A protein glue upper layer defoaming and conveying system
By designing an upper defoaming conveying system for protein glue including rollers, vibrating discs and turntables, the problem of bubbles generated during protein glue filling is solved, the effect of eliminating upper bubbles is achieved, and the beauty of the product and customer trust is improved.
Patent Information
- Application Number
- CN202310838035.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-10
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2043-07-10
AI Technical Summary
Existing protein glue filling equipment generates a large number of bubbles during the filling process, resulting in bubbles on the upper layer of the finished protein glue, affecting the beauty and customer's trust in the loading volume.
A defoaming conveying system of the upper layer of protein glue is designed, including a shell, a roller, a vibrating disk, a turntable and a drive. Through the coordination of the roller and the turntable, the barrel filled with the adhesive is turned over and vibrated, and the upper bubbles are vibrated to the bottom of the barrel, thereby eliminating the upper bubbles.
Effectively eliminate the upper bubbles in the barrel, ensure that the upper layer of finished protein glue is neat and beautiful, enhance customer trust in the loading volume, and has a simple structure, small footprint and obvious effect.
Smart Images

Figure CN116637407B_ABST
Abstract
Description
Technical Field:
[0001] The present invention relates to the chemical industry field, and more specifically to an anti-foaming conveying system for the upper layer of protein glue. Background Art:
[0002] Protein glue is a natural adhesive based on protein. Currently, in industrial production equipment for protein glue, a filling funnel is inserted into the barrel mouth, and then the protein glue is quickly sent into the barrel. In this way, a large number of bubbles are generated during filling. After filling, there are a large number of bubbles in the upper layer of the finished protein glue, which is not only unsightly but also causes customers to have objections to the filling amount. More importantly, after each barrel is opened, the sizes and positions of the bubbles are different, and there are differences in appearance. Summary of the Invention:
[0003] The present invention aims to avoid the deficiencies of the above-mentioned prior art and provides an anti-foaming conveying system for the upper layer of protein glue, which eliminates the bubbles in the upper layer of the barrel during the conveying process after filling.
[0004] The present invention adopts the following technical solutions to solve the technical problems:
[0005] An anti-foaming conveying system for the upper layer of protein glue, comprising:
[0006] A machine body, the machine body includes a housing, a drum, a vibrating disk, a turntable and a driving member. The housing is sleeved on the outer surfaces of the drum, the vibrating disk and the turntable. The driving member is fixedly installed at the top of the outer surface of the housing, and the drum is in transmission connection with the driving member;
[0007] A solid disk is provided inside the drum, and a first placement groove is provided on the disk as the barrel inlet;
[0008] The vibrating disk is composed of an outer fixed ring, a middle vibrating ring and an inner support ring. Springs are provided on the outer wall of the middle vibrating ring to connect with the inner wall of the outer fixed ring, and springs are provided on the inner wall to connect with the outer wall of the inner support ring. A second placement groove and a vibrating motor are provided on the middle vibrating ring;
[0009] The turntable is connected to the disk through a fixing rod passing through the inner support ring of the vibrating disk, and a third placement groove is provided on the turntable;
[0010] Among them, the starting point of the first placement groove is located at the right quadrant point of the disk, the second placement groove is fixedly located at the left quadrant point of the middle vibrating ring, the starting point of the third placement groove is located at the upper quadrant point of the turntable. The drum rotates, the third placement groove communicates with the second placement groove, and continues to rotate, and the first placement groove communicates with the second placement groove;
[0011] A circular baffle is provided behind the turntable, and the circular baffle is fixedly connected to the inner wall of the housing. An outlet is provided at the right quadrant point of the circular baffle;
[0012] The bucket filled with protein gel is being placed into the first placement slot. The driving member drives the roller to rotate, driving the disc to rotate. When the first placement slot passes through the upper quadrant point on the disc, the bucket changes from the upright position to the horizontal position. Continuing to rotate, when the first placement slot passes through the left quadrant point on the disc, the bucket changes from the horizontal position to the inverted position. The first placement slot communicates with the second placement slot, and the bucket is moved into the second placement slot for vibration, shaking the bubbles on the upper layer of the bucket to the bottom layer. At this time, the third placement slot is located at the lower quadrant point of the turntable. Continuing to rotate, the first placement slot returns to the right quadrant point on the disc, and the next bucket is placed upright into the first placement slot. At this time, the third placement slot is located at the upper quadrant point of the turntable. Continuing to rotate 90°, the third placement slot is located at the left quadrant point of the turntable. The third placement slot communicates with the second placement slot, and the bucket is moved into the third placement slot. Continuing to rotate 90°, the first placement slot communicates with the second placement slot, and the next bucket is moved into the second placement slot for vibration. Continuing to rotate 90°, the third placement slot is docked with the bucket outlet of the circular baffle, and the bucket exits in the upright direction, and so on.
[0013] Further technology of the present invention:
[0014] Preferably, the whole body of the machine tilts downward from the drum towards the turntable.
[0015] Preferably, the driving member includes a reduction motor and a gear, and the output end of the reduction motor is fixedly connected to the gear.
[0016] Preferably, a toothed ring is fixedly connected to one end outside the drum, and the gear meshes with the toothed ring for transmission.
[0017] Preferably, a front conveyor is provided at the front end of the machine body. The front conveyor points to the right quadrant point of the disc and is docked with the bucket inlet;
[0018] A rear conveyor is provided at the rear end of the machine body. The rear conveyor points to the right quadrant point of the bucket outlet. The turntable rotates and is docked with the bucket outlet.
[0019] The beneficial technical effects of the present invention are:
[0020] After covering the bucket filled with protein gel, place it upright into the first placement slot, turn it over and place it into the second placement slot for vibration through rotation, shake the bubbles on the upper layer to the lower layer, and then turn it over through the third placement slot and exit in the upright direction. It effectively eliminates the bubbles on the upper layer in the bucket. After opening the lid, the upper layer is relatively intact and beautiful. The present invention can cooperate with the conveyor to complete the upright input and output, vibrate in the middle section to remove the bubbles on the upper layer, with a simple structure, small floor area, and obvious effect. Description of the drawings:
[0021] Figure 1 It is a schematic diagram of a protein gel upper layer defoaming and conveying system for Example 1;
[0022] Figure 2 It is Figure 1 the schematic diagram A-A in
[0023] Figure 3 is Figure 1 Schematic diagram of B-B in
[0024] Figure 4 is Figure 1 Schematic diagram of C-C in
[0025] Figure 5 is Figure 1 Schematic diagram of D-D in
[0026] Figure 6 Schematic diagram of the defoaming and conveying system for the upper layer of a protein glue in Example 2
[0027] Reference numerals in the figure: 10 turntable; 11 housing; 12 drum; 14 disc; 13 vibration motor; 15 first placement groove; 16 outer fixing ring; 17 middle vibration ring; 18 inner support ring; 19 spring; 20 second placement groove; 21 fixing rod; 22 third placement groove; 23 circular baffle; 24 barrel outlet; 25 reduction motor; 26 gear; 27 toothed ring; 28 front conveyor; 29 rear conveyor. Specific implementation manner:
[0028] In order to enable those skilled in the art to better understand the technical solutions in this application, the technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0029] Example 1: As Figures 1-5 , the present invention provides a defoaming and conveying system for the upper layer of a protein glue, including:
[0030] A machine body, the machine body includes a housing 11, a drum 12, a vibration plate, a turntable 10 and a driving member, the housing 11 is sleeved on the outer surfaces of the drum 12, the vibration plate and the turntable, the driving member is fixedly installed on the top of the outer surface of the housing 11, and the drum 12 is in transmission connection with the driving member;
[0031] The whole machine body is inclined downward from the drum 12 towards the turntable.
[0032] The driving member includes a reduction motor 25 and a gear 26, and the output end of the reduction motor 25 is fixedly connected to the gear 26.
[0033] One end of the outside of the drum 12 is fixedly connected with a toothed ring 27, and the gear 26 is in meshing transmission with the toothed ring 27.
[0034] The drum 12 is internally provided with a solid disc 14, and a first placement groove 15 is provided on the disc 14 as the barrel inlet;
[0035] The vibrating disk is composed of an outer fixing ring 16, a middle vibrating ring 17 and an inner supporting ring 18. A spring 19 is arranged on the outer wall of the middle vibrating ring 17 and connected to the inner wall of the outer fixing ring 16, and a spring 19 is arranged on the inner wall and connected to the outer wall of the inner supporting ring 18. A second placement groove 20 and a vibrating motor 13 are arranged on the middle vibrating ring 17;
[0036] The turntable is connected to the disk 14 through a fixing rod 21 passing through the inner supporting ring 18 of the vibrating disk, and a third placement groove 22 is arranged on the turntable;
[0037] Among them, the starting point of the first placement groove 15 is located at the right quadrant point of the disk 14, the second placement groove 20 is fixedly located at the left quadrant point of the middle vibrating ring 17, the starting point of the third placement groove 22 is located at the upper quadrant point of the turntable. The roller 12 rotates, the third placement groove 22 communicates with the second placement groove 20, and continues to rotate, and the first placement groove 15 communicates with the second placement groove 20;
[0038] A circular baffle 23 is arranged behind the turntable. The circular baffle 23 is fixedly connected to the inner wall of the housing 11, and a barrel outlet 24 is arranged at the right quadrant point of the circular baffle 23;
[0039] The barrel filled with protein glue is placed into the first placement groove 15. The driving part drives the roller to rotate, driving the disk 14 to rotate. When the first placement groove 15 passes through the upper quadrant point of the disk 14, the barrel changes from the vertical direction to the horizontal direction. Continuing to rotate, when the first placement groove 15 passes through the left quadrant point of the disk 14, the barrel changes from the horizontal direction to the inverted state. The first placement groove 15 communicates with the second placement groove 20, and the barrel moves into the second placement groove 20 for vibration, shaking the bubbles on the upper layer of the barrel to the bottom layer of the barrel. At this time, the third placement groove 22 is located at the lower quadrant point of the turntable. Continuing to rotate, the first placement groove 15 returns to the right quadrant point of the disk 14 again, and the next barrel is placed into the first placement groove 15 in the vertical direction. At this time, the third placement groove 22 is located at the upper quadrant point of the turntable. Continuing to rotate 90°, the third placement groove 22 is located at the left quadrant point of the turntable, and the third placement groove 22 communicates with the second placement groove 20, and the barrel moves into the third placement groove 22. Continuing to rotate 90°, the first placement groove 15 communicates with the second placement groove 20, and the next barrel moves into the second placement groove 20 for vibration. Continuing to rotate 90°, the third placement groove 22 is docked with the barrel outlet 24 of the circular baffle 23, and the barrel exits in the positive direction, and so on.
[0040] Embodiment 2: As Figures 1-6 , the present invention provides a protein glue upper layer defoaming and conveying system, including:
[0041] A machine body, the machine body includes a housing 11, a roller 12, a vibrating disk, a turntable 10 and a driving part. The housing 11 is sleeved on the outer surfaces of the roller 12, the vibrating disk and the turntable. The driving part is fixedly installed at the top of the outer surface of the housing 11, and the roller 12 is in transmission connection with the driving part;
[0042] The overall body is inclined downward from the drum 12 towards the turntable.
[0043] The driving member includes a reduction motor 25 and a gear 26, and the output end of the reduction motor 25 is fixedly connected to the gear 26.
[0044] One end of the outer part of the drum 12 is fixedly connected with a gear ring 27, and the gear 26 is in meshing transmission with the gear ring 27.
[0045] A solid disc 14 is arranged inside the drum 12, and a first placement groove 15 is arranged on the disc 14 as the barrel inlet.
[0046] The vibrating disc consists of an outer fixing ring 16, a middle vibrating ring 17 and an inner supporting ring 18. Springs 19 are arranged on the outer wall of the middle vibrating ring 17 and connected to the inner wall of the outer fixing ring 16, and springs 19 are arranged on the inner wall and connected to the outer wall of the inner supporting ring 18. A second placement groove 20 and a vibrating motor 13 are arranged on the middle vibrating ring 17.
[0047] The turntable is connected to the disc 14 through a fixing rod 21 passing through the inner supporting ring 18 of the vibrating disc, and a third placement groove 22 is arranged on the turntable.
[0048] Among them, the starting point of the first placement groove 15 is located at the right quadrant point of the disc 14, the second placement groove 20 is fixedly located at the left quadrant point of the middle vibrating ring 17, the starting point of the third placement groove 22 is located at the upper quadrant point of the turntable. The drum 12 rotates, the third placement groove 22 communicates with the second placement groove 20, and continues to rotate, and the first placement groove 15 communicates with the second placement groove 20.
[0049] A circular baffle 23 is arranged behind the turntable, and the circular baffle 23 is fixedly connected to the inner wall of the housing 11. An outlet 24 is arranged at the right quadrant point of the circular baffle 23.
[0050] In order to achieve automation, after filling and capping, air bubbles in the upper layer are removed during the conveying process. For this:
[0051] A front conveyor 28 is arranged at the front end of the body, and the front conveyor 28 points to the right quadrant point of the disc 14 and is docked with the barrel inlet.
[0052] A rear conveyor 29 is arranged at the rear end of the body, and the rear conveyor 29 points to the right quadrant point of the outlet 24. The turntable rotates and is docked with the outlet 24.
[0053] The barrel filled with protein gel is being placed into the first placement groove 15 through the front conveyor 28. The driving member drives the roller to rotate, driving the disc 14 to rotate. Since there is only one first placement groove 15 on the disc 14, the next barrel waits. When the first placement groove 15 passes through the upper quadrant point of the disc 14, the barrel changes from the forward direction to the horizontal direction. Continuing to rotate, when the first placement groove 15 passes through the left quadrant point of the disc 14, the barrel changes from the horizontal direction to the inverted direction. The first placement groove 15 communicates with the second placement groove 20, and the barrel is moved into the second placement groove 20 for vibration, shaking the bubbles on the upper layer of the barrel to the bottom layer of the barrel. At this time, the third placement groove 22 is located at the lower quadrant point of the turntable. Continuing to rotate, the first placement groove 15 returns to the right quadrant point of the disc 14, and the next barrel continues to be placed into the first placement groove 15 in the forward direction. At this time, the third placement groove 22 is located at the upper quadrant point of the turntable. Continuing to rotate 90°, the third placement groove 22 is located at the left quadrant point of the turntable. The third placement groove 22 communicates with the second placement groove 20, and the barrel is moved into the third placement groove 22. Continuing to rotate 90°, the first placement groove 15 communicates with the second placement groove 20, and the next barrel is moved into the second placement groove 20 for vibration. Continuing to rotate 90°, the third placement groove 22 is docked with the barrel outlet 24 of the circular baffle 23, and the barrel is output in the forward direction to the rear conveyor 29. This process repeats.
[0054] It should be noted that in the above embodiments, the openings of the first placement groove 15, the second placement groove 20, and the third placement groove 22 are slightly larger than the barrel body, such that the barrel body can enter the groove and there will be no large shaking or impact during the flipping process. The groove depth is sufficient for one barrel body.
[0055] In the present invention, unless there are clear regulations and limitations, the features are interlaced with each other and do not necessarily exist independently. The above display and description include the basic principles, main features, and advantages of the present invention. Those skilled in the art should know that the present invention is not limited to the limitations of the above embodiments. The above embodiments and the description are only preferred examples of the present invention and are not used to limit the present invention to be the only option. Under the requirements of the spirit and scope of the invention, the present invention can be further changed and optimized. The improvements and optimizations made to the present invention all fall within the scope of the present invention claimed. The specific scope claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A defoaming and conveying system for the upper layer of protein glue, characterized in that, Including: A machine body, which includes a housing, a drum, a vibrating disk, a turntable and a driving member. The housing is sleeved on the outer surfaces of the drum, the vibrating disk and the turntable. The driving member is fixedly installed at the top of the outer surface of the housing. The drum is in transmission connection with the driving member. A solid disk is arranged inside the drum, and a first placement groove is arranged on the disk as the barrel inlet. The vibrating disk is composed of an outer fixed ring, a middle vibrating ring and an inner support ring. Springs arranged on the outer wall of the middle vibrating ring are connected to the inner wall of the outer fixed ring, and springs arranged on the inner wall are connected to the outer wall of the inner support ring. A second placement groove and a vibrating motor are arranged on the middle vibrating ring. The turntable is connected to the disk through a fixing rod passing through the inner support ring of the vibrating disk, and a third placement groove is arranged on the turntable. Among them, the starting point of the first placement groove is located at the right quadrant point of the disk, the starting point of the second placement groove is located at the left quadrant point of the middle vibrating ring, and the starting point of the third placement groove is located at the upper quadrant point of the turntable. The drum rotates, the third placement groove communicates with the second placement groove, and continues to rotate, and the first placement groove communicates with the second placement groove. A circular baffle is arranged behind the turntable, and the circular baffle is fixedly connected to the inner wall of the housing. An outlet is arranged at the right quadrant point of the circular baffle. A barrel filled with protein glue is placed upright in the first placement groove. The driving member drives the drum to rotate, driving the disk to rotate. When the first placement groove passes through the upper quadrant point of the disk, the barrel changes from upright to horizontal. Continuing to rotate, when the first placement groove passes through the left quadrant point of the disk, the barrel changes from horizontal to inverted. The first placement groove communicates with the second placement groove, and the barrel is moved into the second placement groove for vibration, shaking the bubbles on the upper layer of the barrel to the bottom layer of the barrel. At this time, the third placement groove is located at the lower quadrant point of the turntable. Continuing to rotate, the first placement groove returns to the right quadrant point of the disk again, and the next barrel is placed upright in the first placement groove. At this time, the third placement groove is located at the upper quadrant point of the turntable. Continuing to rotate 90°, the third placement groove is located at the left quadrant point of the turntable. The third placement groove communicates with the second placement groove, and the barrel is moved into the third placement groove. Continuing to rotate 90°, the first placement groove communicates with the second placement groove, and the next barrel is moved into the second placement groove for vibration. Continuing to rotate 90°, the third placement groove is docked with the outlet of the circular baffle, and the barrel exits forward, and so on.
2. The upper layer defoaming and conveying system of a protein glue according to claim 1, characterized in that The whole machine body inclines downward from the drum towards the turntable.
3. The upper layer defoaming and conveying system of protein glue according to claim 1, characterized in that, The driving member includes a reduction motor and a gear, and the output end of the reduction motor is fixedly connected to the gear.
4. A protein glue upper layer defoaming and conveying system according to claim 3, characterized in that A toothed ring is fixedly connected to one end outside the drum, and the gear is in meshing transmission with the toothed ring.
5. A protein glue upper layer defoaming and conveying system according to claim 1, wherein, A front conveyor is arranged at the front end of the machine body, and the front conveyor points to the right quadrant point of the disk and is docked with the barrel inlet. A rear conveyor is arranged at the rear end of the machine body, and the rear conveyor points to the right quadrant point of the circular baffle and is docked with the outlet.
Citation Information
Patent Citations
Glue vibration defoaming device
CN113975860A
Centrifugal treatment device
JP2016168563A