Production process of solid seasoning and crushing and dust removing equipment thereof

By designing a crushing and dust removal equipment, using tool mechanisms and dust removal channels to chop the dried vegetables and remove fine crushes, the problem of difficult removal of fine powder during the crushing of dried plum vegetables is solved, and uniform crushing and efficient dust removal of dried vegetables is achieved, and production efficiency and product quality are improved.

CN120001511APending Publication Date: 2025-05-16ZHEJIANG CAIWEIJU AGRI DEV CO LTD
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Patent Information

Application Number
CN202510100717.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-05-16

AI Technical Summary

Technical Problem

During the crushing process of dried plum vegetables, fine powder is produced and difficult to effectively remove, which affects the use value of dried vegetable powder after crushing, and there are challenges in recycling and processing of fine powder waste generated during crushing.

Method used

A crushing and dust removal equipment is designed, using tool mechanism and dust removal channel to chop the dried vegetables and remove fine crushes, collect the fine powder through the suction force generated by the blower shell, and clean the dust removal bag through the cleaning mechanism to extend the use time of the dust removal bag.

Benefits of technology

It realizes even crushing of dried vegetables and effective removal of fine powder, improves the quality and use value of crushed dried vegetables powder, extends the service life of dust bags, and improves production efficiency.

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Abstract

The invention relates to smashing and dust removing equipment which comprises a smashing supporting shell and a dust removing supporting shell arranged on one side of the smashing supporting shell, a cutter mechanism is arranged in the smashing supporting shell, a material collecting mechanism is arranged outside an internal discharging opening, the cutter mechanism is connected to an external first driving mechanism, and a feeding mechanism is arranged on one side of the smashing supporting shell. A dust removal channel is arranged between the dust removal supporting shell and the material collecting mechanism, a dust collecting mechanism and a cleaning mechanism capable of cleaning the dust collecting mechanism are arranged in the dust removal supporting shell, and the cleaning mechanism is connected to an external second driving mechanism. In the chopping process of dried vegetables, the cutter mechanism enables the dried vegetables to be evenly processed into powder, convenience is brought to production, chippings generated in the smashing process can be conveyed into the smashing supporting shell through the dust removal channel, the dust collection mechanism can effectively collect fine chippings, and the quality of finished products is guaranteed.
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Description

Technical Field

[0001] The invention relates to the technical field of food processing, and in particular to a production process of solid seasoning and crushing and dust removal equipment thereof. Background Art

[0002] After the mustard greens are processed into pickled mustard greens, their water content is greatly reduced and they can be stored for a long time. At present, the common practice is to cook pickled mustard greens directly with meat and other ingredients, but in fact, pickled mustard greens themselves have a certain taste and can also be used as seasonings after being crushed. This powder soup bag meets people's various needs, ensures the nutritional functional characteristics of the product, and has broad development and application prospects. For large-scale production of enterprises, how to quickly convert pickled mustard greens into powder is a problem that needs to be solved.

[0003] The authorization announcement number is CN222090738U, which discloses a low-temperature device for producing edible grass dry powder. Combined with its specification and drawings, its scheme continuously conveys the edible grass material discharged from the discharge end of the conveyor belt in the vacuum microwave drying box to the feed box of the grinder, and crushes it into powder in the grinder. The powder is continuously discharged from the grinder from the outlet. However, some fine powders with no practical value will be produced during the crushing process of dried vegetables. Only by screening out the required dried vegetable powder and removing the excess fine dried vegetable powder can the use value of the crushed dried vegetable powder be effectively guaranteed. In addition, how to recycle and treat the fine powder waste generated during the crushing is also one of the issues that need to be considered. Summary of the invention

[0004] The present invention mainly aims at the problems existing in the crushing of mustard greens, and invents a production process of solid seasonings and crushing and dust removal equipment thereof. In the process of chopping dried vegetables, the first metal knife and the inner wall of the annular knife will first begin to squeeze and chop the dried vegetables, and then under the action of centrifugal force, the dried vegetables that are gradually chopped will fly out along the gap between the annular knife and the first metal knife and the second metal knife. As the knife support plate continues to rotate, the dried vegetables that are initially chopped will be further cut into powder by the outer wall of the second metal knife and the annular knife; the debris generated in the crushing process will be sent to the inside of the crushing support shell through the dust removal channel, and the suction generated by the blast shell can effectively collect the fine debris on the surface of the dust removal bag.

[0005] The inventive objective of the present invention is achieved through the following technical solutions: a crushing and dust removal device, comprising a crushing support shell, a dust removal support shell arranged on one side of the crushing support shell, a tool mechanism is provided inside the crushing support shell and a receiving mechanism is provided outside the internal feeding port, the tool mechanism is connected to an external first driving mechanism, a feeding mechanism is provided on one side of the crushing support shell, a dust removal channel is provided between the dust removal support shell and the receiving mechanism, a dust collection mechanism and a cleaning mechanism capable of cleaning the dust collection mechanism are provided inside the dust removal support shell, and the cleaning mechanism is connected to an external second driving mechanism.

[0006] Preferably, the tool mechanism comprises a tool support plate, a first metal knife, a second metal knife, a first drive support column, a metal bearing and a first drive shaft, a plurality of first metal knives and a second metal knife are provided on one side of the tool support plate, the first metal knife and the second metal knife are at different distances from the center of the tool support plate, and there is a gap between each first metal knife and the second metal knife, a first drive support column is provided on the other side of the tool support plate, a rear cover plate is provided on one side of the crushing support shell, a material discharge channel is provided inside the crushing support shell, and the material discharge channel is connected to the inside of the material receiving mechanism, a bearing support column is provided on the surface of the rear cover plate, a plurality of metal bearings are provided inside the bearing support column, a first drive shaft is provided inside the metal bearing, one end of the first drive shaft is connected to the first drive support column, and the other end is connected to the first drive mechanism.

[0007] Preferably, the first driving mechanism includes a driving support frame, a first driving motor, a first driving wheel, a first driven wheel and a first transmission belt. The driving support frame is provided with a first driving motor inside, an end of the first driving motor is connected to the first driving wheel, an end of the first driving shaft is connected to the first driven wheel, and the first driving wheel and the first driven wheel are connected by a first transmission belt.

[0008] Preferably, the feeding mechanism includes a front cover plate, a feeding hopper and an annular knife. A front cover plate is provided on the other side of the crushing support shell. A plurality of shell support plates are provided on the side wall of the crushing support shell. A locking rod is hingedly connected to the inside of at least one group of shell support plates. One side of the front cover plate is hingedly connected to the inside of another group of shell support plates. The bottom of the feeding hopper is connected to the inside of the front cover plate. An annular knife is provided on the side of the front cover plate close to the tool support plate. After the front cover plate is fitted with the crushing support shell, the annular knife is located in the gap between the first metal knife and the second metal knife.

[0009] Preferably, the material receiving mechanism includes a first material receiving barrel, a second material receiving barrel and a barrel body clamp, the top of the first material receiving barrel is connected to the bottom of the material discharge channel, the side wall of the first material receiving barrel is connected to the dust removal channel, the bottom of the first material receiving barrel can be detachably connected to the top of the second material receiving barrel, and the connection position of the first material receiving barrel and the second material receiving barrel is fixed by a barrel body clamp.

[0010] Preferably, the dust collection mechanism includes a blower housing, a second drive motor, an impeller, a bag support frame and a dust removal bag, the dust removal support shell is provided with a blower housing, the blower housing is provided with an impeller, the top of the blower housing is provided with a second drive motor, the air inlet of the blower housing is connected to the bag support frame, and the external cover of the bag support frame is provided with a dust removal bag.

[0011] Preferably, the cleaning mechanism includes a cleaning support plate, a roller brush support column, a dust suction column, silicone bristles and a cleaning drive shaft. The surface of the cleaning support plate is hingedly connected to the roller brush support column and the dust suction column. The surface of the roller brush support column is provided with a plurality of silicone bristles. The interior of the dust suction column is hollow and the dust suction port on the surface faces the surface of the silicone bristles. The bottom of the dust suction column is connected to an external blowing device. One end of the cleaning support plate extends downward to provide a cleaning drive shaft, and the cleaning drive shaft is hingedly connected to the bottom of the dust removal support shell.

[0012] Preferably, the second driving mechanism includes a third driving motor, a second driving wheel, a second driven wheel and a second transmission belt, the end of the cleaning driving shaft is connected to the second driven wheel, the third driving motor is connected to the side wall of the dust removal support shell, the end of the rotating shaft of the third driving motor is connected to the second driving wheel, and the second driving wheel and the second driven wheel are connected by a second transmission belt.

[0013] A production process of solid seasoning, using crushing and dust removal equipment, includes the following steps: S1: Unpack the dried vegetables, weigh them, put them into the material bucket, and record the weight; S2: Pack the dried vegetables into material barrels and send them to the crushing room; S3: Turn on the power of the pulverizer and set the pulverizing parameters according to production requirements; S4: After the crushing is completed, the power is turned off and the crushed dried vegetable powder is sent to the batching room; S5: mixing the dried vegetable powder with seasonings; S51: 1 kg of dried vegetable powder, 4 g of edible salt, and 1 g of monosodium glutamate are used as ingredients; S52: Mix and stir the dried vegetable powder, edible salt and monosodium glutamate evenly and then send them to the inner room; S6: The finished products with good proportions enter the inner packaging workshop through the logistics port and are placed on the workbench or designated container; S7: Put the packaging bag into the sterilization box, take it out after sterilization and send it to the seasoning room; S8: Bag the finished products, weigh them, vacuum them, code them and seal them.

[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. In the process of chopping dried vegetables, the first metal knife and the inner wall of the annular knife will first begin to squeeze and chop the dried vegetables, and then the dried vegetables gradually chopped under the action of centrifugal force will fly out along the gap between the annular knife and the first metal knife and the second metal knife. As the knife support plate continues to rotate, the initially chopped dried vegetables will be further cut by the second metal knife and the outer wall of the annular knife. Since the gap between the outer wall of the annular knife and the second metal knife is very small, the dried vegetables can be evenly processed into a powder state by using this structure for cutting, which brings convenience to production; 2. The debris generated in the crushing process will be sent to the inside of the crushing support shell through the dust removal channel, and the blast shell The suction force generated by the body can effectively collect fine powder on the surface of the dust bag, ensuring the quality of the finished product inside the second collecting bucket; 3. When the dust bag is covered with powder, the silicone bristles of the cleaning support plate will continuously clean the debris on the surface of the dust bag during rotation. In addition, the dust suction port is always facing the surface of the silicone bristles. The swept fine powder will be sucked into the interior of the dust suction column through the dust suction port and discharged to the outside, which increases the service life of the entire dust bag, avoids frequent replacement of dust bags, and improves production efficiency; 4. During the rotation of the cleaning support plate, the cleaning drive shaft at the rightmost end of the cleaning support plate is coaxial with the dust bag. Therefore, the roller brush support column and the dust suction column will not interfere with the bag body support frame during rotation, and the overall structural layout is reasonable. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 A perspective view of the present invention; Figure 2 A perspective view of the present invention; Figure 3 It is a partial stereogram of the present invention; Figure 4 It is a partial stereogram of the present invention; Figure 5 A three-dimensional diagram of the crushing area of ​​the present invention; Figure 6 A three-dimensional diagram of the dust removal area of ​​the present invention; Figure 7 This is a three-dimensional view of the dust removal area of ​​the present invention after the dust removal bag is removed.

[0016] Markings in the figure: 1. Crushing support shell; 10. Dust removal channel; 11. Rear cover; 12. Feeding channel; 13. Bearing support column; 14. Shell support plate; 15. Locking rod; 2. Dust removal support shell; 3. Tool mechanism; 31. Tool support plate; 32. First metal knife; 33. Second metal knife; 34. First drive support column; 35. Metal bearing; 36. First drive shaft; 4. Material collection mechanism; 41. First material collection barrel; 42. Second material collection barrel; 43. Barrel body clamp; 5. First drive mechanism; 51. Drive support frame; 52. First drive motor; 53. First A driving wheel; 54, a first driven wheel; 55, a first transmission belt; 6, a feeding mechanism; 61, a front cover; 62, a feeding hopper; 63, an annular knife; 7, a second driving mechanism; 71, a third driving motor; 72, a second driving wheel; 73, a second driven wheel; 74, a second transmission belt; 8, a dust collecting mechanism; 81, a blower housing; 82, a second driving motor; 83, a bag support frame; 84, a dust bag; 9, a cleaning mechanism; 91, a cleaning support plate; 92, a roller brush support column; 93, a dust suction column; 94, silicone bristles; 95, a dust suction port; 96, a cleaning drive shaft. DETAILED DESCRIPTION

[0017] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings: like Figures 1 to 7As shown, the first embodiment of the present invention is a crushing and dust removal device, including a crushing support shell 1, a tool mechanism 3 is provided inside the crushing support shell 1 and a receiving mechanism 4 is provided outside the internal feeding port, the tool mechanism 3 includes a tool support plate 31, a first metal knife 32, a second metal knife 33, a first driving support column 34, a metal bearing 35 and a first driving shaft 36, a plurality of first metal knives 32 and second metal knives 33 are provided on one side of the tool support plate 31, the first metal knife 32 and the second metal knife 33 are at different distances from the center of the tool support plate 31, and there is a gap between each first metal knife 32 and the second metal knife 33, the other side of the tool support plate 31 is provided with a first driving support column 34, the crushing support shell 1 is provided with a rear cover plate 11 on one side, a material discharge channel 12 is provided inside the crushing support shell 1, and the material discharge channel 12 is connected to the inside of the receiving mechanism 4. A bearing support column 13 is provided on the surface of the rear cover plate 11, and a plurality of metal bearings 35 are provided inside the bearing support column 13. A first driving shaft 36 is provided inside the metal bearing 35, and one end of the first driving shaft 36 is connected to the first driving support column 34, and the other end is connected to the first driving mechanism 5. A feeding mechanism 6 is provided on one side of the crushing support shell 1, and the feeding mechanism 6 includes a front cover plate 61, a feeding hopper 62 and an annular knife 63. A front cover plate 61 is provided on the other side of the crushing support shell 1, and a plurality of shell support plates 14 are provided on the side wall of the crushing support shell 1, at least A locking rod 15 is hingedly connected to the inside of one group of shell support plates 14, and one side of the front cover plate 61 is hingedly connected to the inside of another group of shell support plates 14. This arrangement is convenient for subsequent maintenance, wherein the locking rod 15 mainly serves to lock the connection between the left end of the front cover plate 61 and the crushing support shell 1. The bottom of the upper hopper 62 is connected to the inside of the front cover plate 61. A ring-shaped knife 63 is provided on the side of the front cover plate 61 close to the tool support plate 31. After the front cover plate 61 is fitted with the crushing support shell 1, the ring-shaped knife 63 is located in the gap between the first metal knife 32 and the second metal knife 33. After this arrangement, the dried vegetables to be crushed are placed in the upper hopper 62, and then the dried vegetables in the upper hopper 62 will slide into the inside of the ring-shaped knife 63. At this time, the first The rotating shaft of the driving shaft 36 will drive the tool support plate 31 to rotate through the first driving support column 34. During the rotation of the first driving shaft 36, the metal bearing 35 plays a supporting and guiding role. During the rotation of the tool support plate 31, the four first metal knives 32 on the surface of the tool support plate 31 and the inner wall of the annular knife 63 will first begin to squeeze and chop the dried vegetables. Since the tool support plate 31 is in a high-speed rotating state at this time, the dried vegetables that are gradually chopped up under the action of centrifugal force will fly out along the gap between the annular knife 63 and the first metal knife 32 and the second metal knife 33, but at this time they are still inside the crushing support shell 1. As the tool support plate 31 continues to rotate, the dried vegetables that are initially chopped will be cut by the outer wall of the second metal knife 33 and the annular knife 63.Since the gap between the outer wall of the annular knife 63 and the second metal knife 33 is very small, the dried vegetables cut in this process are in a powder state and gradually fall from the feeding channel 12 to the inside of the receiving mechanism 4 under the continuous rotation of the knife support plate 31.

[0018] In the first embodiment, the tool mechanism 3 is connected to an external first driving mechanism 5, which includes a driving support frame 51, a first driving motor 52, a first driving wheel 53, a first driven wheel 54 and a first transmission belt 55. The driving support frame 51 is provided with a first driving motor 52 inside, the end of the first driving motor 52 is connected to the first driving wheel 53, the end of the first driving shaft 36 is connected to the first driven wheel 54, the first driving wheel 53 and the first driven wheel 54 are connected by a first transmission belt 55, and the first driving motor 52 can drive the first driving wheel 53 to rotate when the rotating shaft rotates. During the rotation of the first driving wheel 53, the first driven wheel 54 is driven to rotate through the first transmission belt 55, and the first driven wheel 54 will drive The first driving shaft 36 is driven to rotate, and the material collecting mechanism 4 includes a first material collecting barrel 41, a second material collecting barrel 42 and a barrel body clamp 43. The top of the first material collecting barrel 41 is connected to the bottom of the unloading channel 12, and the side wall of the first material collecting barrel 41 is connected to the dust removal channel 10. The bottom of the first material collecting barrel 41 can be detachably connected to the top of the second material collecting barrel 42, and the connection position of the first material collecting barrel 41 and the second material receiving barrel 42 is fixed by the barrel body clamp 43. The dried vegetable powder dropped from the unloading channel 12 passes through the first material collecting barrel 41 and the second material receiving barrel 42 in turn. When passing through the first material collecting barrel 41, some too fine fragments will fly to the inside of the dust removal support shell 2 through the dust removal channel 10, and the second material collecting barrel 42 is mainly used to collect dried vegetable powder that meets the size requirements.

[0019] In the first embodiment, a dust removal support shell 2 is provided on the left side of the crushing support shell 1, a dust removal channel 10 is connected between the dust removal support shell 2 and the first receiving bucket 41, a dust collection mechanism 8 and a cleaning mechanism 9 capable of cleaning the dust collection mechanism 8 are provided inside the dust removal support shell 2, the cleaning mechanism 9 is connected to the second external driving mechanism 7, the dust collection mechanism 8 includes a blast shell 81, a second driving motor 82, an impeller, a bag support frame 83 and a dust removal bag 84, a blast shell 81 is provided inside the dust removal support shell 2, an impeller is provided inside the blast shell 81, and the dust removal bag 84 is provided with a dust removal support shell 2. A second drive motor 82 is provided on the top of the blower shell 81, and the air inlet of the blower shell 81 is connected to a bag support frame 83. The outer cover of the bag support frame 83 is provided with a dust bag 84. After this arrangement, whenever the tool support plate 31 is in high-speed rotation, the rotating shaft of the second drive motor 82 will drive the impeller inside the blower shell 81 to rotate. When the impeller rotates, negative pressure suction will be generated, thereby adsorbing fine debris to the surface of the dust bag 84. After long-term operation, the surface of the dust bag 84 is very easy to accumulate dust, so the air permeability of the dust bag 84 will be reduced, and a cleaning operation is required at this time. The cleaning mechanism 9 includes a cleaning support plate 91, a roller brush support column 92, a dust suction column 93, silicone bristles 94 and a cleaning drive shaft 96. The surface of the cleaning support plate 91 is hingedly connected with the roller brush support column 92 and the dust suction column 93. The surface of the roller brush support column 92 is provided with a plurality of silicone bristles 94. The interior of the dust suction column 93 is hollow and the dust suction port 95 on the surface faces the surface of the silicone bristles 94. The bottom of the dust suction column 93 is connected to an external blowing device. One end of the cleaning support plate 91 extends downward to be provided with a cleaning drive shaft 96, and the cleaning drive shaft 96 is hingedly connected to the bottom of the dust removal support shell 2. The second driving mechanism 7 includes a third driving motor 71, a second driving wheel 72, a second driven wheel 73 and a second transmission belt 74. The end of the cleaning driving shaft 96 is connected to the second driven wheel 73. The third driving motor 71 is connected to the side wall of the dust removal support shell 2. The end of the rotating shaft of the third driving motor 71 is connected to the second driving wheel 72. The second driving wheel 72 and the second driven wheel 73 are connected by a second transmission belt 74.Whenever the surface of the dust bag 84 needs to be cleaned, the rotating shaft of the third drive motor 71 will drive the second drive wheel 72 to rotate. During the rotation of the second drive wheel 72, the second driven wheel 73 is driven to rotate through the second transmission belt 74. During the rotation of the second driven wheel 73, the entire cleaning support plate 91 is driven to rotate through the cleaning drive shaft 96. Since the cleaning drive shaft 96 at the rightmost end of the cleaning support plate 91 is coaxial with the dust bag 84, the rolling brush support column 92 and the dust suction column 93 will not generate friction with the bag body support frame 83 during the rotation of the cleaning support plate 91. Interference, the silicone bristles 94 on the surface of the roller brush support column 92 will continuously clean the debris on the surface of the dust bag 84 during the rotation of the cleaning support plate 91. During this cleaning process, since the bottom of the dust column 93 is connected to the external air blowing device, the air blowing device can generate suction, and the dust suction port 95 is always facing the surface of the silicone bristles 94. The swept fine powder will be sucked into the inside of the dust column 93 through the dust suction port 95 and discharged to the outside, which increases the use time of the entire dust bag 84, avoids frequent replacement of the dust bag 84, and improves production efficiency. In addition, the subsequent cleaning of the roller brush support column 92 and the dust column 93 is also relatively simple. It only needs to let the wind inside the dust column 93 blow in the opposite direction, so that the dust column 93 and the silicone bristles 94 can be cleaned at the same time.

[0020] The second embodiment of the present invention is a production process of solid seasoning, using a crushing and dust removal device, comprising the following steps: S1: Unpack the dried vegetables, weigh them, put them into the material bucket, and record the weight; S2: Pack the dried vegetables into material barrels and send them to the crushing room; S3: Turn on the power of the pulverizer and set the pulverizing parameters according to production requirements; S4: After the crushing is completed, the power is turned off and the crushed dried vegetable powder is sent to the batching room; S5: mixing the dried vegetable powder with seasonings; S51: 1 kg of dried vegetable powder, 4 g of edible salt, and 1 g of monosodium glutamate are used as ingredients; S52: Mix and stir the dried vegetable powder, edible salt and monosodium glutamate evenly and then send them to the inner room; S6: The finished products with good proportions enter the inner packaging workshop through the logistics port and are placed on the workbench or designated container; S7: Put the packaging bag into the sterilization box, take it out after sterilization and send it to the seasoning room; S8: Bag, weigh, vacuum, code and seal the finished products Working principle and use method of the present invention: First, put the dried vegetables to be crushed into the upper hopper 62, and then the dried vegetables in the upper hopper 62 will slide into the annular knife 63, and then the rotating shaft of the first drive motor 52 can drive the first drive wheel 53 to rotate, and the first drive wheel 53 drives the first driven wheel 54 to rotate through the first transmission belt 55 during the rotation of the first drive wheel 53, and the first driven wheel 54 drives the first drive shaft 36 to rotate, and the rotating shaft of the first drive shaft 36 drives the tool support plate 31 to rotate through the first drive support column 34. During the rotation of the first drive shaft 36, the metal bearing 35 plays a supporting and guiding role. During the rotation of the tool support plate 31, the four first metal knives 32 on its surface and the inner wall of the annular knife 63 will first begin to squeeze and chop the dried vegetables. Since the tool support plate 31 is in a high-speed rotating state at this time, when it is separated from the tool support plate 31, the tool support plate 31 is in a high-speed rotating state. Under the action of centrifugal force, the dried vegetables that are gradually chopped will fly out along the gap between the annular knife 63 and the first metal knife 32 and the second metal knife 33, but at this time they are still inside the crushing support shell 1. As the tool support plate 31 continues to rotate, the dried vegetables that are initially chopped will be cut by the outer walls of the second metal knife 33 and the annular knife 63. Since the gap between the outer wall of the annular knife 63 and the second metal knife 33 is very small, the dried vegetables that are cut in this process are in a powder state, and gradually fall from the unloading channel 12 through the first receiving barrel 41 and the second receiving barrel 42 in sequence under the continuous rotation of the tool support plate 31. When passing through the first receiving barrel 41, some too fine fragments will fly to the inside of the dust removal support shell 2 through the dust removal channel 10, and the second receiving barrel 42 is mainly used to collect dried vegetable powder that meets the size requirements.

[0021] When the tool support plate 31 is rotating at high speed, the rotating shaft of the second drive motor 82 will drive the impeller inside the blower housing 81 to rotate. When the impeller rotates, negative pressure suction will be generated, thereby adsorbing fine debris to the surface of the dust bag 84. After running for a long time, the surface of the dust bag 84 is very easy to collect dust, and the air permeability of the dust bag 84 will be reduced, and a cleaning operation is required at this time. The rotating shaft of the third drive motor 71 will drive the second drive wheel 72 to rotate. During the rotation of the second drive wheel 72, the second driven wheel 73 will be driven to rotate through the second transmission belt 74. During the rotation of the second driven wheel 73, the entire cleaning support plate 91 will be driven to rotate through the cleaning drive shaft 96. Since the cleaning drive shaft 96 at the rightmost end of the cleaning support plate 91 is coaxial with the dust bag 84, the roller brush support column 92 and the dust suction column 93 of the cleaning support plate 91 will not interfere with the bag body support frame 83 during the rotation of the cleaning support plate 91. During the rotation of the cleaning support plate 91, the silicone bristles 94 on the surface of the roller brush support column 92 will continuously clean the debris on the surface of the dust bag 84.

[0022] The specific embodiments described herein are merely examples of the spirit of the present invention. Those skilled in the art may make various modifications or additions to the specific embodiments described or replace them in similar ways, but they will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.

Claims

1. A crushing and dust removal device, comprising a crushing support shell (1), a dust removal support shell (2) arranged on one side of the crushing support shell (1), characterized in that: A tool mechanism (3) is provided inside the crushing support shell (1), and a receiving mechanism (4) is provided outside the internal material discharge port; the tool mechanism (3) is connected to an external first driving mechanism (5); a feeding mechanism (6) is provided on one side of the crushing support shell (1); a dust removal passage (10) is provided between the dust removal support shell (2) and the receiving mechanism (4); a dust collection mechanism (8) and a cleaning mechanism (9) capable of cleaning the dust collection mechanism (8) are provided inside the dust removal support shell (2); and the cleaning mechanism (9) is connected to an external second driving mechanism (7).

2. The crushing and dust removal equipment according to claim 1, characterized in that: The tool mechanism (3) comprises a tool support plate (31), a first metal knife (32), a second metal knife (33), a first drive support column (34), a metal bearing (35) and a first drive shaft (36); a plurality of first metal knives (32) and second metal knives (33) are provided on one side of the tool support plate (31); the first metal knives (32) and second metal knives (33) are at different distances from the center of the tool support plate (31); a gap is provided between each first metal knife (32) and second metal knife (33); and a first drive support column (34) is provided on the other side of the tool support plate (31). A support column (34), a rear cover plate (11) is provided on one side of the crushing support shell (1), a material discharge channel (12) is provided inside the crushing support shell (1), and the material discharge channel (12) is connected to the inside of the material receiving mechanism (4), a bearing support column (13) is provided on the surface of the rear cover plate (11), a plurality of metal bearings (35) are provided inside the bearing support column (13), a first drive shaft (36) is provided inside the metal bearing (35), one end of the first drive shaft (36) is connected to the first drive support column (34), and the other end is connected to the first drive mechanism (5).

3. The crushing and dust removal equipment according to claim 2, characterized in that: The first driving mechanism (5) comprises a driving support frame (51), a first driving motor (52), a first driving wheel (53), a first driven wheel (54) and a first transmission belt (55); the first driving motor (52) is arranged inside the driving support frame (51); the end of the first driving motor (52) is connected to the first driving wheel (53); the end of the first driving shaft (36) is connected to the first driven wheel (54); the first driving wheel (53) and the first driven wheel (54) are connected via a first transmission belt (55).

4. The crushing and dust removal equipment according to claim 3, characterized in that: The feeding mechanism (6) comprises a front cover plate (61), a feeding hopper (62) and an annular knife (63); the other side of the pulverizing support shell (1) is provided with a front cover plate (61); the side wall of the pulverizing support shell (1) is provided with a plurality of shell support plates (14); at least one group of shell support plates (14) is hingedly connected to a locking rod (15) inside; one side of the front cover plate (61) is hingedly connected to the inside of another group of shell support plates (14); the bottom of the feeding hopper (62) is connected to the inside of the front cover plate (61); the side of the front cover plate (61) close to the knife support plate (31) is provided with an annular knife (63); after the front cover plate (61) is attached to the pulverizing support shell (1), the annular knife (63) is located inside the gap between the first metal knife (32) and the second metal knife (33).

5. The crushing and dust removal equipment according to claim 4, characterized in that: The material receiving mechanism (4) comprises a first material receiving barrel (41), a second material receiving barrel (42) and a barrel body clamp (43); the top of the first material receiving barrel (41) is connected to the bottom of a material discharge channel (12); the side wall of the first material receiving barrel (41) is connected to a dust removal channel (10); the bottom of the first material receiving barrel (41) is detachably connected to the top of the second material receiving barrel (42); and the connection position between the first material receiving barrel (41) and the second material receiving barrel (42) is fixed by a barrel body clamp (43).

6. The crushing and dust removal equipment according to claim 1, characterized in that: The dust collecting mechanism (8) comprises an air blast housing (81), a second drive motor (82), an impeller, a bag support frame (83) and a dust removal bag (84); the dust removal support shell (2) is provided with an air blast housing (81), the air blast housing (81) is provided with an impeller, the top of the air blast housing (81) is provided with a second drive motor (82), the air inlet of the air blast housing (81) is connected to the bag support frame (83), and the outer cover of the bag support frame (83) is provided with a dust removal bag (84).

7. The crushing and dust removal equipment according to claim 6, characterized in that: The cleaning mechanism (9) comprises a cleaning support plate (91), a roller brush support column (92), a dust suction column (93), silicone bristles (94) and a cleaning drive shaft (96); the surface of the cleaning support plate (91) is hingedly connected to the roller brush support column (92) and the dust suction column (93); the surface of the roller brush support column (92) is provided with a plurality of silicone bristles (94); the interior of the dust suction column (93) is hollow and a dust suction port (95) on the surface faces the surface of the silicone bristles (94); the bottom of the dust suction column (93) is connected to an external air blowing device; one end of the cleaning support plate (91) is downwardly extended and provided with a cleaning drive shaft (96); the cleaning drive shaft (96) is hingedly connected to the bottom of the dust removal support shell (2).

8. The crushing and dust removal equipment according to claim 7, characterized in that: The second driving mechanism (7) comprises a third driving motor (71), a second driving wheel (72), a second driven wheel (73) and a second transmission belt (74); the end of the cleaning driving shaft (96) is connected to the second driven wheel (73); the third driving motor (71) is connected to the side wall of the dust removal support shell (2); the end of the rotating shaft of the third driving motor (71) is connected to the second driving wheel (72); the second driving wheel (72) and the second driven wheel (73) are connected via the second transmission belt (74).

9. A production process for solid seasoning, using the crushing and dust removal equipment according to any one of claims 1 to 7, characterized in that: The following steps are included: S1: Unpack the dried vegetables, weigh them, put them into the material bucket, and record the weight; S2: Pack the dried vegetables into material barrels and send them to the crushing room; S3: Turn on the power of the pulverizer and set the pulverizing parameters according to production requirements; S4: After the crushing is completed, the power is turned off and the crushed dried vegetable powder is sent to the batching room; S5: mixing the dried vegetable powder with seasonings; S6: The finished products with good proportions enter the inner packaging workshop through the logistics port and are placed on the workbench or designated container; S7: Put the packaging bag into the sterilization box, take it out after sterilization and send it to the seasoning room; S8: Bag the finished products, weigh them, vacuum them, code them and seal them.

10. The production process of solid seasoning according to claim 9, characterized in that: The mixing of the dried vegetable powder and the seasoning comprises the following steps: S51: 1 kg of dried vegetable powder, 4 g of edible salt, and 1 g of monosodium glutamate are used as ingredients; S52: Mix the dried vegetable powder, edible salt and monosodium glutamate evenly and send them to the inner packaging room.

Citation Information

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