Convenient sweet-scented osmanthus processing and packaging device

The adjustable filling pipe and adjusting rod system solves the problem of adapting the osmanthus processing and packaging device to different packaging bags, realizing efficient control and information monitoring in the osmanthus filling process, and reducing osmanthus spillage and waste.

CN223631826UActive Publication Date: 2025-12-05XIANNING BENSE YUANXIANG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423107722.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-12-05
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing osmanthus processing and packaging equipment is equipped with a fixed-size discharge nozzle, which is difficult to adapt to packaging bags of various sizes and shapes, causing osmanthus flowers to scatter during the filling process.

Method used

A convenient osmanthus processing and packaging device was designed. Through an adjustable injection pipe and adjustment rod system, it can flexibly adapt to packaging bags of different sizes and shapes. Combined with a pressure sensor, it monitors the weight and amount of osmanthus in the storage tank in real time, ensuring that the discharge nozzle can be smoothly inserted and controlling the flow rate of osmanthus.

Benefits of technology

It enables flexible adjustment of the filling tube opening, reduces osmanthus petal scattering, improves filling efficiency, and provides accurate filling information.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223631826U_ABST
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Abstract

The utility model relates to the field of sweet-scented osmanthus processing equipment, and discloses a convenient sweet-scented osmanthus processing and packaging device. The material injection pipe is mounted at the bottom of the material storage barrel; the fixed plate is mounted at the bottom of the storage barrel, and the injection pipe is arranged on the inner ring of the fixed plate; the number of the adjusting rods is multiple, and one end of each adjusting rod is connected to the fixing plate. According to the filling device, the adjustable filling pipe opening is formed, so that the filling device can flexibly adapt to packaging bags of different sizes and shapes, a user can accurately control the opening size of the filling pipe by adjusting the angle of the adjusting rod according to the actual size of the packaging bag, it is ensured that the discharging nozzle can be smoothly inserted into the packaging bag, and the filling efficiency is improved; and by integrating the pressure sensor, the weight and the discharging amount of sweet osmanthus in the storage barrel can be monitored in real time, and accurate filling information is provided for a user.
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Description

TECHNICAL FIELD

[0001] The utility model relates to osmanthus processing equipment field especially, relate to a portable osmanthus processing and packaging device. BACKGROUND

[0002] Osmanthus processing device is mainly responsible for picking osmanthus and carries out preliminary treatment, such as washing, drying, screening etc., to make the osmanthus product that can be used for packaging. Osmanthus packaging device is responsible for packaging the processed osmanthus product, so as to store, transport and sell, and the osmanthus processing and packaging device is equipped with a discharge nozzle at the bottom of the barrel, which is used to send the osmanthus into the packaging bag to realize the packaging of the osmanthus.

[0003] The existing osmanthus processing and packaging device is usually equipped with a fixed size discharge nozzle, and due to the different sizes and shapes of the packaging bag, the fixed size discharge nozzle is often difficult to adapt to various packaging bags. For some small size or irregular shape packaging bags, the discharge nozzle may not be inserted smoothly, resulting in osmanthus scattering during the filling process. SUMMARY

[0004] The utility model wants to solve the technical problem that the existing osmanthus processing and packaging device is usually equipped with a fixed size discharge nozzle, and due to the different sizes and shapes of the packaging bag, the fixed size discharge nozzle is often difficult to adapt to various packaging bags. For some small size or irregular shape packaging bags, the discharge nozzle may not be inserted smoothly, resulting in osmanthus scattering during the filling process. In view of the defects of the prior art, a portable osmanthus processing and packaging device is provided.

[0005] The utility model adopts the following technical scheme to solve the above technical problem.

[0006] A portable osmanthus processing and packaging device, comprising: a storage barrel; a feeding pipe installed at the bottom of the storage barrel; a fixed plate installed at the bottom of the storage barrel, the feeding pipe being arranged in the inner circle of the fixed plate; a plurality of adjusting rods, one end of each of the adjusting rods being connected to the fixed plate, the adjusting rods being arranged in a circumferential array, each of the adjusting rods being connected to the outer wall of the feeding pipe, and the adjusting rods being arranged to rotate on the fixed plate for pressing the feeding pipe.

[0007] Preferably, the fixed plate comprises: a plurality of grooves arranged in the bottom of the fixed plate, the grooves being arranged in a circumferential array, one end of each of the adjusting rods being connected to the grooves; a plurality of first gears installed on the adjusting rods; and a plurality of racks penetrating the inner wall of the grooves, the racks being engaged with the gears.

[0008] Preferably, further comprising: an adjusting plate, sleeved on the fixed plate; a plurality of extrusion blocks, installed on the inner ring of the adjusting plate, the plurality of extrusion blocks are arranged in a circular array, and the extrusion blocks are in contact with one end of the rack.

[0009] Preferably, one end of the rack is formed with a slope, and the extrusion blocks are attached to the slope.

[0010] Preferably, an elastic member is connected to the rack, and one end of the elastic member is connected to the inner wall of the groove.

[0011] Preferably, the adjusting plate comprises: a bearing, installed between the adjusting plate and the fixed plate; an internal gear, installed on the inner ring of the adjusting plate; a second power source, installed on the storage barrel; and a second gear, installed on the power shaft of the second power source, and connected with the internal gear.

[0012] Preferably, the storage barrel comprises: a feeding pipe, installed at the bottom of the storage barrel; a feeding pipe, installed at the bottom end of the feeding pipe; and a second power source, installed on the outer wall of the feeding pipe.

[0013] Preferably, the storage barrel further comprises: a spiral conveying rod, one end of which is installed on the top wall of the storage barrel, and the other end of which is arranged in the feeding pipe; and a first power source, installed on the top of the storage barrel, and the power shaft of the first power source is connected with the spiral conveying rod.

[0014] Preferably, the storage barrel further comprises: a support frame, installed at the bottom of the storage barrel.

[0015] Preferably, the support frame comprises: a bottom plate, installed on the top of the support frame; a connecting plate, arranged above the bottom plate, and the storage barrel is installed on the top of the connecting plate; and a pressure sensor, installed between the bottom plate and the connecting plate.

[0016] The utility model discloses the above technical scheme, compared with the prior art, has the following technical effects:

[0017] (1) by setting adjustable feeding pipe opening, can flexibly adapt to different sizes and shapes of packaging bag, the user can according to the actual size of packaging bag, through the angle of adjusting rod to accurately control the opening size of feeding pipe, ensure that the discharge nozzle can be smoothly inserted into the packaging bag, reduce the osmanthus scattered in the filling process.

[0018] (2) due to the adjustability of the feeding pipe opening, the scheme can more effectively control the outflow speed of osmanthus in the filling process, avoid the waste caused by the mismatching of the discharge nozzle and the packaging bag, improve the filling efficiency, through the integration of the pressure sensor, the weight and the discharging amount of osmanthus in the storage barrel can be monitored in real time, accurate filling information is provided for the user. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1The utility model discloses a three-dimensional structure schematic diagram of a portable osmanthus processing and packaging device.

[0020] Figure 2 The utility model discloses another perspective three-dimensional structure schematic diagram of a portable osmanthus processing and packaging device.

[0021] Figure 3 The utility model discloses a cross section structure schematic diagram of a feeding pipe and a material injection pipe in a portable osmanthus processing and packaging device.

[0022] Figure 4 The utility model discloses a sectional structure schematic diagram of a material storage barrel in a portable osmanthus processing and packaging device.

[0023] Figure 5 The utility model discloses a partial enlarged structure schematic diagram in a portable osmanthus processing and packaging device.

[0024] Figure 6 The utility model discloses a structure schematic diagram of a rack in a portable osmanthus processing and packaging device.

[0025] The reference signs in the drawing are:

[0026] 100, material storage barrel, 101, feeding pipe, 102, spiral conveying rod, 103, first power source,

[0027] 200, support frame, 201, bottom plate, 202, pressure sensor, 203, connecting plate,

[0028] 300, material injection pipe, 301, fixed plate, 302, adjusting rod, 303, first gear, 304, rack, 305, elastic piece, 306, inclined plane,

[0029] 400, adjusting plate, 401, extrusion block, 402, bearing, 403, internal gear, 404, second power source, 405, second gear. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model.

[0031] Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the scope of protection of the utility model.

[0032] Reference Figures 1-6The utility model provides a portable osmanthus processing and packaging device, which comprises a storage barrel 100 serving as a main storage and preliminary processing container for osmanthus, which can accommodate a sufficient amount of osmanthus, effectively protect the osmanthus inside from the influence of the external environment, and facilitate subsequent processing and packaging operations; a feeding pipe 300 installed at the bottom of the storage barrel 100, which is designed to allow the osmanthus to flow out uniformly and orderly, avoiding blockage and waste; a fixed plate 301 installed at the bottom of the storage barrel 100, with the feeding pipe 300 arranged in the inner ring of the fixed plate 301; and a plurality of adjusting rods 302, one end of each of which is connected to the fixed plate 301, and the adjusting rods 302 are arranged in a circumferential array, with each of the adjusting rods 302 connected to the outer wall of the feeding pipe 300 and arranged to rotate on the fixed plate 301 for pressing the feeding pipe 300, the angle of the adjusting rods 302 being controlled by rotation, and the opening size of the feeding pipe 300 being adjusted by the simultaneous pressing of the adjusting rods 302.

[0033] The fixed plate 301 comprises a plurality of grooves arranged in a circumferential array in the bottom of the fixed plate 301, with one end of each of the adjusting rods 302 connected to the grooves; a plurality of first gears 303 installed on the adjusting rods 302; and a plurality of racks 304 penetrating the inner wall of the grooves, with the racks 304 engaged with the gears, the rotation of the adjusting plate 400 being converted into linear motion of the adjusting rods 302 through the engagement of the gears and the racks 304, thereby realizing the pressing of the feeding pipe 300.

[0034] The adjusting plate 400 is sleeved on the fixed plate 301; a plurality of pressing blocks 401 are installed in the inner ring of the adjusting plate 400, arranged in a circumferential array, and in contact with one end of the racks 304; one end of each of the racks 304 is formed with a slope 306, and the pressing blocks 401 are in contact with the slopes 306; each of the racks 304 is connected with an elastic member 305, one end of which is connected to the inner wall of the groove; the position of the pressing blocks 401 is adjusted by rotating the adjusting plate 400, the pressing blocks 401 press the racks 304 and control the movement of the racks 304, and the rotation force of the adjusting plate 400 is transmitted by pressing the racks 304; the slope 306 makes it easier for the pressing blocks 401 to push the racks 304 to move, reducing the operation difficulty and friction. The design of the slope 306 improves the transmission efficiency and operation convenience of the device; the elastic member 305 is a spring, and a spring block can also be used, which provides a reset force for the racks 304 to ensure that the racks 304 can return to the initial position after the rotation of the adjusting plate 400.

[0035] The adjusting plate 400 comprises: a bearing 402 installed between the adjusting plate 400 and the fixed plate 301, the bearing 402 reduces the friction and wear between the two, improves the rotation flexibility and service life of the device; an inner gear 403 installed on the inner ring of the adjusting plate 400; a second power source 404 installed on the storage barrel 100; a second gear 405 installed on the power shaft of the second power source 404, the second gear 405 is connected with the inner gear 403, the second power source 404 adopts a stepping motor, and can also adopt a servo motor, through the driving of the second power source 404, the second gear 405 transmits the rotary power to the inner gear 403, drives the adjusting plate 400 to rotate, and realizes the automatic control of the adjusting plate 400.

[0036] The storage barrel 100 comprises: a feeding pipe 101 installed at the bottom of the storage barrel 100, the injection pipe 300 is installed at the bottom end of the feeding pipe 101, the second power source 404 is installed on the outer wall of the feeding pipe 101, the feeding pipe 101 serves as a transition channel for the osmanthus flowers from the storage barrel 100 to the injection pipe 300, and the smooth flow of the osmanthus flowers is ensured; a spiral conveying rod 102, one end of which is installed on the top wall of the storage barrel 100, and the other end is arranged in the feeding pipe 101; a first power source 103 installed at the top of the storage barrel 100, the power shaft of the first power source 103 is connected with the spiral conveying rod 102, through the rotation of the spiral conveying rod 102, the osmanthus flowers in the storage barrel 100 are uniformly and continuously conveyed into the feeding pipe 101, the first power source 103 provides power for the spiral conveying rod 102, and the stability and continuity of the conveying process are ensured, and the first power source 103 adopts a stepping motor, and can also adopt a servo motor.

[0037] The support frame 200 is installed at the bottom of the storage barrel 100; the support frame 200 comprises: a bottom plate 201 installed at the top of the support frame 200; a connecting plate 203 arranged above the bottom plate 201, the storage barrel 100 is installed at the top of the connecting plate 203; a pressure sensor 202 installed between the bottom plate 201 and the connecting plate 203, the pressure change between the connecting plate 203 and the bottom plate 201 is monitored in real time through the pressure sensor 202, so as to judge the weight and discharging amount of the osmanthus flowers in the storage barrel 100.

[0038] In use, the osmanthus is poured into the storage bucket 100, ensuring that the osmanthus fills a certain capacity of the storage bucket 100, the power is turned on, the first power source 103 and the second power source 404 are started, after the first power source 103 is started, the power shaft drives the spiral conveying rod 102 to start rotating, the spiral conveying rod 102 uniformly and continuously conveys the osmanthus at the top of the storage bucket 100 into the feeding pipe 101, the feeding pipe 101 serves as a transition channel to ensure smooth flow of the osmanthus to the injection pipe 300, according to the packaging requirements of the osmanthus, the user can drive the second gear 405 to rotate by manually or automatically controlling the second power source 404, the second gear 405 is connected with the internal gear 403 to drive the adjusting plate 400 to rotate, the extrusion block 401 on the adjusting plate 400 moves with the rotation of the adjusting plate 400, the extrusion block 401 pushes the rack 304 to move along the groove inner wall, the rack 304 is engaged with the first gear 303 to drive the adjusting rod 302 to rotate on the fixed plate 301, the adjusting rod 302 simultaneously extrudes the outer wall of the injection pipe 300, the opening size of the injection pipe 300 is controlled by adjusting the angle of the adjusting rod 302, when the opening size of the injection pipe 300 is adjusted to the appropriate position, the osmanthus uniformly and orderly flows out through the injection pipe 300, the flowed-out osmanthus can be directly collected into a packaging container for subsequent packaging operation, in the process of osmanthus conveying and packaging, the pressure sensor 202 monitors the pressure change between the connecting plate 203 and the bottom plate 201 in real time, through the feedback of the pressure sensor 202, the weight and the discharging amount of the osmanthus in the storage bucket 100 can be judged, when the osmanthus in the storage bucket 100 is reduced to a certain extent, the reading of the pressure sensor 202 will change, triggering the corresponding alarm or prompt signal.

[0039] Compared with the prior art, the present application has the following beneficial effects:

[0040] By setting the adjustable injection pipe 300 opening, different sizes and shapes of packaging bags can be flexibly adapted, the user can accurately control the opening size of the injection pipe 300 by adjusting the angle of the adjusting rod 302 according to the actual size of the packaging bag, so that the discharge nozzle can be smoothly inserted into the packaging bag, and the osmanthus scattering during the filling process is reduced.

[0041] Due to the adjustability of the injection pipe 300 opening, the present application can more effectively control the flow rate of the osmanthus during the filling process, avoid waste caused by the mismatch between the discharge nozzle and the packaging bag, improve the filling efficiency, and through the integration of the pressure sensor 202, the weight and the discharging amount of the osmanthus in the storage bucket 100 can be monitored in real time, providing accurate filling information for the user.

[0042] Finally, several points should be noted that: first, in the description of the present application, it should be noted that, unless otherwise specified and limited, the term "installation", "connected", "connection" should be broad, can be mechanical or electrical connection, but also can be two elements inside the communication, can be directly connected, "up", "down", "left", "right" and so on, only for indicating the relative position relationship, when the absolute position of the described object changes, the relative position relationship may change;

[0043] Second, the utility model discloses the embodiment in the drawing, only relate to the structure involved in the embodiment of the present disclosure, other structures can refer to the usual design, under the condition of not conflicting, the same embodiment and different embodiments of the utility model can be combined with each other;

[0044] Finally, the above only for the preferred embodiment of the utility model, and does not for limiting the utility model, any modification, equivalent replacement, improvement etc. within the spirit and principles of the utility model, should be included in the protection scope of the utility model.

Claims

1. A portable osmanthus processing and packaging device, characterized in that, The utility model relates to a kind of material storage tank and its adjusting mechanism, including: Material storage tank (100); Injection pipe (300), it is installed in the bottom of the material storage tank (100); Fixed plate (301), it is installed in the bottom of the material storage tank (100), the injection pipe (300) is arranged in the inner ring of fixed plate (301); Adjusting rod (302), several, the one end of several adjusting rods (302) is connected on fixed plate (301), several adjusting rods (302) are distributed in circular array, several adjusting rods (302) are connected with the outer wall of injection pipe (300), several adjusting rods (302) are arranged to rotate on fixed plate (301), for extruding injection pipe (300).

2. The portable osmanthus processing and packaging device according to claim 1, characterized in that, The fixed plate (301) includes: Groove, several, it is opened in the bottom of the fixed plate (301), several grooves are distributed in circular array, the one end of adjusting rod (302) is connected in groove; First gear (303), several, the first gear (303) is installed on adjusting rod (302); Rack (304), several, the rack (304) penetrates the inner wall of groove, the rack (304) is engaged with gear.

3. The portable osmanthus processing and packaging device according to claim 2, characterized in that, Further including: Adjusting plate (400), it is sleeved on fixed plate (301); Extrusion block (401), several, several extrusion blocks (401) are installed in the inner ring of adjusting plate (400), several extrusion blocks (401) are distributed in circular array, the extrusion block (401) is contacted with the one end of rack (304).

4. The portable osmanthus processing and packaging device according to claim 3, characterized in that, The one end of the rack (304) is formed with inclined surface (306), and the extrusion block (401) is attached to the inclined surface (306).

5. The portable osmanthus processing and packaging device according to claim 2, characterized in that, The rack (304) is connected with elastic member (305), and one end of the elastic member (305) is connected to the inner wall of the groove.

6. The portable osmanthus processing and packaging device according to claim 3, characterized in that, The adjusting plate (400) includes: Bearing (402), it is installed between the adjusting plate (400) and fixed plate (301); Internal gear (403), it is installed in the inner ring of the adjusting plate (400); Second power source (404), it is installed on the material storage tank (100); Second gear (405), it is installed on the power shaft of the second power source (404), and the second gear (405) is connected with internal gear (403).

7. The portable osmanthus processing and packaging device according to claim 6, characterized in that: The material storage tank (100) includes: Feeding pipe (101), it is installed in the bottom of the material storage tank (100), the injection pipe (300) is installed in the bottom end of feeding pipe (101), and the second power source (404) is installed on the outer wall of feeding pipe (101).

8. The portable osmanthus processing and packaging device according to claim 7, characterized in that, The material storage tank (100) further includes: Spiral conveying rod (102), one end is installed in the top wall of the material storage tank (100), and the other end is arranged in feeding pipe (101); First power source (103), it is installed on the top of the material storage tank (100), and the power shaft of the first power source (103) is connected with spiral conveying rod (102).

9. The portable osmanthus processing and packaging device according to claim 1, characterized in that, The material storage tank (100) further includes: Support frame (200), it is installed in the bottom of the material storage tank (100).

10. The portable osmanthus processing and packaging device according to claim 9, characterized in that, The support frame (200) comprises: a bottom plate (201) mounted on the top of the support frame (200); a connecting plate (203) arranged above the bottom plate (201), and the storage barrel (100) is mounted on the top of the connecting plate (203); a pressure sensor (202) mounted between the bottom plate (201) and the connecting plate (203).