Stacking device for noodle production
Technical Field
The utility model relates to the technical field of noodle production, in particular to a stacking device for noodle production.
Background
At the last stage of production noodless, can pack noodless in the packing box, finally, carry out noodless packing box by the conveyer belt, for convenient subsequent transportation, need neatly put things in good order the noodless packing box on the tray, and at present rely on the manual work to take off noodless packing box and put things in good order at the tail end of conveyer belt, more consume the manpower, consequently, to above current situation, urgent need develop an automation and pile up neatly noodless packing box, use pile up neatly device in the noodless production of convenient subsequent transportation, with the not enough in the current practical application of overcome, satisfy current demand.
Disclosure of utility model
The utility model aims to provide a stacking device for noodle production, which aims to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The stacking device for noodle production comprises a belt conveyor, a positioning baffle, a base, a rotary transposition mechanism, a lifting mechanism, a tray, a traversing mechanism and a material taking mechanism, wherein the base is fixed on one side of the belt conveyor, the rotary transposition mechanism is installed on the base, the lifting mechanism is installed at the top of the rotary transposition mechanism, the traversing mechanism is installed on the lower side of the lifting mechanism, the material taking mechanism is installed on the lower side of the traversing mechanism, the lifting mechanism comprises two electric telescopic rods and lifting frames, the number of the electric telescopic rods is two, the telescopic ends of the electric telescopic rods are fixed with the lifting frames, the traversing mechanism comprises a third motor, a screw rod, a thread bush, a traversing plate, a sliding block and a sliding rail, the third motor is fixed on the lifting frames, the screw rod is rotationally connected in the lifting frames, an output shaft of the third motor is connected with the screw rod, the thread bush is installed on the screw rod, the lower side of the thread bush is fixed with the traversing plate, the upper side of the traversing plate is fixed with two sliding blocks, the sliding blocks are slidably installed on the sliding rails, and the sliding blocks are fixed in the lifting frames.
Preferably, a positioning baffle plate is arranged at the front end of the belt conveyor.
Preferably, the belt conveyor comprises a frame, driving rollers, a conveying belt and a first motor, wherein two driving rollers are rotatably connected in the frame, the two driving rollers are in transmission connection through the conveying belt, the first motor is fixed on the frame, and an output shaft of the first motor is connected with the driving rollers.
Preferably, the rotary transposition mechanism comprises a supporting shaft, a supporting plate, a second motor, a first gear and a second gear, wherein the supporting shaft is rotatably connected with the base, the supporting plate is fixed at the top of the supporting shaft, the second motor is fixed on the base, the first gear is arranged on an output shaft of the second motor, the second gear meshed with the first gear is arranged on one side of the first gear, the second gear is arranged on the supporting shaft, and the lifting mechanism is arranged on the supporting plate.
Preferably, the electric telescopic rod is fixed on the supporting plate.
Preferably, the material taking mechanism comprises a vacuum pump, a pipeline frame and vacuum sucking discs, wherein the vacuum pump and the pipeline frame are fixed on the lower side of the transverse moving plate, the vacuum pump is communicated with the pipeline frame, and the lower side of the pipeline frame is provided with the plurality of vacuum sucking discs.
Preferably, the tray is placed on the base.
The noodle packing box stacking device has the beneficial effects that when the noodle packing box stacking device is used in noodle production, noodle packing boxes are conveyed forwards through the belt conveyor, the noodle packing boxes are blocked through the positioning baffle, then the traversing mechanism and the material taking mechanism are driven to move downwards through the lifting mechanism, the noodle packing boxes are sucked through the material taking mechanism, then the lifting mechanism, the traversing mechanism and the material taking mechanism are driven to rotate to the position above the tray through the rotating transposition mechanism, then the traversing mechanism and the material taking mechanism are driven to move downwards through the lifting mechanism, so that the material taking mechanism places the noodle packing boxes on the tray, then the material taking mechanism is returned to take out the next noodle packing box, and when the next noodle packing box is placed on the tray, the traversing mechanism is driven to traverse one station through the traversing mechanism, so that two noodle packing boxes are placed on the tray in a row. In conclusion, the noodle packaging box is automatically stacked, labor is saved, and subsequent transportation is convenient.
Drawings
Fig. 1 is a schematic perspective view of the present utility model.
Fig. 2 is a schematic diagram of a use state of the present utility model.
Fig. 3 is a second schematic view of the usage state of the present utility model.
Fig. 4 is a schematic diagram of a portion of the structure of the present utility model.
Fig. 5 is a schematic diagram of a portion of the structure of the present utility model.
Fig. 6 is a schematic diagram of a portion of the structure of the present utility model.
Fig. 7 is a schematic diagram of a portion of the structure of the present utility model.
Fig. 8 is a schematic diagram of a portion of the structure of the present utility model.
Legend description:
1. the device comprises a belt conveyor, 101, a frame, 102, a driving roller, 103, a conveying belt, 104, a first motor, 2, a positioning baffle, 3, a base, 4, a rotary transposition mechanism, 401, a supporting shaft, 402, a supporting plate, 403, a second motor, 404, a first gear, 405, a second gear, 5, a lifting mechanism, 501, an electric telescopic rod, 502, a lifting frame, 6, a tray, 7, a traversing mechanism, 701, a third motor, 702, a lead screw, 703, a threaded sleeve, 704, a traversing plate, 705, a sliding block, 706, a sliding rail, 8, a material taking mechanism, 801, a vacuum pump, 802, a pipeline frame, 803 and a vacuum sucker.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Specific examples are given below.
Referring to fig. 1-8, in the embodiment of the utility model, a stacking device for noodle production comprises a belt conveyor 1, a positioning baffle 2, a base 3, a rotary transposition mechanism 4, a lifting mechanism 5, a tray 6, a traversing mechanism 7 and a material taking mechanism 8, wherein the belt conveyor 1 is used for conveying noodle packing boxes, the front end of the belt conveyor 1 is provided with the positioning baffle 2, the noodle packing boxes are blocked by the positioning baffle 2, one side of the belt conveyor 1 is fixedly provided with the base 3, the base 3 is provided with the rotary transposition mechanism 4, the top of the rotary transposition mechanism 4 is provided with the lifting mechanism 5, the lower side of the lifting mechanism 5 is provided with the traversing mechanism 7, the lower side of the traversing mechanism 7 is provided with the material taking mechanism 8, the base 3 is provided with the tray 6, during use, the noodle packing boxes are conveyed forwards by the belt conveyor 1, the noodle packing boxes are blocked by the positioning baffle 2, then the traversing mechanism 7 and the material taking mechanism 8 are driven to move downwards by the lifting mechanism 5, then the traversing mechanism 7 and the material taking mechanism 8 are driven to rotate to the upper side of the tray 6 by the rotary transposition mechanism 4, and then the noodle packing boxes are driven to move upwards by the lifting mechanism 7 and the material taking mechanism 8 by the lifting mechanism 8.
The belt conveyor 1 comprises a frame 101, a driving roller 102, a conveying belt 103 and a first motor 104, wherein the two driving rollers 102 are rotatably connected with the frame 101, the two driving rollers 102 are in transmission connection through the conveying belt 103, the first motor 104 is fixed on the frame 101, an output shaft of the first motor 104 is connected with the driving roller 102, and when the belt conveyor is used, the driving roller 102 and the conveying belt 103 are driven to rotate through the first motor 104, and noodle packaging boxes are conveyed through the conveying belt 103.
The rotary transposition mechanism 4 comprises a support shaft 401, a support plate 402, a second motor 403, a first gear 404 and a second gear 405, wherein the support shaft 401 is rotationally connected with the base 3, the support plate 402 is fixed at the top of the support shaft 401, the second motor 403 is fixed on the base 3, the first gear 404 is installed on an output shaft of the second motor 403, the second gear 405 meshed with the first gear 404 is installed on one side of the first gear 404, the second gear 405 is installed on the support shaft 401, the lifting mechanism 5 is installed on the support plate 402, and in use, the second motor 403 drives the first gear 404 and the second gear 405 to rotate, the support shaft 401 and the support plate 402 are driven to rotate through the second gear 405, and the lifting mechanism 5 is driven to rotate through the support plate 402.
The lifting mechanism 5 comprises two electric telescopic rods 501 and lifting frames 502, wherein the electric telescopic rods 501 are fixed on the supporting plate 402, the telescopic ends of the electric telescopic rods 501 are fixed with the lifting frames 502, and the traversing mechanism 7 is arranged in the lifting frames 502.
The traversing mechanism 7 comprises a third motor 701, a screw rod 702, a thread bush 703, a traversing plate 704, sliding blocks 705 and sliding rails 706, wherein the third motor 701 is fixed on the lifting frame 502, the screw rod 702 is rotationally connected in the lifting frame 502, an output shaft of the third motor 701 is connected with the screw rod 702, the thread bush 703 is installed on the screw rod 702, the traversing plate 704 is fixed on the lower side of the thread bush 703, two sliding blocks 705 are fixed on the upper side of the traversing plate 704, the sliding blocks 705 are slidably installed on the sliding rails 706, the sliding rails 706 are fixed in the lifting frame 502, the material taking mechanism 8 is installed on the lower side of the traversing plate 704, and in use, the screw rod 702 is driven to rotate through the third motor 701, the thread bush 703 and the traversing plate 704 are driven to move through the rotation of the screw rod 702, and the material taking mechanism 8 is driven to transversely move through the traversing plate 704.
The material taking mechanism 8 comprises a vacuum pump 801, a pipeline frame 802 and vacuum suckers 803, wherein the vacuum pump 801 and the pipeline frame 802 are fixed on the lower side of the transverse moving plate 704, the vacuum pump 801 is communicated with the pipeline frame 802, the plurality of vacuum suckers 803 are arranged on the lower side of the pipeline frame 802, when materials are taken, the vacuum suckers 803 are vacuumized through the vacuum pump 801, noodle packaging boxes are sucked through the vacuum suckers 803, and when materials are discharged, the vacuum pump 801 blows air into the vacuum suckers 803, so that the noodle packaging boxes can be put down by the vacuum suckers 803.
The stacking device for noodle production is characterized in that when the stacking device is used, noodle packaging boxes are conveyed forwards through the belt conveyor 1, the noodle packaging boxes are blocked through the positioning baffle plate 2, then, the traversing mechanism 7 and the taking mechanism 8 are driven to move downwards through the lifting mechanism 5, the noodle packaging boxes are sucked through the taking mechanism 8, then, the lifting mechanism 5, the traversing mechanism 7 and the taking mechanism 8 are driven to rotate to the position above the tray 6 through the rotating transposition mechanism 4, then, the traversing mechanism 7 and the taking mechanism 8 are driven to move downwards through the lifting mechanism 5, the taking mechanism 8 is enabled to place the noodle packaging boxes on the tray 6, then, the taking mechanism 8 is returned to take out the next noodle packaging box, and when the next noodle packaging box is placed on the tray 6, the traversing mechanism 7 is driven to traverse one station through the traversing mechanism 8, so that two noodle packaging boxes are placed on the tray 6 in a row.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.