CN215471331U - Stuffing wrapping machine - Google Patents

Stuffing wrapping machine Download PDF

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Publication number
CN215471331U
CN215471331U CN202121699422.4U CN202121699422U CN215471331U CN 215471331 U CN215471331 U CN 215471331U CN 202121699422 U CN202121699422 U CN 202121699422U CN 215471331 U CN215471331 U CN 215471331U
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cutting
driving
assembly
connecting piece
fixed block
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CN202121699422.4U
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Chinese (zh)
Inventor
胡召军
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Shaanxi Haolilai Food Co ltd
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Shaanxi Haolilai Food Co ltd
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Abstract

The utility model relates to a encrusting machine, relate to the field of food processing technology, which comprises a frame, extruding means, elevating system, cutting mechanism and conveying mechanism, conveying mechanism is used for carrying the package material, extruding means is used for wrapping up filling material and surface fabric and extrudes, cutting mechanism includes the cutting seat, drive assembly, the connecting piece, actuating arm and cutting assembly, cutting seat and drive assembly all set up on elevating system, the connecting piece sets up on drive assembly, the middle part of actuating arm is rotated and is set up on the cutting seat, the one end of actuating arm is passed through the connecting piece and is connected with drive assembly, the other end and the cutting assembly of actuating arm are connected, cutting assembly sets up on the cutting seat, drive assembly is used for driving the actuating arm and carries out reciprocating motion, the actuating arm is used for driving cutting assembly to cut the surface fabric. This application passes through the connecting piece, and easy operation makes the motion range of actuating arm change, makes cutting assembly thoroughly cut the package material, improves cutting assembly's cutting efficiency.

Description

Stuffing wrapping machine
Technical Field
The application relates to the field of food processing technology, in particular to a encrusting machine.
Background
China has a plurality of special foods, especially foods with inclusions. Such as rice dumpling, sesame ball, and stuffed pill. Traditional glue puddings are all made manually, the glutinous rice flour dough is divided into a plurality of small pieces manually, the small pieces are rolled into a skin shape, then the stuffing of the glue puddings is wrapped, and the stuffing is wrapped by the glutinous rice flour.
However, the efficiency of such manual entrapment is limited and it is difficult to meet the market demand. Therefore, with the rapid development of the technological level, a stuffing forming machine is usually used to replace manual stuffing, and the requirements of food production in the market are met. During the use of the stuffing wrapping forming machine, the closing mechanism is used for cutting the glutinous rice flour dough, and then the corresponding conveying belts are used for conveying the wrapped stuffing.
In the process of using the stuffing filling machine, the closing mechanism is used for a long time, and then the glutinous rice dumpling powder is cut loose, so that the glutinous rice dumpling powder is cut incompletely.
SUMMERY OF THE UTILITY MODEL
In order to facilitate the closing mechanism to thoroughly cut the glutinous rice flour dough, the application provides a encrusting machine.
The application provides a encrusting machine adopts following technical scheme:
a stuffing wrapping machine, which comprises a frame, an extrusion mechanism, a lifting mechanism, a cutting mechanism and a conveying mechanism, wherein the extrusion mechanism, the lifting mechanism, the cutting mechanism and the conveying mechanism are positioned on the frame, the conveying mechanism is used for conveying the wrapping materials, the extruding mechanism is used for wrapping and extruding the filling materials and the fabrics, the cutting mechanism comprises a cutting seat, a driving component, a connecting piece, a driving arm and a cutting component, the cutting seat and the driving component are both arranged on the lifting mechanism, the connecting piece is arranged on the driving component, the driving arm is rotationally arranged on the cutting seat, one end of the driving arm is connected with the driving component through a connecting piece, the other end of the driving arm is connected with the cutting assembly, the cutting assembly is arranged on the cutting seat, the driving assembly is used for driving the driving arm to reciprocate, and the driving arm is used for driving the cutting assembly to cut the fabric.
Through adopting above-mentioned technical scheme, during the use, conveying mechanism carries the package material, and extrusion mechanism extrudes filling material and surface fabric parcel, adjusts elevating system, and elevating system can drive the cutting seat and go up and down. Adjust drive assembly, drive assembly drives the connecting piece and moves, and the connecting piece drives the actuating arm and is reciprocating motion, and then makes cutting assembly cut the package material, under elevating system's effect, can make the package material place on conveying mechanism and carry discontinuously. When the cutting assembly is loosened, the connecting piece is adjusted, the position of the connecting piece on the driving assembly is changed, and then the driving arm is driven to reciprocate to a larger extent, so that the cutting assembly can thoroughly cut the package material. Through the connecting piece, can change the position of connecting piece on drive assembly, make the motion range of actuating arm change, easy operation can make cutting assembly can thoroughly cut the package material, improves cutting assembly's cutting efficiency.
Optionally, the driving assembly comprises a driving cylinder and a supporting shaft, the driving cylinder is arranged on the lifting mechanism, the supporting shaft is connected with a driving shaft of the driving cylinder, the connecting piece is arranged on the supporting shaft, and the driving cylinder is used for driving the connecting piece to perform reciprocating motion.
Through adopting above-mentioned technical scheme, adjust and drive actuating cylinder, the drive shaft that drives actuating cylinder drives the back shaft and carries out reciprocating motion, and the back shaft drives the connecting piece and carries out reciprocating motion, and then makes and drive actuating cylinder and drive actuating arm and carry out reciprocating motion. The drive assembly who sets up can provide power to the motion of back shaft, can make the actuating arm be reciprocating motion, and then makes cutting assembly cut the package material, improves cutting efficiency.
Optionally, a guide hole capable of guiding the support shaft is formed in the cutting seat.
By adopting the technical scheme, the arranged guide holes can play a certain role in guiding the movement of the support shaft, so that the movement stability of the support shaft is improved; simultaneously, the back shaft can play certain supporting role to the cutting seat, and then improves the support intensity to the cutting seat.
Optionally, the connecting piece includes fixed block and at least one clamping screw, the one end of actuating arm with the fixed block is rotated and is connected, the fixed block cover is established on the back shaft, the fixed block with back shaft sliding connection, clamping screw be used for with the fixed block is fixed on the back shaft.
Through adopting above-mentioned technical scheme, when cutting assembly takes place not hard up, adjust fixing screw, make the fixed block can slide along the back shaft. Then, adjust fixing screw, change the fixed block and at the epaxial position of back, and then realize the increase of the motion amplitude of actuating arm, and then make cutting assembly can carry out thorough cutting to the package material, and then improve the cutting efficiency of cutting package material. The connecting piece that sets up can change the motion range of actuating arm, and then makes cutting assembly carry out thorough cutting to the package material, improves the cutting efficiency of cutting package material.
Optionally, a sliding block is arranged on the fixed block, a guide sliding groove capable of allowing the sliding block to slide is formed in the supporting shaft, and the guide sliding groove is formed in the length direction of the supporting shaft.
Through adopting above-mentioned technical scheme, the slider of setting can slide along the length direction of guide chute, makes the fixed block carry out steady motion on the back shaft, can improve the stability of fixed block motion on the back shaft.
Optionally, the lifting mechanism includes a lifting plate and a lifting cylinder, the lifting cylinder is arranged on the lifting plate, the lifting plate is arranged in the height direction of the frame, the driving shaft of the lifting cylinder is connected with the frame, and the driving shaft of the lifting cylinder is arranged in the height direction of the frame.
Through adopting above-mentioned technical scheme, adjust the lift cylinder, the drive shaft of lift cylinder drives the lifter plate and carries out reciprocating motion along the direction of height of frame, and then makes the lifter plate drive the direction of height of cutting seat along the frame and be reciprocating motion. After the cutting assembly cuts the package material, the cutting seat moves downwards, and then places the package material on conveying mechanism fast, then under the effect of lifter plate, makes the cutting seat move upwards rapidly, makes the cutting assembly continue to cut the package material at back, and then makes the package material distribute in an orderly manner and carry on conveying mechanism, reduces to take place the sizing between the package material. The elevating system who sets up can make cutting mechanism be interrupted the cutting to the package material, can make the package material fall conveying mechanism in an orderly manner and carry, can reduce to take place the sizing between the package material, and then can improve the integrality of package material.
Optionally, a guide rod for guiding the lifting plate is arranged on the rack, and the guide rod is arranged along the height direction of the rack.
Through adopting above-mentioned technical scheme, the guide bar of setting can play certain guide effect to the lifter plate, and then can improve the stability of lifter plate motion.
Optionally, a supporting plate is arranged on the lifting plate, and the cutting seat is arranged on the supporting plate.
Through adopting above-mentioned technical scheme, the backup pad of setting can increase the area of contact between cutting seat and the lifter plate, can improve the lifter plate to the support intensity of cutting plate.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the position of the connecting piece on the driving assembly can be changed through the connecting piece, so that the motion amplitude of the driving arm is changed, the operation is simple, the cutting assembly can thoroughly cut the package material, and the cutting efficiency of the cutting assembly is improved;
2. the driving assembly can provide power for the movement of the supporting shaft, and can enable the driving arm to do reciprocating motion, so that the cutting assembly can cut the wrapping materials, and the cutting efficiency is improved;
3. the connecting piece can change the motion amplitude of the driving arm, so that the cutting assembly can thoroughly cut the package material, and the cutting efficiency of cutting the package material is improved;
4. the elevating system who sets up can make cutting mechanism be interrupted the cutting to the package material, can make the package material fall conveying mechanism in an orderly manner and carry, can reduce to take place the sizing between the package material, and then can improve the integrality of package material.
Drawings
Fig. 1 is a schematic overall structure diagram of a encrusting machine according to an embodiment of the application.
Fig. 2 is a sectional view of a stuffing wrapping machine according to an embodiment of the present application.
Fig. 3 is an enlarged schematic view of a portion a of fig. 1.
Reference numerals: 1. a frame; 11. a guide bar; 2. an extrusion mechanism; 3. a lifting mechanism; 31. a lifting plate; 32. a lifting cylinder; 4. a cutting mechanism; 41. a cutting seat; 411. a guide hole; 42. a drive assembly; 421. a driving cylinder; 422. a support shaft; 43. a connecting member; 431. a fixed block; 4311. a slider; 432. fixing the screw rod; 4321. a guide chute; 44. a drive arm; 45. a cutting assembly; 46. a support plate; 5. a conveying mechanism.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses a encrusting machine. Referring to fig. 1, the encrusting machine comprises a frame 1, an extruding mechanism 2, a lifting mechanism 3, a cutting mechanism 4 and a conveying mechanism 5, wherein the extruding mechanism 2, the lifting mechanism 3, the cutting mechanism 4 and the conveying mechanism 5 are located on the frame 1, the conveying mechanism 5 can convey encrusting materials, and the extruding mechanism 2 can wrap and extrude stuffing and fabric.
Referring to fig. 1, 2 and 3, in order to facilitate cutting of the wrapping material, the cutting mechanism 4 includes a cutting base 41, a driving assembly 42, a connecting member 43, a driving arm 44 and a cutting assembly 45, the cutting base 41 and the driving assembly 42 are both disposed on the lifting mechanism 3, the connecting member 43 is disposed on the driving assembly 42, the middle portion of the driving arm 44 is rotatably connected to the cutting base 41, one end of the driving arm 44 is connected to the driving assembly 42 through the connecting member 43, and the other end of the driving arm 44 is connected to the cutting assembly 45. Cutting assembly 45 sets up on cutting seat 41, and drive assembly 42 can drive actuating arm 44 and carry out reciprocating motion, and actuating arm 44 can drive cutting assembly 45 and cut the surface fabric.
Referring to fig. 2 and 3, in order to power the movement of the link 43, the driving assembly 42 includes a driving cylinder 421 and a supporting shaft 422, the driving cylinder 421 is disposed on the elevating mechanism 3, the supporting shaft 422 is welded to the driving shaft of the driving cylinder 421, the link 43 is disposed on the supporting shaft 422, and the driving cylinder 421 can drive the link 43 to reciprocate. Two guiding holes 411 are formed in the cutting seat 41, the supporting shaft 422 penetrates through the two guiding holes 411, and the supporting shaft 422 can slide along the guiding holes 411.
Referring to fig. 3, in order to adjust the driving amplitude of the driving arm 44, the connecting member 43 includes a fixed block 431 and two fixed screws 432, one end of the driving arm 44 is rotatably connected to the top of the fixed block 431, the fixed block 431 is sleeved on the supporting shaft 422, the fixed block 431 is slidably connected to the supporting shaft 422, and the fixed screws 432 can fix the fixed block 431 on the supporting shaft 422. The fixed block 431 is provided with a sliding block 4311, the supporting shaft 422 is provided with a sliding guide groove 4321 along the length direction, and the sliding block 4311 can slide along the sliding guide groove 4321.
Referring to fig. 2, in order to reduce the occurrence of material sticking between the packing materials, the lifting mechanism 3 includes a lifting plate 31 and a lifting cylinder 32, a base of the lifting cylinder 32 is fixed to the lifting plate 31 by a bolt, and the lifting plate 31 is distributed along the height direction of the frame 1. Two guide rods 11 are integrally connected to the frame 1, the lifting plate 31 can slide along the guide rods 11, and the guide rods 11 are distributed along the height direction of the frame 1. The lifting plate 31 is provided with a support plate 46, a vertical section of the support plate 46 is fixed on the lifting plate 31 by bolts, and the bottom of the cutting seat 41 is arranged on a horizontal section of the support plate 46.
The implementation principle of the encrusting machine in the embodiment of the application is as follows: when the cutting assembly 45 loosens during use, the fixing screw 432 is adjusted, so that the fixing block 431 can slide along the supporting shaft 422. Then, the fixing screw 432 is adjusted to change the position of the fixing block 431 on the support shaft 422, thereby achieving an increase in the movement amplitude of the driving arm 44. After the package material comes out from extrusion mechanism 2, adjust and drive actuating cylinder 421, the drive shaft that drives actuating cylinder 421 drives back shaft 422 and moves, and back shaft 422 drives fixed block 431 and moves, and fixed block 431 drives actuating arm 44 and moves, and under the effect of cutting seat 41, actuating arm 44 drives cutting assembly 45 and cuts the package material. Under the effect of lift cylinder 32, cutting seat 41 moves down, and then places the package material on conveying mechanism 5 fast, then under the effect of lifter plate 31, makes cutting seat 41 move up fast, makes cutting assembly 45 continue the cutting to following package material, and then makes the package material distribute uniformly on conveying mechanism 5 and carry, reduces to take place the sizing between the package material.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. A encrusting machine is characterized in that: the cutting machine comprises a rack (1), an extruding mechanism (2), a lifting mechanism (3), a cutting mechanism (4) and a conveying mechanism (5), wherein the extruding mechanism (2) is arranged on the rack (1), the conveying mechanism (5) is used for conveying wrapping materials, the extruding mechanism (2) is used for wrapping and extruding stuffing and flour materials, the cutting mechanism (4) comprises a cutting seat (41), a driving assembly (42), a connecting piece (43), a driving arm (44) and a cutting assembly (45), the cutting seat (41) and the driving assembly (42) are arranged on the lifting mechanism (3), the connecting piece (43) is arranged on the driving assembly (42), the driving arm (44) is rotatably arranged on the cutting seat (41), one end of the driving arm (44) is connected with the driving assembly (42) through the connecting piece (43), and the other end of the driving arm (44) is connected with the cutting assembly (45), the cutting assembly (45) is arranged on the cutting seat (41), the driving assembly (42) is used for driving the driving arm (44) to reciprocate, and the driving arm (44) is used for driving the cutting assembly (45) to cut the fabric.
2. A pastry machine as claimed in claim 1, characterised in that: the driving assembly (42) comprises a driving cylinder (421) and a supporting shaft (422), the driving cylinder (421) is arranged on the lifting mechanism (3), the supporting shaft (422) is connected with a driving shaft of the driving cylinder (421), the connecting piece (43) is arranged on the supporting shaft (422), and the driving cylinder (421) is used for driving the connecting piece (43) to reciprocate.
3. A pastry machine as claimed in claim 2, characterised in that: the cutting seat (41) is provided with a guide hole (411) capable of guiding the support shaft (422).
4. A pastry machine as claimed in claim 2, characterised in that: the connecting piece (43) comprises a fixed block (431) and at least one fixed screw rod (432), one end of the driving arm (44) is rotatably connected with the fixed block (431), the fixed block (431) is sleeved on the supporting shaft (422), the fixed block (431) is slidably connected with the supporting shaft (422), and the fixed screw rod (432) is used for fixing the fixed block (431) on the supporting shaft (422).
5. A pastry machine as claimed in claim 4, characterised in that: the fixed block (431) is provided with a sliding block (4311), the supporting shaft (422) is provided with a guide chute (4321) which can allow the sliding block (4311) to slide, and the guide chute (4321) is arranged along the length direction of the supporting shaft (422).
6. A pastry machine as claimed in claim 1, characterised in that: elevating system (3) include lifter plate (31) and lift cylinder (32), lift cylinder (32) set up on lifter plate (31), lifter plate (31) are followed the direction of height setting of frame (1), the drive shaft and the frame (1) of lift cylinder (32) are connected, just the drive shaft of lift cylinder (32) is followed the direction of height setting of frame (1).
7. A pastry machine as claimed in claim 6, characterised in that: the lifting plate is characterized in that a guide rod (11) used for guiding the lifting plate (31) is arranged on the rack (1), and the guide rod (11) is arranged along the height direction of the rack (1).
8. A pastry machine as claimed in claim 6, characterised in that: a supporting plate (46) is arranged on the lifting plate (31), and the cutting seat (41) is arranged on the supporting plate (46).
CN202121699422.4U 2021-07-24 2021-07-24 Stuffing wrapping machine Active CN215471331U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121699422.4U CN215471331U (en) 2021-07-24 2021-07-24 Stuffing wrapping machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121699422.4U CN215471331U (en) 2021-07-24 2021-07-24 Stuffing wrapping machine

Publications (1)

Publication Number Publication Date
CN215471331U true CN215471331U (en) 2022-01-11

Family

ID=79751760

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121699422.4U Active CN215471331U (en) 2021-07-24 2021-07-24 Stuffing wrapping machine

Country Status (1)

Country Link
CN (1) CN215471331U (en)

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