Discharging structure for formula food processing
By designing a transfer chamber and feeding components, combined with servo motors and enclosed components, the complexity and residue issues of multiple raw material processing systems in formulated food processing were solved, enabling rapid recycling and emptying, and ensuring the accuracy of the formula ratio.
Patent Information
- Application Number
- CN202520474034.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-18
AI Technical Summary
Existing formula food processing equipment requires multiple feeding devices to handle various raw materials, resulting in system complexity. Furthermore, when feeding from a single auger, the residue of raw materials affects the formula ratio and is difficult to recover quickly.
Design a device that includes a transfer bin, a feeding assembly, and a sealing assembly. By setting up a system, a servo motor and the sealing assembly are used to achieve rapid emptying and rapid alternation of raw materials. By setting up a system, a servo motor and the sealing assembly are used to achieve rapid emptying and rapid alternation of raw materials. By setting up a system, a servo motor and the sealing assembly are used to achieve rapid recovery of raw materials and rapid switching of the device.
It enables rapid recovery of raw materials in the transfer and storage bins, rapid emptying of the device, and rapid replacement of raw materials, avoiding system complexity and raw material residue problems, and ensuring the accuracy of the formula ratio.
Smart Images

Figure CN223920577U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of blanking device, specifically is a formula food processing is with blanking structure. BACKGROUND
[0002] Formula food is a more extensive concept, it usually refers to the food specially processed and prepared for meeting the needs of specific groups or specific needs, and special diet food can be regarded as a special formula food, the weight of the raw materials put into during the processing of formula food will have a rated error, and this error makes the feeding more convenient during processing;
[0003] The announcement number CN215438807U discloses a special diet food processing blanking device, including the jar body, the jar body bottom is equipped with the support leg, the support leg sets up many, the jar body upper end face left side is equipped with the feed pipe, the jar body bottom is equipped with the connecting pipe, the connecting pipe bottom is equipped with the blanking pipe, the blanking pipe inside rotation is equipped with the screw blade, the blanking pipe left side is equipped with the first motor, the motor shaft of first motor and the screw blade are connected and set up, the jar body top is equipped with the second motor, the motor shaft bottom of second motor is equipped with the rotating shaft, the rotating shaft extends downward and penetrates the jar body, the rotating shaft is equipped with the support rod, the support rod sets up many, and the same side many support rods outer end are equipped with the cleaning plate, the design of screw blade stabilizes the blanking, the design of cleaning plate is convenient to clean, the design of water inlet pipe guarantees the cleaning effect, but the patent still has the following problems in the actual use process:
[0004] Many raw materials need to be put into during the processing of formula food, if the above device is used, multiple blanking devices need to be used, and each blanking device corresponds to one kind of raw material, so that the whole system is too complex, if the single auger is used for blanking, the raw materials in the auger and the storage bin are not completely discharged, directly enter the processing equipment, affect the formula proportion, and the raw materials in it are difficult to recover quickly, because the discharge port of the blanking device is usually located above the feeding pocket, so it is not convenient to place the basin directly used to receive the excess raw materials, thereby causing that the blanking structure is not convenient to use.
[0005] A formula food processing blanking structure is proposed to solve the problems in the above. Utility model content
[0006] The utility model discloses a purpose lies in providing a formula food processing is with the structure of unloading to solve the formula food processing of above -mentioned background art needs to invest very much raw material, if is the device of above -mentioned, need utilize multiple unloading device, and each unloading device corresponds one raw material, thereby lead to make the whole system too complex, if is through single auger and is unloaded, can appear auger and the raw material of internal storage bin not completely discharged, directly enter processing equipment, influence formula proportion, and its internal raw material is difficult to recover fast, because the discharge outlet of unloading device is usually located above the material hopper, lead to directly utilize basin to receive the excess raw material is not convenient to place, and further lead to the structure of unloading inconvenient to use problem.
[0007] In order to realize above -mentioned purpose, the utility model provides the following technical scheme: a formula food processing is with the structure of unloading, including transmission bin, the top fixed connection of transmission bin has the storage bin, the lower side of transmission bin is equipped with the material hopper;
[0008] The inside of transmission bin is provided with a feeding assembly, the feeding assembly includes a servo motor fixed to the outside of the transmission bin, the output end of the servo motor extends into the transmission bin and is fixedly connected with a drive shaft, the outside of the drive shaft is slidably sleeved with a movable auger, one end of the movable auger away from the drive shaft is fixedly connected with a connecting shaft, the outside of the connecting shaft is slidably sleeved with a feeding auger, and the connecting shaft penetrates through the transmission bin and is fixedly connected with a knob, the outside of the connecting shaft is provided with a first thread and a second thread, the same limiting nut can be threadedly connected with the first thread or the second thread, and a transmission groove is formed in the outside of the connecting shaft.
[0009] Wherein, the bottom of one side of the transmission bin is provided with a feeding groove, the bottom of the other side of the transmission bin is provided with a recovery groove, and the bottom of the transmission bin is provided with a sealing assembly.
[0010] Preferably, the recovery groove is located directly below the storage bin, the limiting nut is rotatably connected to the outside of the transmission bin, and the connecting shaft slidably penetrates through the feeding auger.
[0011] Preferably, the feeding groove is located directly above the material hopper, the second sealing plate can cover the outside of the feeding groove, and the first sealing plate can cover the outside of the recovery groove.
[0012] Preferably, a limiting sleeve is arranged on the outside of the recovery groove, the limiting sleeve is fixed to the outside of the transmission bin, and the first sealing plate is inserted into the limiting sleeve.
[0013] Preferably, the outer side of the hanging bin is fixedly connected with a first motor, the output end of the first motor extends into the hanging bin and is fixedly connected with a gear, and the gear is in meshing connection with a rack.
[0014] Preferably, the inner side of the transmission bin is rotatably connected with the feeding auger, and the inner side of the feeding auger is slidably connected with the transmission groove.
[0015] Preferably, the outer side of the transmission bin is fixedly connected with an arch at the symmetrical top.
[0016] Compared with the prior art, the beneficial effects of the present application are that the final material in the transmission bin and the storage bin can be quickly recovered, and after the device is restored to its original state, different materials can be directly put into the storage bin, so that the device can quickly empty the internal materials, and the device can quickly change the transported materials, avoiding the use of too many discharging devices to realize the feeding of multiple materials.
[0017] 1. By rotating the hand knob and rotating the limiting nut, the limiting nut is disconnected from the second thread and connected with the first thread, at this time the movable auger is away from the top of the recovery groove, and all the materials in the storage bin will directly fall through the recovery groove for recovery, and by controlling the servo motor to drive the shaft to rotate in the forward and reverse directions, the remaining materials in the feeding auger and the movable auger can also be pushed into the recovery groove, so that the final material in the transmission bin and the storage bin can be quickly recovered, and after the device is restored to its original state, different materials can be directly put into the storage bin, so that the device can quickly empty the internal materials, and the device can quickly change the transported materials, avoiding the use of too many discharging devices to realize the feeding of multiple materials, thereby simplifying the discharging system.
[0018] 2. By starting the first motor, the gear drives the rack to slide horizontally, so that the second blocking plate moves and covers the blocking feeding groove, and at the same time the first blocking plate moves and exposes the recovery groove, so that the feeding groove and the recovery groove can realize staggered feeding, and the blocked feeding groove can avoid the falling of excess materials into the feeding hopper. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a front structure schematic view of the present application;
[0020] Figure 2 It is a front structure schematic view of the present application;
[0021] Figure 3 It is an installation structure schematic view of the connecting shaft;
[0022] Figure 4 It is Figure 2 It is an enlarged structure schematic view of the A part.
[0023] Figure 5 The schematic view of the mounting structure of the driving shaft and the movable screw conveyor.
[0024] In the figure: 1, conveying bin; 101, storage bin; 2, feeding assembly; 201, servo motor; 202, driving shaft; 203, movable screw conveyor; 204, connecting shaft; 205, feeding screw conveyor; 206, knob; 207, first thread; 208, second thread; 209, limiting nut; 210, transmission groove; 211, feeding groove; 212, recycling groove; 213, arch; 3, sealing assembly; 301, hanging bin; 302, first motor; 303, rack; 304, gear; 305, first sealing plate; 306, second sealing plate; 307, limiting sleeve; 4, feeding hopper. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0026] Please refer to Figure 1 Figure 5 The present application provides a technical scheme: a discharging structure for formula food processing, comprising a conveying bin 1, the top of the conveying bin 1 is fixedly connected with a storage bin 101, and a feeding hopper 4 is arranged on one side below the conveying bin 1.
[0027] The inside of the conveying bin 1 is provided with a feeding assembly 2, the feeding assembly 2 comprises a servo motor 201 fixed to the outside of the conveying bin 1, the output end of the servo motor 201 extends into the conveying bin 1 and is fixedly connected with a driving shaft 202, the outside of the driving shaft 202 is slidingly sleeved with a movable auger 203, one end of the movable auger 203 away from the driving shaft 202 is fixedly connected with a connecting shaft 204, the outside of the connecting shaft 204 is slidingly sleeved with a feeding auger 205, and the connecting shaft 204 penetrates through the conveying bin 1 and is fixedly connected with a knob 206, the outside of the connecting shaft 204 is provided with a first thread 207 and a second thread 208, the same limiting nut 209 can be threadedly connected with the first thread 207 or the second thread 208, and the outside of the connecting shaft 204 is provided with a transmission groove 210; the limiting nut 209 can only be threadedly connected with the first thread 207 or the second thread 208 at the same time, when the limiting nut 209 is threadedly connected with the first thread 207, the movable auger 203 is located directly below the storage bin 101 and directly above the recovery groove 212, at this time, the movable auger 203 can be a complete extension section of the feeding auger 205, and the two cooperate to realize smooth feeding, the rotation of the connecting shaft 204 drives the limiting nut 209 to rotate synchronously, so that the position of the movable auger 203 remains fixed, thereby ensuring the stability of the working state, and industrial production is usually in large quantities, so feeding needs to take a lot of time, so the time interval required for rotating the limiting nut 209 to realize the complete change of the position of the movable auger 203 each time is relatively long.
[0028] The bottom of the conveying bin 1 is provided with a sealing assembly 3, the sealing assembly 3 comprises a hanging bin 301 fixed to the bottom of the conveying bin 1, the top of the hanging bin 301 penetrates through and is connected with a rack 303, one end of the rack 303 is fixedly connected with a second sealing plate 306, the other end of the rack 303 is fixedly connected with a first sealing plate 305, and the rack 303 is slidingly connected with the bottom of the conveying bin 1.
[0029] The recovery groove 212 is located directly below the storage bin 101, the limiting nut 209 is rotatably connected with the outside of the conveying bin 1, and the connecting shaft 204 slidingly penetrates through the central shaft of the feeding auger 205.
[0030] The feeding groove 211 is located directly above the feeding hopper 4, the second sealing plate 306 can cover the outside of the feeding groove 211, and the first sealing plate 305 can cover the outside of the recovery groove 212.
[0031] The outside of the recovery groove 212 is provided with a limiting sleeve 307, the limiting sleeve 307 is fixed to the outside of the conveying bin 1, and the first sealing plate 305 is inserted into the limiting sleeve 307; the limiting sleeve 307 can provide support to one side of the first sealing plate 305, thereby increasing the stability of the first sealing plate 305.
[0032] The outer side of the hanging bin 301 is fixedly connected with a first motor 302, the output end of the first motor 302 extends into the hanging bin 301 and is fixedly connected with a gear 304, and the gear 304 is in meshing connection with the rack 303.
[0033] The feeding auger 205 is rotationally connected with the inner side of the transmission bin 1, the transmission groove 210 is slidingly connected with the inner side of the feeding auger 205, and the outer side of the transmission bin 1 is fixedly connected with an arch 213 at the symmetrical top; the shaft body of the feeding auger 205 is provided with a through hole for accommodating the passing of the connecting shaft 204, and the inner wall of the through hole is provided with a convex strip which is slidingly connected with the transmission groove 210, so that the rotation of the connecting shaft 204 can drive the rotation of the feeding auger 205.
[0034] Working principle: Before using the formula food processing discharging structure, the overall situation of the device needs to be checked to determine whether it can work normally, according to Figure 1 Figure 5 As shown in the figure, first, continuously pour raw materials into the storage bin 101, start the servo motor 201 to drive the rotating shaft 202 to drive the rotating auger 203, so that the connecting shaft 204 drives the feeding auger 205 to rotate through the transmission groove 210, and then the raw materials in the storage bin 101 are pushed to the feeding groove 211 by the rotating auger, and the rotation speed and period of the servo motor 201 are controlled to indirectly control the feeding amount;
[0035] When the feeding is completed, the first motor 302 is started to drive the gear 304 to slide horizontally, so that the second blocking plate 306 moves and covers the blocking feeding groove 211, and the first blocking plate 305 moves and exposes the recycling groove 212, then the knob 206 is held and rotated, the limiting nut 209 is screwed with the first screw 207, the connecting shaft 204 is pushed, the limiting nut 209 is screwed with the first screw 207, at this time the rotating auger 203 is away from the above of the recycling groove 212, at this time all the raw materials in the storage bin 101 will directly fall into the recycling groove 212 and be recycled, and the servo motor 201 is controlled to drive the rotating shaft 202 to rotate in the opposite direction, so that the remaining raw materials in the feeding auger 205 and the rotating auger 203 can also be pushed into the recycling groove 212, and finally the raw materials in the transmission bin 1 and the storage bin 101 can be quickly recycled to avoid a large amount of residue;
[0036] Finally, after the device is restored to its original state, different raw materials can be directly fed into the storage bin 101, so that the device can realize the rapid emptying of the internal raw materials, and then the device can be suitable for transporting different raw materials.
[0037] Although the utility model has been explained in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. A formula food processing blanking structure, comprising a conveying bin (1), the top of the conveying bin (1) is fixedly connected with a storage bin (101), and the lower side of the conveying bin (1) is provided with an inlet hopper (4); characterized in that Further comprising: The inside of the conveying bin (1) is provided with a feeding assembly (2), the feeding assembly (2) comprises a servo motor (201) fixed to the outside of the conveying bin (1), the output end of the servo motor (201) extends into the conveying bin (1) and is fixedly connected with a driving shaft (202), the outside of the driving shaft (202) is slidably sleeved with a movable auger (203), one end of the movable auger (203) away from the driving shaft (202) is fixedly connected with a connecting shaft (204), the outside of the connecting shaft (204) is slidably sleeved with a feeding auger (205), the connecting shaft (204) penetrates through the conveying bin (1) and is fixedly connected with a knob (206), the outside of the connecting shaft (204) is provided with a first thread (207) and a second thread (208), the same limiting nut (209) can be threadedly connected with the first thread (207) or the second thread (208), and the outside of the connecting shaft (204) is provided with a transmission groove (210). Wherein, a feeding groove (211) is formed in the bottom of one side of the conveying bin (1), a recovery groove (212) is formed in the bottom of the other side of the conveying bin (1), and a sealing assembly (3) is arranged on the bottom of the conveying bin (1), the sealing assembly (3) comprises a hanging bin (301) fixed to the bottom of the conveying bin (1), the top of the hanging bin (301) penetrates through a rack (303), one end of the rack (303) is fixedly connected with a second sealing plate (306), the other end of the rack (303) is fixedly connected with a first sealing plate (305), and the rack (303) is slidably connected with the bottom of the conveying bin (1).
2. The blanking structure for formula food processing according to claim 1, characterized in that: The recovery groove (212) is located directly below the storage bin (101), the limiting nut (209) is rotatably connected with the outside of the conveying bin (1), and the connecting shaft (204) slidably penetrates through the feeding auger (205).
3. The blanking structure for formula food processing according to claim 1, characterized in that: The feeding groove (211) is located directly above the inlet hopper (4), the second sealing plate (306) can cover the outside of the feeding groove (211), and the first sealing plate (305) can cover the outside of the recovery groove (212).
4. The blanking structure for formula food processing according to claim 1, characterized in that: The outside of the recovery groove (212) is provided with a limiting sleeve (307), the limiting sleeve (307) is fixed to the outside of the conveying bin (1), and the first sealing plate (305) is inserted into the limiting sleeve (307).
5. The blanking structure for formula food processing according to claim 1, characterized in that: The outside of the hanging bin (301) is fixedly connected with a first motor (302), the output end of the first motor (302) extends into the hanging bin (301) and is fixedly connected with a gear (304), and the gear (304) is in meshing connection with the rack (303).
6. The blanking structure for formula food processing according to claim 1, characterized in that: The feeding auger (205) is rotatably connected with the inside of the conveying bin (1), and the transmission groove (210) is slidably connected with the inside of the feeding auger (205).
7. The blanking structure for formula food processing according to claim 1, characterized in that: The transmission warehouse (1) outside symmetry top fixed connection has arch (213).