Subpackaging equipment with spiral mixing and feeding functions

The screw mixing feeding device addresses inefficiencies in powder and granular material distribution by integrating dual grinding and mixing components, improving efficiency and reducing dust pollution through enhanced grinding and mixing capabilities.

CN120308447APending Publication Date: 2025-07-15SHIJIAZHUANG TIANMU ANIMAL PHARM CO LTD
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Patent Information

Application Number
CN202510734178.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-04
Publication Date
2025-07-15

AI Technical Summary

Technical Problem

Traditional spiral loading and packing equipment is not convenient for simultaneous grinding and mixing of multiple raw materials, which affects the grinding and mixing efficiency of the device.

Method used

A packaged device with spiral mixed loading function is designed, including grinding components, filtering components and mixing components. It uses double grinding grooves and double grinding rollers to combine with T-shaped sliders and electric telescopic rod to drive the vibration ball to realize multi-stage filtration and mixing of raw materials, and stirring and loading with a twisted dragon.

Benefits of technology

The grinding capacity and mixing efficiency of the device are improved, the filter components are prevented from being blocked, the raw materials are fully mixed and loaded smoothly, and the overall working efficiency is improved.

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Abstract

The invention discloses sub-packaging equipment with a spiral mixing and feeding function, relates to the technical field of sub-packaging equipment, solves the technical problem of inconvenience in grinding, and comprises a sub-packaging table, a stand column with a sub-packaging hopper is fixedly mounted on the top surface of the sub-packaging table, and a mixing assembly with a mixing box for spiral feeding is arranged on the stand column. A grinding assembly is arranged at the top of the mixing box; the grinding assembly comprises a grinding box fixedly mounted at the top of the mixing box, two grinding grooves are formed in the grinding box, a movable T-shaped sliding block is mounted between the two grinding grooves, and two mounting plates are fixedly mounted at the positions, close to one sides of the grinding grooves, of the T-shaped sliding block; two grinding rollers are rotationally mounted on the side, away from the T-shaped sliding block, of the mounting plate, and a shifting plate is mounted between the two grinding rollers; and simultaneous grinding of double rollers and double materials is facilitated, the grinding capacity of the device is improved, and the grinding working efficiency of the device is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of packaging equipment, and in particular to a packaging equipment with a spiral mixing and feeding function. Background Art

[0002] The packaging mechanism is to quantitatively pour the product (mainly liquid and solid) from the storage equipment into various shapes of packaging (bottles, cans, bags, etc.). Traditionally, solid materials such as powders and granules are manually operated. This method has high labor intensity and low production efficiency, and will produce a lot of dust pollution during the packaging process. In recent years, screw feeders have also been used to complete this operation.

[0003] However, before the spiral feeding and packaging equipment starts feeding and packaging, it is inconvenient to grind multiple raw materials at the same time, it is inconvenient to turn the raw materials over during the grinding process, and it is inconvenient to mix the raw materials during the feeding process, which affects the grinding capacity of the device and the working efficiency of the grinding device. Therefore, based on the technical defects, a packaging equipment with a spiral mixing feeding function that can solve the above problems is proposed. Summary of the invention

[0004] The purpose of the present invention is to provide a packaging device with a spiral mixing and feeding function to solve the following technical problems: It is not convenient to grind a variety of raw materials at the same time, it is not convenient to turn the raw materials during the grinding process, and it is not convenient to mix the raw materials during the feeding process, which affects the grinding capacity of the device and the working efficiency of the grinding device.

[0005] The purpose of the present invention can be achieved through the following technical solutions: A packing device with spiral mixing and feeding function, comprising a packing platform, a column with a packing bucket is fixedly mounted on the top surface of the packing platform, a mixing assembly with a mixing box for spiral feeding is arranged on the column, and a grinding assembly is arranged on the top of the mixing box; The grinding assembly includes a grinding box fixedly installed on the top of the mixing box, two grinding grooves are provided in the grinding box, a movable T-shaped slider is installed between the two grinding grooves, two mounting plates are fixedly installed on the position of the T-shaped slider close to one side of the grinding groove, two grinding rollers are rotatably installed on the side of the mounting plate away from the T-shaped slider, a toggle plate is installed between the two grinding rollers, sliding rods with toggle plates are slidably installed on the inner walls at both ends of the grinding groove, a connecting frame is fixedly installed on the end of the sliding rod away from the toggle plate, the grinding groove is provided with a slide groove, and a grinding plate is slidably installed in the grinding box.

[0006] As a further solution of the present invention: a reciprocating groove is opened between the two grinding grooves, a reciprocating screw is rotatably installed in the reciprocating groove, the T-shaped slider is threadedly installed on the reciprocating screw, a first motor is fixedly installed on the side of the grinding box close to the filling bucket, and the output end of the first motor slides through the reciprocating groove and is fixedly installed on the reciprocating screw.

[0007] As a further solution of the present invention: the toggle plate is fixedly mounted on the side of the mounting plate away from the T-shaped slider, and two scraper plates are fixedly mounted on the side of the toggle plate away from the grinding plate, and the side of the scraper plate away from the toggle plate is slidably fitted with the outer surface of the grinding roller.

[0008] As a further solution of the present invention: fixed blocks are fixedly installed on both sides of the grinding box, first electric telescopic rods are fixedly installed on both sides of the fixed blocks, a connecting plate is fixedly installed on one end of the first electric telescopic rod away from the fixed block, and the grinding plate is fixedly installed on the connecting plate on the side away from the grinding box.

[0009] As a further solution of the present invention: the grinding plate is tightly fitted with the grinding roller, a guide plate is fixedly mounted on the side of the material-moving plate away from the grinding plate, and the connecting frame is tightly fitted on the outer surface of the grinding box.

[0010] As a further solution of the present invention: a filter assembly is arranged in the grinding box, and the filter assembly includes a first filter plate with a protective plate which is slidably and tiltably installed in the grinding box, a plurality of limit strips are fixedly installed on one side of the first filter plate close to the grinding groove, a second filter plate is rotatably installed on the bottom surface of the other end of the first filter plate, a rectangular through hole is opened on the inner bottom wall of the reciprocating groove, a second electric telescopic rod with a vibrating ball is slidably installed in the rectangular through hole, an end of the second electric telescopic rod away from the first filter plate is fixedly installed on the T-shaped slider, and the vibrating ball is fixedly installed on one end of the second electric telescopic rod close to the limit strip.

[0011] As a further solution of the present invention: an elastic groove is opened on the inner wall of the grinding box close to the first filter plate, a moving block is slidably installed in the elastic groove, a spring is fixedly installed on one side of the moving block close to the second filter plate, and a guide rod is slidably installed on the moving block.

[0012] As a further solution of the present invention: both ends of the guide rod are fixedly mounted on the inner wall of the elastic groove, one end of the spring away from the moving block is fixedly mounted on the inner wall of the elastic groove, the spring is nested and mounted on the outer surface of the guide rod, and the moving block is rotatably mounted on the first filter plate on the side close to the protective plate.

[0013] As a further solution of the present invention: The mixing component includes a screw feeding barrel with a third motor fixedly installed at one end of the column away from the dispensing table, the mixing box is connected and installed at one end of the screw feeding barrel close to the dispensing table, a auger is rotatably installed in the mixing box, and a second motor is fixedly installed on one side of the mixing box away from the screw feeding barrel.

[0014] As a further solution of the present invention: The output end of the second motor slidably penetrates through the mixing box and is fixedly installed on the rotating shaft of the auger, mixing holes are formed in the auger, and the output end of the third motor is fixedly installed at one end of the screw feeding barrel close to the dispensing table.

[0015] Advantages of the present invention: (1) The double grinding grooves and double grinding rollers in the grinding component cooperate with each other for grinding, which is convenient for simultaneous grinding of two rollers and two materials, and is also convenient for turning and feeding operations during grinding, contributing to the full grinding of the device, being beneficial to improving the grinding capacity of the device and the working efficiency of grinding of the device; (2) The second filter plate in the filtering component cooperates with the first filter plate to facilitate multi-stage filtering of the ground raw materials, and is also convenient for mixing two raw materials. The T-shaped slider drives the vibrating ball to slide on the limiting strip through the second electric telescopic rod, which is convenient for vibrating the first filter plate, playing a role in preventing blockage of the first filter plate by vibration, being beneficial to improving the filtering capacity of the device, the mixing capacity of the device, and the vibration anti-blocking effect of the device; (3) The mixing holes in the mixing component play a role in assisting the auger to stir the filtered raw materials, facilitating further mixing and stirring operations, facilitating full mixing operations, and convenient feeding operations, being beneficial to improving the mixing and stirring capacity of the device and the working efficiency of feeding of the device. Description of the Drawings

[0016] The following further illustrates the present invention with reference to the drawings.

[0017] Figure 1 is the overall structural schematic diagram of a dispensing device with a screw mixing and feeding function according to the present invention; Figure 2 is Figure 1 the enlarged structural schematic diagram at A in Figure 3 is Figure 1 the enlarged structural schematic diagram at B in Figure 4 is the internal structural schematic diagram of a dispensing device with a screw mixing and feeding function according to the present invention; Figure 5 is the side view structural schematic diagram of a dispensing device with a screw mixing and feeding function according to the present invention; Figure 6 is Figure 5 The enlarged structural schematic diagram at position C in Figure 7 is the bottom view structural schematic diagram of a packaging equipment with a spiral mixing and feeding function according to the present invention; Figure 8 is Figure 7 The enlarged structural schematic diagram at position D in

[0018] In the figure: 1, packaging table; 2, column; 3, packaging hopper; 4, grinding assembly; 41, grinding box; 42, grinding groove; 43, reciprocating groove; 44, reciprocating screw; 45, T-shaped slider; 46, mounting plate; 47, grinding roller; 48, dialing plate; 49, scraping plate; 410, first motor; 411, sliding rod; 412, feeding plate; 413, guiding plate; 414, connecting frame; 415, fixing block; 416, first electric telescopic rod; 417, connecting plate; 418, grinding plate; 419, sliding groove; 5, filtering assembly; 51, first filter plate; 52, second filter plate; 53, elastic groove; 54, moving block; 55, guiding rod; 56, spring; 57, rectangular through hole; 58, second electric telescopic rod; 59, vibrating ball; 510, protective plate; 511, limiting strip; 6, mixing assembly; 61, mixing box; 62, second motor; 63, auger; 64, mixing hole; 65, spiral feeding cylinder; 66, third motor. Detailed implementation manners

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0020] Please refer to Figures 1-8 as shown, the present invention is a packaging equipment with a spiral mixing and feeding function, including a packaging table 1. A column 2 with a packaging hopper 3 is fixedly installed on the top surface of the packaging table 1. Shaman is fixedly installed at one end of the column 2 away from the packaging table 1. A mixing assembly 6 for spiral feeding with a mixing box 61 is provided on the column 2. A grinding assembly 4 is provided on the top of the mixing box 61; The grinding assembly 4 includes a grinding box 41 fixedly mounted on the top of the mixing box 61, and two grinding grooves 42 are provided in the grinding box 41. The grinding grooves 42 are used to store two raw materials to be packaged with the aid of a grinding plate 418. A movable T-shaped slider 45 is installed between the two grinding grooves 42. Two mounting plates 46 are fixedly mounted on the position of the T-shaped slider 45 close to one side of the grinding groove 42. The mounting plate 46 slides on the inner wall of the grinding groove 42. Two grinding rollers 47 are rotatably mounted on the side of the mounting plate 46 away from the T-shaped slider 45. The grinding rollers 47 are on the grinding plate 418. The two grinding rollers 47 reciprocate and roll on the grinding plate 418 to grind the raw materials. A toggle plate 48 is installed between the two grinding rollers 47. The toggle plate 48 is fixedly installed on the side of the mounting plate 46 away from the T-shaped slider 45. The toggle plate 48 is convenient for turning over the raw materials ground on the grinding plate 418 during the reciprocating motion of the T-shaped slider 45. After turning over, it is convenient for full grinding operation. Two scraper plates 49 are fixedly installed on the side of the toggle plate 48 away from the grinding plate 418. The side of the scraper plate 49 away from the toggle plate 48 is slidably fitted with the outer surface of the grinding roller 47, and the scraper plate 49 is convenient for turning over the raw materials ground on the grinding plate 418. The grinding raw materials remaining on the roller 47 are scraped off to avoid the situation where the grinding raw materials remain on the grinding roller 47 as much as possible. The inner walls at both ends of the grinding groove 42 are slidably installed with slide bars 411 with material stripping plates 412. The material stripping plates 412 are slidably installed in the grinding groove 42. The material stripping plates 412 are fixedly installed on one end of the slide bar 411 close to the material stripping plates 412. The two material stripping plates 412 are connected by the connecting frame 414, so that one of the material stripping plates 412 is squeezed by the grinding roller 47 and then driven by the connecting frame 414 through the slide bar 411 to move the material stripping plates 412 to the grinding plate 418. The raw materials can be moved to facilitate grinding of the raw materials at the corner of the grinding groove 42. A guide plate 413 is fixedly installed on the side of the material-shifting plate 412 away from the grinding plate 418. The guide plate 413 facilitates the auxiliary raw materials to be poured into the grinding groove 42. A connecting frame 414 is fixedly installed on the end of the slide rod 411 away from the material-shifting plate 412. The connecting frame 414 fits tightly on the outer surface of the grinding box 41. The grinding groove 42 is provided with a slide groove 419. A grinding plate 418 is slidably installed in the grinding box 41. The grinding plate 418 fits tightly with the grinding roller 47, which is beneficial to improving the grinding capacity of the device.

[0021] A reciprocating groove 43 is formed between the two grinding grooves 42. A reciprocating screw 44 is rotatably installed in the reciprocating groove 43. A T-shaped slider 45 is threadedly installed through the reciprocating screw 44. The reciprocating screw 44 facilitates driving the T-shaped slider 45 to reciprocate in the reciprocating groove 43, so that the T-shaped slider 45 drives the mounting plate 46 to slide in the grinding groove 42, and the mounting plate 46 drives the grinding roller 47 to roll and grind in the grinding groove 42. A first motor 410 is fixedly installed on one side of the grinding box 41 close to the dispensing hopper 3. The output end of the first motor 410 slidably penetrates through the reciprocating groove 43 and is fixedly installed on the reciprocating screw 44. Fixing blocks 415 are fixedly installed on both sides of the grinding box 41. First electric telescopic rods 416 are fixedly installed on both sides of the fixing blocks 415. One end of the first electric telescopic rod 416 away from the fixing block 415 is fixedly installed with a connecting plate 417. The side of the grinding plate 418 away from the grinding box 41 is fixedly installed on the connecting plate 417. The first electric telescopic rod 416 drives the grinding plate 418 to be pulled out of the sliding groove 419 through the connecting plate 417, which facilitates the subsequent grinding operation of the raw materials after grinding, facilitates the simultaneous grinding of double rollers and double materials, and facilitates the turning and feeding operation during the grinding process, helps the device to be fully ground, is beneficial to improving the grinding ability of the device, and is beneficial to improving the working efficiency of the device grinding.

[0022] Please refer to Figures 4-8As shown in the figure, a filter assembly 5 is provided inside the grinding box 41. The filter assembly 5 includes a first filter plate 51 that is slidably and obliquely installed inside the grinding box 41 and is provided with a protective plate 510. The first filter plate 51 slides on the inner wall of the grinding box 41. The protective plate 510 is fixedly installed on both sides of the first filter plate 51. A plurality of limiting strips 511 are fixedly installed on one side of the first filter plate 51 close to the grinding groove 42. The limiting strips 511 are installed in a linearly arranged manner below the vibrating balls 59. The bottom surface of the other end of the first filter plate 51 is rotatably installed with a second filter plate 52. The size of the filter holes on the first filter plate 51 is larger than the size of the filter holes on the second filter plate 52, which is convenient for performing multi-stage filtering operations on the ground raw materials. The two raw materials simultaneously fall on the first filter plate 51 and the second filter plate 52, which not only plays a filtering role but also plays a role in mixing the raw materials. A rectangular through hole 57 is opened on the inner bottom wall of the reciprocating groove 43. A second electric telescopic rod 58 with a vibrating ball 59 is slidably installed in the rectangular through hole 57. The end of the second electric telescopic rod 58 far from the first filter plate 51 is fixedly installed on the T-shaped slider 45. The vibrating ball 59 is fixedly installed on the end of the second electric telescopic rod 58 close to the limiting strip 511. The vibrating ball 59 slides on the limiting strip 511 under the action of the second electric telescopic rod 58. An elastic groove 53 is opened on the inner wall of the grinding box 41 close to the first filter plate 51. A moving block 54 is slidably installed in the elastic groove 53. A spring 56 is fixedly installed on one side of the moving block 54 close to the second filter plate 52. The spring 56 plays a role in driving the first filter plate 51 to elastically reset. A guide rod 55 is slidably penetrated through the moving block 54. Both ends of the guide rod 55 are fixedly installed on the inner wall of the elastic groove 53. The end of the spring 56 far from the moving block 54 is fixedly installed on the inner wall of the elastic groove 53. The spring 56 is nested on the outer surface of the guide rod 55. The guide rod 55 plays a role in guiding the moving block 54. One side of the moving block 54 close to the protective plate 510 is rotatably installed on the first filter plate 51, which is convenient for performing multi-stage filtering on the ground raw materials and is also convenient for mixing the two raw materials. The T-shaped slider 45 drives the vibrating ball 59 to slide on the limiting strip 511 through the second electric telescopic rod 58, which is convenient for vibrating the first filter plate 51 and plays a role in preventing blockage of the first filter plate 51 by vibration, which is beneficial to improving the filtering ability of the device, beneficial to improving the mixing ability of the device, and beneficial to improving the vibration anti-blocking effect of the device.

[0023] Please refer to Figure 4As shown in the figure, the mixing component 6 includes a spiral feeding cylinder 65 with a third motor 66 fixedly installed at one end of the column 2 away from the sub-packaging table 1. The output end of the third motor 66 is fixedly installed at one end of the spiral feeding cylinder 65 close to the sub-packaging table 1. The output end of the third motor 66 slidably penetrates through the spiral feeding blade installed in the spiral feeding cylinder 65, which is convenient for the spiral feeding operation. The mixing box 61 is connected and installed at one end of the spiral feeding cylinder 65 close to the sub-packaging table 1. A auger 63 is rotatably installed in the mixing box 61. A second motor 62 is fixedly installed on one side of the mixing box 61 away from the spiral feeding cylinder 65. The output end of the second motor 62 slidably penetrates through the mixing box 61 and is fixedly installed on the rotating shaft of the auger 63. The second motor 62 drives the auger 63 to facilitate the stirring and mixing operation of the filtered raw materials in the mixing box 61. The auger 63 not only plays the role of stirring and mixing, but also plays the role of feeding the spiral feeding cylinder 65. Mixing holes 64 are formed in the auger 63, and the mixing holes 64 play the role of assisting the auger 63 in stirring the filtered raw materials, which is convenient for further mixing and stirring operations, convenient for sufficient mixing operations, convenient for feeding operations, beneficial to improving the stirring and mixing ability of the device, and beneficial to improving the working efficiency of the device's feeding.

[0024] Working principle of the present invention: When using the device, first pour the raw materials into the grinding tank 42 under the guidance of the guiding plate 413, and then start the first motor 410, so that the output end of the first motor 410 drives the reciprocating screw 44 to slide in the reciprocating groove 43. At the same time, the reciprocating screw 44 drives the T-shaped slider 45 to reciprocate in the reciprocating groove 43. At the same time, the T-shaped slider 45 drives the mounting plate 46 to slide in the grinding tank 42. At the same time, the mounting plate 46 drives the grinding roller 47 to roll on the grinding plate 418. At the same time, the mounting plate 46 drives the stirring plate 48 to turn the ground on the grinding plate 418, so that the stirring plate 48 drives the scraping plate 49 to scrape on the grinding roller 47. When the grinding roller 47 moves to one end of the grinding tank 42, the grinding roller 47 pushes one of the feeding plates 412 to drive one of the sliding rods 411 to slide on the grinding box 41 when rolling the raw materials. At the same time, one of the sliding rods 411 drives the other sliding rod 411 to slide at the other end of the grinding tank 42 through the connecting frame 414. At the same time, the other sliding rod 411 drives the other feeding plate 412 to push and feed on the grinding plate 418. Repeat the above operations repeatedly for grinding. After grinding, start the first electric telescopic rod 416, so that the first electric telescopic rod 416 drives the grinding plate 418 to slide in the sliding groove 419 through the connecting plate 417, pull out the grinding plate 418 from the grinding tank 42, and at the same time make the ground raw materials fall onto the first filter plate 51 for filtering. The raw materials passing through the first filter plate 51 are further filtered through the second filter plate 52, so that the filtered raw materials enter the mixing tank 61. At the same time, start the second electric telescopic rod 58, so that the second electric telescopic rod 58 drives the vibrating ball 59 to move onto the first filter plate 51. At the same time, the T-shaped slider 45 drives the second electric telescopic rod 58 to slide in the rectangular through hole 57. At the same time, the second electric telescopic rod 58 drives the vibrating ball 59 to slide on the limiting strip 511. When the vibrating ball 59 crosses the limiting strip 511, the vibrating ball 59 squeezes the second filter plate 52, so that the second filter plate 52 slides in the grinding box 41. At the same time, the first filter plate 51 drives the moving block 54 to slide in the elastic groove 53. At the same time, the moving block 54 slides on the guiding rod 55 to squeeze the spring 56, so that the spring 56 is in a compressed state, and the elastic reset force of the spring drives the second filter plate 52 to reset and vibrate for anti-blocking. Then start the second motor 62, so that the output end of the second motor 62 drives the auger 63 to rotate in the mixing tank 61. At the same time, start the third motor 66 to drive the spiral feeding cylinder 65 to transport the well-mixed raw materials in the mixing tank 61 to the packaging hopper 3, and the raw materials are packaged through the packaging hopper 3.

[0025] The above has described an embodiment of the present invention in detail, but the content described is only the preferred embodiment of the present invention and cannot be considered as used to limit the scope of implementation of the present invention. All equivalent changes and improvements made according to the scope of the application of the present invention should still fall within the scope covered by the patent of the present invention.

Claims

1. A dispensing device with a spiral mixing and feeding function, comprising a dispensing table (1), characterized in that: A column (2) with a dispensing hopper (3) is fixedly installed on the top surface of the dispensing table (1). A mixing assembly (6) for screw feeding with a mixing box (61) is arranged on the column (2). A grinding assembly (4) is arranged on the top of the mixing box (61). The grinding assembly (4) includes a grinding box (41) fixedly installed on the top of the mixing box (61). Two grinding grooves (42) are formed in the grinding box (41). A movable T-shaped slider (45) is installed between the two grinding grooves (42). Two mounting plates (46) are fixedly installed at a position on one side of the T-shaped slider (45) close to the grinding groove (42). Two grinding rollers (47) are rotatably installed on one side of the mounting plate (46) away from the T-shaped slider (45). A dialing plate (48) is installed between the two grinding rollers (47). A slide rod (411) with a material pushing plate (412) is slidably installed on the inner walls at both ends of the grinding groove (42). A connecting frame (414) is fixedly installed at one end of the slide rod (411) away from the material pushing plate (412). A chute (419) is formed in the grinding groove (42). A grinding plate (418) is slidably installed in the grinding box (41).

2. The dispensing device with a spiral mixing and feeding function according to claim 1, characterized in that: A reciprocating groove (43) is formed between the two grinding grooves (42). A reciprocating screw (44) is rotatably installed in the reciprocating groove (43). The T-shaped slider (45) is threadedly installed through the reciprocating screw (44). A first motor (410) is fixedly installed on one side of the grinding box (41) close to the dispensing hopper (3). The output end of the first motor (410) slidably penetrates through the reciprocating groove (43) and is fixedly installed on the reciprocating screw (44).

3. The dispensing device with a spiral mixing and feeding function according to claim 1, characterized in that: The dialing plate (48) is fixedly installed on one side of the mounting plate (46) away from the T-shaped slider (45). Two scraping plates (49) are fixedly installed on one side of the dialing plate (48) away from the grinding plate (418). The side of the scraping plate (49) away from the dialing plate (48) is in sliding fit with the outer surface of the grinding roller (47).

4. A dispensing device with a spiral mixing and feeding function according to claim 1, characterized in that: Fixed blocks (415) are fixedly installed on both sides of the grinding box (41). First electric telescopic rods (416) are fixedly installed on both sides of the fixed blocks (415). A connecting plate (417) is fixedly installed at one end of the first electric telescopic rod (416) away from the fixed block (415). The side of the grinding plate (418) away from the grinding box (41) is fixedly installed on the connecting plate (417).

5. The dispensing device with a spiral mixing and feeding function according to claim 4, characterized in that: The grinding plate (418) is in close fit with the grinding roller (47). A guide plate (413) is fixedly installed on one side of the material pushing plate (412) away from the grinding plate (418). The connecting frame (414) is in close fit with the outer surface of the grinding box (41).

6. The dispensing device with a spiral mixing and feeding function according to claim 2, characterized in that: A filtering component (5) is arranged in the grinding box (41). The filtering component (5) includes a first filter plate (51) which is slidably and obliquely installed in the grinding box (41) and is provided with a protective plate (510). A plurality of limiting strips (511) are fixedly installed on one side of the first filter plate (51) close to the grinding groove (42). The bottom surface of the other end of the first filter plate (51) is rotatably installed with a second filter plate (52). A rectangular through hole (57) is formed in the inner bottom wall of the reciprocating groove (43). A second electric telescopic rod (58) with a vibration ball (59) is slidably installed in the rectangular through hole (57). One end of the second electric telescopic rod (58) far from the first filter plate (51) is fixedly installed on the T-shaped slider (45). The vibration ball (59) is fixedly installed on one end of the second electric telescopic rod (58) close to the limiting strip (511).

7. A dispensing device with a spiral mixing and feeding function according to claim 6, characterized in that: An elastic groove (53) is formed in the inner wall of the grinding box (41) close to the first filter plate (51). A moving block (54) is slidably installed in the elastic groove (53). A spring (56) is fixedly installed on one side of the moving block (54) close to the second filter plate (52). A guide rod (55) is slidably installed through the moving block (54).

8. A dispensing device with a spiral mixing and feeding function according to claim 7, characterized in that: Both ends of the guide rod (55) are fixedly installed on the inner wall of the elastic groove (53). One end of the spring (56) far from the moving block (54) is fixedly installed on the inner wall of the elastic groove (53). The spring (56) is nested on the outer surface of the guide rod (55). One side of the moving block (54) close to the protective plate (510) is rotatably installed on the first filter plate (51).

9. The dispensing device with a spiral mixing and feeding function according to claim 1, characterized in that: The mixing component (6) includes a spiral feeding cylinder (65) with a third motor (66) fixedly installed at one end of the column (2) far from the dispensing table (1). The mixing box (61) is communicated and installed at one end of the spiral feeding cylinder (65) close to the dispensing table (1). An auger (63) is rotatably installed in the mixing box (61). A second motor (62) is fixedly installed on one side of the mixing box (61) far from the spiral feeding cylinder (65).

10. The dispensing device with a spiral mixing and feeding function according to claim 9, characterized in that: The output end of the second motor (62) slidably penetrates through the mixing box (61) and is fixedly installed on the rotating shaft of the auger (63). Mixing holes (64) are formed in the auger (63). The output end of the third motor (66) is fixedly installed at one end of the spiral feeding cylinder (65) close to the dispensing table (1).