated with the output end of the water pump III. The water pump III is fixedly installed on the frame. The output end of the water pump III is communicated with the cooling water inlet II at the bottom of the cooling water tank through one end of a three-way joint by a valve pipeline, and the other end is communicated with an external water source or a collection pool through a valve pipeline; An inlet II is fixedly communicated inside the reaction tank II. The inlet II is communicated with the three-way joint through a pipeline. One end of the three-way joint is communicated with the output end of the water pump I through a pipeline valve. The input end of the water pump I is communicated with external cleaning water. The water pump I is fixedly installed on the frame. The other end of the three-way joint is communicated with the output end of the grinding pump through a pipeline valve. The bottom of the reaction tank II is fixedly communicated with an outlet II. The other end of the outlet II is communicated with the three-way joint. One end of the three-way joint is communicated with the plunger pump through a pipeline valve, and the other end is communicated with an external collection pool through a pipeline valve.

2. The processing equipment for the adhesive used in plywood production according to claim 1, characterized in that, A glue receiving groove I is arranged at the bottom of the glue pouring square pipe. The glue receiving groove I is movably installed on a guide rod. The guide rod is fixedly installed on a support frame. One end of the bottom of the glue receiving groove I is connected to one end of a telescopic cylinder. The other end of the telescopic cylinder is fixedly installed on a fixed cross beam. The fixed cross beam is fixedly installed on the support frame.

3. A glue processing and treating device for plywood production according to claim 1, characterized in that A connecting valve is fixedly communicated at the top of the glue pouring square pipe.

4. A processing device for adhesives used in plywood production according to claim 1, characterized in that, A brush roller is arranged on the support frame at the bottom of the cleaning water tank. The sprocket arranged at one end of the brush roller is meshed and connected with the sprocket arranged at one end of the driving roller through a chain.

5. A glue processing and treating device for plywood production according to claim 1, characterized in that, A glue receiving groove II is arranged inside the cleaning water tank. One end of the glue receiving groove II is communicated with a glue tank and is provided with a filter screen I. A filter screen II is arranged below the filter screen I.

6. The processing equipment for adhesives used in plywood production according to claim 1, wherein, A protective cover is arranged outside the frame.

Citation Information

Patent Citations

  • Adhesive glue processing equipment for plywood production

    CN220074971U