Dissolving and stirring equipment for preparing food preservative

By designing a rotating third clamp, adjusting the airbag clamping, striking with a striking plate, and blowing with a spray nozzle, the problem of low dissolution efficiency of food preservative clumping was solved, achieving a highly efficient powder dissolution and mixing effect.

CN121372079APending Publication Date: 2026-01-23JIMEI UNIV
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Patent Information

Application Number
CN202511734036.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-24
Publication Date
2026-01-23

AI Technical Summary

Technical Problem

Existing dissolving and stirring equipment for food preservative preparation cannot quickly dissolve and process clumped food preservatives, resulting in low dissolving and stirring efficiency.

Method used

A dissolving and mixing device was designed, which includes a mixing tank, a slide, a ring frame, auxiliary devices, a cutting device, and a spray nozzle. The device achieves rapid dissolution of clumps by means of rotating the third chuck to stir the clumps, adjusting the air bag to hold the clumps, striking the clumps with a striking plate, tearing the clumps with a tearing device, and blowing the powder with the spray nozzle.

Benefits of technology

It improves the dissolution efficiency of food preservatives, ensures rapid mixing of powder and liquid, avoids accumulation, increases the stirring area, and improves the powder discharge efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of preparation of food preservatives, and discloses dissolving and stirring equipment for preparation of a food preservative, the dissolving and stirring equipment comprises a stirring barrel and a ram, one end of the ram is connected with one end of the stirring barrel, one end of the ram is also provided with a stirring rod, the stirring rod is driven by a screw rod in the ram to be inserted into the stirring barrel, and the stirring barrel is connected with the ram. The circular ring frame is mounted at an opening in the upper end of the stirring barrel, and the lower end of the circular ring frame is slidably connected with a treatment device. According to the device, a third clamping head is rotated, and the third clamping head is used for stirring the interior of a caking, so that powder in a viscous film is rotationally discharged out of the interior of the caking, the powder is mixed with liquid in a stirring barrel in advance, the fusion effect is rapidly improved, air is sprayed through a spraying hole, a large amount of falling powder is blown away, and the caking effect is improved. The liquid is distributed at the upper end of the liquid in the stirring barrel and is not accumulated in the middle, so that the subsequent dissolving efficiency is accelerated.
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Description

Technical Field

[0001] This invention relates to the field of food preservative preparation technology, specifically to a dissolving and stirring device for preparing food preservatives. Background Technology

[0002] Food preservatives are food additives used to prevent food from spoiling during storage and distribution due to microbial growth, or from deteriorating in quality or color due to poor storage and sales conditions. They are used to extend shelf life and nutritional value.

[0003] When large quantities of food preservatives are dissolved and stirred, clumping can occur due to various factors such as the preservative's own quality, stirring issues, and temperature problems. This is because the food preservative is not fully stirred after being mixed with water, resulting in the formation of a sticky film on the outer layer. Consequently, the sticky film on the outer surface of the clumping is difficult to dissolve quickly, while the inside of the clumping is covered with a large amount of powder. Therefore, existing dissolving and stirring equipment for food preservative preparation cannot quickly dissolve and process food preservative clumps, resulting in low dissolving and stirring efficiency. Summary of the Invention

[0004] This invention provides a dissolving and stirring device for preparing food preservatives, which has the beneficial effects of good dissolving effect and high dissolving efficiency, and solves the problem mentioned in the background art that the existing dissolving and stirring devices for preparing food preservatives cannot quickly dissolve and process the clumping of food preservatives, thus resulting in low dissolving and stirring efficiency.

[0005] This invention provides the following technical solution: a dissolving and stirring device for preparing a food preservative, comprising: Mixing tank; A sliding ram, one end of which is connected to one end of a mixing tank, and a stirring rod is also installed at one end of the sliding ram. The stirring rod is driven by a lead screw inside the sliding ram to insert into the interior of the mixing tank. A circular frame is installed at the upper opening of the mixing tank, and a processing device is slidably connected to the lower end of the circular frame for clamping clumps. An auxiliary device, the upper end of which is connected to the lower end of the stirring rod, is used to collect clumps inside the stirring tank. The auxiliary device includes a filter plate and a storage cavity. The upper end of the filter plate is connected to the lower end of the stirring rod. The upper surface of the filter plate is also provided with a storage cavity to collect clumps. A cutting device is installed in the storage cavity. The cutting device is inserted into the inside of the agglomerate and rotated to remove the powder inside the agglomerate. The nozzle is located on the inner wall of the mixing tank and blows away the powder that has fallen from the agglomerated interior.

[0006] As an optional solution of the dissolving and stirring equipment for preparing food preservatives according to the present invention, the processing device includes a sliding plate slidably connected to the lower end of the ring frame, an adjusting air bag connected to the lower end of the sliding plate, a connecting plate connected to the lower end of the adjusting air bag, and a first clamp installed at the lower end of the connecting plate. The first clamp is inserted into the block and unfolded to clamp the block. The adjustable airbag has a support spring installed inside.

[0007] As an optional solution of the dissolving and stirring equipment for preparing food preservatives according to the present invention, it further includes a beating device, wherein the beating device includes a striking plate slidably connected to the lower end of the ring frame, one end of the striking plate is provided with a first sliding groove, one end of the sliding plate is installed with a first support shaft, and the first support shaft is slidably connected to the inside of the first sliding groove. The upper end of the striking plate is connected to a first cable, and the striking plate rotates and swings about the first support shaft as a fulcrum. The other end of the striking plate is also equipped with a first counterweight.

[0008] As an optional solution of the dissolving and stirring equipment for preparing the food preservative according to the present invention, the cutting device includes an adjusting plate disposed inside the receiving cavity, a motor connected to the upper end of the adjusting plate, a third clamp connected to the upper end of the motor, the motor being used to drive the third clamp to rotate, and the third clamp being used to insert into the interior of the clump. Specifically, the third clamp is controlled to open and close to cut the block, forming an opening at the lower end of the block.

[0009] As an optional solution of the dissolving and stirring equipment for preparing food preservatives according to the present invention, it further includes a tearing device, wherein the tearing device includes a vertical plate slidably connected to the lower end of the ring frame, one end of the vertical plate is provided with a second sliding groove, and the other end of the sliding plate is equipped with a second support shaft, the second support shaft being slidably connected to the inside of the second sliding groove; The upper end of the vertical plate is connected to a first cable, and the vertical plate rotates and swings around the second support shaft as a fulcrum. A second counterweight is also installed at the other end of the vertical plate. One end of the second counterweight is connected to a second clamp, which is used to clamp one end of the block.

[0010] As an optional solution of the dissolving and stirring equipment for preparing food preservatives according to the present invention, wherein: a second piston cylinder is also installed inside the ring frame, a first piston column is slidably connected inside the second piston cylinder, the first piston column and the second piston cylinder are connected by a first spring, one end of the first piston column is connected to the upper end of the first cable, and a first guide wheel is also provided inside the ring frame, and the first cable abuts against the first guide wheel; A second hose is installed at one end of the second piston cylinder, through which air is transmitted to the interior of the second piston cylinder; The ring frame is also equipped with a third piston cylinder, and a second piston rod is slidably connected inside the third piston cylinder. The second piston rod and the third piston cylinder are connected by a second spring. One end of the second spring is connected to the upper end of the first cable. The ring frame is also equipped with a second guide wheel, and the first cable abuts against the second guide wheel.

[0011] As an optional solution of the dissolving and stirring device for preparing the food preservative according to the present invention, wherein: a first hose is further provided on one side of the second piston cylinder, the first hose is connected to the interior of the second piston cylinder, and the first hose is located at the other end of the first piston column; The cutting device further includes a first piston cylinder disposed inside the filter plate. A disc and a round shaft are slidably connected inside the first piston cylinder. The round shaft passes through the disc and the first piston cylinder, and the disc is slidably connected inside the first piston cylinder. The disc and the first piston cylinder are connected by a third spring.

[0012] As an optional solution of the dissolving and stirring device for preparing the food preservative according to the present invention, wherein: the interior of the first piston cylinder is further provided with a first hole and a second hole, the first hole and the second hole are connected, and the inner diameter of the first hole is larger than the inner diameter of the second hole; A sealing post is slidably connected to the second hole. The sealing post is connected to the first piston cylinder by a return spring. A steel cable is installed at one end of the sealing post, and one end of the steel cable is connected to one end of the disc. A spring sheet is also installed at the first hole, and the sealing post is used to compress the spring sheet to deform. The first piston cylinder is also equipped with a first hose at one end, which is used to transmit air into the interior of the first piston cylinder.

[0013] As an optional solution of the dissolving and stirring equipment for preparing the food preservative according to the present invention, the auxiliary device further includes a ball rotatably connected to the lower end of the stirring rod, the lower end of the ball being connected to the upper end of the filter plate; Arc-shaped plates are also installed on both sides of the stirring rod, and the lower end of the arc-shaped plates is connected to the upper end of the filter screen plate. The inner wall of the mixing tank is also equipped with one-way teeth, which are used to squeeze one end of the filter plate to tilt, thereby tilting the clumped empty shell at the upper end of the filter plate to the upper end of the support filter plate. The filter plate is also used to rotate and rub the clumped empty shell at the upper end of the support filter plate.

[0014] As an optional solution of the dissolving and stirring device for preparing food preservatives according to the present invention, wherein: the first clamp includes a first bracket connected to the lower end of the connecting plate, a first extension shaft is installed at the lower end of the first bracket, the two ends of the first extension shaft are rotatably connected to the first clamping plate, the two first clamping plates are connected by a first torque spring, and a first expansion airbag is also installed inside the first bracket, the first expansion airbag is used to expand and squeeze the upper end of the first clamping plate to offset. The second clamp includes a second bracket connected to one end of the vertical plate. Two second protruding shafts are installed at one end of the second bracket. A second clamping plate is installed on the outer surface of the second protruding shaft. The second clamping plate and the second protruding shaft are connected by a second torque spring. A second expansion airbag is also installed inside the second bracket. The second expansion airbag is used to expand and squeeze the upper end of the second clamping plate to offset. The third clamp includes a third bracket connected to the upper end of the vertical output shaft. The two ends of the third bracket are equipped with third extension shafts. The outer surface of the third extension shaft is equipped with a third clamping plate. The third clamping plate and the third bracket are connected by a third torque spring. The third bracket is also equipped with a fourth expansion airbag. The fourth expansion airbag is used to expand and squeeze the lower end of the third clamping plate to offset.

[0015] The present invention has the following beneficial effects: 1. The dissolving and stirring equipment for preparing this food preservative uses a rotating third chuck to stir the interior of the clump, thereby discharging the powder from the viscous film inside the clump. This allows the powder to mix with the liquid inside the mixing tank first, thus quickly achieving a fusion effect. Air is sprayed through nozzles to disperse a large amount of the falling powder, distributing it at the top of the liquid inside the mixing tank, preventing it from accumulating in one place, thereby accelerating the subsequent dissolution efficiency.

[0016] 2. The dissolving and stirring equipment for preparing the food preservative regulates the expansion and contraction of the air bladder by filling or releasing air inside the bladder. This causes the air bladder to push or pull the connecting plate upward or downward, which in turn causes the connecting plate to move the first clamp upward or downward. The first clamp then causes the clump to shake up and down. Combined with the rotation and stirring of the third clamp, this further increases the stirring area and allows the powder to fall off under inertia, thereby further improving the effect of quickly discharging the powder inside the clump.

[0017] 3. The dissolving and stirring equipment for preparing the food preservative uses the gravity of the first counterweight to drive the lower end of the striking plate to strike the agglomeration site, thereby breaking up the agglomeration. In this way, the striking of the striking plate, combined with the stirring of the third clamp, improves the effect of discharging the powder inside the agglomeration. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention.

[0019] Figure 2 This is a schematic diagram of the processing device of the present invention.

[0020] Figure 3 This is a schematic diagram of the tearing device of the present invention.

[0021] Figure 4 This is a schematic diagram of the structure of the first support shaft of the present invention.

[0022] Figure 5 This is a schematic diagram of the structure of the second piston cylinder and the third piston cylinder of the present invention.

[0023] Figure 6 This is a schematic diagram of the cutting device of the present invention.

[0024] Figure 7 This is a schematic diagram of the structure of the first piston cylinder of the present invention.

[0025] Figure 8 This is a schematic diagram of the auxiliary device of the present invention.

[0026] Figure 9 This is a schematic diagram of the structure of the first chuck of the present invention.

[0027] Figure 10 This is a schematic diagram of the structure of the second clamp of the present invention.

[0028] Figure 11 This is a schematic diagram of the structure of the third clamp of the present invention.

[0029] In the diagram: 1. Mixing tank; 2. Slide ram; 3. Mixing rod; 4. Circular frame; 5. Auxiliary device; 51. Filter plate; 52. Storage cavity; 53. Sphere; 54. Arc-shaped plate; 55. One-way tooth; 56. Stirring chamber; 57. Supporting filter plate; 6. Processing device; 61. Sliding plate; 62. Adjusting airbag; 63. Connecting plate; 64. First chuck; 65. Pneumatic clamp; 7. Striking device; 71. First support shaft; 72. Striking plate; 73. First slide groove; 74. First cable; 75. First counterweight; 8. Cutting device; 81. Adjusting plate; 82. Motor; 83. Third clamp; 84. Round shaft; 85. Third spring; 86. Disc; 87. First hole; 88. Second hole; 89. Sealing post; 9. Tear-off device; 91. Second support shaft; 92. Vertical plate; 93. Second slide rail; 94. First cable; 95. Second counterweight; 96. Second clamp; 10. Nozzle; 11. First piston cylinder; 12. First hose; 13. Steel cable; 14. Spring; 15. Return spring; 17. Second piston cylinder; 18. First piston rod; 19. First spring; 20. Second hose; 21. First guide wheel; 22. Third piston cylinder; 23. Second piston rod; 24. Second spring; 25. Third hose; 26. Second guide wheel; 27. First clamping plate; 28. First bracket; 29. ​​First extension shaft; 30. First inflation airbag; 31. First torque spring; 32. Second clamping plate; 33. Second extension shaft; 34. Second bracket; 35. Second torque spring; 36. Second inflation airbag; 37. Third bracket; 38. Third clamping plate; 39. Third extension shaft; 40. Third torque spring; 41. Fourth inflation airbag. Detailed Implementation

[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0031] Example 1 Please see Figures 1-3 Furthermore, a dissolving and stirring apparatus for preparing a food preservative is disclosed, comprising: Mixing tank 1; The slide 2 has one end connected to one end of the mixing tank 1. The slide 2 also has a stirring rod 3 installed at one end. The stirring rod 3 is driven by the screw inside the slide 2 to insert into the interior of the mixing tank 1. A circular ring frame 4 is installed at the upper opening of the mixing tank 1. A processing device 6 is slidably connected to the lower end of the circular ring frame 4. The processing device 6 is used to clamp the clumps. Auxiliary device 5, the upper end of which is connected to the lower end of stirring rod 3, is used to collect clumps inside stirring tank 1. The auxiliary device 5 includes a filter plate 51 and a collection cavity 52. ​​The upper end of the filter plate 51 is connected to the lower end of the stirring rod 3. The upper end of the filter plate 51 is also provided with a collection cavity 52, which collects the clumps. The cutting device 8 is installed in the storage cavity 52. ​​The cutting device 8 is inserted into the inside of the agglomerate and rotated to remove the powder inside the agglomerate. The nozzle 10 is located on the inner wall of the mixing tank 1, and blows away the powder that falls into the agglomerated interior through the mixing tank 1.

[0032] according to Figure 1 As shown, the slide ram 2 is a slide ram, and a lead screw is rotatably connected inside the slide ram 2. The lead screw is driven to rotate by a motor, and the lead screw drives the stirring rod 3 to slide up and down. The existing technology will not be described in detail here. The slide ram 2 drives the stirring rod 3 to be inserted into the interior of the mixing tank 1. The stirring rod 3 drives the filter plate 51 to approach the bottom of the interior of the mixing tank 1. Then, food preservative powder and liquid are injected into the interior of the mixing tank 1. The stirring rod 3 is started and starts stirring. After stirring for a period of time, if clumps appear inside the mixing tank 1, the slide ram 2 drives the stirring rod 3 to lift upwards, so that the filter plate 51 filters the liquid inside the mixing chamber 56, causing the clumps to accumulate on the upper surface of the filter plate 51. Then, the stirring rod 3 drives the filter plate 51 to rotate, and the filter plate 51 centrifugally drops the clumps on the upper surface to the outer circle of the filter plate 51, which is the collection cavity 52. ​​The collection cavity 52 collects the clumps, so the stirring rod 3 stops rotating. When the filter plate 51 approaches the ring frame 4, it stops moving. According to Figure 2 As shown, when the agglomerate abuts against the first clamp 64, the first clamp 64 remains stationary, while the filter plate 51 moves the agglomerate upwards, allowing the first clamp 64 to insert into the agglomerate, thus limiting the agglomerate's position. Since the first clamp 64 can unfold, it engages with the agglomerate, providing better clamping. Subsequently, the third clamp 83 at the bottom of the agglomerate changes its state from unfolded to converged, forming a cone-like shape. When the third clamp 83 changes state, it squeezes and divides the lower end of the agglomerate, cutting an opening at the bottom. The converged third clamp 83 is located inside the agglomerate. At this time, since the third chuck 83 cuts an opening in the viscous membrane, by rotating the third chuck 83, the interior of the agglomerate is stirred, thereby rotating and discharging the powder inside the viscous membrane from the agglomerate. In this way, the powder is mixed with the liquid inside the mixing tank 1 first, thus quickly achieving a fusion effect. It should be noted that its filter screen 51 is made of steel wire mesh, and the powder can pass through the mesh of the steel wire mesh; Furthermore, when the viscous film powder is discharged and falls off, air is sprayed through the nozzle 10 to blow away a large amount of the fallen powder and distribute it at the top of the liquid inside the mixing tank 1, rather than accumulating in one place in the center, thereby accelerating the subsequent dissolution efficiency.

[0033] Example 2 This embodiment is an improvement upon embodiment 1. For details, please refer to [link / reference]. Figures 1-3 The processing device 6 includes a sliding plate 61 slidably connected to the lower end of the ring frame 4. The lower end of the sliding plate 61 is connected to an adjusting airbag 62. The lower end of the adjusting airbag 62 is connected to a connecting plate 63. The lower end of the connecting plate 63 is equipped with a first clamp 64. The first clamp 64 is inserted into the block and unfolded to clamp the block. The adjustable airbag 62 has a support spring installed inside.

[0034] according to Figure 3 As shown, in order to better and faster discharge the powder inside the agglomerate, an adjusting airbag 62 is installed between the sliding plate 61 and the connecting plate 63. When the connecting plate 63 is inserted into the agglomerate, the airbag 62 is filled or released to expand and contract, thereby pushing or pulling the connecting plate 63 upward or downward. This causes the connecting plate 63 to drive the first clamp 64 upward or downward, which in turn causes the first clamp 64 to shake the agglomerate up and down. This, combined with the rotation and stirring of the third clamp 83, further increases the stirring area and causes the powder to fall off under inertia, thereby further improving the effect of quickly discharging the powder inside the agglomerate. It should be noted that an interface is installed at one end of the regulating airbag 62, which is connected to the air tube. The air pump is connected to the air tube to supply air to the regulating airbag 62 and to inflate it. It should be noted that, due to the varying diameters of the clusters, it is necessary to adapt to clusters of any diameter, according to... Figure 2 As shown, the upper end of the sliding plate 61 is slidably connected to the ring frame 4, and the sliding plate 61 passes through the ring frame 4. Therefore, when the filter plate 51 drives the block to slide upward, the block will push the sliding plate 61 upward and slide upward. After sliding a distance, it ensures that all blocks are in contact with the lower end of the first clamp 64. Then, by transmitting air to the pneumatic clamp 65, the pneumatic clamp 65 clamps and fixes the sliding plate 61. At this time, it ensures that the position of the sliding plate 61 is fixed, and the first clamp 64 is in contact with the upper end of the block. This achieves the processing of blocks of different sizes. Then, the filter plate 51 drives the block to slide upward, so that the first clamp 64 is inserted into the block, achieving the fixing effect in Embodiment 1.

[0035] Example 3 This embodiment is an improvement upon embodiment 2. For details, please refer to [link / reference]. Figures 1-5 It also includes a striking device 7, which includes a striking plate 72 slidably connected to the lower end of the ring frame 4. One end of the striking plate 72 is provided with a first groove 73, and one end of the sliding plate 61 is equipped with a first support shaft 71, which is slidably connected to the inside of the first groove 73. The upper end of the striking plate 72 is connected to the first cable 74, and the striking plate 72 rotates and swings about the first support shaft 71 as the fulcrum. The other end of the striking plate 72 is also equipped with a first counterweight 75.

[0036] according to Figure 5 As shown, based on Example 2, when the agglomerate squeezing sliding plate 61 slides upward, its filter plate 51 will squeeze the first support shaft 71 to slide upward, thereby ensuring that the lower end of the striking plate 72 is always on one side of the agglomerate, and the first support shaft 71 will slide along the first slide groove 73. After the sliding is completed, when the first cable 74 is pulled, the first cable 74 pulls the upper end of the striking plate 72 to move, and the striking plate 72 rotates and swings around the first support shaft 71 as the fulcrum, thereby allowing one end of the striking plate 72 to swing in sequence. Then, when the first cable 74 is relaxed, the lower end of the striking plate 72 is driven by the gravity of the first counterweight 75 to strike the agglomerate, thereby realizing the patting of the agglomerate. In this way, the patting of the striking plate 72 is combined with the stirring of the third clamp 83 to improve the effect of discharging the powder inside the agglomerate. It should be noted that the structure of its first support shaft 71 is as follows: Figure 4 As shown, its first support shaft 71 includes a shaft body, a bearing, and a support airbag. A bearing is installed at one end of the shaft body, and a support airbag is installed on the outer surface of the bearing. When the filter plate 51 squeezes the first support shaft 71 to slide upward, its pneumatic clamp 65 fills air to fix the sliding plate 61, and also transmits air into the interior of the support airbag to expand the support airbag, thereby allowing the support airbag to abut against the interior of the first slide groove 73, so that the striking plate 72 rotates around the fulcrum of the first support shaft 71.

[0037] Example 4 This embodiment is an improvement upon embodiment 3. For details, please refer to [link / reference]. Figures 1-6 The cutting device 8 includes an adjustment plate 81 disposed inside the storage cavity 52. ​​The upper end of the adjustment plate 81 is connected to a motor 82, and the upper end of the motor 82 is connected to a third clamp 83. The motor 82 is used to drive the third clamp 83 to rotate, and the third clamp 83 is used to insert into the interior of the block. Specifically, the third clamp 83 is controlled to open and close to cut the block and form an opening at the lower end of the block.

[0038] according to Figure 6 As shown, since the rotation range of the third chuck 83 is fixed, the range of rotation and agitation of the third chuck 83 is limited. In this embodiment, the lower end of the motor 82 is installed at the lower end of the adjusting plate 81. By sliding the adjusting plate 81, the adjusting plate 81 drives the adjusting plate 81 and the third chuck 83 to move, thereby changing the rotation and agitation range of the third chuck 83. This further increases the agitation range of the third chuck 83, thereby quickly agitating and discharging the powder inside the agglomerate. Furthermore, the axis of its third chuck 83 is misaligned with the axis of the output shaft of the motor 82.

[0039] Example 5 This embodiment is an improvement upon embodiment 4. For details, please refer to [link / reference]. Figures 1-6 It also includes a tearing device 9, which includes a vertical plate 92 slidably connected to the lower end of the ring frame 4. One end of the vertical plate 92 is provided with a second groove 93, and the other end of the sliding plate 61 is equipped with a second support shaft 91, which is slidably connected to the inside of the second groove 93. The upper end of the vertical plate 92 is connected to the first cable 94, and the vertical plate 92 rotates and swings around the second support shaft 91 as the fulcrum. The other end of the vertical plate 92 is also equipped with a second counterweight 95. One end of the second counterweight 95 is connected to a second clamp 96, which is used to clamp one end of the block.

[0040] according to Figure 3 The operation of its tearing device 9 is the same as that of the beating device 7, see embodiment 3; Specifically, when the filter plate 51 moves the agglomerates upward, it also moves the agglomerates to press the vertical plate 92 downward, so that the vertical plate 92 is located on the other side of the agglomerates, adapting to agglomerates of different sizes. Then, when the third clamp 83 contracts and cuts the agglomerates, forming an opening at the lower end of the agglomerates, the second clamp 96 contracts, thereby clamping the other side of the agglomerates through the second slide groove 93. Then, the first cable 94 pulls the upper end of the vertical plate 92 to swing to one side, thereby allowing the vertical plate 92 to rotate around the second support shaft 91 as the fulcrum. This causes the lower end of the vertical plate 92 to lift the second clamp 96 and half of the opening of the agglomerate adhesive membrane upward, thus opening the opening area at the lower end of the agglomerates and increasing the falling speed of the powder inside the adhesive membrane, thereby speeding up the agglomerate processing efficiency. It should be noted that the first support shaft 71 and the second support shaft 91 have the same structure.

[0041] Example 6 This embodiment is an improvement upon embodiment 5. For details, please refer to [link / reference]. Figures 1-7 The ring frame 4 also has a second piston cylinder 17 installed inside, and a first piston rod 18 is slidably connected inside the second piston cylinder 17. The first piston rod 18 and the second piston cylinder 17 are connected by a first spring 19. One end of the first piston rod 18 is connected to the upper end of the first cable 74. The ring frame 4 also has a first guide wheel 21 inside, and the first cable 74 abuts against the first guide wheel 21. A second hose 20 is installed at one end of the second piston cylinder 17, through which air is transmitted to the interior of the second piston cylinder 17. The ring frame 4 is also equipped with a third piston cylinder 22. The third piston cylinder 22 is slidably connected to a second piston column 23. The second piston column 23 and the third piston cylinder 22 are connected by a second spring 24. One end of the second spring 24 is connected to the upper end of the first cable 94. The ring frame 4 is also equipped with a second guide wheel 26. The first cable 94 abuts against the second guide wheel 26. A first hose 12 is also provided on one side of the second piston cylinder 17. The first hose 12 is connected to the interior of the second piston cylinder 17 and is located at the other end of the first piston column 18. The cutting device 8 also includes a first piston cylinder 11 disposed inside the filter plate 51. A disc 86 and a round shaft 84 are slidably connected inside the first piston cylinder 11. The round shaft 84 passes through the disc 86 and the first piston cylinder 11, and the disc 86 is slidably connected inside the first piston cylinder 11. The disc 86 and the first piston cylinder 11 are connected by a third spring 85.

[0042] Driver: According to Figure 5 As shown, air is transmitted to the interior of the second piston cylinder 17 through the second hose 20, thereby using the gas pressure to push the first piston rod 18 to slide to the right. This causes the first piston rod 18 to pull the first cable 74 to slide. The first guide wheel 21 limits and guides the first cable 74 to slide, thereby pulling the upper end of the striking plate 72 to swing to the left, thus realizing the rotation and swing of the striking plate 72 with the first support shaft 71 as the fulcrum. according to Figure 5 Air is transmitted to the interior of the third piston cylinder 22 through the third hose 25, thereby using the gas pressure to push the second piston rod 23 to slide to the left. This causes the second piston rod 23 to pull the first cable 94 to slide. The second guide wheel 26 limits and guides the first cable 94 to slide, thereby pulling the upper end of the vertical plate 92 to slide to the right, thus realizing the rotation and swing of the vertical plate 92 with the second support shaft 91 as the fulcrum.

[0043] It should be noted that the first piston rod 18 and the second piston cylinder 17 are connected by the first spring 19. When the first piston rod 18 slides, it will stretch the first spring 19. Subsequently, the second piston cylinder 17 is also provided with a first hose 12. When the first piston rod 18 slides past the first hose 12, the air on the left side of the first piston rod 18 will flow to the first hose 12. At this time, the air pressure on the left side of the first piston rod 18 will decrease. Therefore, the first spring 19 will pull the first piston rod 18 back to its original position. At this time, some air will enter the first hose 12 and flow into the interior of the first piston cylinder 11. This air will compress the disc 86 to slide to one side, thereby causing the disc 86 to push the round shaft rod 84 and the adjusting plate 81 to slide. This will cause the adjusting plate 81 to drive the motor 82 and the third clamp 83 to move, thereby changing the stirring range of the third clamp 83. It should be noted that a one-way valve is also installed inside the first hose 12; Furthermore, according to Figure 6 and Figure 7 As shown, when the first piston rod 18 continuously pulls one end of the first cable 74, the first cable 74 reciprocates to pull the striking plate 72 to rotate and beat the clumps. When the striking plate 72 beats, air flows from the inside of the second piston cylinder 17 to the first hose 12 and is transmitted to the disc 86. This achieves continuous beating and simultaneously changes the stirring range of the third clamp 83. The two work together to improve the stirring effect. The first piston cylinder 11 is also provided with a first hole 87 and a second hole 88, which are connected to each other. The inner diameter of the first hole 87 is larger than the inner diameter of the second hole 88. A sealing column 89 is slidably connected at the second hole 88. The sealing column 89 is connected to the first piston cylinder 11 by a return spring 15. A steel cable 13 is installed at one end of the sealing column 89, and one end of the steel cable 13 is connected to one end of the disc 86. A spring sheet 14 is also installed at the first hole 87, and a sealing post 89 is used to compress the spring sheet 14 to deform. One end of the first piston cylinder 11 is also equipped with a first hose 12, which is used to transmit air into the interior of the first piston cylinder 11. It should be noted that, according to Figure 7 As shown, when the air on the left side of the disc 86 pushes the disc 86 to slide, the disc 86 will pull the steel cable 13 and the second hole 88 to slide to the right. When the disc 86 is stopped, the steel cable 13 will pull the second hole 88 to squeeze the deformed spring 14, so that the second hole 88 passes the spring 14, and the air at the first hole 87 can flow to the second hole 88, thereby expelling the air at the disc 86. In this way, the third spring 85 pushes the disc 86 to reset, so that the disc 86 drives the round shaft 84 and the adjusting plate 81 to move to the initial position, thus realizing the increase and reset of the stirring range of the third chuck 83. When the disc 86 slides to the left and approaches the second hole 88, the disc 86 presses the second hole 88 to slide to the left, thereby deforming the second hole 88 by pressing the spring 14. This causes the second hole 88 to pass over the spring 14 and be inserted back into the interior of the second hole 88, thus sealing the second hole 88. In this way, a sealed space is formed on one side of the disc 86 again, which facilitates the next air pressure to push the disc 86 to slide.

[0044] Example 7 This embodiment is an improvement upon embodiment 6. For details, please refer to [link / reference]. Figures 1-8 The auxiliary device 5 also includes a ball 53 rotatably connected to the lower end of the stirring rod 3, and the lower end of the ball 53 is connected to the upper end of the filter plate 51. Arc-shaped plates 54 are also installed on both sides of the stirring rod 3, and the lower end of the arc-shaped plates 54 is connected to the upper end of the filter screen plate 51. The inner wall of the mixing tank 1 is also equipped with one-way teeth 55. The one-way teeth 55 are used to squeeze one end of the filter screen plate 51 to tilt, thereby tilting the clumped empty shell at the upper end of the filter screen plate 51 to the upper end of the support filter plate 57. The filter screen plate 51 is also used to rotate and rub the clumped empty shell at the upper end of the support filter plate 57.

[0045] according to Figure 8 As shown, after the powder inside the agglomerate is hollowed out, only a sticky membrane skin remains on the outer surface of the filter plate 51. Then, the first clamp 64 and the second clamp 96 are contracted to remove the sticky membrane skin. Then, the stirring rod 3 is driven to slide downward by the slide bolster 2. The stirring rod 3 drives the filter plate 51 and the sticky membrane skin to slide downward. When the filter plate 51 abuts against the one-way tooth 55, the filter plate 51 will squeeze one end of the filter plate 51 to tilt upward, thereby tilting the filter plate 51. Then, the sticky membrane skin at the upper end of the filter plate 51 slides down to the supporting filter plate 57. After the filter plate 51 passes the one-way tooth 55, the arc plate 54 pulls the filter plate 51 back to its original position, thereby turning the tilted filter plate 51 to a horizontal position. Then, the lower end face of the filter screen plate 51 is used to contact the sticky membrane skin scattered on the support filter plate 57. Then, when the stirring rod 3 drives the filter screen plate 51 to rotate, the filter screen plate 51 and the support filter plate 57 are rotated and ground to achieve the treatment of the sticky membrane skin. It should be noted that the mechanical principle of the one-way tooth 55 is the same as that of the ratchet. The one-way tooth 55 includes a short round shaft, one-way teeth, a baffle, and a return spring. The short round shaft is installed on the inner wall of the mixing tank 1. One end of the short round shaft is rotatably connected to the one-way tooth. The one-way tooth and the short round shaft are connected by the return spring. The baffle is set at the lower end of the one-way tooth. Thus, when the filter screen plate 51 slides upward, the filter screen plate 51 will push the one-way tooth 55 to slide upward. Therefore, when the filter screen plate 51 slides upward, the one-way tooth 55 will not affect the filter screen plate 51. Only when the filter screen plate 51 slides downward will its one-way tooth abut against the baffle, and then the one-way tooth will squeeze one end of the filter screen plate 51 to tilt downward.

[0046] Example 8 This embodiment is an improvement upon embodiment 7. For details, please refer to [link / reference]. Figures 1-11 The first clamp 64 includes a first bracket 28 connected to the lower end of the connecting plate 63. A first extension shaft 29 is installed at the lower end of the first bracket 28. The two ends of the first extension shaft 29 are rotatably connected to the first clamping plates 27. The two first clamping plates 27 are connected by a first torque spring 31. A first expansion airbag 30 is also installed inside the first bracket 28. The first expansion airbag 30 is used to expand and squeeze the upper end of the first clamping plate 27 to offset. The second clamp 96 includes a second bracket 34 connected to one end of the vertical plate 92. Two second protruding shafts 33 are installed at one end of the second bracket 34. A second clamping plate 32 is installed on the outer surface of the second protruding shaft 33. The second clamping plate 32 is connected to the second protruding shaft 33 by a second torque spring 35. A second expansion airbag 36 is also installed inside the second bracket 34. The second expansion airbag 36 is used to expand and squeeze the upper end of the second clamping plate 32 to offset. The third clamp 83 includes a third bracket 37 connected to the upper end of the output shaft of the vertical plate 92. The two ends of the third bracket 37 are equipped with third extension shafts 39. The outer surface of the third extension shafts 39 is equipped with a third clamping plate 38. The third clamping plate 38 and the third bracket 37 are connected by a third torque spring 40. The third bracket 37 is also equipped with a fourth expansion airbag 41. The fourth expansion airbag 41 is used to expand and squeeze the lower end of the third clamping plate 38 to offset.

[0047] according to Figure 9 , Figure 10 and Figure 11 As shown, the operating principle of the first clamp 64 is as follows: by inflating the first expansion airbag 30, the first expansion airbag 30 compresses the upper end of the first clamping plate 27. The first clamping plate 27 uses the first extension shaft 29 as a fulcrum, thereby allowing the lower end of the first clamping plate 27 to unfold, thus allowing the first clamping plate 27 inserted into the block to unfold. It should be noted that the first expansion airbag 30 is located at the first support 28. The first support 28 limits both ends of the first expansion airbag 30, thereby allowing the first expansion airbag 30 to expand to both sides, and thus allowing the first expansion airbag 30 to compress the first clamping plate 27 to unfold to the maximum extent. The operating principle of the second clamp 96 is as follows: by expanding the second expansion airbag 36, the expansion range of the second expansion airbag 36 is limited by the second bracket 34. The principle is the same as described above. The second expansion airbag 36 expands to both sides, thereby squeezing the upper end of the second clamping plate 32 to swing, thereby allowing the second clamping plate 32 to rotate around the second extension shaft 33 as the fulcrum, thereby allowing the two second clamping plates 32 to contract and clamp the adhesive membrane epidermis. The operation of the third clamp 83 is as follows: by expanding the fourth expansion airbag 41, the expansion range of the fourth expansion airbag 41 is limited by the third bracket 37. The principle is the same as described above. The fourth expansion airbag 41 expands to both sides, thereby squeezing the lower end of the third clamp 38 to swing, thereby allowing the third clamp 38 to rotate around the third extension shaft 39 as the fulcrum, and thus allowing the two third clamps 38 to converge and contract.

[0048] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0049] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A dissolving and stirring device for preparing a food preservative, characterized in that, include: Mixing tank (1); The slide (2) is connected at one end to the mixing tank (1). The slide (2) is also equipped with a stirring rod (3). The stirring rod (3) is driven by the screw inside the slide (2) to insert into the mixing tank (1). A circular frame (4) is installed at the upper opening of the mixing tank (1). A processing device (6) is slidably connected to the lower end of the circular frame (4). The processing device (6) is used to clamp the clumps. Auxiliary device (5), the upper end of which is connected to the lower end of the stirring rod (3), and the auxiliary device (5) collects the clumps inside the stirring tank (1); The auxiliary device (5) includes a filter plate (51) and a storage cavity (52). The upper end of the filter plate (51) is connected to the lower end of the stirring rod (3). The upper end of the filter plate (51) is also provided with a storage cavity (52) to collect the clumps. A cutting device (8) is installed in the storage cavity (52). The cutting device (8) is inserted into the inside of the agglomerate and rotated to remove the powder inside the agglomerate. Spray hole (10), the spray hole (10) is set on the inner wall of the mixing tank (1), and the powder falling into the agglomeration is blown away by the mixing tank (1).

2. The dissolving and stirring equipment for preparing food preservatives according to claim 1, characterized in that: The processing device (6) includes a sliding plate (61) slidably connected to the lower end of the ring frame (4). The lower end of the sliding plate (61) is connected to an adjusting airbag (62). The lower end of the adjusting airbag (62) is connected to a connecting plate (63). The lower end of the connecting plate (63) is equipped with a first clamp (64). The first clamp (64) is inserted into the block and unfolded to clamp the block. The regulating airbag (62) has a support spring installed inside.

3. The dissolving and stirring equipment for preparing food preservatives according to claim 2, characterized in that: It also includes a striking device (7), which includes a striking plate (72) slidably connected to the lower end of the ring frame (4). One end of the striking plate (72) is provided with a first groove (73), and one end of the sliding plate (61) is equipped with a first support shaft (71). The first support shaft (71) is slidably connected to the inside of the first groove (73). The upper end of the striking plate (72) is connected to a first cable (74), and the striking plate (72) rotates and swings about the first support shaft (71) as the fulcrum. The other end of the striking plate (72) is also equipped with a first counterweight (75).

4. The dissolving and stirring equipment for preparing food preservatives according to claim 3, characterized in that: The cutting device (8) includes an adjustment plate (81) disposed inside the storage cavity (52). The upper end of the adjustment plate (81) is connected to a motor (82), and the upper end of the motor (82) is connected to a third clamp (83). The motor (82) is used to drive the third clamp (83) to rotate, and the third clamp (83) is used to insert into the interior of the block. The third clamp (83) is controlled to open and close to cut the block and form an opening at the lower end of the block.

5. The dissolving and stirring equipment for preparing food preservatives according to claim 4, characterized in that: It also includes a tearing device (9), which includes a vertical plate (92) slidably connected to the lower end of the ring frame (4), a second groove (93) is provided at one end of the vertical plate (92), and a second support shaft (91) is installed at the other end of the sliding plate (61), and the second support shaft (91) is slidably connected to the inside of the second groove (93); The upper end of the vertical plate (92) is connected to a first cable (94), and the vertical plate (92) rotates and swings with the second support shaft (91) as the fulcrum. The other end of the vertical plate (92) is also equipped with a second counterweight (95), one end of which is connected to a second clamp (96), which is used to clamp one end of the block.

6. The dissolving and stirring equipment for preparing food preservatives according to claim 5, characterized in that: The ring frame (4) is also equipped with a second piston cylinder (17), and a first piston column (18) is slidably connected inside the second piston cylinder (17). The first piston column (18) and the second piston cylinder (17) are connected by a first spring (19). One end of the first piston column (18) is connected to the upper end of the first cable (74). The ring frame (4) is also equipped with a first guide wheel (21), and the first cable (74) abuts against the first guide wheel (21). A second hose (20) is installed at one end of the second piston cylinder (17) to transmit air into the interior of the second piston cylinder (17) through the second hose (20); The ring frame (4) is also equipped with a third piston cylinder (22), and a second piston column (23) is slidably connected inside the third piston cylinder (22). The second piston column (23) and the third piston cylinder (22) are connected by a second spring (24). One end of the second spring (24) is connected to the upper end of the first cable (94). The ring frame (4) is also equipped with a second guide wheel (26), and the first cable (94) abuts against the second guide wheel (26).

7. The dissolving and stirring equipment for preparing food preservatives according to claim 6, characterized in that: A first hose (12) is also provided on one side of the second piston cylinder (17). The first hose (12) communicates with the interior of the second piston cylinder (17). The first hose (12) is located at the other end of the first piston rod (18). The cutting device (8) further includes a first piston cylinder (11) disposed inside the filter plate (51). A disc (86) and a round shaft (84) are slidably connected inside the first piston cylinder (11). The round shaft (84) passes through the disc (86) and the first piston cylinder (11). The disc (86) is slidably connected inside the first piston cylinder (11). The disc (86) and the first piston cylinder (11) are connected by a third spring (85).

8. The dissolving and stirring equipment for preparing food preservatives according to claim 7, characterized in that: The first piston cylinder (11) is also provided with a first hole (87) and a second hole (88) inside, the first hole (87) and the second hole (88) are connected, and the inner diameter of the first hole (87) is larger than the inner diameter of the second hole (88); A sealing column (89) is slidably connected at the second hole (88). The sealing column (89) is connected to the first piston cylinder (11) by a return spring (15). A steel cable (13) is installed at one end of the sealing column (89). One end of the steel cable (13) is connected to one end of the disc (86). A spring sheet (14) is also installed at the first hole (87), and the sealing post (89) is used to compress the spring sheet (14) to deform. One end of the first piston cylinder (11) is also equipped with a first hose (12), which is used to transmit air into the interior of the first piston cylinder (11).

9. The dissolving and stirring equipment for preparing food preservatives according to claim 8, characterized in that: The auxiliary device (5) also includes a ball (53) rotatably connected to the lower end of the stirring rod (3), the lower end of the ball (53) being connected to the upper end of the filter plate (51); Arc-shaped plates (54) are also installed on both sides of the stirring rod (3), and the lower end of the arc-shaped plates (54) is connected to the upper end of the filter plate (51). The inner wall of the mixing tank (1) is also equipped with one-way teeth (55), which are used to squeeze one end of the filter plate (51) to tilt, thereby causing the clumped shell at the upper end of the filter plate (51) to slide down to the upper end of the support filter plate (57). The filter plate (51) is also used to rotate and rub the clumped shell at the upper end of the support filter plate (57).

10. The dissolving and stirring equipment for preparing food preservatives according to claim 5, characterized in that: The first clamp (64) includes a first bracket (28) connected to the lower end of the connecting plate (63). A first extension shaft (29) is installed at the lower end of the first bracket (28). The two ends of the first extension shaft (29) are rotatably connected to the first clamping plate (27). The two first clamping plates (27) are connected by a first torque spring (31). A first expansion airbag (30) is also installed inside the first bracket (28). The first expansion airbag (30) is used to expand and squeeze the upper end of the first clamping plate (27) to offset. The second clamp (96) includes a second bracket (34) connected to one end of the vertical plate (92). Two second extension shafts (33) are installed at one end of the second bracket (34). A second clamping plate (32) is installed on the outer surface of the second extension shaft (33). The second clamping plate (32) and the second extension shaft (33) are connected by a second torque spring (35). A second expansion airbag (36) is also installed inside the second bracket (34). The second expansion airbag (36) is used to expand and squeeze the upper end of the second clamping plate (32) to offset. The third clamp (83) includes a third bracket (37) connected to the upper end of the output shaft of the vertical plate (92). The two ends of the third bracket (37) are equipped with a third extension shaft (39). The outer surface of the third extension shaft (39) is equipped with a third clamping plate (38). The third clamping plate (38) and the third bracket (37) are connected by a third torque spring (40). The interior of the third bracket (37) is also equipped with a fourth expansion airbag (41). The fourth expansion airbag (41) is used to expand and squeeze the lower end of the third clamping plate (38) to offset.