An emulsification device for deodorized fish oil emulsions
By designing a transmission component to drive the horizontal plate to rotate and flip, combined with the guiding mechanism of the inclined groove and the arc groove, and using the buoyancy of the airbag to push the arc plate to move, the problem of uneven mixing in the fish oil emulsification device is solved, and rapid and uniform mixing of fish oil and water is achieved, thus improving the emulsification efficiency.
Patent Information
- Application Number
- CN202310924761.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-26
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2043-07-26
AI Technical Summary
In existing technologies, fish oil emulsification devices cannot effectively carry the upper layer solution to the bottom of the tank, resulting in uneven mixing and affecting emulsification efficiency.
An emulsification device was designed, comprising a shell, a drive motor, a rotating column, a stirring rod, a transmission component, and a horizontal plate. The horizontal plate is driven to rotate horizontally by the transmission component, and inclined grooves and arc-shaped grooves are set in the shell to cooperate with the guide column to realize the flipping operation of the horizontal plate. The buoyancy of the air bag is used to push the arc plate to move, increasing the contact area between fish oil and water.
It enables rapid mixing of fish oil and water, shortens emulsification time, and improves mixing uniformity and emulsification efficiency.
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Figure CN117101466B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of emulsification technology, specifically to an emulsification device for deodorizing fish oil emulsions. Background Technology
[0002] To improve the taste of fish oil, it is usually emulsified after being purified and deodorized to make emulsified fish oil capsules. The emulsified fish oil emulsion has high nutritional value and a better taste, without any off-flavors.
[0003] For example, Chinese Patent Publication No. CN218307626U discloses a plant essential oil emulsification device, which relates to the field of plant essential oil emulsification. It includes a base, and a cylinder and a plant essential oil emulsification tank are fixedly connected to the top of the base. A fixed plate is fixedly connected to the output end of the cylinder. A material turning and mixing component is provided at one end of the fixed plate. A material scraping component is provided on the side wall of the material turning and mixing component.
[0004] This method uses vertical agitation to mix and emulsify the solution, but the solution cannot rotate vertically in the emulsification tank, and the upper layer of solution cannot be brought to the bottom of the tank when it rotates vertically. Summary of the Invention
[0005] The purpose of this invention is to provide an emulsification device for deodorizing fish oil emulsions, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution:
[0007] An emulsifying device for deodorizing fish oil emulsion includes a housing and a lid. A drive motor is fixedly connected to the lower end of the housing, and a rotating column is fixedly connected to the output end of the drive motor. The rotating column is located in the middle of the inner cavity of the housing and is rotatably connected to the lid. Several stirring rods are fixedly connected to the outer wall of the rotating column, and several transmission components are fixedly connected to the outer wall of the rotating column. The transmission components and stirring rods are arranged sequentially at intervals. A symmetrical horizontal plate is rotatably connected to the outer wall of the transmission components. A guide mechanism is provided on the side wall of the inner cavity of the housing to cooperate with the horizontal plate. A flow-pushing component is provided at the upper end of the horizontal plate. When the horizontal plate rotates with the transmission components, the output end of the guide mechanism acts on the end of the horizontal plate away from the transmission components, causing the horizontal plate to perform intermittent flipping motion. During the rotation of the horizontal plate, the output end of the flow-pushing component approaches the horizontal plate, forming a cavity at the upper end of the horizontal plate to store liquid. After the horizontal plate flips, the output end of the flow-pushing component moves away from the horizontal plate, thereby pushing out the stored liquid.
[0008] As a further embodiment of the present invention: the transmission component includes a chassis, the chassis is fixedly connected to a rotating column, a first gear is fitted to the upper middle part of the chassis, the first gear is fixedly connected to the rotating column, a gear ring is slidably arranged on the upper end of the turntable, a second gear is arranged between the gear ring and the first gear, the three meshing in sequence, a movable rod is rotatably connected to the upper middle part of the second gear, and the end of the movable rod away from the second gear is slidably connected to the chassis.
[0009] As a further aspect of the present invention: symmetrical mounting blocks are fixedly connected to the outer wall of the toothed ring, and a rotating rod is fixedly connected to the middle of the end of the mounting block away from the toothed ring, and the outer wall of the rotating rod is rotatably connected to the horizontal plate.
[0010] As a further aspect of the present invention: the guiding mechanism includes an annular groove, which is formed on the inner wall of the housing cavity. The annular groove and the horizontal plate are located on the same horizontal plane. Two symmetrical guide posts are slidably connected in the annular groove. The end of the guide post away from the annular groove is fixedly connected to the horizontal plate. A baffle is fixedly connected around the inner cavity of the annular groove. An arc-shaped groove is formed below the baffle, and a symmetrical inclined groove is formed above the baffle.
[0011] As a further aspect of the present invention: both ends of the arc-shaped groove are connected to the annular groove, and a circular groove is provided at the intersection of the symmetrical inclined grooves. The ends of the symmetrical inclined grooves near the arc-shaped groove are all connected to the annular groove.
[0012] As a further aspect of the present invention: a V-shaped key is provided on one side of the baffle. The V-shaped key is composed of two straight plates. The connection between the two straight plates is rotatably connected to the baffle. The straight plate closer to the circular groove is elastically connected to the baffle by a spring. The spring provides support force to the V-shaped key. The upper end face of the straight plate away from the circular groove is parallel to the inclined groove, and its end is located at the connection between the arc groove and the annular groove.
[0013] As a further aspect of the present invention: a magnet is fixedly connected to the upper part of the side of the baffle near the V-key, and a slider is elastically slidably connected to the upper part of the baffle. A through groove is opened in the middle of the side of the slider near the magnet, and the size of the through groove corresponds to the magnet. A first inclined surface is opened at the end of the slider near the magnet, and a second inclined surface is opened at the end of the slider away from the magnet. The slider passes through the upper part of the baffle.
[0014] As a further embodiment of the present invention: the propulsion component includes several arc plates, which are slidably connected to a horizontal plate. A groove for use with the arc plates is provided in the middle of the upper end of the horizontal plate. A symmetrical connecting block is fixedly connected to the lower end of the arc plate. A rack is fixedly connected to the side of the connecting block away from the arc plate. A driven gear is provided on the side of the rack away from the connecting block. The driven gear is rotatably connected to the horizontal plate. A groove for the driven gear to rotate is provided in the inner cavity of the horizontal plate. A connecting plate is provided on the side of the driven gear away from the connecting block. A rack is fixedly connected to the upper end of the connecting plate. Racks symmetrical about the center of the driven gear are provided on both sides of the driven gear. The three are meshed in sequence. Several moving grooves for use with the connecting plates are symmetrically provided in the upper end of the horizontal plate. An airbag is fixedly connected to the lower end of several connecting plates.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] The horizontal plate is smoothly driven to rotate horizontally by a transmission component. Inclined and arc-shaped grooves are installed inside the housing cavity to cooperate with guide posts connected to the horizontal plate, enabling the plate to flip. This vertically agitates the liquid, causing the lower layer of water to surge upwards and the upper layer of fish oil to float downwards. A V-shaped key ensures that the guide post that first contacts the key reliably enters the inclined groove, and the guide post behind it reliably enters the arc-shaped groove, thus achieving stable flipping of the horizontal plate. To further increase the contact area between the upper fish oil and the lower water, when the arc-shaped plate is facing upwards, an airbag uses buoyancy to move the arc-shaped plate into the inner cavity of the horizontal plate, filling the groove with fish oil. After flipping, the airbag uses buoyancy to move the arc-shaped plate away from the horizontal plate, pushing it out of the groove and squeezing out the fish oil. This further increases the contact area between the fish oil and water, shortening the mixing and emulsification time. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention.
[0018] Figure 2 This is a schematic diagram of the overall cross-section of the present invention.
[0019] Figure 3 This is a partial cross-sectional structural diagram of the present invention.
[0020] Figure 4 This is a schematic diagram of the transmission component in this invention.
[0021] Figure 5 This is a side view of the transmission component in this invention.
[0022] Figure 6 This is a schematic diagram of the guiding mechanism in this invention.
[0023] Figure 7 This is a schematic diagram of the slider in this invention.
[0024] Figure 8 This is a schematic diagram of the horizontal plate in this invention.
[0025] Figure 9 This is a schematic diagram of the propulsion component in this invention.
[0026] Figure 10 This is a schematic diagram of the push flow structure in this invention.
[0027] In the diagram: 1. Shell; 2. Cover; 3. Drive motor; 4. Rotating column; 5. Stirring rod; 6. Transmission component; 61. Chassis; 62. First gear; 63. Second gear; 64. Gear ring; 7. Guide mechanism; 71. Ring groove; 72. Inclined groove; 73. Circular groove; 74. Baffle; 75. Arc groove; 76. V-key; 77. Guide column; 78. Magnet; 79. Slider; 8. Horizontal plate; 9. Flow-pushing component; 91. Arc plate; 92. Airbag; 93. Connecting plate; 94. Driven gear; 95. Rack; 96. Moving groove; 10. Mounting block; 11. Rotating rod. Detailed Implementation
[0028] Please see Figure 1-3 In this embodiment of the invention, an emulsifying device for deodorizing fish oil emulsion includes a housing 1 and a cover 2. A drive motor 3 is fixedly connected to the lower end of the housing 1, and a rotating column 4 is fixedly connected to the output end of the drive motor 3. The rotating column 4 is disposed in the middle of the inner cavity of the housing 1 and rotatably connected to the cover 2. A plurality of stirring rods 5 are fixedly connected to the outer wall of the rotating column 4, and a plurality of transmission components 6 are fixedly connected to the outer wall of the rotating column 4. The transmission components 6 and the stirring rods 5 are arranged in sequence at intervals. A symmetrical horizontal plate 8 is rotatably connected to the outer wall of the transmission component 6. A guide mechanism 7 is provided on the side wall of the inner cavity of the housing 1 to cooperate with the horizontal plate 8. A pusher 9 is provided on the upper end of the horizontal plate 8. When the horizontal plate 8 rotates with the transmission component 6, the output end of the guide mechanism 7 acts on the end of the horizontal plate 8 away from the transmission component 6, causing the horizontal plate 8 to perform intermittent flipping motion. During the rotation of the horizontal plate 8, the output end of the pusher 9 approaches the horizontal plate 8 to form a cavity at the upper end of the horizontal plate 8 to store liquid. After the horizontal plate 8 flips, the output end of the pusher 9 will move away from the horizontal plate 8, thereby pushing out the stored liquid.
[0029] Please see Figure 4-5The transmission component 6 includes a chassis 61, which is fixedly connected to the rotating column 4. A first gear 62 is fitted to the middle of the upper end of the chassis 61 and is fixedly connected to the rotating column 4. A gear ring 64 is slidably mounted on the upper end of the turntable. Symmetrical mounting blocks 10 are fixedly connected to the outer wall of the gear ring 64. A rotating rod 11 is fixedly connected to the middle of the end of the mounting block 10 away from the gear ring 64. The outer wall of the rotating rod 11 is rotatably connected to the cross plate 8. A second gear 63 is provided between the gear ring 64 and the first gear 62. The three gears mesh in sequence. A movable rod is rotatably connected to the middle of the upper end of the second gear 63. The end of the movable rod away from the second gear 63 is slidably connected to the chassis 61. That is, as the chassis 61 rotates with the rotating rod... During the rotation of rod 11, the state of the movable rod and gear ring 64 is not affected by the rotation of the chassis 61, that is, the state of the second gear 63 is also not affected by the chassis 61. The chassis 61 only provides support for the second gear 63 and gear ring 64. The second gear 63 and gear ring 64 are only driven by the rotation of the first gear 62. That is, when the first gear 62 rotates clockwise with the rotating rod 11, it will drive the second gear 63 to rotate counterclockwise. The second gear 63 will then drive the gear ring 64 to rotate counterclockwise, thereby driving the horizontal plate 8 to rotate counterclockwise through the mounting block 10. The rotational speed transmitted by the rotating rod 11 is reduced by the second gear 63 and gear ring 64, so that the horizontal plate 8 can rotate smoothly horizontally.
[0030] Please see Figure 6-7The guiding mechanism 7 includes an annular groove 71, which is formed on the inner wall of the housing 1. The annular groove 71 and the horizontal plate 8 are located on the same horizontal plane. Two symmetrical guide posts 77 are slidably connected inside the annular groove 71. The end of the guide post 77 away from the annular groove 71 is fixedly connected to the horizontal plate 8, that is, the horizontal plate 8 is slidably connected to the annular groove 71 through the guide posts 77. A baffle 74 is fixedly connected around the inner cavity of the annular groove 71. An arc-shaped groove 75 is formed below the baffle 74. Both ends of the arc-shaped groove 75 are connected to the annular groove 71. A symmetrical inclined groove 72 is formed above the baffle 74. A circular groove 73 is formed at the intersection of the symmetrical inclined grooves 72. The end of the symmetrical inclined groove 72 near the arc-shaped groove 75 is connected to the annular groove 71. That is, when the guide post 77 moves to the annular groove 71 and the arc-shaped groove 75, the guide post 77 can be slidably connected to the annular groove 71. At the junction of groove 75, inclined groove 72, and arc groove 75, the two guide rods may enter the inclined groove 72 and arc groove 75 respectively. The guide rod moving along the inclined groove 72 will eventually move into the circular groove 73, and the guide rod moving along the arc groove 75 will also move to the lowest point of the arc groove 75. During this process, since the two guide rods are located in the inclined groove 72 and arc groove 75 respectively, the horizontal plate 8 will tilt relative to the mounting block 10 under the action of the guide rods until the horizontal plate 8 and the mounting block 10 are perpendicular to each other. As the gear ring 64 continues to rotate, the horizontal plate 8 will also continue to move. Since one of its guide rods is located in the circular groove 73, the guide rod moving along the arc plate will move into the annular groove 71 before the guide rod located in the circular groove 73. During the process, the horizontal plate 8 is rotated from a vertical state to a horizontal state and moves horizontally along the annular groove 71, thus completing the flipping operation of the horizontal plate 8 as it rotates with the toothed ring 64. If both guides enter the same groove, the flipping operation of the horizontal plate 8 cannot be completed. To ensure that the guide rod that moves to the junction of the annular groove 71, the arc groove 75, and the inclined groove 72 enters the inclined groove 72, a V-shaped key 76 is provided on one side of the baffle 74. The V-shaped key 76 is composed of two straight plates, and the connection between the two straight plates is rotatably connected to the baffle 74. The V-shaped key 76 is a metal plate, and the straight plate near the circular groove 73 is elastically connected to the baffle 74 by a spring. When the side of the V-shaped key 76 near the circular groove 73 is in contact with the baffle 74, the V-shaped key 76 is located near the baffle 74. The magnet 78 on one side of the baffle 74 will attract and adhere the V-key 76 to the side of the baffle 74. This causes the end of the V-key 76 near the annular groove 71 to tilt upwards, blocking the oblique groove 72 and the annular groove 71. A slider 79 is elastically slidably connected to the upper end of the baffle 74. The slider 79 has a through groove in the middle of its end near the V-key 76 and a symmetrical first inclined surface at its end. The through groove matches the size of the magnet 78, and the first inclined surface is parallel to the oblique groove 72 near the V-key 76. A second inclined surface is formed at the end of the slider 79 away from the V-key 76, tilting towards the direction of the V-key 76. When the end of the slider 79 away from the V-key 76 is compressed, its other end will push up the straight plate attracted to the magnet 78, thus moving the straight plate away from the magnet 78.This causes the V-key 76 to return to its initial position under the action of the spring. The upper end face of the straight plate away from the circular groove 73 is parallel to the inclined groove 72, and its end is located at the connection between the arc groove 75 and the annular groove 71. That is, when the V-key 76 is only subjected to its own weight, the straight plate away from the circular groove 73 will block the entrance of the arc groove 75. As a result, when the guide post 77 moves to the junction of the annular groove 71, the arc groove 75, and the inclined groove 72, due to the obstruction of the V-key 76, the guide post 77 can only move along the straight plate toward the inclined groove 72. During the movement along the inclined groove 72, the guide rod will squeeze the straight plate of the V-key 76 near the circular groove 73, causing the V-key 76 to rotate, and causing the straight plate away from the circular groove 73 to move further away from the arc groove 75. When the V-key 76 contacts the inclined groove 72 at its end, it loses its blocking effect on the arc groove 75 but simultaneously blocks the inclined groove 72. The subsequently moving guide post 77, due to the blocking of the inclined groove 72, can only enter the arc groove 75. Thus, the guide post 77 can accurately enter both the inclined groove 72 and the arc groove 75. After passing through the arc groove 75, the guide post 77 located in the circular groove 73 moves from the inclined groove 72 to the annular groove 71. During this process, the guide post 77 presses against the second inclined surface, thereby pushing the slider 79 to move horizontally and thus pushing the V-key 76 to separate from the magnet 78, returning it to its initial position. The flipping of the horizontal plate 8 is completed when the symmetrical guide post 77 returns to the annular groove 71.
[0031] Please see Figure 8-10 The propulsion component 9 includes several arc plates 91, which are slidably connected to a horizontal plate 8. A groove for use with the arc plates 91 is provided in the middle of the upper end of the horizontal plate 8. Symmetrical connecting blocks are fixedly connected to the lower end of the arc plates 91. A rack 95 is fixedly connected to the side of the connecting block away from the arc plates 91. A driven gear 94 is provided on the side of the rack 95 away from the connecting block. The driven gear 94 is rotatably connected to the horizontal plate 8. A groove for the driven gear 94 to rotate is provided in the inner cavity of the horizontal plate 8. A connecting plate 93 is provided on the side of the driven gear 94 away from the connecting block. A rack 95 is fixedly connected to the upper end of the connecting plate 93. That is, grooves are provided on both sides of the driven gear 94 about the center of the driven gear 94. The three centrally symmetrical racks 95 mesh sequentially. The connecting plate 93 drives the driven gear 94 to rotate through the racks 95, thereby achieving the effect of making the arc plate 91 vertically downward. The upper end of the horizontal plate 8 is symmetrically provided with several moving grooves 96 that cooperate with the connecting plate 93. The moving grooves 96 provide the vertical movement space for the connecting plate 93. When the connecting plate 93 rises vertically, it will push the driven gear 94 to rotate, thereby driving the arc plate 91 to move vertically downward through the racks 95. The lower ends of several connecting plates 93 are fixedly connected to an airbag 92. When the emulsified solution is added to the shell 1, the buoyancy of the airbag 92 is the power for the connecting plate 93 to rise.
[0032] During the emulsification of fish oil, because the density of fish oil is less than that of water, the fish oil will float on the surface of the water. If the stirring rod 5 is used directly to mix and emulsify the fish oil and water, it will take a long time for the water at the bottom and the fish oil at the top to come into effective contact, which will greatly increase the emulsification time. In order to increase the contact area between water and fish oil, a horizontal plate 8 that can store liquid and flip over is specially designed. When the container is filled with water and fish oil, the air bladder 92 is continuously brought closer to the bottom of the horizontal plate 8 by buoyancy. During this process, the connecting plate 93 pushes the driven gear 94 to drive the arc plate 91 to move vertically downward, thereby... The chute is exposed to the solution, allowing the groove to fill with fish oil. As the horizontal plate 8 rotates horizontally, it flips within the inclined groove 72 and the arc-shaped groove 75. After the horizontal plate 8 flips, the airbag 92 is positioned above the horizontal plate 8, with the opening of the chute facing downwards. The airbag 92 is gradually moved away from the horizontal plate 8 by buoyancy. During this process, the connecting plate 93 drives the driven gear 94, causing it to move the arc plate 91 away from the airbag 92, thus timely pushing the fish oil stored in the chute downwards. This process is repeated. The vertically rotating horizontal plate 8 can also agitate the liquid, causing it to surge and further increasing the contact area between the fish oil and water.
Claims
1. An emulsifying device for deodorizing fish oil emulsions, comprising a housing and a cap, characterized in that, A drive motor is fixedly connected to the lower end of the housing. A rotating column is fixedly connected to the output end of the drive motor. The rotating column is located in the middle of the inner cavity of the housing and is rotatably connected to the cover. Several stirring rods are fixedly connected to the outer wall of the rotating column. Several transmission components are fixedly connected to the outer wall of the rotating column. The transmission components and stirring rods are arranged in sequence at intervals. A symmetrical horizontal plate is rotatably connected to the outer wall of the transmission components. A guide mechanism is provided on the side wall of the inner cavity of the housing to cooperate with the horizontal plate. A pusher is provided at the upper end of the horizontal plate. When the horizontal plate rotates with the transmission components, the output end of the guide mechanism acts on the end of the horizontal plate away from the transmission components, causing the horizontal plate to perform intermittent flipping motion. During the rotation of the horizontal plate, the output end of the pusher approaches the horizontal plate, forming a cavity at the upper end of the horizontal plate to store liquid. After the horizontal plate flips, the output end of the pusher moves away from the horizontal plate, thereby pushing out the stored liquid.
2. The emulsifying device for deodorizing fish oil emulsion according to claim 1, characterized in that, The transmission component includes a chassis, which is fixedly connected to a rotating column. A first gear is fitted to the middle of the upper end of the chassis and is fixedly connected to the rotating column. A gear ring is slidably arranged on the upper end of the rotating column. A second gear is arranged between the gear ring and the first gear, and the three mesh in sequence. A movable rod is rotatably connected to the middle of the upper end of the second gear, and the end of the movable rod away from the second gear is slidably connected to the chassis.
3. An emulsifying device for deodorizing fish oil emulsion according to claim 2, characterized in that, Symmetrical mounting blocks are fixedly connected to the outer wall of the toothed ring. A rotating rod is fixedly connected to the middle of the end of the mounting block away from the toothed ring. The outer wall of the rotating rod is rotatably connected to the horizontal plate.
4. An emulsifying device for deodorizing fish oil emulsion according to claim 1, characterized in that, The guiding mechanism includes an annular groove, which is formed on the inner wall of the housing cavity. The annular groove and the horizontal plate are located on the same horizontal plane. Two symmetrical guide posts are slidably connected in the annular groove. The end of the guide post away from the annular groove is fixedly connected to the horizontal plate. A baffle is fixedly connected around the inner cavity of the annular groove. An arc-shaped groove is formed below the baffle, and a symmetrical inclined groove is formed above the baffle.
5. An emulsifying device for deodorizing fish oil emulsion according to claim 4, characterized in that, Both ends of the arc-shaped groove are connected to the annular groove, and a circular groove is opened at the intersection of the symmetrical inclined grooves. The end of the symmetrical inclined groove near the arc-shaped groove is connected to the annular groove.
6. An emulsifying device for deodorizing fish oil emulsion according to claim 5, characterized in that, A V-shaped key is provided on one side of the baffle. The V-shaped key is composed of two straight plates. The connection between the two straight plates is rotatably connected to the baffle. The straight plate closer to the circular groove is elastically connected to the baffle by a spring. The spring provides support force to the V-shaped key. The upper end face of the straight plate away from the circular groove is parallel to the inclined groove, and its end is located at the connection between the arc groove and the annular groove.
7. An emulsifying device for deodorizing fish oil emulsion according to claim 6, characterized in that, A magnet is fixedly connected to the upper part of the side of the baffle near the V-key. A slider is elastically slidably connected to the upper part of the baffle. A through groove is opened in the middle of the side of the slider near the magnet. The size of the through groove corresponds to the magnet. A first inclined surface is opened at the end of the slider near the magnet. A second inclined surface is opened at the end of the slider away from the magnet. The slider passes through the upper part of the baffle.
8. An emulsifying device for deodorizing fish oil emulsion according to claim 1, characterized in that, The propulsion component includes several arc plates, which are slidably connected to a horizontal plate. A groove for the arc plates is provided in the middle of the upper end of the horizontal plate. Symmetrical connecting blocks are fixedly connected to the lower end of the arc plates. A rack is fixedly connected to the side of the connecting blocks away from the arc plates. A driven gear is provided on the side of the rack away from the connecting blocks. The driven gear is rotatably connected to the horizontal plate. A groove for the driven gear to rotate is provided in the inner cavity of the horizontal plate. A connecting plate is provided on the side of the driven gear away from the connecting blocks. A rack is fixedly connected to the upper end of the connecting plate. Racks symmetrically arranged about the center of the driven gear are provided on both sides of the driven gear, and the three are sequentially meshed. Several moving grooves for the connecting plates are symmetrically provided at the upper end of the horizontal plate. An airbag is fixedly connected to the lower end of several connecting plates.
Citation Information
Patent Citations
Plant essential oil emulsifying device
CN218307626U
Novel energy-saving and environment-friendly desulfurization boiler
CN216537803U
Liquid jetting device and liquid jetting method
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