Full-automatic adhesive integrated production equipment
By designing fully automatic adhesive integrated production equipment, the problem of relying on labor for solid raw materials and finished product transfer is solved, and the fully automated production of adhesives is achieved, efficiency is improved and the conveying volume is accurately controlled.
Patent Information
- Application Number
- CN202422055124.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-08-23
AI Technical Summary
During the existing adhesive production process, the provision of solid raw materials depends on manual labor and cannot be precise and accurate. The transfer of finished product tanks also requires manual operation, which increases labor cost and low efficiency.
A fully automatic adhesive integrated production equipment is designed, including a reaction mechanism, a liquid raw material conveying mechanism, a centrifugal mechanism, a solid raw material conveying mechanism and a finished product transfer mechanism, which realizes the automatic transportation of liquid and solid raw materials, reactions and automatic transfer of finished products.
The fully automated production of adhesives is achieved, manual participation is reduced, work efficiency is improved, and the precise delivery volume control of solid raw materials is achieved through the weight weigher on the precision conveying screw device.
Smart Images

Figure CN222943496U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of adhesive production, in particular to full-automatic adhesive integrated production equipment. Background Art
[0002] Adhesive is a product commonly used in industry and life. In the production process of adhesive, it is usually necessary to provide liquid raw materials and solid raw materials into a reaction tank. After that, the raw materials in the reaction tank are stirred by a stirring device to make them fully and evenly mixed. After that, the semi-finished products are output to a centrifugal device for centrifugal treatment, and finally the finished products are output to a finished product tank. This is the basic production process of adhesive. These production processes require the use of corresponding production equipment. However, liquid raw material supply, reaction mechanism, centrifugal mechanism, etc. are all existing automated equipment, while when providing solid raw materials, it is usually done manually, and it is not possible to provide solid raw materials accurately. In addition, the finished product tank is usually fixed. When it needs to be moved, it is manually lifted onto a vehicle and then transported away. This not only increases labor costs, but also has low work efficiency. Utility Model Content
[0003] In view of this, the present invention aims at the defects of the prior art, and its main purpose is to provide a fully automatic integrated adhesive production equipment, which is used to solve the above problems.
[0004] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0005] Fully automatic adhesive integrated production equipment, including a reaction mechanism, a liquid raw material conveying mechanism, and a centrifugal mechanism; the reaction mechanism includes a reaction tank and a stirring device for stirring the raw materials in the reaction tank, the top of the reaction tank is provided with a first liquid feed port and a solid conveying port opening upward, and the bottom of the reaction tank is provided with a first liquid discharge port; the liquid raw material conveying mechanism includes a liquid raw material tank and a liquid conveying pipe, and the liquid conveying pipe connects the liquid raw material tank with the liquid conveying interface; the centrifugal mechanism includes a centrifugal tank body and a centrifugal driving device, the centrifugal tank body is provided with a second liquid feed port and a second liquid discharge port, the first liquid discharge port is connected to the aforementioned first liquid discharge port, the second liquid discharge port is connected to a liquid finished product output pipe, and the liquid finished product output pipe has a third liquid discharge port opening downward;
[0006] It also includes a solid raw material conveying mechanism and a finished product transfer mechanism; the solid raw material conveying mechanism includes a first material trough, a second material trough, a rough conveying screw device, and a fine conveying screw device, the position of the first material trough corresponds to the bottom of the reaction tank, the first material trough is larger than the second material trough, the second material trough is arranged on the side of the solid conveying port, the two ends of the rough conveying screw device are connected between the second material trough and the first material trough at an angle up and down, the two ends of the fine conveying screw device are connected between the solid conveying port and the second material trough at the upper and lower ends, respectively, and the fine conveying screw device is provided with a weight scale;
[0007] The finished product transfer mechanism includes a transfer vehicle body and a finished product tank. The finished product tank is arranged on the transfer vehicle body. A finished product receiving port is provided on the top of the finished product tank. The finished product receiving port is located below the aforementioned third liquid discharge port.
[0008] As a preferred embodiment, the bottom of the reaction tank is connected to a vertical pipe, the lower end face of the vertical pipe is provided with a slag discharge port, the side wall of the vertical pipe is connected to an inclined liquid discharge pipe, and the lower end of the liquid discharge pipe is the aforementioned first liquid discharge port.
[0009] As a preferred solution, the stirring device includes a stirring impeller, a connecting rod, and a motor. The connecting rod is vertically arranged in the reaction tank, the stirring impeller is located in the reaction tank and connected to the connecting rod, and the motor is located at the top of the reaction tank and connected to the connecting rod to drive the connecting rod to rotate.
[0010] As a preferred solution, a plurality of liquid feeding ports are provided on the side wall of the reaction tank, and the plurality of liquid feeding ports are arranged at intervals from top to bottom.
[0011] As a preferred solution, the bottom of the finished can is in an outwardly convex pointed shape.
[0012] As a preferred solution, the transfer vehicle body includes a load-bearing plate, a bottom of the load-bearing plate is provided with rollers, a fence is provided on the load-bearing plate, and the finished can is arranged in the fence.
[0013] As a preferred solution, the liquid finished product output pipe includes a first inclined pipe, a first vertical pipe, a second inclined pipe, and a second vertical pipe. The first inclined pipe is inclined from bottom to top, the lower port of the first inclined pipe is connected to the second liquid outlet, the upper port of the first inclined pipe is connected to the lower port of the first vertical pipe, the second inclined pipe is inclined from bottom to top, the lower port of the second inclined pipe is connected to the upper port of the first vertical pipe, the upper port of the second inclined pipe is connected to the upper port of the second vertical pipe, and the lower port of the second inclined pipe is the aforementioned third liquid outlet.
[0014] Compared with the prior art, the utility model has obvious advantages and beneficial effects. Specifically, it can be seen from the above technical solution that the main advantages are:
[0015] By setting up a reaction mechanism, a liquid raw material conveying mechanism, a centrifugal mechanism, and adding a solid raw material conveying mechanism and a finished product transfer mechanism, the fully automated production of the adhesive is achieved. Specifically, in practice, the liquid raw material conveying mechanism can automatically convey a preset amount of liquid raw material to the reaction tank, and the solid raw material conveying mechanism can also convey a preset amount of solid raw material to the reaction tank. After that, the stirring device stirs the raw materials in the reaction tank to obtain a semi-finished product. After that, the semi-finished product is centrifuged in a centrifugal mechanism. After reaching the standard, the finished product out of the centrifugal device can be output to the finished product tank. Finally, the transfer vehicle sends the finished product tank to the designated location. The entire process, including the conveying, reaction, and transfer of liquid and solid raw materials, is automated, which can reduce manual participation and greatly improve work efficiency. In addition, by providing a weight scale on the fine conveying screw device, the conveying amount of solid raw materials can be accurately known, thereby accurately controlling the conveying amount.
[0016] In order to more clearly illustrate the structural features and functions of the present invention, the present invention is described in detail below in conjunction with the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the utility model;
[0018] Figure 2 yes Figure 1 Enlarged view of point A in the middle;
[0019] Figure 3 It is a side view of an embodiment of the utility model;
[0020] Figure 4 It is a schematic diagram of the structure of a stirring device according to an embodiment of the utility model.
[0021] Description of reference numerals:
[0022] 10. Reaction mechanism; 11. Reaction tank; 111. First liquid feed port; 112. Solid delivery port; 113. First liquid discharge port; 114. Liquid feed port; 12. Stirring device; 13. Stirring impeller; 14. Connecting rod; 15. Motor; 20. Centrifugal mechanism; 21. Centrifugal tank body; 211. Second liquid feed port; 212. Second liquid discharge port; 22. Centrifugal drive device; 23. Liquid finished product output pipe; 231. Third liquid discharge port; 232. First Inclined tube; 233, first vertical tube; 234, second inclined tube; 235, second vertical tube; 30, solid raw material conveying mechanism; 31, first material trough; 32, second material trough; 33, coarse conveying screw device; 34, fine conveying screw device; 35, weight scale; 40, finished product transfer mechanism; 41, transfer vehicle body; 411, load-bearing plate; 412, fence; 42, finished product tank; 421, finished product receiving port; 50, vertical pipeline; 51, slag discharge port; 52, liquid discharge pipe. DETAILED DESCRIPTION
[0023] In order to make the purpose, technical solution and advantages of the utility model more clear, the utility model is further described in detail below with reference to the accompanying drawings and implementation examples. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.
[0024] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.
[0025] See also Figures 1 to 4The embodiment of the utility model provides a fully automatic adhesive integrated production equipment, including a reaction mechanism 10, a liquid raw material conveying mechanism (not shown in the figure), and a centrifugal mechanism 20; the reaction mechanism 10 includes a reaction tank 11 and a stirring device 12 for stirring the raw materials in the reaction tank 11, the top of the reaction tank 11 is provided with a first liquid feed port 111 and a solid conveying port 112 with an opening facing upward, and the bottom of the reaction tank 11 is provided with a first liquid discharge port 113; the liquid raw material conveying mechanism includes a liquid raw material tank and a liquid conveying pipe, and the liquid conveying pipe connects the liquid raw material tank with the liquid conveying interface; the centrifugal mechanism 20 includes a centrifugal tank body 21 and a centrifugal driving device 22, the centrifugal tank body 21 is provided with a second liquid feed port 211 and a second liquid discharge port 212, the first liquid discharge port 113 is connected to the aforementioned first liquid discharge port 113, and the second liquid discharge port 212 is connected to a liquid finished product output pipe 23, and the liquid finished product output pipe 23 has a third liquid discharge port 231 with an opening facing downward;
[0026] It also includes a solid raw material conveying mechanism 30 and a finished product transfer mechanism 40; the solid raw material conveying mechanism 30 includes a first material trough 31, a second material trough 32, a rough conveying screw device 33, and a fine conveying screw device 34. The position of the first material trough 31 corresponds to the bottom of the reaction tank 11. The first material trough 31 is larger than the second material trough 32. The second material trough 32 is arranged on the side of the solid conveying port 112. The two ends of the rough conveying screw device 33 are connected between the second material trough 32 and the first material trough 31 at an angle up and down. The two ends of the fine conveying screw device 34 are connected between the solid conveying port 112 and the second material trough 32 at the upper and lower ends, respectively. In addition, a weight scale 35 is provided on the fine conveying screw device 34;
[0027] The finished product transfer mechanism 40 includes a transfer vehicle body 41 and a finished product tank 42 . The finished product tank 42 is disposed on the transfer vehicle body 41 . A finished product receiving port 421 is provided on the top of the finished product tank 42 . The finished product receiving port 421 is located below the aforementioned third liquid discharge port 231 .
[0028] By providing a reaction mechanism 10, a liquid raw material conveying mechanism, a centrifugal mechanism 20, and additionally providing a solid raw material conveying mechanism 30 and a finished product transfer mechanism 40, the fully automated production of the adhesive is realized. Specifically, in practice, the liquid raw material conveying mechanism can automatically convey a preset amount of liquid raw material to the reaction tank 11, and the solid raw material conveying mechanism 30 can also convey a preset amount of solid raw material to the reaction tank 11. Then, the stirring device 12 stirs the raw materials in the reaction tank 11 to obtain a semi-finished product. Then, the semi-finished product is centrifuged in the centrifugal mechanism 20. After reaching the standard, the finished product out of the centrifugal device can be output to the finished product tank 42. Finally, the transfer vehicle delivers the finished product tank 42 to the designated location. The entire process, including the conveying, reaction, and transfer of liquid and solid raw materials, is automated, which can reduce manual participation and greatly improve work efficiency. In addition, by providing a weight scale 35 on the fine conveying screw device 34, the conveying amount of the solid raw material can be accurately known, thereby accurately controlling the conveying amount.
[0029] Furthermore, the bottom of the reaction tank 11 is connected to a vertical pipe 50, and a slag discharge port 51 is provided on the lower end face of the vertical pipe 50. The side wall of the vertical pipe 50 is connected to an inclined liquid discharge pipe 52, and the lower end of the liquid discharge pipe 52 is the aforementioned first liquid discharge port 113. Such a structural design allows impurities and the like to be discharged from the slag discharge port 51, while liquid is output from the first liquid discharge port 113.
[0030] Furthermore, the stirring device 12 includes a stirring impeller 13, a connecting rod 14, and a motor 15. The connecting rod 14 is vertically arranged in the reaction tank 11. The stirring impeller 13 is located in the reaction tank 11 and connected to the connecting rod 14. The motor 15 is located at the top of the reaction tank 11 and connected to the connecting rod 14 to drive the connecting rod 14 to rotate. The raw materials can be stirred by the stirring impeller 13.
[0031] Furthermore, a plurality of liquid feeding ports 114 are provided on the side wall of the reaction tank 11, and the plurality of liquid feeding ports 114 are arranged at intervals from top to bottom. In practice, the degree of mixing of liquids at different heights in the reaction tank 11 is different. In order to adjust the liquid components at different heights, corresponding raw material liquids are added to the reaction tank 11 through the liquid feeding ports 114 at the corresponding heights, thereby achieving the effect of adjusting the proportion of the raw material components at that height.
[0032] Furthermore, the bottom of the finished product tank 42 is in an outwardly convex pointed shape, which is conducive to the collection and outflow of the adhesive. If the bottom of the finished product tank 42 is horizontal, it is easy for the adhesive to remain at the bottom of the finished product tank 42, causing waste.
[0033] Furthermore, the transfer vehicle body 41 includes a carrying plate 411 , a roller is disposed at the bottom of the carrying plate 411 , a fence 412 is disposed on the carrying plate 411 , and the finished product can 42 is disposed in the fence 412 .
[0034] Furthermore, the liquid product output pipe 23 includes a first inclined pipe 232, a first vertical pipe 233, a second inclined pipe 234, and a second vertical pipe 235. The first inclined pipe 232 is inclined from bottom to top, and the lower port of the first inclined pipe 232 is connected to the second liquid discharge port 212, and the upper port of the first inclined pipe 232 is connected to the lower port of the first vertical pipe 233. The second inclined pipe 234 is inclined from bottom to top, and the lower port of the second inclined pipe 234 is connected to the upper port of the first vertical pipe 233, and the upper port of the second inclined pipe 234 is connected to the upper port of the second vertical pipe 235. The lower port of the second inclined pipe 234 is the aforementioned third liquid discharge port 231. By designing the first inclined pipe 232 and the second inclined pipe 234, in practice, when the output of the liquid product stops, the liquid product will reflux and gather to prevent the liquid product from accumulating in the liquid product output pipe 23.
[0035] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the principles of the present invention should be included in the protection scope of the present invention.
Claims
1. Fully automatic adhesive integrated production equipment, characterized by: It comprises a reaction mechanism, a liquid raw material conveying mechanism, and a centrifugal mechanism; the reaction mechanism comprises a reaction tank and a stirring device for stirring the raw materials in the reaction tank, the top of the reaction tank is provided with a first liquid feed port and a solid conveying port opening upward, and the bottom of the reaction tank is provided with a first liquid discharge port; the liquid raw material conveying mechanism comprises a liquid raw material tank and a liquid conveying pipe, and the liquid conveying pipe connects the liquid raw material tank with the liquid conveying interface; the centrifugal mechanism comprises a centrifugal tank body and a centrifugal driving device, the centrifugal tank body is provided with a second liquid feed port and a second liquid discharge port, the first liquid discharge port is connected with the aforementioned first liquid discharge port, the second liquid discharge port is connected with a liquid finished product output pipe, and the liquid finished product output pipe has a third liquid discharge port opening downward; It also includes a solid raw material conveying mechanism and a finished product transfer mechanism; the solid raw material conveying mechanism includes a first material trough, a second material trough, a rough conveying screw device, and a fine conveying screw device, the position of the first material trough corresponds to the bottom of the reaction tank, the first material trough is larger than the second material trough, the second material trough is arranged on the side of the solid conveying port, the two ends of the rough conveying screw device are connected between the second material trough and the first material trough at an angle up and down, the two ends of the fine conveying screw device are connected between the solid conveying port and the second material trough at the upper and lower ends, respectively, and the fine conveying screw device is provided with a weight scale; The finished product transfer mechanism includes a transfer vehicle body and a finished product tank. The finished product tank is arranged on the transfer vehicle body. A finished product receiving port is provided on the top of the finished product tank. The finished product receiving port is located below the aforementioned third liquid discharge port.
2. The fully automatic integrated adhesive production equipment according to claim 1 is characterized in that: The bottom of the reaction tank is connected to a vertical pipe, the lower end face of the vertical pipe is provided with a slag discharge port, the side wall of the vertical pipe is connected to an inclined liquid discharge pipe, and the lower end of the liquid discharge pipe is the aforementioned first liquid discharge port.
3. The fully automatic adhesive integrated production equipment according to claim 1 is characterized in that: The stirring device includes a stirring impeller, a connecting rod, and a motor. The connecting rod is vertically arranged in the reaction tank. The stirring impeller is located in the reaction tank and connected to the connecting rod. The motor is located on the top of the reaction tank and connected to the connecting rod to drive the connecting rod to rotate.
4. The fully automatic adhesive integrated production equipment according to claim 1 is characterized in that: A plurality of liquid feeding ports are arranged on the side wall of the reaction tank, and the plurality of liquid feeding ports are arranged at intervals from top to bottom.
5. The fully automatic adhesive integrated production equipment according to claim 1 is characterized in that: The bottom of the finished can is in an outwardly convex pointed shape.
6. The fully automatic adhesive integrated production equipment according to claim 1 is characterized in that: The transfer vehicle body includes a load-bearing plate, a roller is provided at the bottom of the load-bearing plate, a fence is provided on the load-bearing plate, and the finished product can is arranged in the fence.
7. The fully automatic integrated adhesive production equipment according to claim 1 is characterized in that: The liquid finished product output pipe includes a first inclined pipe, a first vertical pipe, a second inclined pipe, and a second vertical pipe. The first inclined pipe is inclined from bottom to top, the lower port of the first inclined pipe is connected to the second liquid outlet, the upper port of the first inclined pipe is connected to the lower port of the first vertical pipe, the second inclined pipe is inclined from bottom to top, the lower port of the second inclined pipe is connected to the upper port of the first vertical pipe, the upper port of the second inclined pipe is connected to the upper port of the second vertical pipe, and the lower port of the second inclined pipe is the aforementioned third liquid outlet.