Novel feeding mechanism
By designing a new feeding mechanism, which utilizes an inclined feeding plate and a conveying plate driven by a vibration motor, the problem of poor configuration of the feeding mechanism in the existing packaging machine is solved, thereby improving the nut packaging efficiency and conveying efficiency.
Patent Information
- Application Number
- CN202423102154.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-16
AI Technical Summary
In the existing technology, nuts are mixed and packaged using a packaging machine. Each packaging machine needs to be equipped with a corresponding feeding mechanism, which results in poor material conveying efficiency and nut packaging efficiency.
A novel feeding mechanism was designed, including a support frame, a raw material elevator, a raw material distribution mechanism, a material sorting mechanism one, and a material sorting mechanism two. Through components such as an inclined distribution plate, a baffle plate, and a conveying plate driven by a vibrating motor, the mechanism achieves efficient distribution and conveying of crushed nuts.
It improves the overall transportation and sorting efficiency of nuts, prevents material accumulation, ensures smooth material conveying, and reduces raw material waste.
Smart Images

Figure CN223521180U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to food processing technical field, concretely relates to a novel feeding mechanism. BACKGROUND
[0002] Mixed nuts are a snack food that contains different types of nuts and dried fruits in the same bag.
[0003] The existing Chinese patent with the authorization announcement number CN219029812U discloses a mixed nut bagging and feeding machine, which comprises a sorting mechanism, a driving mechanism and a sub-packaging machine, the sorting mechanism comprises a rack, a casing and a distributing wheel, the casing is installed on the rack, the casing is provided with a feeding port and a discharging port, the distributing wheel is rotatably installed on the rack, the distributing wheel is provided with distributing grooves, through holes and sieve holes, the number of the distributing grooves is multiple, the through holes pass through both ends of the distributing wheel, the sieve holes are connected with the distributing grooves and the through holes, the driving mechanism is connected with the distributing wheel, the number of the sub-packaging machines is multiple, each sub-packaging machine is provided with a discharging port, and the discharging port of each sub-packaging machine is arranged correspondingly to the feeding port, in the mode that each distributing groove of the distributing wheel is driven by the driving mechanism to pass through the feeding port and the discharging port in turn, it is beneficial to control the output time of each nut and dried fruit to be consistent, so as to improve the bagging efficiency of the nuts and dried fruits during mixed bagging.
[0004] The existing technical solution has the following disadvantages: the mixed nuts are realized by the sub-packaging machine, and each sub-packaging machine needs to be provided with a corresponding feeding mechanism, which is not conducive to ensuring the feeding efficiency and the sub-packaging efficiency of the nuts. INVENTION CONTENTS
[0005] The utility model aims at providing a novel feeding mechanism to solve the technical problem that in the prior art, the mixed nuts are realized by the sub-packaging machine, and each sub-packaging machine needs to be provided with a corresponding feeding mechanism, which is not conducive to ensuring the feeding efficiency and the sub-packaging efficiency of the nuts.
[0006] The technical problem solved by the utility model can be realized by the following technical solution:
[0007] A novel feeding mechanism comprises:
[0008] A support frame is fixedly connected with a raw material elevator at the upper end;
[0009] A raw material distributing mechanism comprises a mechanism support frame, a feeding hopper is fixedly connected at the upper end of the mechanism support frame, a baffle plate is arranged at the lower end of the feeding hopper, the baffle plate is fixedly connected with the mechanism support frame, an inclined distributing plate one and an inclined distributing plate two are fixedly connected at the feeding port of the feeding hopper, and the raw material distributing mechanism is arranged at the feeding end of the raw material elevator;
[0010] The raw material sorting mechanism one is arranged at the discharging end of the raw material elevator, the raw material elevator comprises a raw material discharging port one and a raw material discharging port two, the discharging end of the raw material discharging port one is provided with a raw material sorting mechanism two, the raw material sorting mechanism two comprises a raw material distribution port, the discharging end of the raw material distribution port is provided with a conveying plate one, the discharging end of the conveying plate one is provided with a conveying machine one, the discharging end of the raw material discharging port two is provided with a raw material plate, the discharging end of the raw material plate is provided with a conveying plate two, and the discharging end of the conveying plate two is provided with a conveying machine two.
[0011] As a further scheme of the utility model, the raw material sorting mechanism one further comprises a mechanism shell, and the mechanism shell is respectively internally provided with a raw material inclined plate two and a raw material inclined plate two.
[0012] As a further scheme of the utility model, the raw material inclined plate two and the raw material inclined plate two are respectively matched with the side end faces of the mechanism shell to form the raw material discharging port one and the raw material discharging port two.
[0013] As a further scheme of the utility model, the raw material sorting mechanism two comprises a mechanism supporting plate, and the mechanism supporting plate is fixedly connected with a distribution block, and the distribution block is provided with two raw material distribution ports at two ends.
[0014] As a further scheme of the utility model, the conveying plate one is respectively provided with two conveying channels corresponding to the two raw material distribution ports, and the discharging ends of the two conveying channels are provided with one conveying machine one.
[0015] As a further scheme of the utility model, the discharging end of one conveying machine one is provided with an inclined distribution plate one, and the discharging end of the other conveying machine one is provided with an inclined distribution plate two.
[0016] As a further scheme of the utility model, the discharging end of the conveying machine two is provided with an inclined distribution plate three.
[0017] As a further scheme of the utility model, the conveying plate one and the conveying plate two comprise a conveying plate main body one and a conveying plate main body two, the conveying plate main body one and the conveying plate main body two are fixedly connected, the conveying plate main body one and the conveying plate main body two are integrally arranged in a V shape, the outer side end faces of the conveying plate main body one and the conveying plate main body two are fixedly connected with two plate spring mounting plates arranged symmetrically, plate springs are fixedly connected between the two plate spring mounting plates, motor connecting plates are fixedly connected to the two plate springs, motor mounting plates are fixedly connected between the two motor connecting plates, and a vibration motor is fixedly installed on the motor mounting plate.
[0018] The utility model discloses the beneficial effects of:
[0019] 1. The utility model discloses a mixing mechanism for the broken nut mixture, which comprises a feeding hopper, a material lifting machine, a material sorting mechanism, a material conveying plate, a material conveying machine and a material distributing plate.
[0020] 2. The utility model discloses a mixing mechanism for the broken nut mixture, which comprises a feeding hopper, a material lifting machine, a material sorting mechanism, a material conveying plate, a material conveying machine and a material distributing plate. BRIEF DESCRIPTION OF DRAWINGS
[0021] The utility model discloses a mixing mechanism for the broken nut mixture, which comprises a feeding hopper, a material lifting machine, a material sorting mechanism, a material conveying plate, a material conveying machine and a material distributing plate.
[0022] Figure 1 The utility model discloses a mixing mechanism for the broken nut mixture, which comprises a feeding hopper, a material lifting machine, a material sorting mechanism, a material conveying plate, a material conveying machine and a material distributing plate. Figure One ;
[0023] Figure 2 The utility model discloses a mixing mechanism for the broken nut mixture, which comprises a feeding hopper, a material lifting machine, a material sorting mechanism, a material conveying plate, a material conveying machine and a material distributing plate. Figure Two ;
[0024] Figure 3 The utility model discloses a mixing mechanism for the broken nut mixture, which comprises a feeding hopper, a material lifting machine, a material sorting mechanism, a material conveying plate, a material conveying machine and a material distributing plate. Figure One ;
[0025] Figure 4 The utility model discloses a mixing mechanism for the broken nut mixture, which comprises a feeding hopper, a material lifting machine, a material sorting mechanism, a material conveying plate, a material conveying machine and a material distributing plate. Figure Two ;
[0026] Figure 5 The utility model discloses a mixing mechanism for the broken nut mixture, which comprises a feeding hopper, a material lifting machine, a material sorting mechanism, a material conveying plate, a material conveying machine and a material distributing plate. Figure 2 ;
[0027] Figure 6The utility model discloses a structure schematic diagram of conveying plate one Figure One ;
[0028] Figure 7 The utility model discloses a structure schematic diagram of conveying plate one Figure Two .
[0029] In the drawing: 1, support frame, 2, raw material elevator, 3, raw material distributing mechanism, 31, mechanism support frame, 32, material baffle, 33, feed hopper, 34, distributing inclined plate one, 35, distributing inclined plate two, 36, distributing lower discharge port, 37, distributing discharge port, 4, material arranging mechanism one, 41, mechanism shell, 42, material arranging inclined plate one, 43, material arranging discharge port one, 44, material arranging inclined plate two, 45, material arranging discharge port two, 5, material arranging mechanism two, 51, mechanism support plate, 52, distributing block, 53, material arranging distributing port, 6, material arranging plate, 7, conveying plate one, 71, conveying plate main body one, 72, conveying plate main body two, 73, plate spring mounting plate, 74, plate spring, 75, motor connecting plate, 76, motor mounting plate, 77, vibration motor, 8, conveying plate two, 9, conveying machine one, 10, conveying machine two, 11, distributing plate one, 12, distributing plate two, 13, distributing plate three. 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. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work belong to the range of protection of the utility model.
[0031] As Figures 1-5As shown, a new feeding mechanism, including support frame 1, raw material distribution mechanism 3, material sorting mechanism one 4 and material sorting mechanism two 5, the upper end of support frame 1 is fixedly connected with raw material elevator 2, raw material distribution mechanism 3 includes mechanism support frame 31, the upper end of mechanism support frame 31 is fixedly connected with feeding hopper 33, the lower end of feeding hopper 33 is provided with baffle plate 32, baffle plate 32 is fixedly connected with mechanism support frame 31, the inlet of feeding hopper 33 is fixedly connected with inclined distribution inclined plate one 34 and distribution inclined plate two 35, raw material distribution mechanism 3 is arranged at the feeding end of raw material elevator 2, material sorting mechanism one 4 is arranged at the discharging end of raw material elevator 2, raw material elevator 2 includes material sorting discharge port one 43 and material sorting discharge port two 45, the discharge end of material sorting discharge port one 43 is provided with material sorting mechanism two 5, material sorting mechanism two 5 includes material sorting distribution port 53, the discharge end of material sorting distribution port 53 is provided with material conveying plate one 7, the discharge end of material conveying plate one 7 is provided with material conveying machine one 9, the discharge end of material sorting discharge port two 45 is provided with material conveying plate 6, the discharge end of material conveying plate 6 is provided with material conveying plate two 8, the discharge end of material conveying plate two 8 is provided with material conveying machine two 10.
[0032] Material sorting mechanism one 4 further includes mechanism housing 41, mechanism housing 41 is respectively provided with material sorting inclined plate one 42 and material sorting inclined plate two 44, material sorting inclined plate one 42 and material sorting inclined plate two 44 respectively cooperate with the side end face of mechanism housing 41 to form material sorting discharge port one 43 and material sorting discharge port two 45.
[0033] Material sorting mechanism two 5 includes mechanism support plate 51, mechanism support plate 51 is fixedly connected with distribution block 52, distribution block 52 is provided with two material sorting distribution ports 53 at both ends, material conveying plate one 7 is provided with two material conveying channels corresponding to two material sorting distribution ports 53, the discharge end of two material conveying channels is provided with one material conveying machine one 9, the discharge end of one material conveying machine one 9 is provided with inclined distribution plate one 11, the discharge end of the other material conveying machine one 9 is provided with inclined distribution plate two 12, the discharge end of material conveying machine two 10 is provided with inclined distribution plate three 13.
[0034] In some embodiments, the lower end of distribution discharge port 36 is communicated with distribution discharge port 37.
[0035] The feeding plate one 7 and the feeding plate two 8 each comprise a feeding plate body one 71 and a feeding plate body two 72, the feeding plate body one 71 is fixedly connected with the feeding plate body two 72, the feeding plate body one 71 and the feeding plate body two 72 are integrally arranged in a V shape, two spring mounting plates 73 symmetrically arranged are fixedly connected to the outer side end faces of the feeding plate body one 71 and the feeding plate body two 72, a spring 74 is fixedly connected between the two spring mounting plates 73, two motor connecting plates 75 are fixedly connected to the spring 74, a motor mounting plate 76 is fixedly connected between the two motor connecting plates 75, a vibration motor 77 is fixedly installed on the motor mounting plate 76, in use, the vibration motor 77 drives the motor mounting plate 76 and the motor connecting plates 75 to vibrate, then the motor connecting plates 75 drive the spring 74 to vibrate, so as to drive the feeding plate body one 71 and the feeding plate body two 72 connected with the spring 74 to vibrate, thereby ensuring smooth feeding, and facilitating smooth feeding and preventing material from being squeezed and accumulated at the feeding plate one 7 and the feeding plate two 8.
[0036] In order to facilitate the person skilled in the art to understand the working principle of the present application, the working principle of the present application will be briefly described in combination with a specific application scenario:
[0037] In use, the to-be-processed broken nut mixture is poured into the feeding hopper 33 of the raw material distributing mechanism 3, the feeding hopper 33 is provided with an inclined distributing inclined plate one 34 and an inclined distributing inclined plate two 35, so that the broken nut mixture passes through the distributing discharge port 36, and since the lower ends of the distributing discharge ports 36 are in communication with the distributing discharge ports 37, the broken nut mixture passes through the distributing discharge ports 37 into the feeding end of the raw material elevator 2, and since the feeding end of the raw material elevator 2 is provided with the blocking plate 32, it can prevent the broken nut mixture from leaking accidentally and causing waste of raw materials, the broken nut mixture is lifted and transported to the sorting mechanism one 4 by the raw material elevator 2, and is further distributed by the sorting discharge port one 43 and the sorting discharge port two 45 of the sorting mechanism one 4, after the broken nut mixture is distributed by the sorting mechanism one 4, part of the broken nut mixture falls onto the sorting mechanism two 5 through the sorting discharge port one 43, and then the broken nut mixture is transported to the two conveying channels on the feeding plate one 7 through the two sorting distributing ports 53 of the sorting mechanism two 5, and then is discharged through the distributing plate one 11 and the distributing plate two 12 after passing through the two feeding machines 9, and the other part of the broken nut mixture falls onto the sorting plate 6 through the sorting discharge port two 45, and then is discharged in turn through the feeding plate two 8, the feeding machine two 10 and the distributing plate three 13, which is beneficial to improving the overall transportation efficiency and distribution efficiency of the nuts;
[0038] The motor mounting plate 76 and the motor connecting plate 75 are vibrated by the vibration motor 77, and then the leaf spring 74 is vibrated by the motor connecting plate 75, so that the material conveying plate main body one 71 and the material conveying plate main body two 72 connected with the leaf spring 74 are vibrated, thereby ensuring smooth material conveying and preventing material from being squeezed and accumulated at the material conveying plate one 7 and the material conveying plate two 8.
[0039] The above describes several embodiments of the present application in detail, but the embodiments of the present application are not limited to this, and cannot be considered to limit the scope of the present application. Any equivalent changes and improvements made within the scope of the present application should still belong to the patent coverage of the present application.
Claims
1. A novel feeding mechanism, characterized in that, The utility model relates to a raw material lifting device, which comprises a support frame (1) and a raw material lifting machine (2) fixedly connected to the upper end of the support frame (1). The raw material lifting device further comprises a raw material distributing mechanism (3) arranged at the feeding end of the raw material lifting machine (2). The raw material distributing mechanism (3) comprises a mechanism support frame (31), a feeding hopper (33) fixedly connected to the upper end of the mechanism support frame (31), a baffle (32) arranged at the lower end of the feeding hopper (33), the baffle (32) being fixedly connected to the mechanism support frame (31), an inclined distributing plate one (34) and an inclined distributing plate two (35) fixedly connected to the feeding opening of the feeding hopper (33). The raw material lifting device further comprises a first material sorting mechanism (4) arranged at the discharging end of the raw material lifting machine (2).
2. A novel feeding mechanism according to claim 1, characterized in that, The raw material lifting machine (2) comprises a first material discharging opening (43) and a second material discharging opening (45).
3. A novel feeding mechanism according to claim 2, characterized in that, The first material discharging opening (43) is provided with a second material sorting mechanism (5), the second material sorting mechanism (5) comprises a material distributing opening (53), the material distributing opening (53) is provided with a first material conveying plate (7), the first material conveying plate (7) is provided with a first material conveying machine (9), the second material discharging opening (45) is provided with a material sorting plate (6), the material sorting plate (6) is provided with a second material conveying plate (8), and the second material conveying plate (8) is provided with a second material conveying machine (10).
4. A novel feeding mechanism according to claim 1, characterized in that, The first material sorting mechanism (4) further comprises a mechanism housing (41), the mechanism housing (41) is provided with a first material inclined plate (44) and a second material inclined plate (44) respectively.
5. A novel feeding mechanism according to claim 4, characterized in that, The first material inclined plate (44) and the second material inclined plate (44) are respectively matched with the side end faces of the mechanism housing (41) to form the first material discharging opening (43) and the second material discharging opening (45) respectively.
6. A novel feeding mechanism according to claim 5, characterized in that, The second material sorting mechanism (5) comprises a mechanism supporting plate (51), the mechanism supporting plate (51) is fixedly connected with a material distributing block (52), and the material distributing block (52) is provided with two material distributing openings (53) at two ends respectively.
7. A novel feeding mechanism as claimed in claim 1, wherein, The first material conveying plate (7) is provided with two material conveying channels corresponding to the two material distributing openings (53) respectively, and the discharging ends of the two material conveying channels are provided with a first material conveying machine (9) respectively. The discharging end of one first material conveying machine (9) is provided with an inclined distributing plate one (11), and the discharging end of the other first material conveying machine (9) is provided with an inclined distributing plate two (12). The discharging end of the second material conveying machine (10) is provided with an inclined distributing plate three (13).
8. A novel feeding mechanism as claimed in claim 1, wherein, The first material conveying plate (7) and the second material conveying plate (8) each comprise a first material conveying plate body (71) and a second material conveying plate body (72), the first material conveying plate body (71) and the second material conveying plate body (72) are fixedly connected, the first material conveying plate body (71) and the second material conveying plate body (72) are integrally arranged in a V shape, two spring mounting plates (73) are fixedly connected to the outer side end faces of the first material conveying plate body (71) and the second material conveying plate body (72), two spring mounting plates (73) are fixedly connected with a spring (74), two motor connecting plates (75) are fixedly connected to the two springs (74), the two motor connecting plates (75) are fixedly connected to a motor mounting plate (76), and a vibration motor (77) is fixedly installed on the motor mounting plate (76).
Citation Information
Patent Citations
Mixed nut bagging and feeding machine
CN219029812U