CN207219394U - Feeding mechanism for ginger picking - Google Patents

Feeding mechanism for ginger picking Download PDF

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Publication number
CN207219394U
CN207219394U CN201721009338.9U CN201721009338U CN207219394U CN 207219394 U CN207219394 U CN 207219394U CN 201721009338 U CN201721009338 U CN 201721009338U CN 207219394 U CN207219394 U CN 207219394U
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CN
China
Prior art keywords
ginger
picking
groove
feeding mechanism
feed hopper
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201721009338.9U
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Chinese (zh)
Inventor
张顺利
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hengyang Fuhua Engineering Machinery Manufacturing Co Ltd
Original Assignee
Hengyang Fuhua Engineering Machinery Manufacturing Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hengyang Fuhua Engineering Machinery Manufacturing Co Ltd filed Critical Hengyang Fuhua Engineering Machinery Manufacturing Co Ltd
Priority to CN201721009338.9U priority Critical patent/CN207219394U/en
Application granted granted Critical
Publication of CN207219394U publication Critical patent/CN207219394U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a kind of feeding mechanism for ginger picking.The feeding mechanism for ginger picking includes feed hopper, junction box, cauline leaf groove, ginger groove, partition plate, air driven pump, air-leg, stent, fixed plate, rotary electric machine, shaft, cutting blade, sieve plate, vibrating motor, delivery board, first conveyer belt, the second conveyer belt and hairbrush.Feeding mechanism provided by the utility model for ginger picking, in picking, the cutting blade can cut off the cauline leaf at the top of ginger, realize automation cutting, without follow-up manual operation, the subsequent feed hopper is stretched into soil, the partition plate is first stretched into the soil of top layer, then the cauline leaf being cut will enter in the cauline leaf groove, the collection for the cauline leaf that is scattered be realized, without manual cleaning;Feed hopper described in subsequent vehicle propulsion advances, and ginger enters in the ginger groove, realizes the automatic collection of ginger;The separation of soil and ginger can be achieved.

Description

Feeding mechanism for ginger picking
Technical field
It the utility model is related to agricultural machinery technological field, more particularly to a kind of feeding mechanism for ginger picking.
Background technology
Ginger is the new fresh quench stem of Zingiber herbaceos perennial ginger, alias have race, hundred peppery clouds, hook dress refer to, because ground is pungent, Hot and cold boy, fresh ginger, honey process ginger, and rhizome, cork, the leaf of ginger can be used as medicine, and ginger has diverging in traditional Chinese medicine and pharmacy, stops Vomit, cough-relieving and other effects.
Current ginger is much manually picked in picking, and less efficient, manual labor amount is larger, and people hold stem Then stalk firmly together pulls up cauline leaf together with root ginger, then again remove the soil on ginger, and cauline leaf is separated with ginger, Finishing operations process is more, and cost of labor is larger.
Therefore, it is necessary to providing a kind of new feeding mechanism for being used for ginger picking solves above-mentioned technical problem.
Utility model content
The technical problem that the utility model solves, which is to provide one kind, can quickly realize the separation of ginger rhizome, the separated use of soil In the feeding mechanism of ginger picking.
Include in order to solve the above technical problems, the utility model is provided for the feeding mechanism of ginger picking:Feed hopper;Every Plate, the partition plate are welded in the inner wall of the feed hopper;Cauline leaf groove, top and the charging of the cauline leaf groove for the partition plate The inner wall enclosed space of bucket;Ginger groove, the ginger groove are the bottom of the partition plate and the inner wall enclosed space of the feed hopper; Air driven pump, the air driven pump is symmetrically welded to be electrically connected in the side wall of the feed hopper, the air driven pump with junction box;Pneumatically Bar, is slidably connected between the air-leg and the air driven pump;Stent, the stent are welded in the bottom of the air-leg;Gu Fixed board, the fixed plate are welded in one end of the stent;Rotary electric machine, the rotary electric machine are installed on the top of the fixed plate Portion, and the rotary electric machine is electrically connected with the junction box;Shaft, the shaft are rotatablely connected the rotary electric machine;Cutting Blade, the cutting blade are fixed on the bottom of the shaft;Sieve plate, the sieve plate are located at the exit of the ginger groove;Shake Dynamic motor, the vibrating motor is fixed on the bottom of the sieve plate, and the vibrating motor is electrically connected with the junction box;The One conveyer belt, the first conveyer belt are fixed on the exit of the sieve plate;Delivery board, the delivery board are located at the cauline leaf groove Exit;Second conveyer belt, second conveyer belt are fixed on the exit of the delivery board.
Preferably, the plane perpendicular of the partition plate is inlaid with hairbrush, and the hairbrush is arranged on the inside of the ginger groove.
Preferably, the hairbrush rectangular array distribution, and the area equation of the area of the hairbrush and the ginger groove.
Preferably, the inlet of the ginger groove is stretched in outside the partition plate.
Preferably, the partition plate is welded at the inner wall center of the feed hopper, and the partition plate is through the charging The inside of bucket.
Preferably, the air-leg is arranged in a mutually vertical manner with the stent.
Preferably, the shaft is through the inside of the fixed plate.
Preferably, the linear array distribution of the rotary electric machine is in the top of the fixed plate.
Preferably, the lateral section of the feed hopper is oblique.
Compared with correlation technique, the feeding mechanism provided by the utility model for ginger picking has following beneficial to effect Fruit:
The utility model provides the feeding mechanism for being used for ginger picking, and in picking, the cutting blade can be by ginger top The cauline leaf excision in portion, realizes automation cutting, and without follow-up manual operation, the subsequent feed hopper is stretched into soil, it is described every Plate is first stretched into the soil of top layer, and the cauline leaf being then cut will enter in the cauline leaf groove, and cauline leaf passes through the delivery board On to second conveyer belt, the collection for the cauline leaf that is scattered is realized, without manual cleaning;Feed hopper described in subsequent vehicle propulsion Advance, ginger enters in the ginger groove, realizes and is collected for the automatic of ginger;The hairbrush can remove the soil on ginger surface Go, then ginger falls on the sieve plate, and soil can be scattered under the action of the vibrating motor by shake, be finally recovered out, most Clean ginger can be transported by second conveyer belt afterwards, realize the separation of soil and ginger.
Brief description of the drawings
Fig. 1 is a kind of structural representation of preferred embodiment of the feeding mechanism provided by the utility model for ginger picking Figure;
Fig. 2 is the feed hopper internal structure schematic diagram shown in Fig. 1.
Figure label:1st, feed hopper, 1A junction box, 101, cauline leaf groove, 102, ginger groove, 2, partition plate, 3, air driven pump, 301, Air-leg, 4, stent, 5, fixed plate, 6, rotary electric machine, 601, shaft, 7, cutting blade, 8, sieve plate, 801, vibrating motor, 9, Delivery board, 10, first conveyer belt, the 11, second conveyer belt, 12, hairbrush.
Embodiment
The utility model is described in further detail with embodiment below in conjunction with the accompanying drawings.
Fig. 1 and Fig. 2 is please referred to, wherein, Fig. 1 is the feeding mechanism provided by the utility model for ginger picking A kind of preferred embodiment structure diagram;Fig. 2 is the feed hopper internal structure schematic diagram shown in Fig. 1.Picked for ginger Feeding mechanism include:Feed hopper 1;Partition plate 2, the partition plate 2 are welded in the inner wall of the feed hopper 1;Cauline leaf groove 101, it is described Cauline leaf groove 101 is the top of the partition plate 2 and the inner wall enclosed space of the feed hopper 1, and the cauline leaf groove 101 feeds for cauline leaf Area;Ginger groove 102, the ginger groove 102 is inner wall enclosed space of the bottom with the feed hopper 1 of the partition plate 2, described Ginger groove 102 is ginger feed zone;Air driven pump 3, the air driven pump 3 are symmetrically welded in the side wall of the feed hopper 1, and the gas The dynamic pump 3 and junction box 1A is electrically connected;Air-leg 301, is slidably connected between the air-leg 301 and the air driven pump 3; Stent 4, the stent 4 are welded in the bottom of the air-leg 301;Fixed plate 5, the fixed plate 5 are welded in the stent 4 One end, can start the air driven pump 3 and drive the fixed plate 5 to move up and down;Rotary electric machine 6, the rotary electric machine 6 are pacified Top loaded on the fixed plate 5, and the rotary electric machine 6 and junction box 1A is electrically connected;Shaft 601, the shaft The 601 rotation connection rotary electric machines 6;Cutting blade 7, the cutting blade 7 are fixed on the bottom of the shaft 601;Sieve plate 8, the sieve plate 8 is located at the exit of the ginger groove 102;Vibrating motor 801, the vibrating motor 801 are fixed on the sieve The bottom of plate 8, and the vibrating motor 801 and junction box 1A is electrically connected;First conveyer belt 10, the first conveyer belt 10 are fixed on the exit of the sieve plate 8, and ginger passes through the ginger groove 102, on the sieve plate 8, finally by described First conveyer belt 10 is delivered to outside;Delivery board 9, the delivery board 9 are located at the exit of the cauline leaf groove 101;Second conveying Band 11, second conveyer belt 11 are fixed on the exit of the delivery board 9, and cauline leaf first passes through the cauline leaf groove 101, Ran Houjin Enter on the delivery board 9, sent finally by second conveyer belt 11 to outside.
In the present embodiment, the plane perpendicular of the partition plate 8 is inlaid with hairbrush 12, and the hairbrush 12 is arranged on the ginger groove 102 inside, when ginger passes through the ginger groove 102, the soil on ginger surface can be brushed off by the hairbrush 12.
In the present embodiment, 12 rectangular array of the hairbrush distribution, and the distribution length of the hairbrush 12 and the ginger The length of groove 102 is identical so that cleanup area is wider, goes native effect more preferable.
In the present embodiment, the bottom of the sieve plate 8 is provided with vibrating motor 801, goes the ginger after mud to pass through the ginger Fall after groove 102 on the sieve plate 8, the sieve plate 8 can sift out soil, and the vibrating motor 801 can drive it is described Sieve plate 8 moves up and down, and improves screening effect.
The inlet of the ginger groove 102 is stretched in outside the partition plate 2, the feed hopper 1 is when advancing, 2 meeting of partition plate First the soil connection cauline leaf on top layer is rooted out, the subsequent ginger groove 102 reaches ginger region again, and ginger is scooped up.
The partition plate 2 is welded at the inner wall center of the feed hopper 1, and the partition plate 2 is through the feed hopper 1 Inside, realizes the separation for 1 space of feed hopper, so that cauline leaf and ginger separately be conveyed.
The air-leg 301 is arranged in a mutually vertical manner with the stent 4, can drive stent 4, institute by the air-leg 301 State fixed plate 5 to move, and then drive the cutting blade 7 to move up and down, realize the adjusting for cutting-height, grasped easy to worker Make.
The shaft 601 is through the inside of the fixed plate 5 so that the rotary electric machine 6 can pass through the shaft 601 drive the cutting blade 7 to rotate.
The 6 linear array distribution of rotary electric machine disposably can carry out multiple cauline leafs in the top of the fixed plate 5 Excision.
The lateral section of the feed hopper 1 is oblique so that the feed hopper 1 can extend into underground, then be pushed away in vehicle Travel forward under the action of power, planting soil will enter in the feed hopper 1.
Compared with correlation technique, the feeding mechanism provided by the utility model for ginger picking has following beneficial to effect Fruit:
The utility model provides the feeding mechanism for being used for ginger picking, and in picking, the cutting blade 7 can be by ginger The cauline leaf excision at top, realizes automation cutting, and without follow-up manual operation, the subsequent feed hopper 1 is stretched into soil, described Partition plate 2 is first stretched into the soil of top layer, and the cauline leaf being then cut will enter in the cauline leaf groove 101, and cauline leaf passes through described On delivery board 9 to second conveyer belt 11, the collection for the cauline leaf that is scattered is realized, without manual cleaning;Subsequent vehicle propulsion The feed hopper 1 advances, and ginger enters in the ginger groove 102, realizes and is collected for the automatic of ginger;The hairbrush 12 can incite somebody to action The soil on ginger surface removes, and then ginger falls on the sieve plate 8, soil can under the action of the vibrating motor 801 quilt Shake is scattered, and is finally recovered out, and last clean ginger can be transported by second conveyer belt 11, realize soil and ginger Separation.
The above description is only the embodiments of the present invention, and it does not limit the scope of the patent of the present invention, every Equivalent structure or equivalent flow shift made based on the specification and figures of the utility model, is directly or indirectly used in Other relevant technical fields, are equally included in the patent within the scope of the utility model.

Claims (9)

  1. A kind of 1. feeding mechanism for ginger picking, it is characterised in that including:
    Feed hopper;
    Partition plate, the partition plate are welded in the inner wall of the feed hopper;
    Cauline leaf groove, the cauline leaf groove are the top of the partition plate and the inner wall enclosed space of the feed hopper;
    Ginger groove, the ginger groove are the bottom of the partition plate and the inner wall enclosed space of the feed hopper;
    Air driven pump, the air driven pump is symmetrically welded to be electrically connected in the side wall of the feed hopper, the air driven pump with junction box;
    Air-leg, is slidably connected between the air-leg and the air driven pump;
    Stent, the stent are welded in the bottom of the air-leg;
    Fixed plate, the fixed plate are welded in one end of the stent;
    Rotary electric machine, the rotary electric machine are installed on the top of the fixed plate, and the rotary electric machine and junction box electricity Property connection;
    Shaft, the shaft are rotatablely connected the rotary electric machine;
    Cutting blade, the cutting blade are fixed on the bottom of the shaft;
    Sieve plate, the sieve plate are located at the exit of the ginger groove;
    Vibrating motor, the vibrating motor is fixed on the bottom of the sieve plate, and the vibrating motor and the junction box are electrical Connection;
    First conveyer belt, the first conveyer belt are fixed on the exit of the sieve plate;
    Delivery board, the delivery board are located at the exit of the cauline leaf groove;
    Second conveyer belt, second conveyer belt are fixed on the exit of the delivery board.
  2. 2. the feeding mechanism according to claim 1 for ginger picking, it is characterised in that the plane perpendicular of the partition plate Hairbrush is inlaid with, and the hairbrush is arranged on the inside of the ginger groove.
  3. 3. the feeding mechanism according to claim 2 for ginger picking, it is characterised in that the hairbrush rectangular array Distribution, and the area equation of the area of the hairbrush and the ginger groove.
  4. 4. the feeding mechanism according to claim 1 for ginger picking, it is characterised in that stretched in outside the partition plate described The inlet of ginger groove.
  5. 5. the feeding mechanism according to claim 1 for ginger picking, it is characterised in that the partition plate is welded in described At the inner wall center of feed hopper, and the partition plate is through the inside of the feed hopper.
  6. 6. the feeding mechanism according to claim 1 for ginger picking, it is characterised in that the air-leg and the branch Frame is arranged in a mutually vertical manner.
  7. 7. the feeding mechanism according to claim 1 for ginger picking, it is characterised in that the shaft is through described The inside of fixed plate.
  8. 8. the feeding mechanism according to claim 1 for ginger picking, it is characterised in that the rotary electric machine is linear Array distribution is in the top of the fixed plate.
  9. 9. the feeding mechanism according to claim 1 for ginger picking, it is characterised in that the lateral section of the feed hopper Obliquely.
CN201721009338.9U 2017-08-14 2017-08-14 Feeding mechanism for ginger picking Expired - Fee Related CN207219394U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721009338.9U CN207219394U (en) 2017-08-14 2017-08-14 Feeding mechanism for ginger picking

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721009338.9U CN207219394U (en) 2017-08-14 2017-08-14 Feeding mechanism for ginger picking

Publications (1)

Publication Number Publication Date
CN207219394U true CN207219394U (en) 2018-04-13

Family

ID=61857039

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721009338.9U Expired - Fee Related CN207219394U (en) 2017-08-14 2017-08-14 Feeding mechanism for ginger picking

Country Status (1)

Country Link
CN (1) CN207219394U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117260866A (en) * 2023-11-21 2023-12-22 济南市农业科学研究院 Ginger stem cutting equipment

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117260866A (en) * 2023-11-21 2023-12-22 济南市农业科学研究院 Ginger stem cutting equipment
CN117260866B (en) * 2023-11-21 2024-01-12 济南市农业科学研究院 Ginger stem cutting equipment

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180413

Termination date: 20200814

CF01 Termination of patent right due to non-payment of annual fee