CN212123522U - Preserved szechuan pickle washs shaping all-in-one - Google Patents

Preserved szechuan pickle washs shaping all-in-one Download PDF

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Publication number
CN212123522U
CN212123522U CN202020647658.2U CN202020647658U CN212123522U CN 212123522 U CN212123522 U CN 212123522U CN 202020647658 U CN202020647658 U CN 202020647658U CN 212123522 U CN212123522 U CN 212123522U
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China
Prior art keywords
plate
scraper blade
conveyer belt
automatic
cutting device
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CN202020647658.2U
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Chinese (zh)
Inventor
马帅
冯瑾
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Sichuan Guangle Food Co ltd
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Sichuan Guangle Food Co ltd
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Priority to CN202020647658.2U priority Critical patent/CN212123522U/en
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Abstract

The utility model relates to a preserved szechuan pickle washs shaping all-in-one, including automatic blank device and defeated material conveyer belt, be equipped with discharge gate and feed inlet on the automatic blank device, defeated material conveyer belt is located the one side that is close to the discharge gate of automatic blank device, defeated material conveyer belt includes connecting plate and conveyer belt body, the connecting plate is located conveyer belt body both sides, the top of connecting plate is equipped with the mounting panel, through riser fixed connection between mounting panel and the connecting plate; the mounting panel has first scraper blade, and first scraper blade sets up along connecting plate length direction, and the lower surface of first scraper blade is contradicted with the upper surface of connecting plate, is equipped with drive assembly in the mounting panel, drives first scraper blade reciprocating motion on the connecting plate through drive assembly, and the direction of motion of first scraper blade is perpendicular with the direction of motion of conveyer belt body. The utility model has the advantages of make the material that falls on the casing at defeated material conveyer belt edge move back the conveyer belt, reduce the waste of material.

Description

Preserved szechuan pickle washs shaping all-in-one
Technical Field
The utility model belongs to the technical field of the technique of food preparation and specifically relates to a preserved szechuan pickle washs shaping all-in-one is related to.
Background
The pickled mustard tuber is a pickled salted vegetable which is prepared by pickling tumorous stem (head of green vegetable) of stem mustard as a raw material through a specific process, is a semi-dry pickled product with slight lactic acid fermentation, has unique flavor, is fresh, fragrant, tender and crisp, appetizes and is delicious, and is deeply favored by consumers. In the processing technology of the preserved szechuan pickle, the cleaning and the forming are two important steps, and the integrated machine can finish the cleaning and the forming in the processing technology of the preserved szechuan pickle. The all-in-one machine is divided into three devices: a cleaning machine, a double-layer conveyor and an automatic cutting device. The process comprises the steps of manually peeling a preserved szechuan pickle, feeding the peeled preserved szechuan pickle from a double-layer conveyor, conveying the peeled preserved szechuan pickle into a cleaning machine through the double-layer conveyor, feeding the cleaned preserved szechuan pickle into an automatic cutting device, and finally discharging the cut preserved szechuan pickle.
Referring to fig. 1, the automatic cutting device in the prior art is used for cutting washed preserved szechuan pickle into strips, and comprises a feeding port and a discharging port, and a conveying conveyor belt located below the discharging port, wherein preserved szechuan pickle materials to be cut enter from the feeding port, are cut into strips by the automatic cutting device, and are discharged from the discharging port to fall onto the conveying conveyor belt.
The above prior art solutions have the following drawbacks: the materials sprayed out of the discharge port of the automatic cutting device can be scattered and fall on the shell at the edge of the conveying conveyor belt, and the materials falling on the edge of the conveying conveyor belt cannot be conveyed by the conveying conveyor belt to enter the next production link, so that the waste of the materials is caused, and the preparation cost is increased.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims at providing a preserved szechuan pickle washs shaping all-in-one has the material that makes to fall on the casing at defeated material conveyer belt edge and moves back the conveyer belt, reduces the extravagant advantage of material.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme: the preserved szechuan pickle cleaning and forming integrated machine comprises an automatic cutting device and a conveying conveyor belt, wherein a discharge port and a feed port are formed in the automatic cutting device, the conveying conveyor belt is positioned on one side close to the discharge port of the automatic cutting device, the conveying conveyor belt comprises a connecting plate and a conveyor belt body, the connecting plate is positioned on two sides of the conveyor belt body, a mounting plate is arranged above the connecting plate, and the mounting plate is fixedly connected with the connecting plate through a vertical plate; the mounting panel has first scraper blade, first scraper blade sets up along connecting plate length direction, and the lower surface of first scraper blade is contradicted with the upper surface of connecting plate, be equipped with drive assembly in the mounting panel, through drive assembly drives first scraper blade reciprocating motion on the connecting plate, the direction of motion of first scraper blade is perpendicular with the direction of motion of conveyer belt body.
By adopting the technical scheme, the materials enter from the feeding hole of the automatic cutting device, and are sprayed out from the discharging hole after being processed by the automatic cutting device. The material sprayed from the discharge port is sprayed onto the material conveying conveyer belt, and then enters the next treatment link after being conveyed by the material conveying conveyer belt. The conveyer belt body is used for the transmission material, and the connecting plate is located conveyer belt body both sides, plays the effect of connecting. The first rotating groove is used for the first scraper to slide in the first rotating groove, when the first scraper moves in the direction opposite to the moving direction of the conveyor belt body, the bottom of the first scraper scrapes materials sprayed onto the connecting plate onto the conveyor belt body, and the materials enter the next processing link through the transmission of the conveyor belt body. The driving assembly is used for driving the first scraper to scrape repeatedly on the upper surface of the connecting plate, so that materials scattered on the connecting plate are cleaned, and the waste of the materials is reduced.
The present invention may be further configured in a preferred embodiment as: the drive assembly includes driving motor, first rotating groove has been seted up in the mounting panel, first rotating groove runs through the lower surface of mounting panel, the length direction of first rotating groove is perpendicular with the direction of motion of conveyer belt body, first scraper blade sliding connection is in first rotating groove, first rotating groove internal rotation is connected with first lead screw, first lead screw and first scraper blade threaded connection, driving motor fixed connection is in the side of mounting panel, driving motor's output shaft and the tip fixed connection of first lead screw.
Through adopting above-mentioned technical scheme, first rotating groove supplies first scraper blade to slide wherein, and first lead screw can rotate wherein, and when first lead screw rotated, the cell wall of first rotating groove played spacing effect to the top of first scraper blade, and first lead screw rotated and drives threaded connection's on the first lead screw first scraper blade wherein to slide. The forward rotation and the reverse rotation of the driving motor respectively drive the first screw rod to rotate positively or rotate reversely, the forward rotation and the reverse rotation of the driving motor are switched, and the reciprocating motion of the first scraper in the first rotating groove is realized.
The present invention may be further configured in a preferred embodiment as: the automatic cutting device is characterized by further comprising a fixing plate connected between the two connecting plates, the fixing plate is located at the end portion, close to the automatic cutting device, of the transmission belt body, an auxiliary plate is arranged on the fixing plate, the auxiliary plate and the fixing plate are fixedly connected through a vertical plate, a second rotating groove is formed in the auxiliary plate, the second rotating groove penetrates through the lower surface of the auxiliary plate, a second lead screw is rotatably connected in the second rotating groove, a second scraping plate is connected to the second lead screw in a threaded mode, and the lower surface of the second scraping plate is abutted to the upper surface of the fixing plate; an auxiliary motor is fixedly connected to the auxiliary plate, and an output shaft of the auxiliary motor is fixedly connected with the second screw rod.
Through adopting above-mentioned technical scheme, the second rotates the groove and is used for supplying the second scraper blade wherein to slide, and first rotation groove supplies the second lead screw to rotate wherein, and when the second lead screw rotated, the second rotated the groove and played spacing effect to the top of second scraper blade to make the second lead screw with second lead screw threaded connection slide in the second rotated the inslot. The second scraper blade is used for scraping the material that drops in the fixed plate top down, has strengthened the clearance effect.
The present invention may be further configured in a preferred embodiment as: the discharge port is provided with a discharge plate, and two sides of the discharge plate are provided with baffle plates.
Through adopting above-mentioned technical scheme, go out the flitch and play the effect of direction to the material of following the discharge gate blowout to make the material can not too dispersed from the discharge gate blowout, thereby make the material can be more concentrated fall on the conveyer belt body.
The present invention may be further configured in a preferred embodiment as: the discharging plate is hinged to the side face of the automatic cutting device, a fixing piece is arranged at the hinged position of the discharging plate and the automatic cutting device, and the fixing piece is used for fixing the rotation of the discharging plate.
Through adopting above-mentioned technical scheme, it is articulated with automatic discharging device's side to make the play flitch rotate in automatic discharging device's side, adjust material spun angle, make the defeated material drive belt of adaptation that can be better according to the condition of difference from automatic discharging device spun material.
The present invention may be further configured in a preferred embodiment as: the mounting includes articulated shaft and fixation nut, articulated shaft fixed connection is in the side of play flitch, the tip of articulated shaft is equipped with the external screw thread, automatic blank device side fixedly connected with fixed block, the articulated shaft rotates to be connected in the fixed block, fixation nut threaded connection is on the articulated shaft, the fixed block is located between play flitch and the fixation nut.
Through adopting above-mentioned technical scheme, go out the flitch and can have realized the regulation to going out the flitch angle along the articulated shaft. When fixing nut screwed at the end of the hinge shaft, fixing nut and fixing block are tightly abutted, and fixing of the discharging plate and the automatic cutting device is realized. When the fixing nut is screwed down, the discharging plate can rotate up and down.
The present invention may be further configured in a preferred embodiment as: the automatic material cutting device is characterized by also comprising two air cylinders fixedly connected to the ground, telescopic rods of the air cylinders are hinged to the lower surfaces of the connecting plates, and the two air cylinders are respectively positioned at the end parts of the two connecting plates far away from the automatic material cutting device; two supporting rods are arranged below the connecting plates, and the top ends of the supporting rods are hinged to the end portions, close to the automatic material cutting device, of the two connecting plates respectively.
Through adopting above-mentioned technical scheme, when the piston rod of two cylinders upwards stretched out, can keep away from automatic blank device's tip jack-up with two connecting plates. The two supporting plates are positioned at the end parts of the two connecting plates close to the automatic cutting device, the two supporting plates are hinged at the end parts of the two connecting plates close to the automatic cutting device, and when a piston rod of the air cylinder extends upwards, the two supporting plates rotate along the hinged part with the connecting plates. The adjustment of the inclination angle between the conveying conveyor belt and the ground is realized, and the adaptation effect of the conveying conveyor belt is increased.
The present invention may be further configured in a preferred embodiment as: and a rubber layer is arranged between the fixing nut and the fixing block.
Through adopting above-mentioned technical scheme, when fixation nut screwed on the fixed block, fixation nut will be located the rubber layer of fixation nut and fixed block between and compress tightly, has increased the friction between rubber layer and the fixation nut, has strengthened fixed effect.
To sum up, the utility model discloses a following at least one useful technological effect:
when the first screw rod rotates, the first scraper connected with the first screw rod in a threaded manner is driven to slide in the first rotating groove, and the forward rotation and the reverse rotation of the driving motor realize the reciprocating movement of the first scraper in the first rotating groove so as to better scrape the upper surface of the connecting plate;
the discharge plate is arranged to enable the materials sprayed out of the discharge port of the automatic cutting device to be sprayed out in a more concentrated mode, and the dispersion of the materials is reduced.
Drawings
FIG. 1 is a schematic diagram of a prior art configuration;
fig. 2 is a schematic structural diagram of the present invention;
FIG. 3 is a partially enlarged schematic view of portion A of FIG. 2;
fig. 4 is a schematic sectional view of the first and second rotating grooves of the present invention;
FIG. 5 is a partially enlarged schematic view of a portion B of FIG. 4;
fig. 6 is a partially enlarged structural view of a portion C in fig. 4.
Reference numerals: 1. an automatic material cutting device; 2. a conveying belt; 21. a connecting plate; 22. a conveyor belt body; 3. a discharge port; 4. a feed inlet; 5. mounting a plate; 6. a vertical plate; 7. a first squeegee; 8. a drive motor; 9. a first rotating groove; 10. a first lead screw; 11. a fixing plate; 12. an auxiliary plate; 13. a second rotating groove; 14. a second lead screw; 15. a second squeegee; 16. an auxiliary motor; 17. a discharge plate; 18. a baffle plate; 19. hinging a shaft; 20. fixing a nut; 28. a fixed block; 27. a cylinder; 23. a support bar; 24. a rubber layer; 25. a first slider; 26. and a second slider.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Refer to fig. 2 and fig. 3, for the utility model discloses a preserved szechuan pickle washs shaping all-in-one, including automatic blank device 1 and defeated material conveyer belt 2, be equipped with discharge gate 3 and feed inlet 4 on the automatic blank device 1, the green vegetable head that the preparation finishes drops into automatic blank device 1 from feed inlet 4 after peeling handles, is equipped with in the automatic blank device 1 and cuts up the cutting assembly who is the shape of preserved szechuan pickle strip with monoblock green vegetable head. The pickled mustard tuber cut into strips is sprayed out from the discharge port 3, and the strips of pickled mustard tuber sprayed out from the discharge port 3 fall on the conveying conveyor belt 2 and are driven by the conveying conveyor belt 2 to go down to a link.
The discharge port 3 is provided with a discharge plate 17, and two sides of the discharge plate 17 are fixedly connected with baffle plates 18. Go out flitch 17 and play the effect of direction to the material of following spun in discharge gate 3, avoid following the spun material of discharge gate 3 and too disperse. The baffle 18 further enhances the guiding effect of the material ejected from the discharge opening 3.
The discharging plate 17 is hinged to the side face of the automatic cutting device 1, a fixing piece is arranged at the hinged position of the discharging plate 17 and the automatic cutting device 1, and the fixing piece is used for fixing the rotation of the discharging plate 17. Go out flitch 17 and automatic discharging device's side and articulate, go out flitch 17 and can follow articulated shaft 19 and rotate, be convenient for go out the nimble regulation of flitch 17 to realized the effect of the inclination of adjustment play flitch 17, be convenient for go out flitch 17 and carry out the adaptation to the condition of difference.
The mounting includes articulated shaft 19 and fixation nut 20, and articulated shaft 19 fixed connection is in the side of play flitch 17, and the tip of articulated shaft 19 is equipped with the external screw thread, automatic blank device 1 side fixedly connected with fixed block 28, and articulated shaft 19 rotates to be connected in fixed block 28, and fixation nut 20 threaded connection is on articulated shaft 19, and fixed block 28 is located between play flitch 17 and fixation nut 20. The automatic material cutting device 1 can rotate along the hinge shaft 19, when the rotation angle of the discharging plate 17 is adjusted, the fixing nut 20 is screwed down from the external thread at the end part of the hinge shaft 19, the inclination angle of the discharging plate 17 is adjusted by rotating the hinge shaft 19, and when the conveying conveyor belt 2 below the discharging plate 17 is higher, the hinge shaft 19 is rotated to reduce the included angle between the discharging plate 17 and the ground; when the conveying conveyor belt 2 below the discharging plate 17 is lower, the hinge shaft 19 is rotated to increase the included angle between the discharging plate 17 and the ground, so that the discharging plate 17 can better realize discharging under different conditions.
A rubber layer 24 is provided between the fixing nut 20 and the fixing block 28. The rubber layer 24 is annular, the annular rubber layer 24 is sleeved on the hinge shaft 19, when the fixing nut 20 is screwed on the hinge shaft 19, the rubber layer 24 is pressed by the screwed fixing nut 20, and the rubber layer 24 abuts against the fixing block 28, so that friction is increased, and the discharging plate 17 with the adjusted angle can be fixed better.
Referring to fig. 4 and 5, the conveying conveyor belt 2 is positioned at one side close to the discharge port 3 of the automatic blanking device 1, the conveying conveyor belt 2 comprises a connecting plate 21 and a conveyor belt body 22, the connecting plate 21 is positioned at two sides of the conveyor belt body 22, a mounting plate 5 is arranged above the connecting plate 21, and the mounting plate 5 is fixedly connected with the connecting plate 21 through a vertical plate 6; mounting panel 5 has first scraper blade 7, and first scraper blade 7 sets up along connecting plate 21 length direction, and the lower surface of first scraper blade 7 is contradicted with the upper surface of connecting plate 21, is equipped with drive assembly in the mounting panel 5, drives first scraper blade 7 reciprocating motion on connecting plate 21 through drive assembly, and the direction of motion of first scraper blade 7 is perpendicular with the direction of motion of conveyer belt body 22.
Drive assembly includes driving motor 8, first rotating groove 9 has been seted up in the mounting panel 5, first rotating groove 9 runs through the lower surface of mounting panel 5, the length direction of first rotating groove 9 is perpendicular with the direction of motion of conveyer belt body 22, first scraper blade 7 sliding connection is in first rotating groove 9, first rotating groove 9 internal rotation is connected with first lead screw 10, first lead screw 10 and first scraper blade 7 threaded connection, driving motor 8 fixed connection is in the side of mounting panel 5, driving motor 8's output shaft and first lead screw 10's tip fixed connection.
The rotation of the driving motor 8 is a forward rotation by one stroke, and is switched to a reverse rotation by one stroke. When the output shaft of the driving motor 8 rotates forwards or reversely, the first screw rod 10 fixedly connected to the output shaft of the driving motor 8 is driven to rotate. First scraper blade 7 is including the first slider 25 that is located first scraper blade 7 top, first slider 25 sliding connection is in first rotation groove 9, it is spacing down to the slider at first rotation groove 9, first lead screw 10 rotates and makes first slider 25 remove along the length direction of first rotation groove 9, first slider 25 drives first scraper blade 7 and scrapes repeatedly at the upper surface of connecting plate 21, thereby scrape the last material of dispersion on connecting plate 21 and move conveyor belt body 22, the waste of material has been reduced, also make equipment cleaner clean neatly simultaneously. The mounting plate 5 is disposed above the connecting plate 21 so that the lower surface of the first scraper 7 contacts the connecting plate 21, and if the first rotating groove 9 is disposed on the connecting plate 21, a gap may occur, and materials may enter the gap along the gap, so that cleaning is inconvenient.
Referring to fig. 4 and 6, the automatic blanking device further comprises a fixing plate 11 connected between two connecting plates 21, the fixing plate 11 is located at an end portion of the belt body close to the automatic blanking device 1, an auxiliary plate 12 is arranged on the fixing plate 11, the auxiliary plate 12 is fixedly connected with the fixing plate 11 through a vertical plate 6, a second rotating groove 13 is formed in the auxiliary plate 12, the second rotating groove 13 penetrates through a lower surface of the auxiliary plate 12, a second screw 14 is rotatably connected to the second rotating groove 13, a second scraper 15 is connected to the second screw 14 in a threaded manner, and a lower surface of the second scraper 15 abuts against an upper surface of the fixing plate 11; an auxiliary motor 16 is fixedly connected to the auxiliary plate 12, and an output shaft of the auxiliary motor 16 is fixedly connected to the second lead screw 14.
The auxiliary motor 16 is the same as the drive motor 8, and rotates in reverse one stroke after rotating the output shaft of the auxiliary motor 16 in the forward one stroke. The second scraper 15 comprises a second sliding block 26, the second sliding block 26 is fixedly connected with the upper part of the second scraper 15, the second sliding block 26 is connected in the second rotating groove 13 in a sliding manner, and when the second screw rod 14 rotates, the second sliding block 26 is driven to repeatedly slide in the second rotating groove. Thereby realizing the repeated scraping of the second scraping plate 15 on the upper surface of the fixed plate 11.
The automatic material cutting device further comprises two air cylinders 27 fixedly connected to the ground, telescopic rods of the air cylinders 27 are hinged to the lower surfaces of the connecting plates 21, and the two air cylinders 27 are respectively located at the end portions, far away from the automatic material cutting device 1, of the two connecting plates 21; two support rods 23 are arranged below the connecting plates 21, and the top ends of the support rods 23 are respectively hinged to the end parts, close to the automatic material cutting device 1, of the two connecting plates 21.
When the piston rods of the two air cylinders 27 extend upwards, the ends of the two connecting plates 21 far away from the automatic material cutting device 1 can be jacked up. The two supporting plates are positioned at the end parts of the two connecting plates 21 close to the automatic cutting device 1, the two supporting plates are hinged at the end parts of the two connecting plates 21 close to the automatic cutting device 1, and when the piston rod of the air cylinder 27 extends upwards, the two supporting plates rotate along the hinged part with the connecting plates 21. The adjustment of the inclination angle of the conveying conveyor belt 2 and the ground is realized, and the adaptive effect of the conveying conveyor belt 2 is increased. When the next processing link of the material conveying conveyor belt 2 is lower than the material conveying conveyor belt 2, the cylinder 27 is started, and the piston rod of the cylinder 27 retracts, so that one end, far away from the automatic material cutting device 1, of the material conveying conveyor belt 2 descends, and the material conveying conveyor belt 2 can be better matched with the automatic material cutting device.
The implementation principle of the embodiment is as follows: the driving motor 8 and the auxiliary motor 16 are started, the output shaft of the driving motor 8 rotates forward or reversely to drive the first screw rod 10 to rotate forward or reversely, so that the first sliding block 25 with the thread penetrating through the first sliding block is made to slide in the first rotating groove 9 in a reciprocating manner, and the first scraping plate 7 fixedly connected with the first sliding block 25 is driven to scrape on the surface of the connecting plate 21 in a reciprocating manner. When the auxiliary motor 16 is started, the output shaft of the auxiliary motor 16 rotates forward or reversely to drive the second screw rod 14 to rotate forward or reversely, so that the second sliding block 26 with threads penetrating through the second screw rod reciprocates in the second rotating groove 13, and the second sliding block 26 drives the second scraping plate 15 fixedly connected with the second sliding block to scrape above the fixed plate 11 in a reciprocating manner.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. The utility model provides a preserved szechuan pickle washs shaping all-in-one, includes automatic blank device (1) and defeated material conveyer belt (2), be equipped with discharge gate (3) and feed inlet (4) on automatic blank device (1), defeated material conveyer belt (2) are located the one side of discharge gate (3) that is close to automatic blank device (1), its characterized in that: the conveying conveyor belt (2) comprises connecting plates (21) and conveyor belt bodies (22), the connecting plates (21) are located on two sides of the conveyor belt bodies (22), mounting plates (5) are arranged above the connecting plates (21), and the mounting plates (5) are fixedly connected with the connecting plates (21) through vertical plates (6); mounting panel (5) have first scraper blade (7) down, connecting plate (21) length direction setting is followed in first scraper blade (7), and the lower surface of first scraper blade (7) is contradicted with the upper surface of connecting plate (21), be equipped with drive assembly in mounting panel (5), through drive assembly drives first scraper blade (7) reciprocating motion on connecting plate (21), the direction of motion of first scraper blade (7) is perpendicular with the direction of motion of conveyer belt body (22).
2. The integrated machine for cleaning and forming preserved szechuan pickle according to claim 1, which is characterized in that: drive assembly includes driving motor (8), first rotation groove (9) have been seted up in mounting panel (5), first rotation groove (9) run through the lower surface of mounting panel (5), the length direction of first rotation groove (9) is perpendicular with the direction of motion of conveyer belt body (22), first scraper blade (7) sliding connection is in first rotation groove (9), first rotation groove (9) internal rotation is connected with first lead screw (10), first lead screw (10) and first scraper blade (7) threaded connection, driving motor (8) fixed connection is in the side of mounting panel (5), the output shaft of driving motor (8) and the tip fixed connection of first lead screw (10).
3. The integrated machine for cleaning and forming preserved szechuan pickle according to claim 2, wherein: the automatic material cutting device is characterized by further comprising a fixing plate (11) connected between the two connecting plates (21), the fixing plate (11) is located at the end portion, close to the automatic material cutting device (1), of the transmission belt body, an auxiliary plate (12) is arranged on the fixing plate (11), the auxiliary plate (12) is fixedly connected with the fixing plate (11) through a vertical plate (6), a second rotating groove (13) is formed in the auxiliary plate (12), the second rotating groove (13) penetrates through the lower surface of the auxiliary plate (12), a second screw rod (14) is rotatably connected in the second rotating groove (13), a second scraping plate (15) is connected to the second screw rod (14) in a threaded mode, and the lower surface of the second scraping plate (15) is abutted to the upper surface of the fixing plate (11); an auxiliary motor (16) is fixedly connected to the auxiliary plate (12), and an output shaft of the auxiliary motor (16) is fixedly connected with the second screw rod (14).
4. The integrated machine for cleaning and forming preserved szechuan pickle according to claim 1, which is characterized in that: the discharging hole (3) is provided with a discharging plate (17), and two sides of the discharging plate (17) are provided with baffles (18).
5. The integrated machine for washing and forming preserved szechuan pickle according to claim 4, wherein: the discharging plate (17) is hinged to the side face of the automatic cutting device (1), a fixing piece is arranged at the hinged position of the discharging plate (17) and the automatic cutting device (1), and the fixing piece is used for fixing the rotation of the discharging plate (17).
6. The integrated machine for washing and forming preserved szechuan pickle according to claim 5, wherein: the mounting includes articulated shaft (19) and fixation nut (20), articulated shaft (19) fixed connection is in the side of ejection of compact board (17), the tip of articulated shaft (19) is equipped with the external screw thread, automatic blank device (1) side fixedly connected with fixed block (28), articulated shaft (19) rotate to be connected in fixed block (28), fixation nut (20) threaded connection is on articulated shaft (19), fixed block (28) are located between ejection of compact board (17) and fixation nut (20).
7. The integrated machine for cleaning and forming preserved szechuan pickle according to claim 1, which is characterized in that: the automatic material cutting device is characterized by further comprising two air cylinders (27) fixedly connected to the ground, telescopic rods of the air cylinders (27) are hinged to the lower surfaces of the connecting plates (21), and the two air cylinders (27) are respectively located at the end portions, far away from the automatic material cutting device (1), of the two connecting plates (21); two supporting rods (23) are arranged below the connecting plates (21), and the top ends of the supporting rods (23) are hinged to the end portions, close to the automatic material cutting device (1), of the two connecting plates (21) respectively.
8. The integrated machine for washing and forming preserved szechuan pickle according to claim 6, wherein: and a rubber layer (24) is arranged between the fixing nut (20) and the fixing block (28).
CN202020647658.2U 2020-04-25 2020-04-25 Preserved szechuan pickle washs shaping all-in-one Active CN212123522U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020647658.2U CN212123522U (en) 2020-04-25 2020-04-25 Preserved szechuan pickle washs shaping all-in-one

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020647658.2U CN212123522U (en) 2020-04-25 2020-04-25 Preserved szechuan pickle washs shaping all-in-one

Publications (1)

Publication Number Publication Date
CN212123522U true CN212123522U (en) 2020-12-11

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020647658.2U Active CN212123522U (en) 2020-04-25 2020-04-25 Preserved szechuan pickle washs shaping all-in-one

Country Status (1)

Country Link
CN (1) CN212123522U (en)

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