An adhesive production and delivery apparatus

By introducing mixing and screening components into the adhesive production and conveying equipment, the problem of uneven raw material distribution was solved, achieving efficient mixing and screening, reducing production costs and ensuring processing quality. At the same time, the water temperature was regulated by the constant temperature component to meet the cooling needs of different seasons.

CN122126590APending Publication Date: 2026-06-02SHANDONG DAFU ADHESIVE CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANDONG DAFU ADHESIVE CO LTD
Filing Date
2026-04-10
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing adhesive production and conveying equipment lacks material pretreatment capabilities, resulting in uneven raw material particle size that affects processing quality. Adding additional pretreatment equipment increases costs.

Method used

By setting up stirring bars and a screening plate inside the feed pipe, the stirring bars are driven by a motor to stir the raw materials, and the screening is carried out by a vibrating motor in conjunction with the screening plate. Combined with a constant temperature component to regulate the water temperature, the stirring, mixing and screening of the raw materials are realized, avoiding uneven particle size and reducing production costs.

Benefits of technology

This effectively prevents unevenly sized adhesive raw materials from entering subsequent processing, ensuring processing quality, and reduces energy consumption through cooling water recycling, making it energy-saving and environmentally friendly.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of adhesive production technology, specifically disclosing an adhesive production conveying device to solve the problem of avoiding uneven particle size in adhesive raw materials and preventing subsequent adhesive processing quality from being affected. Specifically, it includes a conveying assembly; the conveying assembly includes a mounting base, a conveying pipe mounted on the top of the mounting base, a first motor mounted at the end of the conveying pipe, and a drive rod fixed to the output end of the first motor, which movably passes through the end of the conveying pipe and extends into the interior of the conveying pipe. A conveying auger is mounted on the outer wall of the drive rod. This invention has the function of stirring, mixing, and screening adhesive raw materials, eliminating the need for additional pretreatment equipment, reducing adhesive production costs. By stirring, mixing, and screening the adhesive raw materials, it can effectively prevent unevenly particled adhesive raw materials from entering subsequent adhesive production processing, ensuring the quality of subsequent adhesive processing.
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Description

Technical Field

[0001] This invention relates to the field of adhesive production technology, and more particularly to an adhesive production and conveying device. Background Technology

[0002] The production of adhesives involves multiple processes, including raw material mixing, reaction, curing, and filtration. These processes require the transfer of adhesive materials between each other using conveying equipment. Currently, most existing adhesive production conveying equipment uses screw conveyors.

[0003] However, existing screw conveyors do not have material pretreatment functions. If the raw materials have uneven particle size, it will directly affect the quality of subsequent adhesive processing. If additional pretreatment equipment is provided, it will increase the production cost of the adhesive.

[0004] To address the aforementioned technical deficiencies, a solution is proposed. This invention uses a feed branch pipe to pour adhesive raw materials into the feed pipe. Simultaneously, a second motor is activated, which, via a connecting rod, drives multiple stirring strips to rotate. These stirring strips agitate the adhesive raw materials inside the feed pipe, preventing uneven particle size and ensuring the quality of subsequent adhesive processing. Then, a vibration motor is activated, which, in conjunction with a screening plate, screens the agitated adhesive raw materials, further preventing unevenly sized adhesive raw materials from entering subsequent adhesive production processes, thus guaranteeing the quality of subsequent adhesive processing. This invention provides the functions of stirring, mixing, and screening adhesive raw materials, eliminating the need for additional pretreatment equipment, reducing adhesive production costs. By stirring, mixing, and screening the adhesive raw materials, unevenly sized adhesive raw materials can be effectively prevented from entering subsequent adhesive production processes, ensuring the quality of subsequent adhesive processing. Summary of the Invention

[0005] The purpose of this invention is to provide an adhesive production and conveying device to solve the problems mentioned above.

[0006] The objective of this invention can be achieved through the following technical solution: an adhesive production and conveying device, comprising:

[0007] Conveying components;

[0008] The conveying assembly includes a mounting base, a conveying pipe is mounted on the top of the mounting base, a first motor is mounted on the end of the conveying pipe, a drive rod is fixed to the output end of the first motor that movably passes through the end of the conveying pipe and extends into the interior of the conveying pipe, and a conveying auger is mounted on the outer wall of the drive rod;

[0009] A feed pipe is installed on the outer wall of the conveying pipeline;

[0010] Mixing and screening components;

[0011] The mixing and screening assembly includes a sealing seat that is detachably installed on the top of the feed pipe. A second motor is installed on the top of the sealing seat. A connecting rod that moves through the top of the sealing seat and extends into the inside of the feed pipe is fixed to the output end of the second motor. Multiple stirring bars are installed on the outer wall of the connecting rod.

[0012] A feed branch pipe is installed on the top of the sealing seat;

[0013] A fixing ring is fixed inside the feed pipe, a screening plate is placed on top of the fixing ring, and a vibration motor is installed at the bottom of the screening plate;

[0014] The inner wall of the feed pipe is provided with a connecting groove;

[0015] A connecting strip is fixed to the top of the screening plate, and a connecting block that engages with the connecting groove is fixed to the top of the connecting strip.

[0016] Preferably, it also includes a fixing member, which includes a fixing groove formed inside the connecting block, a first locking hole formed on both sides of the inner wall of the fixing groove, and a second locking hole formed on both sides of the inner wall of the connecting groove to cooperate with the first locking hole.

[0017] Preferably, two actuating plates are movably arranged inside the fixing groove, and each of the two actuating plates has a locking pin that engages with the first locking hole and the second locking hole at its far end.

[0018] Preferably, a telescopic rod is fixed between the two actuating plates, and a spring is provided on the outside of the telescopic rod, with both ends of the spring fixed to the opposite ends of the two actuating plates.

[0019] Preferably, it also includes a temperature control component, which includes a temperature control channel formed inside the delivery pipeline, and a first pipe fitting and a second pipe fitting are installed at both ends of the temperature control channel.

[0020] The top of the mounting base is equipped with a first water tank and a second water tank;

[0021] The first water tank is equipped with a water inlet pipe at the top;

[0022] The first water tank is equipped with a first water pump, and the outlet of the first water pump is equipped with a first pipe that penetrates the outer wall of the first water tank and is connected to the second pipe fitting.

[0023] The second water tank is equipped with a second water pump, and the outlet of the second water pump is equipped with a second pipe that passes through the second water tank and is connected to the first water tank.

[0024] The first pipe fitting is connected to the second water tank via a third pipe;

[0025] A one-way valve is installed on the third pipeline.

[0026] Preferably, a display screen and a controller are installed on the outer wall of the first water tank.

[0027] Preferably, the first water tank is equipped with an electric heating wire and a temperature sensor;

[0028] The controller is electrically connected to the electric heating wire;

[0029] The temperature sensor is electrically connected to the display screen.

[0030] The beneficial effects of this invention are:

[0031] 1. This invention pours adhesive raw materials into the feed pipe through a feed branch pipe. Simultaneously, a second motor is started, which drives multiple stirring strips to rotate via a connecting rod. These stirring strips agitate the adhesive raw materials inside the feed pipe, preventing uneven particle size and ensuring the quality of subsequent adhesive processing. Then, a vibration motor is started, which, in conjunction with a screening plate, screens the agitated adhesive raw materials, further preventing unevenly sized adhesive raw materials from entering subsequent adhesive production processes, thus ensuring the quality of subsequent adhesive processing. Compared to existing methods, this invention has the functions of stirring, mixing, and screening adhesive raw materials, eliminating the need for additional pretreatment equipment, reducing adhesive production costs. By stirring, mixing, and screening the adhesive raw materials, unevenly sized adhesive raw materials can be effectively prevented from entering subsequent adhesive production processes, ensuring the quality of subsequent adhesive processing.

[0032] By disassembling the sealing seat and driving the two actuating plates to move away from each other, the spring and telescopic rod will retract. After the locking pins disengage from the first and second locking holes, the two actuating plates, the two locking pins, the telescopic rod, and the spring can be removed from the fixing groove, thus releasing the fixing of the screening plate. The screening plate can then be disassembled. This invention facilitates the disassembly of the screening plate, thereby facilitating its cleaning and maintenance, and helping to improve the working efficiency of the screening plate. It also facilitates the inspection and maintenance of the vibration motor, helping to improve the working efficiency of the vibration motor, which in turn indirectly improves the working efficiency of the screening plate.

[0033] 2. Pour cooling water into the first water tank through the inlet pipe and start the first water pump. Under the action of the first water pump, the cooling water in the first water tank will enter the constant temperature channel through the first pipe and the second pipe fitting. During the process of the cooling water flowing through the constant temperature channel, the inside of the conveying pipe can be cooled down to avoid the adhesive material from rubbing against the auger and causing the temperature of the adhesive material to be too high. This will prevent the adhesive material from affecting its performance due to excessive temperature and ensure the processing quality of the subsequent adhesive.

[0034] After cooling the conveying pipeline, the cooling water will enter the second water tank for storage through the first pipe and the third pipe. Then, the second water pump will be started. Under the action of the second water pump, the cooling water in the second water tank will enter the first water tank through the second pipe, so as to achieve the purpose of recycling and reusing the cooling water. This has a high utilization rate of water resources, is relatively energy-saving and environmentally friendly, and indirectly reduces the production cost of adhesives.

[0035] Because an electric heating wire and a temperature sensor are installed inside the first water tank, the temperature sensor, together with the display screen, allows the staff to intuitively understand the temperature information of the cooling water inside the first water tank.

[0036] If the adhesive production takes place in winter, the temperature of the cooling water inside the first water tank is low. In this case, the controller can be used to activate the electric heating wire to heat the cooling water inside the first water tank, so that the cooling water inside the first water tank can meet the cooling requirements of the conveying pipeline in winter. If the adhesive production takes place in summer, the temperature of the cooling water inside the first water tank is high. In this case, new low-temperature cooling water can be added to the first water tank through the water inlet pipe to neutralize or lower the temperature of the original cooling water in the first water tank, so that the cooling water inside the first water tank can meet the cooling requirements of the conveying pipeline in summer. This invention can regulate the temperature of the cooling water inside the first water tank, so that the constant temperature component can meet the cooling requirements of the conveying pipeline in different seasons. Attached Figure Description

[0037] The invention will now be further described with reference to the accompanying drawings;

[0038] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0039] Figure 2 This is a schematic diagram of the constant temperature component structure in this invention;

[0040] Figure 3 This is a schematic diagram of the constant temperature channel structure in this invention;

[0041] Figure 4 This is a schematic diagram of the stirring and screening components in this invention;

[0042] Figure 5 This is the present invention. Figure 4 A magnified structural diagram of A in the middle;

[0043] Figure 6 This is a schematic diagram of the screening plate installation structure in this invention;

[0044] Figure 7 This is a schematic diagram of the fastener structure in this invention.

[0045] Legend: 100. Conveying assembly; 101. Mounting base; 102. Conveying pipe; 103. First motor; 104. Drive rod; 105. Screwdriver; 106. Feed pipe; 200. Mixing and screening assembly; 201. Sealing seat; 202. Feed branch pipe; 203. Second motor; 204. Connecting rod; 205. Mixing bar; 206. Fixing ring; 207. Screening plate; 208. Vibrating motor; 209. Connecting bar; 210. Connecting groove; 211. Connecting block; 212. Fixing 213. Groove; 214. First locking hole; 215. Second locking hole; 216. Actuating plate; 217. Locking post; 218. Telescopic rod; 300. Spring; 301. Thermostatic component; 302. Thermostatic channel; 303. First pipe fitting; 304. First water tank; 305. First pipe; 306. Inlet pipe; 307. Display screen; 308. Controller; 309. Third pipe; 310. Second water tank; 311. Check valve; 312. Second pipe; 313. Second water pump. Detailed Implementation

[0046] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0047] Example 1: The application background of this invention is that existing screw conveyors do not have material pretreatment functions. If the raw materials have uneven particle size, it will directly affect the quality of subsequent adhesive processing. If additional pretreatment equipment is provided, it will increase the production cost of the adhesive. The technical solution of this invention is to solve the problem of how to avoid uneven particle size in adhesive raw materials and avoid affecting the quality of subsequent adhesive processing.

[0048] Please see Figure 1 , Figures 3-7As shown, this embodiment is an adhesive production conveying device, including: a conveying assembly 100; the conveying assembly 100 includes a mounting base 101, a conveying pipe 102 is mounted on the top of the mounting base 101, a first motor 103 is mounted on the end of the conveying pipe 102, a drive rod 104 is fixedly fixed at the output end of the first motor 103, which movably passes through the end of the conveying pipe 102 and extends into the interior of the conveying pipe 102, and a conveying auger 105 is mounted on the outer wall of the drive rod 104; the outer wall of the conveying pipe 102 is equipped with... The system includes a feed pipe 106; a mixing and screening assembly 200; the mixing and screening assembly 200 includes a sealing seat 201 detachably mounted on the top of the feed pipe 106, a second motor 203 mounted on the top of the sealing seat 201, a connecting rod 204 fixedly attached to the output end of the second motor 203, which extends through the top of the sealing seat 201 and into the feed pipe 106, and multiple mixing strips 205 mounted on the outer wall of the connecting rod 204; a feed branch pipe 202 mounted on the top of the sealing seat 201; and the feed pipe 106. An internal fixing ring 206 is fixed, a screening plate 207 is placed on top of the fixing ring 206, and a vibration motor 208 is installed at the bottom of the screening plate 207; a connecting groove 210 is opened on the inner wall of the feed pipe 106; a connecting strip 209 is fixed on top of the screening plate 207, and a connecting block 211 that engages with the connecting groove 210 is fixed on top of the connecting strip 209; a fixing component is also included, which includes a fixing groove 212 opened inside the connecting block 211, and first locking holes 213 are opened on both sides of the inner wall of the fixing groove 212. The inner walls on both sides of the connecting groove 210 are provided with second locking holes 214 that cooperate with the first locking hole 213. The fixed groove 212 is movably arranged with two actuating plates 215. The ends of the two actuating plates 215 that are far apart from each other are fixed with locking posts 216 that engage with the first locking hole 213 and the second locking hole 214. A telescopic rod 217 is fixed between the two actuating plates 215. A spring 218 is provided on the outside of the telescopic rod 217. The two ends of the spring 218 are fixed to the ends of the two actuating plates 215 that are directly opposite each other.

[0049] This invention pours adhesive raw materials into the feed pipe 106 through the feed branch pipe 202. Simultaneously, a second motor 203 is started. The second motor 203 drives multiple stirring strips 205 to rotate via a connecting rod 204. The stirring strips 205 can stir the adhesive raw materials inside the feed pipe 106, avoiding uneven particle size and ensuring the quality of subsequent adhesive processing. Then, a vibration motor 208 is started. The vibration motor 208, in conjunction with a screening plate 207, screens the stirred adhesive raw materials, further preventing unevenly sized adhesive raw materials from entering the subsequent adhesive production process, thus ensuring the quality of subsequent adhesive processing. Compared with existing technologies, this invention has the functions of stirring, mixing, and screening adhesive raw materials, eliminating the need for additional pretreatment equipment, reducing the production cost of adhesives. By stirring, mixing, and screening the adhesive raw materials, unevenly sized adhesive raw materials can be effectively prevented from entering the subsequent adhesive production process, ensuring the quality of subsequent adhesive processing.

[0050] By disassembling the sealing seat 201 and driving the two actuating plates 215 to move away from each other, the spring 218 and the telescopic rod 217 will retract. After the locking pin 216 disengages from the first locking hole 213 and the second locking hole 214, the two actuating plates 215, the two locking pins 216, the telescopic rod 217, and the spring 218 can be removed from the fixing groove 212, thus releasing the fixation of the screening plate 207. Subsequently, the screening plate 207 can be disassembled. This invention facilitates the disassembly of the screening plate 207, thereby facilitating its cleaning and maintenance, and helping to improve the working efficiency of the screening plate 207. It also facilitates the inspection and maintenance of the vibration motor 208, helping to improve the working efficiency of the vibration motor 208, and indirectly improving the working efficiency of the screening plate 207.

[0051] Example 2: Please refer to Figure 1 , Figure 2As shown, this embodiment is an adhesive production and conveying equipment, which also includes a temperature control component 300. The temperature control component 300 includes a temperature control channel 301 opened inside the conveying pipe 102. A first pipe fitting 302 and a second pipe fitting are installed at both ends of the temperature control channel 301. A first water tank 303 and a second water tank 310 are installed on the top of the mounting base 101. A water inlet pipe 306 is installed on the top of the first water tank 303. A first water pump 304 is installed inside the first water tank 303. A first pipe 310 is installed at the outlet of the first water pump 304, penetrating the outer wall of the first water tank 303 and communicating with the second pipe fitting. 05; A second water pump 313 is installed inside the second water tank 310. A second pipe 312 is installed at the outlet of the second water pump 313, passing through the second water tank 310 and connecting to the first water tank 303. The first pipe fitting 302 is connected to the second water tank 310 via a third pipe 309. A one-way valve 311 is installed on the third pipe 309. A display screen 307 and a controller 308 are installed on the outer wall of the first water tank 303. An electric heating wire and a temperature sensor are installed inside the first water tank 303. The controller 308 is electrically connected to the electric heating wire. The temperature sensor is electrically connected to the display screen 307.

[0052] Cooling water is poured into the first water tank 303 through the inlet pipe 306. The first water pump 304 is started. Under the action of the first water pump 304, the cooling water in the first water tank 303 will enter the constant temperature channel 301 through the first pipe 305 and the second pipe fitting. During the process of the cooling water flowing through the constant temperature channel 301, the inside of the conveying pipe 102 can be cooled down, so as to avoid the adhesive material from rubbing against the screw conveyor 105 and causing the temperature of the adhesive material to be too high. This prevents the adhesive material from affecting its own performance due to excessive temperature and ensures the processing quality of the subsequent adhesive.

[0053] After cooling the conveying pipe 102, the cooling water will enter the second water tank 310 for storage through the first pipe fitting 302 and the third pipe 309. Then, the second water pump 313 will be started. Under the action of the second water pump 313, the cooling water in the second water tank 310 will enter the first water tank 303 through the second pipe 312, so as to achieve the purpose of recycling and reusing the cooling water. The utilization rate of water resources is high, which is relatively energy-saving and environmentally friendly, and indirectly reduces the production cost of adhesives.

[0054] Because an electric heating wire and a temperature sensor are installed inside the first water tank 303, the temperature sensor, together with the display screen 307, allows the staff to intuitively understand the temperature information of the cooling water inside the first water tank 303.

[0055] If the adhesive production takes place in winter, the temperature of the cooling water inside the first water tank 303 will be low. In this case, the controller 308 can be used to activate the electric heating wire to heat the cooling water inside the first water tank 303, so that the cooling water inside the first water tank 303 can meet the winter cooling requirements of the conveying pipeline 102. If the adhesive production takes place in summer, the temperature of the cooling water inside the first water tank 303 will be high. In this case, the inlet pipe 306 can be used to add new low-temperature cooling water into the first water tank 303 to neutralize or reduce the temperature of the original cooling water in the first water tank 303, so that the cooling water inside the first water tank 303 can meet the summer cooling requirements of the conveying pipeline 102. This invention can regulate the temperature of the cooling water inside the first water tank 303, so that the constant temperature component 300 can meet the cooling requirements of the conveying pipeline 102 in different seasons.

[0056] In summary, please refer to the following: Figures 1-7The adhesive raw material is poured into the feed pipe 106 through the feed branch pipe 202. Simultaneously, the second motor 203 is started. The second motor 203, via the connecting rod 204, drives multiple stirring strips 205 to rotate. These stirring strips 205 agitate the adhesive raw material inside the feed pipe 106, preventing uneven particle size and ensuring the quality of subsequent adhesive processing. Then, the vibration motor 208 is started. The vibration motor 208, in conjunction with the screening plate 207, screens the agitated adhesive raw material, further preventing unevenly sized adhesive raw materials from entering subsequent adhesive production processes, thus ensuring the quality of subsequent adhesive processing. The agitated, mixed, and screened adhesive raw material then enters the conveying pipe 10. Inside the conveying pipe 102, the first motor 103 is started, which drives the auger 105 to rotate via the drive rod 104. The auger 105, while rotating, conveys the adhesive material inside the conveying pipe 102. Before conveying the adhesive material, cooling water is poured into the first water tank 303 through the inlet pipe 306. The first water pump 304 is started, and under the action of the first water pump 304, the cooling water inside the first water tank 303 enters the constant temperature channel 301 through the first pipe 305 and the second fitting. During the flow of the cooling water through the constant temperature channel 301, the inside of the conveying pipe 102 is cooled, preventing the adhesive material from rubbing against the auger 105 and causing the adhesive material to overheat. The material's performance is affected by excessive temperature, ensuring the processing quality of subsequent adhesives. Cooling water, after being cooled by the conveying pipe 102, enters the second water tank 310 for storage through the first pipe fitting 302 and the third pipe 309. Then, the second water pump 313 is activated, and under its action, the cooling water in the second water tank 310 enters the first water tank 303 through the second pipe 312, achieving the purpose of cooling water recycling and reuse. This results in high water resource utilization, energy saving, and environmental protection, indirectly reducing the production cost of the adhesive. Since an electric heating wire and temperature sensor are installed inside the first water tank 303, the temperature sensor, in conjunction with the display screen 307, allows workers to intuitively understand the temperature of the first water tank. The temperature information of the cooling water inside tank 303; if the adhesive production is carried out in winter, the temperature of the cooling water inside the first water tank 303 is low. At this time, the controller 308 can be used to start the electric heating wire to heat the cooling water inside the first water tank 303, so that the cooling water inside the first water tank 303 can meet the winter cooling requirements of the conveying pipeline 102; if the adhesive production is carried out in summer, the temperature of the cooling water inside the first water tank 303 is high. At this time, the inlet pipe 306 can be used to add new low-temperature cooling water into the first water tank 303 to neutralize or reduce the temperature of the original cooling water in the first water tank 303, so that the cooling water inside the first water tank 303 can meet the summer cooling requirements of the conveying pipeline 102;This invention can regulate the temperature of the cooling water inside the first water tank 303, enabling the thermostatic component 300 to meet the cooling requirements of the conveying pipeline 102 in different seasons.

[0057] As can be seen from Embodiments 1 and 2, on the one hand, the present invention has the function of stirring, mixing, and screening adhesive raw materials, eliminating the need for additional pretreatment equipment and reducing the production cost of adhesives. By stirring, mixing, and screening adhesive raw materials, it is possible to effectively prevent adhesive raw materials with uneven particle size from entering the subsequent adhesive production and processing work, thus ensuring the quality of subsequent adhesive processing. On the other hand, the present invention can adjust the temperature of the cooling water inside the first water tank 303, so that the constant temperature component 300 can meet the cooling requirements of the conveying pipeline 102 in different seasons.

[0058] The above description is merely an example and illustration of the structure of the present invention. Those skilled in the art can make various modifications or additions to the specific embodiments described, or use similar methods to replace them, as long as they do not deviate from the structure of the invention or exceed the scope defined in the claims, all of which should fall within the protection scope of the present invention.

Claims

1. An adhesive production and conveying device, characterized in that, include: Conveying assembly (100); The conveying assembly (100) includes a mounting base (101), a conveying pipe (102) is mounted on the top of the mounting base (101), a first motor (103) is mounted on the end of the conveying pipe (102), and a drive rod (104) is fixed at the output end of the first motor (103) that movably passes through the end of the conveying pipe (102) and extends into the interior of the conveying pipe (102). A conveying auger (105) is mounted on the outer wall of the drive rod (104). A feed pipe (106) is installed on the outer wall of the conveying pipe (102); Mixing and screening components (200); The mixing and screening assembly (200) includes a sealing seat (201) detachably mounted on the top of the feed pipe (106), a second motor (203) mounted on the top of the sealing seat (201), and a connecting rod (204) fixed at the output end of the second motor (203) that moves through the top of the sealing seat (201) and extends into the inside of the feed pipe (106). A plurality of stirring strips (205) are mounted on the outer wall of the connecting rod (204). The top of the sealing seat (201) is equipped with a feed branch pipe (202); A fixing ring (206) is fixed inside the feed pipe (106), a screening plate (207) is placed on the top of the fixing ring (206), and a vibration motor (208) is installed at the bottom of the screening plate (207); The feed pipe (106) has a connecting groove (210) on its inner wall; The top of the screening plate (207) is fixed with a connecting strip (209), and the top of the connecting strip (209) is fixed with a connecting block (211) that engages with the connecting groove (210).

2. The adhesive production and conveying equipment according to claim 1, characterized in that, It also includes a fixing member, which includes a fixing groove (212) opened inside the connecting block (211), and a first locking hole (213) opened on both sides of the inner wall of the fixing groove (212), and a second locking hole (214) opened on both sides of the inner wall of the connecting groove (210) to cooperate with the first locking hole (213).

3. The adhesive production and conveying equipment according to claim 2, characterized in that, The fixed groove (212) is movably provided with two toggle plates (215), and each of the two toggle plates (215) is fixed with a locking post (216) that engages with the first locking hole (213) and the second locking hole (214) at one end away from each other.

4. The adhesive production and conveying equipment according to claim 3, characterized in that, A telescopic rod (217) is fixed between the two actuating plates (215). A spring (218) is provided on the outside of the telescopic rod (217). The two ends of the spring (218) are fixed to the opposite ends of the two actuating plates (215).

5. The adhesive production and conveying equipment according to claim 1, characterized in that, It also includes a temperature control component (300), which includes a temperature control channel (301) opened inside the delivery pipe (102), and a first pipe fitting (302) and a second pipe fitting are installed at both ends of the temperature control channel (301); The mounting base (101) is equipped with a first water tank (303) and a second water tank (310) on its top. The first water tank (303) is equipped with a water inlet pipe (306) on its top; The first water tank (303) is equipped with a first water pump (304), and the outlet of the first water pump (304) is equipped with a first pipe (305) that penetrates the outer wall of the first water tank (303) and is connected to the second pipe fitting; The second water tank (310) is equipped with a second water pump (313), and the outlet of the second water pump (313) is equipped with a second pipe (312) that passes through the second water tank (310) and is connected to the first water tank (303); The first pipe fitting (302) is connected to the second water tank (310) via the third pipe (309); A check valve (311) is installed on the third pipe (309).

6. The adhesive production and conveying equipment according to claim 5, characterized in that, The outer wall of the first water tank (303) is equipped with a display screen (307) and a controller (308).

7. The adhesive production and conveying equipment according to claim 6, characterized in that, The first water tank (303) is equipped with an electric heating wire and a temperature sensor; The controller (308) is electrically connected to the electric heating wire; The temperature sensor is electrically connected to the display screen (307).