Vegetables cutting washs stoving sorting machine
Technical Field
The invention belongs to the field of vegetable sorting machines, and particularly relates to a vegetable cutting, cleaning, drying and sorting machine.
Background
At present, in order to facilitate people to eat vegetables, the vegetables are generally processed, namely, the vegetables are dry, convenient to carry and eat, and the like, and various mechanical equipment such as a grader in preorder processing is used for sorting the vegetables in the processing process so as to ensure that the subsequent production is carried out in various ways.
But this prior art is sorting the in-process to vegetables, is difficult for wasing vegetables, leads to vegetables remain residue on the surface not to be clear away completely, can reduce the vegetables quality like this, influences consumer's healthy, and it can weather vegetables to wash after wasing moreover, and a large amount of washing water remain on the vegetables surface, has been deposited for a long time and can lead to vegetables easy rotten.
Disclosure of Invention
In view of the above disadvantages of the prior art, an object of the present invention is to provide a vegetable cutting, cleaning, drying and sorting machine, which can cut vegetables after sorting, clean the vegetables after cutting, and dry the vegetables, thereby reducing the possibility of rotting the vegetables.
In order to solve the technical problems, the invention adopts the technical scheme that: a vegetable cutting, cleaning, drying and sorting machine comprises a rack, a conveyor, air outlets, bolts, a machine body, a machine case and an automatic cleaning and drying device, wherein the top end of the rack is welded with the bottom end of the machine body, the bolts are in threaded connection with the front surface of the machine body, three air outlets are formed in the front surface of the machine body, the conveyor is embedded and installed inside the machine body, the bottom end of the machine case is welded with the top end of the automatic cleaning and drying device, the automatic cleaning and drying device is connected with the machine body, the automatic cleaning and drying device comprises a conveying mechanism, a power motor device, a conveying mechanism, a protective cover shell, an automatic water outlet mechanism, a spray head cleaning mechanism, a conveying wheel mechanism, a cutting mechanism, a first fan drying mechanism, a lever transmission mechanism and a second fan drying mechanism, the bottom end of the power motor device is welded with the bottom end of an inner cavity, the automatic water outlet mechanism is connected with the top end of the spray head cleaning mechanism, the power motor device is connected with the conveying wheel mechanism in a meshed mode, a cutting mechanism is arranged above the conveying wheel mechanism, the lever transmission mechanism is connected with the bottom end of the conveying wheel mechanism, the first fan drying mechanism is connected with the lever transmission mechanism, and a conveying mechanism is arranged above the lever transmission mechanism;
the conveying mechanism comprises a conveying belt, a conveying wheel, a liquid level detector, a second controller, a water discharging pipe, an electromagnetic valve and a discharging port, the conveying belt is attached to the outer surface of the conveying wheel, the liquid level detector is arranged on one side of an inner cavity of the protective housing and connected with the second controller, the water discharging pipe is arranged on the protective housing and penetrates through the inner cavity of the protective housing, the electromagnetic valve is arranged on the water discharging pipe and connected with the second controller, and the discharging port is arranged below the conveying belt;
cutting mechanism includes spout, rolling disc, upper blade subassembly, lower spring, slider and second connecting rod, slider and spout sliding connection, the slider bottom is connected with upper blade subassembly, the spout left side is located to the rolling disc, rolling disc center department is connected with inverter motor, inverter motor is external to have motor drive module, inverter motor and motor drive module electric connection, motor drive module and well accuse module electric connection, be connected through the second connecting rod between motor drive module and the slider, the one end and the slider upper portion of second connecting rod are articulated, the other end and the rolling disc edge of second connecting rod are articulated a bit, lower blade subassembly bottom surface is located to the lower spring.
Further, the power motor device includes unable adjustment base, motor power, a bearing, first rotation pole, follow the driving wheel, a bevel gear, crossbar and action wheel, unable adjustment base's bottom welds with the inner chamber bottom of protection housing, unable adjustment base's top welds with motor power's bottom mutually, motor power's top is equipped with the bearing, the bottom and the bearing nested connection of first rotation pole, the bottom of first rotation pole is connected with motor power through the bearing, the action wheel is connected with first rotation pole cooperation, the positive surface from the driving wheel is connected with the top lock of crossbar, the action wheel is connected with the driven wheel through the crossbar, a bevel gear is connected with the driven wheel, a bevel gear and transport wheel mechanism threaded connection.
Furthermore, transport mechanism includes drive wheel, conveyer belt, No. two drive wheels, head rod and cooperation pole, and one side of a drive wheel is equipped with No. two drive wheels, and the surface of a drive wheel and No. two drive wheels all laminates with the conveyer belt mutually, and the positive surface of a drive wheel and No. two drive wheels is connected with the both ends of cooperation pole respectively, and the one end and the No. two drive wheels of head rod are connected, and the other end and the No. two drive wheels of head rod are connected.
Furthermore, the automatic water outlet mechanism comprises a bottom plate, a water outlet tank, a first controller, a sealing ring and a transmission pipe, the water outlet tank is arranged on the bottom plate, the first controller is embedded in the front surface of the water outlet tank, the transmission pipe penetrates into the water outlet tank, the sealing ring is connected with the transmission pipe in an embedded mode, and the transmission pipe is embedded with the top end of the spray head cleaning mechanism.
Furthermore, the spray nozzle cleaning mechanism comprises a connecting buckle, a water pipeline, a sealing block, a spray gun and a high-pressure spray nozzle, the bottom end of the connecting buckle is connected with the top end of the water pipeline in a buckling mode, the bottom end of the water pipeline is connected with the sealing block in a nested mode, the water pipeline is connected with the spray gun through the sealing block, the high-pressure spray nozzle is arranged at the bottom end of the spray gun, and transmission pipes are connected to the two sides of the connecting buckle in a penetrating mode.
Further, the conveying wheel mechanism includes No. two bevel gear, rotary rod, first belt and transmission wheel, and No. two bevel gear's bottom welds with the top of rotary rod mutually, and first belt is laminated mutually with the surface of rotary rod, and first belt is connected with the positive surface of transmission wheel, and No. two bevel gear is connected with bevel gear meshing.
Further, the upper blade assembly comprises a blade carrier, a plurality of blades are arranged below the blade carrier, and the included angle between each blade and the blade carrier is 45 degrees; the lower blade assembly comprises a driving roller, a driven roller, a transition roller and a second belt, the driving roller is externally connected with a second motor, the second motor is externally connected with a second motor driving module, the second motor is electrically connected with the second motor driving module, the second motor driving module is electrically connected with the central control module, the transition roller is arranged between the driving roller and the driven roller, and the driving roller is connected with the driven roller through the second belt.
Further, first fan weathers the mechanism and includes filter screen, sealed housing, first fan head, first screw, planet wheel, sun gear, cooperation wheel and connecting rod, and the filter screen embedding is installed on the top of sealed housing, and first fan is overhead to be equipped with first screw, planet wheel and sun gear threaded connection, and the sun gear is connected with the cooperation wheel, and the positive surface of cooperation wheel is connected with the one end of connecting rod, and the other end and the lever drive mechanism of connecting rod are connected.
Further, the lever drive mechanism includes the third belt, the truckle, the gangbar, the freely movable joint, moving frame, U type lever, reset spring, stabilizing support, parallel push rod and parallel spout, the third belt is laminated mutually with the positive surface of truckle, the one end and the truckle of gangbar, the other end and the moving frame of gangbar are connected, moving frame is connected with the freely movable joint, the freely movable joint is connected with U type lever, U type lever and parallel push rod are connected, the inside of parallel spout is equipped with reset spring, reset spring is connected with parallel push rod, parallel push rod is connected with the connecting rod lock, parallel push rod and parallel spout are nested mutually, stabilizing support's top and the bottom of parallel spout weld mutually.
Further, the second fan weathers the mechanism and includes the second dwang, first power pole, the straight-bar, the second power pole, second fan head and second screw, the one end and the first dwang of second dwang pass through the bevel gear meshing and connect, the other end of second dwang and the one end of first power pole pass through the bevel gear meshing and connect, the other end of first power pole and the one end of straight-bar pass through the bevel gear meshing and connect, the other end of straight-bar and the one end of second power pole pass through the bevel gear meshing and connect, the other end and the second fan head of second power pole are connected, be equipped with the second screw on the second fan head.
The invention has the beneficial effects that: after the vegetables are cut, the vegetables are cleaned, residues on the surfaces of the vegetables are washed, and then the clean water on the surfaces of the vegetables is dried, so that the vegetables are prevented from being rotten easily due to excessive moisture on the surfaces of the vegetables, and the quality of the vegetables is improved.
Drawings
The contents of the drawings and the reference numerals in the drawings are briefly described as follows:
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the automatic cleaning and drying apparatus according to the present invention;
FIG. 3 is a detailed structural diagram of the automatic cleaning and drying device according to the present invention;
FIG. 4 is a schematic structural view of an upper blade assembly in accordance with the present invention;
FIG. 5 is a schematic view of the construction of the lower blade assembly of the present invention;
FIG. 6 is a schematic structural diagram of an operating state of the present invention;
fig. 7 is a partial structural view of fig. 6.
Wherein, 1, a frame, 2, a conveyor, 3, an air outlet, 4, bolts, 5, a machine body, 6, a machine case, 7, an automatic cleaning and drying device, 70, a conveying mechanism, 701, a conveying belt, 702, a conveying wheel, 703, a liquid level detector, 704, a water discharge pipe, 705, an electromagnetic valve, 706, a material outlet, 71, a power motor device, 711, a fixed base, 712, a power motor, 713, a bearing, 714, a first rotating rod, 715, a driven wheel, 716, a first bevel gear, 717, a cross rod, 718, a driving wheel, 72, a conveying mechanism, 721, a first driving wheel, 722, a conveying belt, 723, a second driving wheel, 724, a first connecting rod, 725, a matching rod, 73, a protective housing, 74, an automatic water outlet mechanism, 741, a bottom plate, 742, a water outlet box, 743, a first controller, 744, a sealing ring, 745, a conveying pipe, 75, a spray head cleaning mechanism, 751 and a connecting buckle, 752. water pipe 753, sealing block 754, spray gun 755, high pressure nozzle, 76, transmission wheel mechanism 761, bevel gear II, 762, rotating rod 763, first belt, 764, transmission wheel 77, cutting mechanism 771, chute 772, rotating disk, 773, upper blade component, 7731, knife rest, 7732, blade, 774, lower blade component, 7741, driving roll, 7743, driven roll, 7742, second belt, 775, lower spring, 776, slide block, 777, second connecting rod, 78, first fan drying mechanism, 781, filter screen, 782, sealing housing, 783, first fan head, 784, first propeller, 785, planet wheel, 786, sun wheel, 787, mating wheel, 788, connecting rod, 79, lever transmission mechanism, 791, third belt, 792, small roller, 793, linkage rod, 794, movable joint, 795, movable frame, 796, lever transmission mechanism, 797, return spring, 797, 798. stabilizing support, 799, parallel push rod, 7910, parallel spout, 710, second fan blow-dry mechanism, 7101, second dwang, 7102, first powered rod, 7103, straight-bar, 7104, second powered rod, 7105, second fan head, 7106, second screw.
Detailed Description
The following description of the embodiments with reference to the drawings is provided to describe the embodiments of the present invention, and the embodiments of the present invention, such as the shapes and configurations of the components, the mutual positions and connection relationships of the components, the functions and working principles of the components, the manufacturing processes and the operation and use methods, etc., will be further described in detail to help those skilled in the art to more completely, accurately and deeply understand the inventive concept and technical solutions of the present invention.
As shown in fig. 1, a vegetables cutting, cleaning, drying and sorting machine, which comprises a frame 1, a conveyor 2, an air outlet 3, bolts 4, a machine body 5, a machine case 6 and a self-cleaning and blow-drying device 7, the top end of the frame 1 is welded with the bottom end of the machine body 5, the bolts 4 are in threaded connection with the front surface of the machine body 5, the front surface of the machine body 5 is provided with three air outlets 3, the conveyor 2 is embedded in the machine body 5, the bottom end of the machine case 6 is welded with the top end of the self-cleaning and blow-drying device 7, and the self-cleaning and blow-drying device 7 is connected with the.
As shown in FIG. 2, the automatic cleaning and drying device 7 comprises a conveying mechanism 70, a power motor device 71, a conveying mechanism 72, a protective casing 73 and an automatic water outlet mechanism 74, the automatic water outlet mechanism 74 is connected with the top end of the spray head cleaning mechanism 75, the power motor device 71 is connected with the conveying wheel mechanism 76 in a meshed mode, the cutting mechanism 77 is arranged above the conveying wheel mechanism 76, the lever transmission mechanism 79 is connected with the bottom end of the conveying wheel mechanism 76, the first fan drying mechanism 78 is connected with the lever transmission mechanism 79, and the conveying mechanism 70 is arranged above the lever transmission mechanism 79.
As shown in fig. 3, the conveying mechanism 70 includes a conveying belt 701, a conveying wheel 702, a liquid level detector 703, a second controller, a water drain pipe 704, an electromagnetic valve 705 and a discharge port 706, the conveying belt 701 is attached to the outer surface of the conveying wheel 702, the liquid level detector 703 is disposed on one side of the inner cavity of the protective enclosure 73, the liquid level detector 703 is connected to the second controller, the water drain pipe 704 is disposed on the protective enclosure 73 and penetrates through the inner cavity of the protective enclosure 73, the electromagnetic valve 705 is disposed on the water drain pipe 704, the electromagnetic valve 705 is connected to the second controller, and the discharge port 706 is disposed below the conveying belt.
The conveyor belt 701 can adopt a fine net structure, which is beneficial to the cleaning of the vegetables on the conveyor belt 701 by the nozzle cleaning mechanism 75, and the drying of the vegetables on the conveyor belt 701 by the first fan drying mechanism 78 and the second fan drying mechanism 710.
The cooperation of the liquid level detector 703, the second controller and the electromagnetic valve 705 can effectively drain the water for cleaning the vegetables in the protective housing 73, so as not to affect the transmission of the dried vegetables.
The power motor device 71 comprises a fixed base 711, a power motor 712, a bearing 713, a first rotating rod 714, a driven wheel 715, a first bevel gear 716, a cross rod 717 and a driving wheel 718, wherein the bottom end of the fixed base 711 is welded with the bottom end of an inner cavity of the protective housing 73, the top end of the fixed base 711 is welded with the bottom end of the power motor 712, the top end of the power motor 712 is provided with the bearing 713, the bottom end of the first rotating rod 714 is connected with the bearing 713 in a nested mode, the bottom end of the first rotating rod 714 is connected with the power motor 712 through the bearing 713, the driving wheel 718 is connected with the first rotating rod 714 in a matched mode, the front surface of the driven wheel 715 is connected with the top end of the cross rod 717 in a buckled mode, the driving wheel 718 is connected with the driven wheel 715 through the cross rod 717, the.
The conveying mechanism 72 comprises a first driving wheel 721, a conveying belt 722, a second driving wheel 723, a first connecting rod 724 and a matching rod 725, wherein the second driving wheel 723 is arranged on one side of the first driving wheel 721, the outer surfaces of the first driving wheel 721 and the second driving wheel 723 are respectively attached to the conveying belt 722, the front surfaces of the first driving wheel 721 and the second driving wheel 723 are respectively connected with two ends of the matching rod 725, one end of the first connecting rod 724 is connected with the second driving wheel 723, and the other end of the first connecting rod 724 is connected with the second driving wheel 723.
The automatic water outlet mechanism 74 comprises a bottom plate 741, a water outlet tank 742, a first controller 743, a sealing ring 744 and a transmission pipe 745, wherein the water outlet tank 742 is arranged on the bottom plate 741, the first controller 743 is embedded in the front surface of the water outlet tank 742, the transmission pipe 745 penetrates into the water outlet tank 742, the sealing ring 744 is connected with the transmission pipe 745 in a nested manner, and the transmission pipe 745 is nested with the top end of the nozzle cleaning mechanism 75.
The spray head cleaning mechanism 75 comprises a connecting buckle 751, a water pipeline 752, a sealing block 753, a spray gun 754 and a high-pressure spray head 755, wherein the bottom end of the connecting buckle 751 is buckled and connected with the top end of the water pipeline 752, the bottom end of the water pipeline 752 is nested and connected with the sealing block 753, the water pipeline 752 is connected with the spray gun 754 through the sealing block 753, the bottom end of the spray gun 754 is provided with the high-pressure spray head 755, and a transmission pipe 745 is connected with the two sides of the connecting buckle 751 in a penetrating way.
Transmission wheel mechanism 76 includes No. two bevel gear 761, rotary rod 762, first belt 763 and transmission wheel 764, and the bottom of No. two bevel gear 761 welds with the top of rotary rod 762 mutually, and first belt 763 is laminated with the surface of rotary rod 762 mutually, and first belt 763 is connected with the positive surface of transmission wheel 764, and No. two bevel gear 761 is connected with the meshing of a bevel gear 716.
Cutting mechanism 77 includes spout 771, rolling disc 772, upper blade subassembly 773, lower blade subassembly 774, lower spring 775, slider 776 and second connecting rod 777, slider 776 and spout 771 sliding connection, slider 776 bottom and upper blade subassembly 773 are connected, the rolling disc 772 is located the spout 771 left side, rolling disc 772 center department is connected with inverter motor, inverter motor is external to have motor drive module, inverter motor and motor drive module electric connection, motor drive module and well accuse module electric connection, be connected through second connecting rod 777 between motor drive module and the slider 776, the one end of second connecting rod 777 is articulated with slider 776 upper portion, the other end of second connecting rod 777 is articulated a bit with rolling disc 772 edge, lower spring 775 is located lower blade subassembly 774 bottom surface.
As shown in fig. 4, the upper blade assembly 773 includes a blade holder 7731, a plurality of blades 7732 are disposed below the blade holder 7731, the blades 7732 are angled at 45 ° to the blade holder 7731, and the blades 7732 are disposed at 45 °.
As shown in fig. 5, the lower blade assembly 774 includes a driving roller 7741, a driven roller 7743, a transition roller and a second belt 7742, the driving roller 7741 is externally connected with a second motor, the second motor is externally connected with a second motor driving module, the second motor is electrically connected with the second motor driving module, the second motor driving module is electrically connected with the central control module, the transition roller is disposed between the driving roller 7741 and the driven roller 7743, and the driving roller 7741 and the driven roller 7743 are connected by the second belt 7742. When the second belt 7742 is in motion, the blade 7732 cuts more easily.
First fan weathers mechanism 78 includes filter screen 781, sealed housing 782, first fan head 783, first screw 784, planet wheel 785, sun gear 786, cooperation wheel 787 and connecting rod 788, filter screen 781 embedding is installed on the top of sealed housing 782, be equipped with first screw 784 on the first fan head 783, planet wheel 785 and sun gear 786 threaded connection, sun gear 786 is connected with cooperation wheel 787, the positive surface of cooperation wheel 787 is connected with one end of connecting rod 788, the other end of connecting rod 788 is connected with lever drive mechanism 79.
The lever transmission mechanism 79 comprises a third belt 791, a small roller 792, a linkage rod 793, a movable joint 794, a moving frame 795, a U-shaped lever 796, a reset spring 797, a stabilizing support 798, a parallel push rod 799 and a parallel sliding groove 7910, the third belt 791 is attached to the front surface of the small roller 792, one end of the linkage rod 793 is connected with the small roller 792, the other end of the linkage rod 793 is connected with the moving frame 795, the moving frame 795 is connected with the movable joint 794, the movable joint 794 is connected with the U-shaped lever 796, the U-shaped lever 796 is connected with the parallel push rod 799, the reset spring 797 is arranged inside the parallel sliding groove 7910, the reset spring 797 is connected with the parallel push rod 799, the parallel push rod 799 is connected with a connecting rod 788 in a buckling mode, the parallel push rod 799 is nested with the parallel sliding groove 7910, and the top end of the stabilizing support 798 is.
The second fan drying mechanism 710 comprises a second rotating rod 7101, a first power rod 7102, a straight rod 7103, a second power rod 7104, a second fan head 7105 and a second propeller 7106, one end of the second rotating rod 7101 is meshed with the first rotating rod 714 through a bevel gear, the other end of the second rotating rod 7101 is meshed with one end of the first power rod 7102 through a bevel gear, the other end of the first power rod 7102 is meshed with one end of the straight rod 7103 through a bevel gear, the other end of the straight rod 7103 is meshed with one end of the second power rod 7104 through a bevel gear, the other end of the second power rod 7104 is connected with the second fan head 7105, and the second fan head 7105 is provided with a second propeller 7106.
The working principle of the invention is as follows: the machine body 5 is used for starting equipment, vegetables are placed on the conveyor 2 for sorting, then the vegetables are conveyed into the automatic cleaning and drying device 7, the power motor 712 is powered on, electric energy is converted into mechanical energy to start running, the first rotating rod 714 is driven to rotate, the driving wheel 718 pushes the driven wheel 715 to rotate forward through the cross rod 717, then the driven wheel 715 pushes the second driving wheel 723 upward through the first connecting rod 724 to rotate forward, the conveying belt 722 connected with the second driving wheel 723 starts to displace, the first driving wheel 721 on the left side synchronously rotates, and the vegetables are conveyed to the right;
the rotating disc 772 is driven to do circular motion through the rotation of the variable frequency motor, at the moment, one end of a second connecting rod 777 on the rotating disc 772 moves along with the rotating disc 772, the other end of the second connecting rod 777 drives a sliding block 776 to slide up and down in a sliding groove 771, in the sliding process, an upper blade assembly 773 is matched with a lower blade assembly 774 to cut vegetables on a second belt 7742, and a driving roller 7741 transports the cut vegetables in the rotating process; the degree of vegetables being cut is controlled by controlling the rotating speed of the variable frequency motor, and when the rotating speed of the variable frequency motor is increased, the frequency of the movement of the sliding block 776 is increased, so that the vegetables are cut more finely;
the second belt 7742 conveys the vegetables downwards to the transmission wheel 764, the driven wheel 715 drives the rotating rod 762 through the engagement between the first bevel gear 716 and the second bevel gear 761, the rotating rod 762 drives the transmission wheel 764 to rotate through the first belt 763, and then the transmission wheel 764 conveys the vegetables to the conveying mechanism 70;
the conveying belt 701 continues to convey the vegetables, a worker controls the first controller 743 through a wireless signal, the first controller 743 receives a signal to start the water outlet tank 742, the water outlet tank 742 transmits water to the spray gun 754 through the transmission pipe 745 and the water conveying pipe 752, the spray gun 754 stores and processes the water source and transmits the water source to the high-pressure spray head 755, the high-pressure spray head 755 changes the flow rate of the water by using pressure, so that the pressure is increased, the water speed is increased, the water flow is processed into small water beads to be sprayed out, the vegetables on the conveying belt 701 are cleaned, and residues on the surfaces of the vegetables are washed;
the first rotating rod 714 drives the second rotating rod 7101 to rotate through the meshing of the bevel gears, the second rotating rod 7101 drives the first power rod 7102 to rotate through the meshing of the bevel gears, the first power rod 7102 drives the straight rod 7103 to rotate through the meshing of the bevel gears, the straight rod 7103 drives the second power rod 7104 to rotate through the meshing of the bevel gears, the second power rod 7104 drives the second fan head 7105 and a second propeller 7106 on the second fan head 7105 to rotate through the meshing of the bevel gears, so that the second propeller 7106 can rotate quickly to form vortex, the vegetables are blown, clean water on the surfaces of the vegetables is dried, and the vegetables are prevented from being rotten easily due to excessive moisture on the surfaces of the vegetables;
the rotating rod 762 transmits the rotating force to the small roller 792 through the third belt 791 while rotating, so that the small roller 792 rotates circumferentially, the linkage rod 793 drives the moving frame 795 to pull back and forth, due to the factor of the internal frame structure of the moving frame 795, reciprocating motion can be completed under the driving of the small roller 792, then the moving frame 795 pulls the parallel push rod 799 back and forth through the U-shaped lever 796, so that the parallel push rod 799 pulls the matching wheel 787 to move circumferentially through the connecting rod 788, and the meshing relation between the right sun wheel 786 and the planet wheel 785 enables the first fan head 783 to rotate rapidly, so that the first propeller 784 rotates rapidly to form a vortex, air is blown to vegetables, clean water on the surfaces of the vegetables is dried, and the vegetables are prevented from being rotten easily due to excessive moisture on the surfaces of the vegetables;
the conveyor 701 outputs the cleaned and dried vegetables after cutting from the discharge port 706, and the treated vegetables can be obtained.
The liquid level detector 703 detects the water level in the protective cover 73 and sends the detected water level information to the second controller, the second controller is used for comparing the water level information detected by the liquid level detector 703 with a preset water level, when the detected water level information is greater than or equal to the preset water level, the second controller controls the electromagnetic valve 705 to be opened, and the remained water for cleaning the parts to be cleaned in the protective cover 73 flows out from the drain pipe 704.
The vegetable cutting, cleaning and drying sorter can effectively clean vegetables after cutting and completely remove residues on the surfaces of the vegetables, and then dry the cleaned vegetables with clean water on the surfaces of the vegetables after cleaning, so that the vegetables are easy to rot, and the problem that the vegetables are easy to rot due to the fact that the residues on the surfaces of the vegetables cannot be completely removed due to the fact that the vegetables cannot be easily cleaned in the sorting process of the vegetables in the prior art is solved.
The invention has been described above with reference to the accompanying drawings, it is obvious that the invention is not limited to the specific implementation in the above-described manner, and it is within the scope of the invention to apply the inventive concept and solution to other applications without substantial modification. The protection scope of the present invention shall be subject to the protection scope defined by the claims.