An antibacterial gel production filling device
By using a baffle and push rod mechanism in the antibacterial gel production and filling equipment, the problem of dripping adhesive from the outlet was solved, enabling rapid sealing and suction, reducing pollution and cleaning difficulty, and improving production efficiency.
Patent Information
- Application Number
- CN202410046607.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-12
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2044-01-12
AI Technical Summary
In the current antibacterial gel production process, adhesive drips from the outlet after filling, causing contamination and cleaning difficulties.
Design an antibacterial gel production and filling equipment, which adopts a shield and push rod mechanism. The shield moves up to drive the push rod to push the baffle to close the discharge port. The baffle moves quickly to suck up the discharge port to reduce the dripping of glue. Then the shield moves up to close the discharge port.
It effectively reduces the amount of adhesive dripping from the outlet for extended periods, lowers the risk of contamination, simplifies the cleaning process, and improves production efficiency.
Smart Images

Figure CN117566675B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of filling equipment, in particular to an antibacterial gel production filling equipment. BACKGROUND
[0002] Antibacterial gel is a kind of gel material with antibacterial effect, which is commonly used in medical devices, wound dressings, skin disinfection and other fields. The raw materials for producing antibacterial gel include gel matrix (such as gelatin, polyethylene glycol, etc.), antibacterial agents (such as silver ions, iodine ions, antibiotics, etc.) and other auxiliary materials. By mixing the gel matrix and antibacterial agents and other raw materials in a certain proportion, and mixing under certain temperature, humidity and stirring conditions.
[0003] According to the patent number CN218637210U, published (announced) on March 17, 2023, a raw material mixing device for antibacterial gel production is disclosed, which comprises a fixed box, the bottom surface of the fixed box is communicated with a discharge pipe with a valve, the upper surface of the fixed box is communicated with a feeding pipe, the inner top surface of the fixed box is rotatably installed with a rotating shaft, and the upper surface of the fixed box is installed with a driving assembly for rotating the rotating shaft; the outer side of the rotating shaft is slidably installed with a rotating frame for driving the rotating frame to rotate, the inner part of the rotating shaft is installed with an inner cylinder, the bottom end of the inner cylinder is installed with an electromagnet, the connecting wire of the electromagnet is led out through the inner cylinder and electrically connected with an electric control device, and the bottom end of the rotating frame is installed with an iron block corresponding to the electromagnet; the outer side of the rotating frame is installed with a cleaning frame, the cleaning frame is gap-fitted with the inner wall of the fixed box, and the outer side of the rotating frame is installed with a plurality of stirring frames, two adjacent stirring frames in the same horizontal direction are staggered.
[0004] In the prior art including the above-mentioned patent, during the mixing and stirring production of antibacterial gel and the subsequent filling after mixing is completed, a corresponding stirring cylinder and a rotating stirring rod inside are used, and a corresponding control valve is generally arranged at the discharge port of the stirring cylinder. When the stirring is completed, the valve is manually rotated to open the discharge port for batch filling in order to facilitate the subsequent transportation and subsequent process of the antibacterial gel. In the process of using common valves and manually controlling the filling, after a batch of filling is completed and the discharge port valve is closed, due to the nature of the antibacterial gel colloid, part of the gel liquid will still adhere to the discharge port and will continue to drip for a period of time. If the barrel for filling is directly transferred, the dripping gel liquid may contaminate the outer wall of the barrel, and may also drip onto the ground to cause contamination. Workers need to wait for the dripping to end or use tools to scrape the discharge port of the stirring cylinder or place a receiving box under the discharge port of the stirring cylinder, so the way workers clean the discharge port multiple times is relatively cumbersome. SUMMARY
[0005] The application aims to provide an antibacterial gel production and filling device which can produce mixing and reduce the problem of long-time dripping of glue liquid at the discharge port during subsequent filling to speed up the antibacterial gel filling production.
[0006] In order to achieve the above-mentioned purpose, the application provides the following technical scheme: an antibacterial gel production and filling device, comprising a main cylinder and a discharge table fixedly installed at the bottom of the main cylinder, wherein a discharge port is formed in the discharge table and communicates with the main cylinder, a suction unit is arranged in the discharge port, and the suction unit comprises:
[0007] a baffle cover which is slidingly arranged in the discharge port and opens the discharge port and the main cylinder in a default state;
[0008] a shutter which slides in a vertical direction to shield the ground-facing port of the discharge port;
[0009] a top rod which is fixedly installed on the shutter to push the baffle cover to close the discharge port and the main cylinder, and the baffle cover moves upward to suck the ground-facing port of the discharge port.
[0010] Preferably, a plurality of sliding tables are arranged in a circular array at the bottom of the main cylinder, and a plurality of pressing-down pieces are slidingly arranged on the sliding tables, respectively, a guide rod fixedly installed on the pressing-down piece is slidingly arranged on the sliding table, and the guide rod is fixedly connected to the shutter.
[0011] Preferably, a main shaft rod is rotatably arranged at the top of the discharge table, a push rod is fixedly installed on the outer wall of the main shaft rod, and a function rod is hingedly arranged on the push rod to switch between the following two stations with the forward and reverse rotation of the main shaft rod:
[0012] the first station, the pressing-down piece and the function rod are in blocking and disassembling cooperation to make the function rod flip over in forward rotation;
[0013] the second station, the function rod is attached to the push rod to keep vertical in reverse rotation, and the bottom end of the function rod moves along the inclined surface arranged at the top of the pressing-down piece to make the pressing-down piece move downward.
[0014] Preferably, a scraping rod piece is symmetrically fixedly installed on the outer wall of the main shaft rod, and the scraping rod piece is movably arranged on the inner wall of the main cylinder.
[0015] Preferably, a compression spring is sleeved on the outer wall of the guide rod and is stressed to accumulate force by the downward movement of the pressing-down piece, a fine hair air hole is formed in the inner wall of one side of the sliding table, and air is introduced into the sliding table along the fine hair air hole when the pressing-down piece moves upward, and the top rod and the baffle cover keep a predetermined distance when the function rod moves between the plurality of pressing-down pieces.
[0016] As preferred, the sliding table is provided with a through hole in the outer wall of the bottom side of the main cylinder, the lower pressing piece is movably arranged at one side of the through hole, and the lower pressing piece is moved upward to open the through hole to make the sliding table quickly intake air, and the top rod is quickly moved upward to push the blocking cover.
[0017] As preferred, the outer wall of the top rod is fixedly installed with a rubber ring pad, and the rubber ring pad is movably arranged between the shutter and the ground end of the discharge port.
[0018] As preferred, the shutter is fixedly installed with a plurality of elastic sheets at one side of the rubber ring pad, the elastic sheets are used to push the rubber ring pad to arch, and the top ring fixedly installed on the inner wall of one side of the discharge port is located in the moving path of the rubber ring pad.
[0019] As preferred, the top of the shutter is fixedly installed with a ring table, and the outer wall of the ring table is provided with a plurality of exhaust holes towards the top side of the shutter.
[0020] As preferred, the top rod is slidably arranged on the blocking cover, the top rod is provided with an air channel, the air channel is communicated with the blocking cover at one side of the pushing spring, and the air channel is communicated with the plurality of exhaust holes.
[0021] In the above technical solution, the present application provides an antibacterial gel production and filling equipment, which has the following advantages: the shutter is moved upward to drive the top rod to push the blocking cover to close the discharge port and the main cylinder, at this time, the antibacterial gel can be produced by stirring and mixing in the main cylinder, then, when the stirring is completed, the top rod is separated from the blocking cover, at this time, the blocking cover is in a default state to open the discharge port and the main cylinder, at this time, the mixed antibacterial gel liquid in the main cylinder flows out along the discharge port for filling, when the filling is completed, the shutter is moved upward again to drive the top rod to push the blocking cover to close the discharge port and the main cylinder, then, under the rapid movement of the blocking cover, the blocking cover sucks the ground end of the discharge port to make the part of the antibacterial gel liquid near the ground end of the discharge port be sucked into the discharge port, and the shutter is moved upward to block and close the ground end of the discharge port, thereby closing the discharge port, compared with manually opening and closing the valve for filling, the shutter is moved upward to not only realize that the blocking cover sucks the ground end of the discharge port to reduce the problem of long-time dripping of the gel liquid in the port, but also close the discharge port. BRIEF DESCRIPTION OF DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.
[0023] Figure 1 The main cylinder overall structure schematic view provided by the embodiments of the present application;
[0024] Figure 2 The main cylinder partial cross-section structure schematic view provided for the embodiment of the present application is shown in Figure 1;
[0025] Figure 3 The main cylinder overall cross-section structure schematic view provided for the embodiment of the present application is shown in Figure 2;
[0026] Figure 4 The main cylinder partial cross-section structure schematic view provided for the embodiment of the present application is shown in Figure 3;
[0027] Figure 5 The A place enlarged structure schematic view provided for the embodiment of the present application is shown in Figure 4;
[0028] Figure 6 The B place enlarged structure schematic view provided for the embodiment of the present application is shown in Figure 5;
[0029] Figure 7 The C place enlarged structure schematic view provided for the embodiment of the present application is shown in Figure 6;
[0030] Figure 8 The D place enlarged structure schematic view provided for the embodiment of the present application is shown in Figure 7;
[0031] Figure 9 The E place enlarged structure schematic view provided for the embodiment of the present application is shown in Figure 8;
[0032] Figure 10 The F place enlarged structure schematic view provided for the embodiment of the present application is shown in Figure 9;
[0033] Figure 11 The G place enlarged structure schematic view provided for the embodiment of the present application is shown in Figure 10;
[0034] Figure 12 The H place enlarged structure schematic view provided for the embodiment of the present application is shown in Figure 11.
[0035] Explanation of reference signs:
[0036] 1, main cylinder; 2, main shaft; 3, sliding table; 4, pressing piece; 5, cover; 6, second single air valve; 7, ejector rod; 11, concave surface; 12, discharge table; 13, flow guide port; 14, discharge port; 15, cutting part; 16, fixed rod; 17, top ring; 18, blocking ring part; 19, liquid flow slot; 21, main motor; 22, push rod; 23, function rod; 24, torsional spring; 25, scraping rod; 31, perforation; 32, fine hair air hole; 33, first single air valve; 34, limiting rod; 41, protruding part; 42, guide rod; 43, compression spring; 44, connecting rod; 45, notch part; 51, guide column; 52, push spring; 53, flow air groove; 54, alignment port; 55, sliding groove; 71, airway; 72, shutter; 73, ring table; 74, air hole; 75, elastic sheet; 76, rubber ring pad; 77, curved surface part. DETAILED DESCRIPTION
[0037] In order to make the technical personnel in the art better understand the technical solutions of the present application, the present application will be further described in detail below in conjunction with the drawings.
[0038] As shown in Figures 1-12 An antibacterial gel production and filling equipment, comprising a main cylinder 1 and a discharge table 12 fixedly installed at the bottom of the main cylinder 1, wherein the discharge table 12 is provided with a discharge port 14 facing the ground and communicating with the main cylinder 1, and a suction unit is arranged in the discharge port 14, the suction unit comprising:
[0039] A cover 5 is slidingly arranged in the discharge port 14, and the cover 5 is in a default state to open the discharge port 14 and the main cylinder 1;
[0040] A shutter 72 is slidingly arranged in the vertical direction to block the ground-facing port of the discharge port 14;
[0041] An ejector rod 7 is fixedly installed on the shutter 72 to push the cover 5 to close the discharge port 14 and the main cylinder 1, and the cover 5 moves upward to suck the ground-facing port of the discharge port 14.
[0042] Specifically, the discharge table 12 is symmetrically provided with flow guide ports 13 on the outer wall of the main cylinder 1, which are in communication with the discharge port 14; the outer wall of the cover 5 is symmetrically provided with alignment ports 54 matching the flow guide ports 13; the top of the cover 5 and the inner wall of one side of the discharge port 14 are provided with a push spring 52, and the two ends of the push spring 52 are respectively fixedly installed on the top of the cover 5 and the inner wall of one side of the discharge port 14. The inner wall of the discharge port 14 is provided with a retaining ring 18, which limits the cover 5; the push spring 52 pushes the cover 5 so that the cover 5 is attached to the retaining ring 18 in the default state; at this time, the two alignment ports 54 are in communication with the two flow guide ports 13 respectively; the retaining ring 18 is provided with a flow slot 19; the antibacterial gel flowing into the discharge port 14 along the flow guide ports 13 and the alignment ports 54 flows out along the discharge port 14 to the ground port through the flow slot 19 for filling.
[0043] Further, the top rod 7 is fixedly installed on the top of the shutter 72; when the shutter 72 is driven to move upward in the vertical direction, the top rod 7 pushes the cover 5 against the outer wall on one side of the push spring 52, so that the cover 5 moves upward, and the push spring 52 stores energy; then when the shutter 72 moves downward, the top rod 7 gradually separates from the cover 5, and the push spring 52 releases the stored energy to push the cover 5 to attach to the retaining ring 18, so that the flow guide ports 13 and the alignment ports 54 are again in alignment and communication.
[0044] Further, the shutter 72 can be moved in the vertical direction by a motor-driven push rod, or by a linkage and a gear cooperating with a motor, or by any other known method.
[0045] In the above technical solution, the upward movement of the shutter 72 drives the top rod 7 to push the cover 5 to close the discharge port 14 and the main cylinder 1, so that the antibacterial gel in the main cylinder 1 can be stirred and mixed; then when the stirring is completed, the top rod 7 separates from the cover 5, so that the cover 5 opens the discharge port 14 and the main cylinder 1 in the default state; at this time, the mixed antibacterial gel in the main cylinder 1 flows out along the discharge port 14 for filling; when the filling is completed, the shutter 72 is again driven to move upward to drive the top rod 7 to push the cover 5 to close the discharge port 14 and the main cylinder 1; then under the rapid movement of the cover 5, the cover 5 sucks the antibacterial gel near the ground port of the discharge port 14 into the discharge port 14, and the upward movement of the shutter 72 blocks the ground port of the discharge port 14, so that the discharge port 14 is closed. Compared with manually opening and closing the valve for filling, the upward movement of the shutter 72 not only enables the cover 5 to suck the antibacterial gel near the ground port of the discharge port 14, thereby reducing the problem of long-time dripping of the gel, but also enables the shutter 72 to close the discharge port 14.
[0046] As a further provided embodiment of the present application, the bottom circular array in the main cylinder 1 is provided with a plurality of sliding tables 3, and a plurality of lower pressing pieces 4 are respectively slidably arranged on the plurality of sliding tables 3, and the guide rods 42 fixedly installed on the lower pressing pieces 4 are slidably arranged on the sliding tables 3, and the guide rods 42 are fixedly connected to the shutter 72.
[0047] Specifically, the lower pressing pieces 4 slidably arranged on the plurality of sliding tables 3 move up and down in the vertical direction, and the bottom ends of the guide rods 42 are respectively fixedly installed with connecting rods 44, and the first ends of the connecting rods 44 are fixedly installed on the side edges of the shutter 72, and then when the plurality of lower pressing pieces 4 synchronously move downward, at this time the guide rods 42 fixedly installed on the plurality of lower pressing pieces 4 respectively drive the shutter 72 to move downward through the connecting rods 44, and when the shutter 72 moves downward, at this time the top rods 7 on the shutter 72 gradually disengage from the blocking cover 5, and the blocking cover 5 is pushed by the push spring 52 to be attached to the blocking ring part 18 in the default state, and at this time the two alignment openings 54 are respectively in communication with the two flow-through guide openings 13, and the antibacterial gel liquid flowing into the discharge port 14 along the flow-through guide openings 13 and the alignment openings 54 flows out along the discharge port 14 towards the ground port after passing through the liquid flow slot 19 to be filled.
[0048] Further, when a batch of antibacterial gel liquid is filled, the plurality of lower pressing pieces 4 are driven again to move upward in the vertical direction, at this time the shutter 72 is driven to move upward through the guide rods 42 and the connecting rods 44 on the guide rods 42, and then the top rods 7 on the shutter 72 push the blocking cover 5 to move upward, at this time the flow-through guide openings 13 and the alignment openings 54 are misaligned to be disconnected, and at the same time as the blocking cover 5 continues to move upward, the blocking cover 5 sucks the part of the antibacterial gel liquid near the ground port of the discharge port 14 into the discharge port 14, and the shutter 72 moves upward to block the ground port of the discharge port 14, and then the discharge port 14 is closed.
[0049] Further, the plurality of lower pressing pieces 4 can be synchronously moved up and down in the vertical direction by an electric push rod cooperating with a connecting rod, or by a motor cooperating with a gear and a rack, or by other ways known to those skilled in the art to drive the lower pressing pieces 4 to move in the vertical direction.
[0050] As another embodiment provided by the present application, the top of the discharge table 12 is rotatably provided with a main shaft rod 2, and the outer wall of the main shaft rod 2 is fixedly installed with a push rod 22, and a function rod 23 hingedly arranged on the push rod 22 is switched between the following two stations with the main shaft rod 2 rotating forward and backward:
[0051] The first station, the lower pressing piece 4 is matched with the function rod 23 to be disengaged to make the function rod 23 flip over when rotating forward;
[0052] The second station, the reverse rotation of the function rod 23 is attached to the push rod 22 to keep vertical, the bottom end of the function rod 23 moves along the slope arranged on the top of the lower pressing piece 4 to make the lower pressing piece 4 move down.
[0053] Specifically, the top of the main cylinder 1 is fixedly installed with a main motor 21, and the top end of the main shaft rod 2 is fixedly installed on the output end of the main motor 21 along the shaft, as shown in the figure. Figure 9 As shown in the figure, the hinge shaft of the function rod 23 is sleeved with a torsion spring 24, and the two ends of the torsion spring 24 are fixedly installed on the function rod 23 and the push rod 22 respectively, and the function rod 23 is turned over and attached to the push rod 22 by using the torsion spring 24. Figure 8 As shown in the figure, the slope arranged on the top of the lower pressing piece 4 includes a high position and a low position. The number of sliding tables 3 is two, and the lower pressing pieces 4 are respectively arranged on the sliding tables 3.
[0054] The main motor 21 can adopt a stepping motor to realize forward and reverse rotation.
[0055] Further, in the first station, the two lower pressing pieces 4 are driven to move up to make the guide rods 42 pass through the connecting rods 44 to drive the shutters 72 to move up, so that the top rods 7 on the shutters 72 push the cover 5 to move up, at this time, the flow guide port 13 and the opposite port 54 are misaligned to disconnect the communication, and the shutters 72 move up to block the ground end of the material discharge port 14, thereby closing the material discharge port 14. At this time, the main motor 21 drives the main shaft rod 2 to rotate forward, and the push rods 22 fixedly installed on the main shaft rod 2 rotate to make the function rods 23 on the push rods 22 close to the high positions on the lower pressing pieces 4, at this time, under the blocking of the lower pressing pieces 4, the function rods 23 are blocked along the hinge shaft and turned up, and the torsion spring 24 is energized, and then when the function rods 23 are separated from the lower pressing pieces 4, the torsion spring 24 releases the stored energy, and the function rods 23 are turned over and attached to the push rods 22 again by the torsion spring 24. The rotation of the function rods 23 and the push rods 22 realizes the stirring production of the antibacterial gel mixture in the main cylinder 1.
[0056] When the mixed antibacterial gel liquid needs to be filled, the main shaft rod 2 is reversely rotated at the second station. At this time, the torsional spring member 24 drives the functional rod 23 to adhere to the push rod 22 to keep vertical. With the reverse rotation of the main shaft rod 2, the bottom end of the functional rod 23 moves from the low position of the top inclined surface of the pressing member 4 to the high position of the top inclined surface of the pressing member 4, and then, under the support of the push rod 22 to the functional rod 23, the functional rod 23 pushes the pressing member 4 and moves the pressing member 4 downward. When the pressing member 4 moves downward, the guide rods 42 fixedly installed on the plurality of pressing members 4 respectively drive the shutter 72 to move downward through the connecting rods 44. When the shutter 72 moves downward, the top rods 7 on the shutter 72 gradually disengage from the cover 5, the push spring 52 pushes the cover 5 to make the cover 5 adhere to the blocking ring part 18 in the default state. At this time, the two alignment openings 54 respectively communicate with the two flow-through guide openings 13, and the antibacterial gel liquid flowing into the discharge port 14 along the flow-through guide openings 13 and the alignment openings 54 flows out along the discharge port 14 towards the ground port after passing through the liquid flow slot 19 to be filled.
[0057] Further, in order to satisfy that the main shaft rod 2 moves the pressing member 4 upward to protrude the sliding table 3 at the first station, and the high position of the inclined surface of the pressing member 4 can block the functional rod 23, a spring can be arranged between the sliding table 3 and the pressing member 4. Then, when the main shaft rod 2 is at the second station, the bottom end of the functional rod 23 moves from the low position of the top inclined surface of the pressing member 4 to the high position of the top inclined surface of the pressing member 4, so as to push the pressing member 4 and move the pressing member 4 downward, and the spring arranged in the sliding table 3 is extruded to store energy.
[0058] As another embodiment of the present application, the outer wall of the main shaft rod 2 is symmetrically fixedly installed with a scraping rod member 25, and the scraping rod member 25 is movably arranged on the inner wall of the main cylinder 1.
[0059] Specifically, during the production of the antibacterial gel, part of the raw materials will adhere to the inner wall of the main cylinder 1. If the mixture is not scraped in time, it will cause the antibacterial gel mixture to have un-mixed raw material particles during filling.
[0060] Therefore, as shown in Figure 2 and Figure 4 the scraping rod member 25 fixedly installed on the outer wall of the main shaft rod 2 scrapes the inner wall of the main cylinder 1 to make the raw materials adhering to the inner wall of the main cylinder 1 participate in the mixing in time when the main shaft rod 2 is at the first station. Figure 6 As shown in
[0061] As another embodiment provided by the present application, the outer wall of the guide rod 42 is sleeved with the compression spring 43 which is compressed by the downward movement of the pressing member 4 to store force, the inner wall of one side of the slide table 3 is provided with the fine hair air hole 32, and the pressing member 4 moves upward to make the air enter along the fine hair air hole 32 in the slide table 3, and the top rod 7 and the cover 5 keep a predetermined distance when the function rod 23 moves between the pressing members 4.
[0062] Specifically, in order to keep the communication guide port 13 and the alignment port 54 in communication for a long time when the main shaft rod 2 is in the second working position, the fine hair air hole 32 is provided in the inner wall of one side of the slide table 3. Figure 6 And Figure 11 As shown in the drawings, the compression spring 43 sleeved on the outer wall of the guide rod 42 is located in the slide table 3, and the two ends of the compression spring 43 are fixedly installed on the slide table 3 and the pressing member 4 respectively, the inner wall of one side of the slide table 3 is fixedly installed with the limiting rod 34, the inner wall of one side of the pressing member 4 is provided with the protruding part 41, and the limiting rod 34 is movably arranged on the protruding part 41, the pressing member 4 pushes the pressing member 4 upward and protrudes from the top of the slide table 3 under the compression of the compression spring 43 in the normal state, at this time, the low position of the inclined surface of the top of the pressing member 4 is located on the movement path of the bottom end of the function rod 23. At the same time, due to the limitation of the limiting rod 34, the protruding part 41 is attached to the limiting rod 34, so that the pressing member 4 keeps the fixed height of protruding from the top of the slide table 3. The inner wall of one side of the two slide tables 3 is fixedly installed with the first one-way air valve 33 respectively.
[0063] Further, as shown in the drawings, Figure 5 And Figure 10 The guide column 51 is fixedly installed on the cover 5, and the top end of the top rod 7 is slidably arranged in the sliding groove 55 opened at the bottom end of the guide column 51, and the guide column 51 is movably arranged between the liquid flow grooves 19. When the bottom end of the function rod 23 is away from the top of the pressing member 4, at this time, the pressing member 4 is pushed upward and protrudes from the top of the slide table 3 by the compression of the compression spring 43.
[0064] When the main shaft 2 is in the second station for filling the antibacterial gel, the two function rods 23 on the two push rods 22 rotate with the main shaft 2, the bottom ends of the two function rods 23 approach the low position of the slope on the top of the two lower pressing pieces 4, and then when the bottom ends of the function rods 23 move along the low position of the slope on the top of the lower pressing pieces 4 to the high position of the slope on the top of the lower pressing pieces 4, the function rods 23 are pushed by the push rods 22 to push the lower pressing pieces 4 and move the lower pressing pieces 4 downward, when the lower pressing pieces 4 move downward, the cavity in the slide 3 is pressed by the lower pressing pieces 4, the first single air valve 33 is opened to make the gas in the slide 3 flow out of the slide 3 along the first single air valve 33 and the fine hair air hole 32, and the compression spring 43 is pressed to store energy when the lower pressing pieces 4 move downward, the guide rod 42 fixedly installed on the lower pressing pieces 4 drives the shutter 72 to move downward through the connecting rod 44, when the shutter 72 moves downward, the top rod 7 on the shutter 72 gradually separates from the blocking cover 5, the blocking cover 5 is pushed by the top pushing spring 52 to adhere to the blocking ring 18 in the default state, and at this time, the two alignment openings 54 are communicated with the two flow-through guide openings 13 respectively, the antibacterial gel flowing along the flow-through guide openings 13 and the alignment openings 54 into the discharge port 14 flows out along the discharge port 14 to the ground port after passing through the liquid flow slot 19 to be filled.
[0065] Further, when the bottom ends of the two function rods 23 are separated from the high position of the slope on the top of the lower pressing pieces 4, the compression spring 43 releases the stored energy to push the lower pressing pieces 4 to reset, and at this time, the first single air valve 33 is closed, the gas outside the slide 3 can only enter the slide 3 along the fine hair air hole 32, and the lower pressing pieces 4 slowly move upward due to the limited amount of gas entering the slide 3 through the fine hair air hole 32. At this time, the top end of the top rod 7 slides in the sliding groove 55 and gradually approaches the inner wall of one side of the sliding groove 55, and then the bottom end of the function rod 23 moves to the slope on the top of the lower pressing pieces 4 again to push the lower pressing pieces 4 to move downward, at this time, the top end of the top rod 7 slides in the sliding groove 55 again and gradually moves away from the inner wall of one side of the sliding groove 55. Thus, the top rod 7 slides in the sliding groove 55 and keeps a certain distance from the inner wall of one side of the sliding groove 55, and the predetermined distance can be 5mm-15mm. Then, the top rod 7 keeps away from the inner wall of one side of the sliding groove 55 by rotating the main shaft 2 in the second station, so that the top rod 7 does not push the inner wall of one side of the sliding groove 55 to move the blocking cover 5 upward, which causes the flow-through guide openings 13 and the alignment openings 54 to be unable to be communicated for a long time.
[0066] As the optimal embodiment of the present application, the slide 3 is provided with a through hole 31 on the outer wall of the bottom side of the main cylinder 1, the lower pressing piece 4 is movably arranged on one side of the through hole 31, and the lower pressing piece 4 moves upward to open the through hole 31 to make the slide 3 quickly intake air, and the top rod 7 quickly moves upward to push the blocking cover 5.
[0067] Specifically, in order to enable the blocking cover 5 to quickly move to suck the groundward port of the discharge port 14 after the filling of a batch of antibacterial gel is completed. As shown in Figure 6 and Figure 11 When the antibacterial gel filling is completed, the main motor 21 stops the rotation of the main shaft rod 2, and the functional rods 23 on the main shaft rod 2 are located between the two downward pressing pieces 4, and the two functional rods 23 are separated from the downward pressing pieces 4. The compression springs 43 release the stored force to push the downward pressing pieces 4 to reset, at this time the first single-way air valve 33 is closed, and the air outside the sliding table 3 can only enter the sliding table 3 along the fine hair air hole 32. Due to the limited amount of air entering through the fine hair air hole 32, the downward pressing pieces 4 slowly move upward. At this time, the top end of the top rod 7 slides in the sliding groove 55 and gradually approaches the inner wall of one side of the sliding groove 55, and then the downward pressing piece 4 slowly moves upward at this time. The notch part 45 opened on the downward pressing piece 4 is in communication with the perforation 31, so that the air outside the sliding table 3 quickly enters the sliding table 3 along the perforation 31 and the notch part 45. At this time, the downward pressing piece 4 quickly moves upward due to the rapid entry of the air into the sliding table 3, and the downward pressing piece 4 quickly moves upward, and the top rod 7 on the shutter 72 quickly abuts on the inner wall of one side of the sliding groove 55 and pushes the blocking cover 5 to quickly move upward. When the blocking cover 5 quickly moves upward, the blocking cover 5 sucks the groundward port of the discharge port 14.
[0068] When the antibacterial gel filling is completed, the main motor 21 stops the rotation of the main shaft rod 2, and the functional rods 23 on the main shaft rod 2 are located between the two downward pressing pieces 4, and the two functional rods 23 are separated from the downward pressing pieces 4. The compression springs 43 release the stored force to push the downward pressing pieces 4 to reset, at this time the first single-way air valve 33 is closed, and the air outside the sliding table 3 can only enter the sliding table 3 along the fine hair air hole 32. Due to the limited amount of air entering through the fine hair air hole 32, the downward pressing pieces 4 slowly move upward. At this time, the top end of the top rod 7 slides in the sliding groove 55 and gradually approaches the inner wall of one side of the sliding groove 55, and then the downward pressing piece 4 slowly moves upward at this time. The notch part 45 opened on the downward pressing piece 4 is in communication with the perforation 31, so that the air outside the sliding table 3 quickly enters the sliding table 3 along the perforation 31 and the notch part 45. At this time, the downward pressing piece 4 quickly moves upward due to the rapid entry of the air into the sliding table 3, and the downward pressing piece 4 quickly moves upward, and the top rod 7 on the shutter 72 quickly abuts on the inner wall of one side of the sliding groove 55 and pushes the blocking cover 5 to quickly move upward. When the blocking cover 5 quickly moves upward, the blocking cover 5 sucks the groundward port of the discharge port 14.
[0069] As another embodiment of the present application, the outer wall of the top rod 7 is fixedly provided with a rubber ring pad 76, and the rubber ring pad 76 is movably arranged between the shutter 72 and the groundward port of the discharge port 14.
[0070] Specifically, when the blocking cover 5 quickly moves upward to suck the groundward port of the discharge port 14, the antibacterial gel liquid is sucked into the discharge port 14, and the shutter 72 moves upward to block and close the groundward port of the discharge port 14, thereby closing the discharge port 14. By using the rubber ring pad 76 fixedly installed on the outer wall of the top rod 7, when the shutter 72 approaches the groundward port of the discharge port 14, the rubber ring pad 76 is squeezed between the groundward port of the discharge port 14 and the shutter 72. By using the rubber ring pad 76, the sealing effect of the groundward port of the discharge port 14 is enhanced, and the problem of liquid leakage of the discharge port 14 is reduced.
[0071] As another embodiment provided by the present application, the shutter 72 is fixedly installed on one side of the rubber ring pad 76 with a plurality of elastic pieces 75, and the elastic pieces 75 are used to push the rubber ring pad 76 to arch. The top ring 17 fixedly installed on the inner wall of one side of the discharge port 14 is located on the moving path of the rubber ring pad 76.
[0072] Specifically, as shown in Figure 7 and Figure 12 , the top of the shutter 72 is fixedly installed with a plurality of elastic pieces 75, and the first end of the elastic piece 75 is pushed to the bottom of the rubber ring pad 76 to make the rubber ring pad 76 arch, as shown in Figure 7 , the bottom of the discharge table 12 is provided with a cutout portion 15 around the ground-facing port of the discharge port 14, a plurality of fixed rods 16 are arranged between the top ring 17 and the inner wall of the discharge port 14, and the two ends of the fixed rod 16 are fixedly installed on the top ring 17 and the discharge port 14 respectively to fix the top ring 17 to the discharge port 14.
[0073] Further, when the filling of a batch of antibacterial gel is completed, the main motor 21 stops the rotation of the main shaft rod 2, and the function rod 23 on the main shaft rod 2 is located between the two pressing pieces 4, and the two function rods 23 are respectively separated from the pressing pieces 4. With the release of the force stored in the compression spring 43 to push the pressing piece 4 to reset, the first one-way air valve 33 is closed at this time, and the air outside the sliding table 3 can only enter the sliding table 3 along the fine hair air hole 32. Due to the limited amount of air entering through the fine hair air hole 32, the pressing piece 4 slowly moves upward. At this time, the top end of the top rod 7 slides in the sliding groove 55 and gradually approaches the inner wall of one side of the sliding groove 55, and then as the pressing piece 4 slowly moves upward, the notch portion 45 opened on the pressing piece 4 at this time is communicated with the perforation 31, so that the air outside the sliding table 3 quickly enters the sliding table 3 along the perforation 31 and the notch portion 45. At this time, due to the rapid entry of air into the sliding table 3, the pressing piece 4 quickly moves upward to reset, and the pressing piece 4 is driven to move upward due to the rapid upward movement of the pressing piece 4, the top rod 7 on the shutter 72 quickly abuts on the inner wall of one side of the sliding groove 55 and pushes the blocking cover 5 to quickly move upward. When the blocking cover 5 quickly moves upward, the ground-facing port of the discharge port 14 is sucked by the blocking cover 5 at this time, the flow guide port 13 and the alignment port 54 are misaligned and disconnected, and due to the rapid upward movement of the top rod 7 and the fact that the top ring 17 is located on the moving path of the rubber ring pad 76, the rubber ring pad 76 on the outer wall of the top rod 7 quickly approaches the top ring 17, thereby extruding the arching portion of the rubber ring pad 76 through the top ring 17 to extrude the air between the rubber ring pad 76 and the shutter 72. By quickly extruding the flowing air, the antibacterial gel liquid flowing to the top of the shutter 72 is blown, and the gel liquid quickly flows and falls from the shutter 72. When the shutter 72 extrudes the rubber ring pad 76 to abut on the cutout portion 15 of the ground-facing port of the discharge port 14, the amount of antibacterial gel liquid remaining on the top of the shutter 72 is reduced, and the amount of work for cleaning the discharge port 14 by workers is also reduced.
[0074] As further provided in the present application, the top of the cover plate 72 is fixedly provided with a ring 73, and a plurality of air exhaust channels 74 are arranged on the outer wall of the ring 73 and face the top side of the cover plate 72.
[0075] Specifically, in order to further reduce the amount of the antibacterial gel remaining on the top of the cover plate 72 when the ground-facing end of the discharge port 14 is closed, the plurality of air exhaust channels 74 arranged on the outer wall of the ring 73 and facing the top side of the cover plate 72 are used to blow air, so as to further blow the antibacterial gel remaining on the top of the cover plate 72, accelerate the antibacterial gel on the top of the cover plate 72 to fall off the cover plate 72, and further reduce the amount of the antibacterial gel remaining on the cover plate 72, thereby further reducing the task amount of the worker cleaning the discharge port 14.
[0076] Further, the air blowing mode of the plurality of air exhaust channels 74 can be that the air blowing machine is connected to the plurality of air exhaust channels 74, or the piston, the one-way valve, and the cooperating piston cavity are connected to the plurality of air exhaust channels 74 to compress and blow air when the piston moves in the piston cavity, or any other mode known to those skilled in the art.
[0077] As the most preferred embodiment of the present application, the ejector rod 7 is slidably arranged on the cover 5, the air passage 71 is arranged on the ejector rod 7 and connected to the side of the cover 5 where the push spring 52 is located, and the air passage 71 is connected to the plurality of air exhaust channels 74.
[0078] Specifically, as shown in Figure 5 and Figure 7 , the flow passage 53 is arranged in the guide column 51 on the cover 5 and connected to the chute 55 and the side of the cover 5 where the push spring 52 is located, the air passage 71 is arranged on the ejector rod 7 and connected to the chute 55 and the plurality of air exhaust channels 74, the second one-way valve 6 is arranged in the air passage 71, the curved surface 77 is arranged on the outer side of the ring 73, and the air outlet ends of the air exhaust channels 74 are respectively located on the curved surface 77, as shown in Figure 12 .
[0079] Further, when the mixing and stirring of the antibacterial gel material is needed, the material is placed in the main cylinder 1, and then the main shaft 2 is driven by the main motor 21 to rotate in the first position. When the main shaft 2 rotates in the first position, the compression springs 43 in the two sliding platforms 3 respectively push the lower pressing pieces 4 to protrude from the top of the sliding platform 3 and maintain a fixed height, and the top rod 7 pushes the blocking cover 5 to move upwards so that the compression spring 52 is compressed and stored. Therefore, the total elastic force of the compression springs 43 in the two sliding platforms 3 is greater than the total elastic force of the plurality of compression springs 52 on the top of the blocking cover 5. At this time, the flow guide port 13 and the alignment port 54 are misaligned to disconnect the communication, and the second single air valve 6 is opened. The external air enters the air passage 71 through the second single air valve 6 and the plurality of exhaust channels 74, and flows through the sliding groove 55 and the flow-through air groove 53 to the discharge port 14 on the side of the blocking cover 5 where the compression spring 52 is located. And the shutter 72 moves upwards to block and close the ground-facing port of the discharge port 14, thereby closing the discharge port 14.
[0080] Further, the main motor 21 drives the main shaft 2 to rotate in the positive direction, and the symmetrical and fixedly installed toggle lever 22 on the main shaft 2 rotates to make the function lever 23 on the toggle lever 22 close to the high position on the lower pressing piece 4. At this time, the function lever 23 is blocked and pushed upwards by the lower pressing piece 4 under the blocking of the lower pressing piece 4, and the torsional spring piece 24 is stored. When the function lever 23 is separated from the lower pressing piece 4, the torsional spring piece 24 releases the stored energy, and the torsional spring piece 24 drives the function lever 23 to flip and adhere to the toggle lever 22 again. Through the flipping of the function lever 23 and the rotation of the toggle lever 22, the antibacterial gel mixture in the main cylinder 1 is stirred and produced, and the scraping lever 25 rotates with the main shaft 2 to scrape the inner wall of the main cylinder 1, so that the raw materials attached to the inner wall of the main cylinder 1 participate in the mixing in time.
[0081] When the mixed antibacterial gel needs to be filled, the main shaft rod 2 is driven to rotate reversely at the second station by the main motor 21. At this time, the functional rod 23 is kept vertical due to the torsional spring member 24 driving the functional rod 23 to adhere to the push rod 22. With the reverse rotation of the main shaft rod 2, the bottom end of the functional rod 23 moves from the low position of the top inclined surface of the pressing piece 4 to the high position of the top inclined surface of the pressing piece 4, and then, under the support of the push rod 22 to the functional rod 23, the functional rod 23 pushes the pressing piece 4 and moves the pressing piece 4 downward. At this time, the pressing piece 4 extrudes the cavity in the sliding table 3, the first single air valve 33 is opened to make the gas in the sliding table 3 flow out of the sliding table 3 along the first single air valve 33 and the fine hair air hole 32, and the compression spring 43 is extruded and stored by the downward movement of the pressing piece 4. The guide rod 42 fixedly installed on the pressing piece 4 drives the shutter 72 to move downward through the connecting rod 44. When the shutter 72 moves downward, the top rod 7 on the shutter 72 gradually separates from the blocking cover 5, the blocking cover 5 is pushed by the push spring 52 to adhere to the blocking ring part 18 in the default state, and at this time, the two alignment openings 54 are in communication with the two flow-through guide openings 13, respectively. The antibacterial gel flowing into the discharge port 14 along the flow-through guide opening 13 and the alignment opening 54 flows out along the discharge port 14 towards the ground port after passing through the liquid flow slot 19 to be filled.
[0082] Furthermore, when the bottom ends of the two functional rods 23 are separated from the high position of the top inclined surface of the pressing piece 4, the compression spring 43 releases the stored force to push the pressing piece 4 to reset, and at this time, the first single air valve 33 is closed, and the gas outside the sliding table 3 can only enter the sliding table 3 along the fine hair air hole 32. Due to the limited amount of gas entering through the fine hair air hole 32, the pressing piece 4 slowly moves upward. At this time, the top end of the top rod 7 slides in the sliding groove 55 and gradually approaches the inner wall of one side of the sliding groove 55, and then, with the continuous rotation of the main shaft rod 2 at the second station, the bottom end of the functional rod 23 moves again to the inclined surface on the top of the pressing piece 4 to push the pressing piece 4 to move downward, and at this time, the top end of the top rod 7 slides again in the sliding groove 55 and gradually moves away from the inner wall of one side of the sliding groove 55. Thus, by sliding the top rod 7 in the sliding groove 55 and keeping a certain distance from the inner wall of one side of the sliding groove 55, and by rotating the main shaft rod 2 at the second station, the top rod 7 keeps away from the inner wall of one side of the sliding groove 55, avoiding the problem that the top rod 7 pushes the inner wall of one side of the sliding groove 55 to move the blocking cover 5 upward, causing the flow-through guide opening 13 and the alignment opening 54 to fail to keep long-time communication.
[0083] When a batch of antibacterial gel is filled, the main motor 21 stops the rotation of the main shaft rod 2, and the function rod 23 on the main shaft rod 2 is located between the two lower pressing pieces 4, and the two function rods 23 are respectively separated from the lower pressing piece 4. With the release of the force stored by the compression spring 43 to push the lower pressing piece 4 to reset, the first single-way air valve 33 is closed at this time, and the gas outside the sliding table 3 can only enter the sliding table 3 along the fine hair air hole 32. Due to the limited amount of gas entering through the fine hair air hole 32, the lower pressing piece 4 slowly moves upward. At this time, the top end of the top rod 7 slides in the sliding groove 55 and gradually approaches the inner wall of one side of the sliding groove 55, and then the notch part 45 opened on the lower pressing piece 4 is in communication with the perforation 31 as the lower pressing piece 4 slowly moves upward, so that the air outside the sliding table 3 quickly enters the sliding table 3 along the perforation 31 and the notch part 45. At this time, due to the rapid entry of the gas into the sliding table 3, the lower pressing piece 4 moves upward to reset quickly, and the lower pressing piece 4 drives the shutter 72 to move upward quickly due to the rapid upward movement of the lower pressing piece 4. The top rod 7 on the shutter 72 quickly adheres to the inner wall of one side of the sliding groove 55 and pushes the cover 5 to move upward quickly, and when the cover 5 moves upward quickly, the cover 5 sucks the ground-facing port of the discharge port 14 at this time, so that part of the antibacterial gel liquid near the ground-facing port of the discharge port 14 is sucked into the discharge port 14.
[0084] At the same time, the flow guide port 13 and the alignment port 54 are disconnected due to the rapid upward movement of the top rod 7 and the top ring 17 located in the moving path of the rubber ring pad 76. The rubber ring pad 76 on the outer wall of the top rod 7 quickly approaches the top ring 17, and then the top ring 17 extrudes the arch part of the rubber ring pad 76 to extrude the air in the rubber ring pad 76 and the shutter 72. By quickly extruding the flowing gas, the antibacterial gel liquid flowing to the top of the shutter 72 is blown, and the gel liquid quickly flows and falls from the shutter 72.
[0085] And due to the rapid upward movement of the cover 5, the cover 5 approaches the inner wall of one side of the discharge port 14 to extrude the cavity in the discharge port 14, as shown in Figure 5 , Figure 7 and Figure 10 , at this time, the extruded gas enters the air channel 71 along the flow-through air groove 53, and the second single-way air valve 6 is closed at this time. The extruded gas flows into the plurality of air exhaust channels 74 through the air channel 71, and the air is blown through the air exhaust channels 74 to further blow the residual antibacterial gel liquid on the top of the shutter 72, so as to accelerate the antibacterial gel liquid on the top of the shutter 72 to fall from the shutter 72, thereby further reducing the amount of residual antibacterial gel liquid on the shutter 72, and then when the shutter 72 extrudes the rubber ring pad 76 to adhere to the cutout part 15 at the ground-facing port of the discharge port 14, the ground-facing port of the discharge port 14 is closed and the amount of residual antibacterial gel liquid on the top of the shutter 72 is reduced, thereby reducing the amount of work for the worker to clean the discharge port 14.
[0086] The foregoing merely illustrates some exemplary embodiments of the application, and no doubt numerous modifications and alterations thereto will be apparent to those skilled in the art. Accordingly, the above description is intended for purposes of illustration only and should not be construed as limiting the scope of the application.
Claims
1. An antibacterial gel production and filling device, characterized in that, The system includes a main cylinder and a discharge platform fixedly installed at the bottom of the main cylinder. The discharge platform has a discharge port facing the ground and connected to the main cylinder. A suction unit is installed inside the discharge port, and the suction unit includes: The baffle is slidably installed inside the discharge port, and the baffle is in the default state to open the discharge port and the main cylinder; A baffle that slides vertically to block the discharge port from the ground. The push rod is fixedly installed on the baffle to push the baffle to close the discharge port and the main cylinder, and the baffle moves upward to suck the discharge port toward the ground port; The discharge platform is symmetrically provided with flow guides on the outer wall of the main cylinder to connect the main cylinder and the discharge port. The outer wall of the baffle is symmetrically provided with alignment ports that match the flow guides. A push spring is provided between the top of the baffle and the inner wall on the side of the discharge port. The bottom circular array inside the main cylinder is provided with multiple sliding platforms, and each sliding platform is slidably provided with a pressing component. A guide rod fixedly installed on the pressing component is slidably provided on the sliding platform, and the guide rod is fixedly connected to the cover plate. The top of the discharge platform is rotatably equipped with a main shaft, and a lever is fixedly installed on the outer wall of the main shaft. A functional lever is hinged to the lever to switch between the following two work positions as the main shaft rotates in both directions: At the first station, the downward rotating pressing part engages with the function lever to make the function lever flip. In the second station, the lower function lever is rotated in the opposite direction to fit against the lever to keep it vertical. The bottom end of the function lever moves along the inclined surface set on the top of the lower pressure member to move the lower pressure member downward. The outer wall of the guide rod is fitted with a compression spring that stores force when pressed down by the downward pressure of the lower pressure member. The inner wall of one side of the slide table is provided with fine air holes. When the lower pressure member moves up, air enters the slide table along the fine air holes. When the functional rod moves between multiple lower pressure members, the top rod and the baffle maintain a predetermined distance. The slide is provided with a through hole on the outer wall of one side of the bottom of the main cylinder. The pressing member is movably disposed on one side of the through hole. The pressing member moves upward to open the through hole so that the slide can quickly take in air, and the push rod moves upward to push the baffle. A ring platform is fixedly installed on the top of the baffle, and a plurality of exhaust vents facing the top edge of the baffle are provided on one side of the outer wall of the ring platform.
2. The antibacterial gel production and filling equipment according to claim 1, characterized in that, The outer wall of the main shaft is symmetrically fixed with scraper components, and the scraper components are movably disposed on the inner wall of the main cylinder.
3. The antibacterial gel production and filling equipment according to claim 1, characterized in that, A rubber ring gasket is fixedly installed on the outer wall of the top rod, and the rubber ring gasket is movably positioned between the baffle plate and the discharge port facing the ground.
4. The antibacterial gel production and filling equipment according to claim 3, characterized in that, The baffle plate is fixedly installed with multiple elastic plates on one side of the rubber ring pad. The elastic plates are used to push the rubber ring pad to arch it. The top ring fixedly installed on the inner wall of the discharge port is located on the path of the rubber ring pad's movement.
5. The antibacterial gel production and filling equipment according to claim 4, characterized in that, The push rod is slidably mounted on the baffle, and an air passage is provided on the push rod. The air passage is connected to the baffle located on the side of the push spring, and the air passage is connected to multiple exhaust holes.
Citation Information
Patent Citations
Paste filling machine capable of avoiding paste condensation
CN114275207A
Split charging equipment for production of antibacterial emulsifiable paste
CN213037400U