CN209905225U - Heat-shrinkable fine dried noodle packaging machine - Google Patents

Heat-shrinkable fine dried noodle packaging machine Download PDF

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Publication number
CN209905225U
CN209905225U CN201920544806.5U CN201920544806U CN209905225U CN 209905225 U CN209905225 U CN 209905225U CN 201920544806 U CN201920544806 U CN 201920544806U CN 209905225 U CN209905225 U CN 209905225U
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China
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rotating shaft
frame
defeated
heat
conveying frame
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CN201920544806.5U
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Chinese (zh)
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潘友志
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Lujiang Zhiqin Noodle Co Ltd
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Lujiang Zhiqin Noodle Co Ltd
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Abstract

The utility model discloses a heat-shrinkable fine dried noodle packaging machine, which comprises a conveying frame, a film conveying module, a heat-shrinkable furnace, a discharging frame and a discharging conveyer belt, wherein the bottom of one end of the conveying frame, which is close to the film conveying module, is connected with a first rotating shaft; two limiting plates are symmetrically arranged on the upper portion of the conveying frame, the limiting plates are symmetrically arranged along the length direction of the conveying frame, and the two limiting plates are arranged at intervals. The utility model discloses it is fixed form to have the vermicelli and place the back on the conveyer belt, when making the vermicelli carry to the protective film in, comparatively accurate, avoids the effect of extravagant material.

Description

Heat-shrinkable fine dried noodle packaging machine
Technical Field
The utility model belongs to the technical field of the packaging technique and specifically relates to a heat shrink vermicelli packagine machine is related to.
Background
At present, a packing machine adopts automatic sealing and cutting, the sealing process can be automatically finished only by inching a starting switch after a product is manually put in place during sealing, the timing sealing can also be controlled by a time controller, the cut product is automatically conveyed out to a shrinkage furnace channel, a cycle operation can be finished after being discharged from a furnace, and the next cycle process is waited to enter.
At present, chinese utility model patent that publication number is CN208498944U discloses an automatic receive membrane packagine machine, the material is in inside the conveyer belt drives to enter into the protecting film down, utilizes this moment seal membrane mechanism can realize carrying out the heat-seal and shearing to the protecting film of both sides, then carry out the hot pressing simultaneously and shear to the center department of hot pressing to the terminal both sides, make the material of tectorial membrane separate with the protecting film of lapping.
The above prior art solutions have the following drawbacks: when the noodle making machine is used, the fine dried noodles need to be placed on the conveyor belt and are cylindrical, so that the situation that the fine dried noodles rotate on the conveyor belt possibly occurs, and the processing of materials is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a thermal contraction vermicelli packagine machine, the vermicelli is placed the back on the conveyer belt, and relative conveyer belt is the fixed form, makes the vermicelli carry to the protective film in the time, comparatively accurate, avoids extravagant material.
The above technical purpose of the present invention can be achieved by the following technical solutions: a heat-shrinkable fine dried noodle packaging machine comprises a conveying frame, wherein a film conveying module is arranged at one end of the conveying frame, a heat-shrinkable furnace is arranged at an outlet of the film conveying module, a discharging frame is arranged at an outlet of the heat-shrinkable furnace, a discharging conveying belt is installed on the discharging frame, a first rotating shaft is connected to the bottom of one end, close to the film conveying module, of the conveying frame, a first chain wheel is sleeved on the first rotating shaft, two fixing blocks are sleeved on the first rotating shaft, the first chain wheel is located between the two fixing blocks, a motor is installed at the other end of the conveying frame, a second rotating shaft is installed at one side, far away from the first rotating shaft, of the conveying frame, the motor drives the second rotating shaft, a second chain wheel is sleeved on the second rotating shaft, the first chain wheel is connected with the second chain wheel through a chain, and a plurality of vertical plates are connected; the upper portion symmetry of carriage is provided with two limiting plates, the limiting plate sets up along the length direction symmetry of carriage, two for the interval sets up between the limiting plate.
By adopting the technical scheme, when the noodle conveying device is used, the motor is started, the motor drives the first chain wheel to rotate, the first chain wheel drives the second chain wheel to rotate through the chain, a worker places the noodles between the two vertical plates, the chain slides along the upper end face of the conveying frame, so that the noodles slide to the position between the two limiting plates and are conveyed to the interior of the film conveying module, the protective film is sleeved on the outside of the noodles and then enters the thermal shrinkage furnace, the protective film is in a shrinkage shape after being heated, and the processed noodles are conveyed to the discharging conveying belt from the thermal shrinkage furnace; the vermicelli can not take place to rotate through the effect of limiting plate to when making the vermicelli get into in defeated membrane module, comparatively accurate, avoid extravagant.
The utility model discloses further set up to, carriage up end department offers the sliding tray that is used for placing the chain.
Through adopting above-mentioned technical scheme, set up the sliding tray, make the chain slide in the sliding tray, avoid the bottom of vermicelli to be located the upper portion of chain, make the chain rotate comparatively smoothly.
The utility model discloses further set up to, the top fixedly connected with division board of riser, the riser is located the sliding tray, the division board slides between two limiting plates.
Through adopting above-mentioned technical scheme, the vermicelli is placed between two risers, because the riser slides in the sliding tray, the area of contact of riser and vermicelli is less, and the vermicelli can take place crooked, so sets up the division board, makes two vermicelli be vertical form, avoids crooked.
The utility model discloses further set up to, the one end department that defeated membrane module was kept away from to the carriage is provided with defeated material subassembly, defeated material subassembly includes defeated work or material rest, installs at the last work or material rest of defeated original carriage one side department of frame, be provided with defeated material conveyer belt on the defeated work or material rest, it sets up the material loading conveyer belt on the work or material rest to go up, the both sides department of defeated work or material rest and last work or material rest all is provided with the butt board, go up the work or material rest and keep away from one side fixedly connected with baffle of department of defeated work or material rest, the landing leg is all installed to.
Through adopting above-mentioned technical scheme, the staff places the vermicelli in the work or material rest, and the vermicelli passes through the material loading carriage and carries to the material loading carriage in, through the upper portion of material loading carriage transportation to the carriage, avoids the staff to need the staff to take the vermicelli, has reduced staff's intensity of labour.
The utility model discloses further set up to, the one end department symmetric connection that last work or material rest was kept away from to defeated work or material rest has the installation piece, and two one side departments that the installation piece is relative all have through bolted connection place the board, two it has a plurality of first rotation axes to peg graft between the board to place, all cup jointed a plurality of first bearings in the first rotation axis.
By adopting the technical scheme, the fine dried noodles on the conveying frame can be conveyed to the upper part of the conveying frame only by the conveying belt, and the fine dried noodles can slide along one end of the conveying frame for a distance and then enter between the two partition plates.
The utility model discloses further set up to, defeated material frame is pegged graft near the upper portion of square piece and is had the second axis of rotation, a plurality of second bearings have been cup jointed in the second axis of rotation.
Through adopting above-mentioned technical scheme, be provided with the second on defeated work or material rest and rotate the pivot, make the vermicelli from defeated material conveyer belt conveying comparatively convenient when on the carriage.
The utility model discloses further set up to, two place the board and keep away from a department of carriage and all be connected with the swash plate, the swash plate is located the up end department of carriage, also connects through first axis of rotation between two swash plates.
Through adopting above-mentioned technical scheme, set up the swash plate, make the vermicelli of placing on the board from the second pivot from the swash plate that falls because of the dead weight, on the carriage was entered into to the swash plate, the artifical one end of standing at defeated material frame can be manually controlled the vermicelli on first pivot upper portion, make on the at the uniform velocity get into the carriage.
The utility model discloses further set up to, all cup jointed the connecting pipe in first axis of rotation and the second axis of rotation, the primary shaft holds and cup joints on the connecting pipe of first axis of rotation, the secondary shaft holds and cup joints on the connecting pipe of second axis of rotation, and the middle part diameter of connecting pipe lateral wall department is greater than the diameter of connecting pipe both ends department.
Through adopting above-mentioned technical scheme, set up the connecting pipe, make comparatively convenient the cup jointing of first bearing and second bearing in first axis of rotation and second axis of rotation, can not take place the landing moreover.
The utility model discloses further set up to, the up end of carriage department fixedly connected with limit frame, the limiting plate butt of limit frame and both sides, there is the roll groove at the inside middle part of limit frame, and the swash plate is located the inside of limit frame.
Through adopting above-mentioned technical scheme, the vermicelli passes through the first axis of rotation on the second swash plate and enters into to spacing frame in, the vermicelli rolls to between two division boards because the gravity of self, avoids putting into that needs the people hand one by one, reduces workman's intensity of labour.
To sum up, the utility model discloses following beneficial effect has:
1. the limiting plate is arranged at the upper part of the conveying frame, when the fine dried noodles are used, the fine dried noodles are under the action of the limiting plate, so that the fine dried noodles cannot roll, and when the fine dried noodles enter the film conveying module, the fine dried noodles are accurate, and waste is avoided;
2. the material conveying assembly is arranged, so that time and labor consumption of workers in carrying fine dried noodles are avoided, the operation efficiency of the machine is improved, and the processing cost is reduced;
3. set up spacing frame, when making the vermicelli lean on self gravity to slide to spacing frame from first axis of rotation upper portion, it is comparatively convenient, avoid the workman to need put into with one by one with the hand.
Drawings
FIG. 1 is a schematic view of the overall structure of the embodiment;
FIG. 2 is a schematic structural diagram of a bottom of the material conveying frame according to the embodiment;
FIG. 3 is a schematic structural view illustrating a feeding module according to an embodiment;
fig. 4 is an enlarged schematic view of a portion a in fig. 3.
Reference numerals: 1. a carriage; 11. a first rotating shaft; 111. a fixed block; 112. a first sprocket; 12. a motor; 121. a second rotating shaft; 122. a second sprocket; 13. a sliding groove; 131. a chain; 132. a vertical plate; 133. a partition plate; 14. a limiting plate; 15. a limiting frame; 151. a rolling groove; 2. a membrane transfusion module; 3. a thermal shrinking furnace; 4. a discharging frame; 41. a discharge conveyer belt; 5. a material conveying component; 51. a material conveying frame; 511. a conveying belt; 52. a feeding frame; 521. a feeding conveyer belt; 53. a butt joint plate; 531. a baffle plate; 54. a support leg; 541. a support leg; 55. mounting blocks; 551. placing the plate; 552. a first rotating shaft; 553. a first bearing; 554. a sloping plate; 56. a second rotating shaft; 561. a second bearing; 57. and (4) connecting the pipes.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1, for the utility model discloses a heat-shrinkable fine dried noodle packaging machine, including carriage 1, install defeated membrane module 2 of department in carriage 1 one side, set up at defeated membrane module 2 exit thermal contraction stove 3, install the ejection of compact frame 4 of keeping away from carriage 1 one side department at thermal contraction stove 3, be provided with ejection of compact conveyer belt 41 on the ejection of compact frame 4.
Referring to fig. 2, a first rotating shaft 11 is connected to the bottom of one end of the conveying frame 1 close to the film conveying module 2, a first chain wheel 112 is sleeved on the first rotating shaft 11, two fixing blocks 111 are sleeved on the first rotating shaft 11, and the first chain wheel 112 is located between the two fixing blocks 111; a motor 12 is fixedly installed at one end of the conveying frame 1 far away from the fixed block 111, a second rotating shaft 121 is installed at one side of the conveying frame 1 far away from the first rotating shaft 552, an output shaft of the motor 12 drives the second rotating shaft 121 to rotate, a second chain wheel 122 is sleeved on the second rotating shaft 121, and the first chain wheel 112 and the second chain wheel 122 are connected through a chain 131; in order to prevent the chain 131 from affecting the placement of the dried noodles, a sliding groove 13 (shown in fig. 4) is formed in the upper portion of the carriage 1, and the chain 131 slides in the sliding groove 13.
Referring to fig. 3, in order to avoid that the dried noodles are not rotated when being placed on the conveying rack 1, two limiting plates 14 are arranged at the upper end face of the conveying rack 1, the limiting plates 14 are symmetrically arranged along the length direction of the conveying rack 1, the two limiting plates 14 are arranged at intervals, and the dried noodles are placed between the two limiting plates 14.
Referring to fig. 4, a plurality of risers 132 are fixedly connected to the upper end surface of the chain 131 at intervals, two sides of the risers 132 are abutted against the side walls of the sliding groove 13, a partition plate 133 is fixedly connected to the top of the risers 132, the partition plate 133 is located between two limiting plates 14, and the dried noodles are placed between the two partition plates 133, so that the dried noodles can accurately enter the heat shrinkage furnace 3.
Referring to fig. 3, a material conveying assembly 5 is arranged at one end of the conveying frame 1 far away from the film conveying module 2, the material conveying assembly 5 comprises a material conveying frame 51 arranged at one side of the conveying frame 1, and a material loading frame 52 fixedly connected to one side of the material conveying frame 51 far away from the conveying frame 1, the material loading frame 52 extends outwards from the connection part with the material conveying frame 51 and is arranged in a downward inclination manner, a material conveying belt 511 is arranged on the material conveying frame 51, and a material loading belt 521 is arranged on the material loading frame 52; abutting plates 53 are arranged on two sides of the material conveying frame 51 and the material loading frame 52, and a baffle 531 is fixedly connected to one side of the material loading frame 52 far away from the material conveying frame 51; the bottom of the feeding frame 52 and the conveying frame 51 are both provided with supporting legs 54, and the bottom of each supporting leg 54 is connected with a supporting leg 541.
Referring to fig. 3, the upper end surface of the conveying frame 1 is fixedly connected with a limiting frame 15, the limiting frame 15 abuts against the limiting plates 14 on two sides, a rolling groove 151 is formed in the middle of the inside of the limiting frame 15, and the inclined plate 554 is located inside the limiting frame 15.
Referring to fig. 4, an installation block 55 is fixedly connected to one end of the material conveying frame 51 away from the material loading frame 52, and the installation blocks 55 are symmetrically arranged along the length direction of the material conveying frame 51; the opposite sides of the two mounting blocks 55 are respectively provided with a placing plate 551 through bolts, one end of the placing plate 551 far away from the conveying frame 51 is fixedly connected with an inclined plate 554, the two inclined plates 554 are also connected through a second rotating shaft 56, and the inclined plates 554 are positioned on the upper end surface of the conveying frame 1.
Referring to fig. 4, a plurality of first rotating shafts 552 are respectively inserted between the two placing plates 551 and the two inclined plates 554, and a plurality of first bearings 553 are respectively inserted on the first rotating shafts 552.
Referring to fig. 4, a second rotating shaft 56 is inserted into the upper portion of the feeding frame 51 on the mounting block 55, and a plurality of second bearings 561 are sleeved on the second rotating shaft 56; the first rotating shaft 552 and the second rotating shaft 56 are sleeved with the connecting pipe 57, and the middle diameter of the outer side wall of the connecting pipe 57 is larger than the diameters of the two ends of the connecting pipe 57, so that the first bearing 553 and the second bearing 561 can be conveniently sleeved on the second rotating shaft 56 and cannot slide.
When the fine dried noodle processing device is used, a worker places fine dried noodles in the material loading frame 52, the motor 12 is started, the motor 12 drives the first chain wheel 112 to rotate, the first chain wheel 112 drives the second chain wheel 122 to rotate through the chain 131, the fine dried noodles are conveyed into the material loading conveying frame 1 through the material loading conveying frame 1, slide to the position between the two partition plates 133 through the second rotating shaft 56 through the material loading conveying frame 1, and are conveyed to the interior of the film conveying module 2, the protective film is sleeved on the outer portion of the fine dried noodles, then the fine dried noodles enter the heat shrinkage furnace 3, are in a shrinkage shape through heating of the protective film, and the processed fine dried noodles are conveyed to the discharging conveying belt 41 from the heat shrinkage furnace 3.
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 (9)

1. The utility model provides a heat shrink vermicelli packagine machine, includes carriage (1), the one end department of carriage (1) is provided with defeated membrane module (2), the exit of defeated membrane module (2) is provided with heat shrink stove (3), heat shrink stove (3) exit is provided with ejection of compact frame (4), install ejection of compact conveyer belt (41) on ejection of compact frame (4), its characterized in that: the bottom of one end, close to the film conveying module (2), of the conveying frame (1) is connected with a first rotating shaft (11), a first chain wheel (112) is sleeved on the first rotating shaft (11), two fixing blocks (111) are sleeved on the first rotating shaft (11), the first chain wheel (112) is located between the two fixing blocks (111), a motor (12) is installed at the other end of the conveying frame (1), a second rotating shaft (121) is installed at one side, far away from the first rotating shaft (552), of the conveying frame (1), the motor (12) drives the second rotating shaft (121), a second chain wheel (122) is sleeved on the second rotating shaft (121), the first chain wheel (112) is connected with the second chain wheel (122) through a chain (131), and a plurality of vertical plates (132) are connected to the upper end face of the chain (131) at intervals; two limiting plates (14) are symmetrically arranged on the upper portion of the conveying frame (1), the limiting plates (14) are symmetrically arranged along the length direction of the conveying frame (1), and the two limiting plates (14) are arranged at intervals.
2. The heat-shrinkable noodle packaging machine according to claim 1, wherein: the upper end face of the conveying frame (1) is provided with a sliding groove (13) for placing a chain (131).
3. The heat-shrinkable noodle packaging machine according to claim 1, wherein: the top fixedly connected with division board (133) of riser (132), riser (132) are located sliding tray (13), division board (133) slide between two limiting plate (14).
4. The heat-shrinkable noodle packaging machine according to claim 1, wherein: one end department that defeated membrane module (2) was kept away from in carriage (1) is provided with defeated material subassembly (5), defeated material subassembly (5) include defeated work or material rest (51), install last work or material rest (52) of defeated work or material rest (51) original carriage (1) one side department, be provided with defeated material conveyer belt (511) on defeated work or material rest (51), it sets up material loading conveyer belt (521) on work or material rest (52) to go up, defeated work or material rest (51) both sides department all is provided with butt joint board (53) with last work or material rest (52), one side department fixedly connected with baffle (531) of being kept away from defeated work or material rest (51) in last work or material rest (52), landing leg (54) are all installed to the bottom of going up work or material rest (52) and defeated work or material rest (.
5. The heat-shrinkable noodle packaging machine according to claim 4, wherein: the material conveying frame is characterized in that one end, far away from the material loading frame (52), of the material conveying frame (51) is symmetrically connected with mounting blocks (55), one side, opposite to the two mounting blocks (55), of each mounting block is connected with a placing plate (551) through a bolt, a plurality of first rotating shafts (552) are inserted between the two placing plates (551), and the first rotating shafts (552) are all sleeved with a plurality of first bearings (553).
6. The heat-shrinkable noodle packaging machine according to claim 5, wherein: the upper portion of defeated work or material rest (51) near square piece is pegged graft and is had second axis of rotation (56), cup joint a plurality of second bearings (561) on second axis of rotation (56).
7. The heat-shrinkable noodle packaging machine according to claim 5, wherein: inclined plates (554) are connected to one ends, far away from the conveying frame (1), of the two placing plates (551), the inclined plates (554) are located on the upper end face of the conveying frame (1), and the two inclined plates (554) are connected through a first rotating shaft (552).
8. The heat-shrinkable noodle packaging machine according to claim 6, wherein: the first rotating shaft (552) and the second rotating shaft (56) are respectively sleeved with a connecting pipe (57), the first bearing (553) is sleeved on the connecting pipe (57) of the first rotating shaft (552), the second bearing (561) is sleeved on the connecting pipe (57) of the second rotating shaft (56), and the diameter of the middle part of the outer side wall of the connecting pipe (57) is larger than the diameter of the two ends of the connecting pipe (57).
9. The heat-shrinkable noodle packaging machine according to claim 1, wherein: the upper end face of carriage (1) department fixedly connected with is spacing frame (15), spacing frame (15) and limiting plate (14) butt of both sides, there is rolling groove (151) at the inside middle part of spacing frame (15), and swash plate (554) are located the inside of spacing frame (15).
CN201920544806.5U 2019-04-20 2019-04-20 Heat-shrinkable fine dried noodle packaging machine Active CN209905225U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920544806.5U CN209905225U (en) 2019-04-20 2019-04-20 Heat-shrinkable fine dried noodle packaging machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920544806.5U CN209905225U (en) 2019-04-20 2019-04-20 Heat-shrinkable fine dried noodle packaging machine

Publications (1)

Publication Number Publication Date
CN209905225U true CN209905225U (en) 2020-01-07

Family

ID=69044698

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920544806.5U Active CN209905225U (en) 2019-04-20 2019-04-20 Heat-shrinkable fine dried noodle packaging machine

Country Status (1)

Country Link
CN (1) CN209905225U (en)

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