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CN109910097B - Vegetable cutting equipment - Google Patents

Vegetable cutting equipment Download PDF

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Publication number
CN109910097B
CN109910097B CN201811478796.6A CN201811478796A CN109910097B CN 109910097 B CN109910097 B CN 109910097B CN 201811478796 A CN201811478796 A CN 201811478796A CN 109910097 B CN109910097 B CN 109910097B
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rectangular pipe
vegetable
fixed
box body
driving motor
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CN201811478796.6A
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CN109910097A (en
Inventor
宋少琦
赵俊伟
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Ningbo Fenghua District Jiazhihong Food Machinery Co.,Ltd.
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  • Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)

Abstract

The invention discloses a vegetable cutting device which comprises a slicing device, a shredding device and a dicing device. The vegetable slicing device comprises a box body, a feeding hole, a positioning hole, a movable frame, a spring, a movable conveying belt, a bevel gear, an upper roller, a lower roller, a fixing seat, a crawler-type cutter, a baffle, a driving motor and a transmission rod. After entering from the feed inlet, the vegetables reach the position of the cutter under the conveying action of the crawler; the vegetable shredding device comprises a rectangular pipe, a fixed seat, a baffle, a conveying belt, a driven wheel, a driving motor, a pressing wheel, a fixed rod, a spring, an electric push rod and a cutter. The vegetable dicing device comprises a rectangular pipe, a conveying belt, a driven wheel, a driving motor, a material collecting groove, a spring, a cutting groove, a push plate, a driving motor, a rack, an electric push rod and a cutter. The vegetable cutting equipment is formed by combining devices which complete different functions, is convenient to use, and greatly improves the use efficiency.

Description

Vegetable cutting equipment
Technical Field
The invention belongs to the technical field of machinery, and particularly relates to vegetable cutting equipment.
Background
When cooking, vegetables such as potatoes, radishes, cucumbers and the like are often required to be cut into slices, filaments or cubes. The work is particularly important in large restaurants, and special skilled workers are often needed to complete the work, but the work cannot be cut uniformly. Some kitchen novices spend a great deal of time on this task.
Therefore, a mechanical device is designed to replace manpower, so that time is saved, and the cut vegetables are guaranteed to be far beyond the artificial effect.
Disclosure of Invention
Based on the above, the invention provides a vegetable cutting device, which has a simple whole structure and low manufacturing cost, can conveniently cut vegetables with different sizes, and is convenient to use.
The technical scheme of the invention is as follows: a vegetable cutting device comprising: the slicing device, the shredding device and the dicing device.
The vegetable slicing device comprises a box body, a feeding hole, a positioning hole, a movable frame, a spring, a movable conveying belt, a bevel gear, a conveying belt, an upper roller, a lower roller, a fixing seat, a crawler-type cutter, a baffle, a driving motor, a transmission rod and a movable bevel gear.
The box is similar to a rectangular pipe, one end of the box is provided with a feed inlet, the other end of the box is open, and the open end of the box is provided with an upper roller and a lower roller.
Furthermore, the box body is provided with four positioning holes, and the two rotating shafts of the movable conveyor belt penetrate through the positioning holes; the movable conveyor belt is fixed on a movable frame by utilizing two rotating shafts of the movable conveyor belt, and the movable frame is connected to the upper surface of the interior of the box body through four springs.
The automatic conveying device is characterized in that a driving motor is installed at one end of the driving wheel of the conveying belt, a bevel gear is fixed at the other end of the driving wheel of the conveying belt, the bevel gear is matched with the bevel gear at the lower end of the transmission rod, a guide rail groove is formed in the upper end of the transmission rod, the guide rail groove is matched with a corresponding guide rail on the movable bevel gear, and the movable bevel gear is matched with the bevel.
Furthermore, a protective sleeve is welded on the movable frame, so that the bevel gear and the bevel gear can be permanently matched in the up-and-down movement process.
The fixing seat is fixed on the side face of the box body through a bolt, the fixing seat fixes the roller at the notch of the box body, and a crawler-type cutter is wound on the roller and is a V-shaped cutting edge; driving motors are respectively arranged in the two rollers, and a baffle is arranged above the lower roller;
the vegetable shredding device comprises a rectangular pipe, a fixed seat, a baffle, a conveying belt, a driven wheel, a driving motor, a pressing wheel, a fixed rod, a spring, an electric push rod and a cutter.
One end of the rectangular tube is provided with a large opening, the other end of the rectangular tube is provided with a small opening, and the bottom of the rectangular tube is provided with a notch.
The fixing seats are fixed on two sides of the rectangular pipe through bolts, and the driven wheels are fixed on the notches by the fixing seats.
Further, the driving motor is fixed on the inner wall of the rectangular tube, and the motor can drive the conveying belt to rotate when rotating, so that the flaky vegetables falling on the end of the driven wheel are conveyed to the lower part of the pressing wheel.
The pinch roller is a cylinder capable of freely rotating and is fixed at the top of the rectangular tube through a plurality of springs and U-shaped fixing rods.
The electric push rod is installed at the top of the rectangular pipe, a cutter reciprocates up and down at one end of the electric push rod, and the baffle plates are welded on two sides of the inner wall of the rectangular pipe.
The vegetable dicing device comprises a rectangular pipe, a conveying belt, a driven wheel, a driving motor, a material collecting groove, a spring, a cutting groove, a push plate, a driving motor, a rack, an electric push rod and a cutter.
One end of the rectangular pipe is open, the other end of the rectangular pipe is closed, the rectangular pipe extends outwards from the side face of the rectangular pipe, an electric push rod is installed on the rectangular pipe, and a cutter is arranged at one end of the electric push rod.
The driven wheel and the driving motor are fixed on the inner wall of the rectangular pipe, and the driving motor drives the conveying belt to rotate.
One end of the material collecting groove is fixed on the inner wall of the rectangular pipe through a pin shaft, a plurality of springs are arranged in the middle of the material collecting groove, and one ends of the springs are fixed on the inner wall of the rectangular pipe.
The cutting groove is composed of two curved plates, one end of each curved plate is welded on the inner wall of the rectangular pipe, and the other end of each curved plate extends out of the outer extending pipe on the side face of the rectangular pipe.
The cutting knife is positioned right in front of the cutting groove, a long rack welded at the bottom of the rectangular pipe is arranged in the middle of the cutting groove, and the long rack is matched with the driving motor.
Has the advantages that: 1. the vegetable slicing, shredding and dicing process organically combines three procedures of vegetable slicing, shredding and dicing into a whole, has reasonable structural design and convenient operation, and improves the cutting efficiency; 2. the automatic equipment has high efficiency; 3. three processes can be simultaneously completed, and the function is strong; 4. the three devices can be combined and independently used, and the application scene is wide.
Drawings
Fig. 1 is a front view of a sectioning device.
Fig. 2 is a left side view of the slicing apparatus.
Fig. 3 is a schematic view of a caterpillar cutter.
FIG. 4 is a schematic view of a shredding device.
Fig. 5 is a front view of the dicing apparatus.
Fig. 6 is a right side view of the dicing apparatus.
Fig. 7 is a view showing the combination of all the devices.
In the figure: 1-slicing device, 2-shredding device, 3-dicing device, 11-box, 111-feed inlet, 112-locating hole, 12-moving rack, 121-spring, 13-movable conveyor belt, 131-bevel gear, 14-conveyor belt, 141-bevel gear, 15-upper roller, 151-fixed seat, 16-crawler-type cutter, 17-lower roller, 171-baffle, 18-driving motor, 19-transmission rod, 191-movable bevel gear, 161-V-shaped cutter, 162-crawler, 21-rectangular tube, 211-fixed seat, 212-baffle, 22-conveyor belt, 23-driven wheel, 24-driving motor, 25-pressure wheel, 26-fixed rod, 27-spring, 28-electric push rod, 29-cutting knife, 31-rectangular tube, 32-conveyor belt, 33-driven wheel, 34-driving motor, 35-collecting groove, 351-spring, 36-cutting groove, 37-push plate, 371-driving motor, 38-rack, 39-electric push rod and 391-cutting knife.
Detailed Description
The invention is described in further detail below with reference to the figures and specific embodiments.
As shown in FIG. 7, a vegetable cutting apparatus comprises a slicing device 1, a shredding device 2, and a dicing device 3.
The slicing device is shown in fig. 1 and 2, the box body 11 is similar to a rectangular tube, and one end of the box body is provided with a feeding hole 111. The other end is open and is provided with a gap at the upper part and the lower part for installing two rollers 15 and 17. The number of the positioning holes 112 is four, two of which are in a group, and two rotating shafts of the movable conveyor belt 13 pass through the positioning holes.
The movable conveyor 13 is fixed to the movable frame 12 by two rotation shafts of the movable conveyor, and the movable frame 12 is connected to the inner upper surface of the casing 11 by four springs 121. This structure can ensure the movable conveyor belt 13 to move up and down in the positioning hole 112. When vegetables enter from the middle of the conveyor belt 13 and the conveyor belt 14, the conveyor belt 13 can generate certain pressure on the vegetables by using the spring 121, so that the vegetables can be well fixed, and subsequent cutting is facilitated.
The main rotating wheel of the conveyor belt 14 is driven by the driving motor 18, and the other end of the main rotating wheel is fixed with a bevel gear 141. The bevel gear 141 mates with a bevel gear on the lower end of the drive rod 19, while the upper end of the cylindrical rod of the drive rod 19 has a guide track groove that mates with a corresponding guide track on the movable bevel gear 191. Therefore, the drive rod 19 can drive the movable bevel gear 191 to synchronously rotate when rotating, and the bevel gear 191 can freely move up and down on the drive rod 19. And the movable bevel gear 191 is matched with a bevel gear 131 welded on the wheel shaft of the conveyor belt 13, so that the drive motor 18 can drive the conveyor belts 13 and 14 to rotate synchronously at the same speed. In order to make the bevel gears 191 and 131 permanently engaged during up and down movement, a protective sleeve is used to secure the two bevel gears together and is welded to the moving frame 12.
The fixing base 151 is fixed to the side of the box 11 by a screw, and the fixing base 151 fixes the rollers 15 and 17 to the notch of the box 11. The rollers 15 and 17 are wound with a caterpillar cutter 16. A driving motor is arranged in each of the two rollers and can drive the rollers to rotate, so that the crawler-type cutter 16 can reciprocate up and down. The baffle 171 is installed right above the roller 17 to ensure that the cut vegetables do not fall on the roller 17.
The crawler-type cutter is shown in fig. 3, wherein the V-shaped cutter 161 can ensure that the cutter can cut vegetables when moving upwards and downwards, and the working environment of the cutter is met. The V-shaped knives 161 are fixed at both ends to left and right tracks 162, and the tracks 162 are made of a flexible or bendable material so that the track cutters 16 are wound around the rollers 15, 17.
The working principle of the slicing device is as follows: the vegetables to be sliced are put in from the feed opening 111 and are conveyed to the other end of the conveyor belt through the combined action of the conveyor belts 13 and 14. The rollers 15 and 17 synchronously rotate forwards and backwards to drive the crawler-type cutter 16 to reciprocate up and down, so that the vegetables are cut into slices.
By changing the rotation speed of the driving motor 18, the thickness of the vegetables to be cut can be changed. If this thickness is not sufficient, the speed of rotation of the two rollers 15, 17 can also be varied.
The filament cutting device is shown in fig. 4, one end of the rectangular tube 21 is open and big, the other end is open and small, and a notch is arranged at the bottom. The driven wheel 23 is mounted in the gap by fixing seats 211 at both sides, and the fixing seats 211 are fixed on the side of the rectangular tube 21 by bolts. The driving motor 24 is fixed on the inner wall of the rectangular tube 21, and when the motor rotates, the driving belt 22 is driven to rotate, so that the sheet-shaped vegetables falling on the end of the driven wheel 23 are conveyed to the position below the pressing wheel 25.
The pressing wheel 25 is a cylinder which can rotate freely and is fixed on the top of the rectangular tube 21 through a plurality of springs 27 and a U-shaped fixing rod 26. The pinch roller 25 can compress the vegetables on the conveyor belt 22, so that the cutter 29 can accurately cut the vegetables into shreds.
The electric push rod 28 is installed on the top of the rectangular tube 21, and when power is applied to the electric push rod, the electric push rod drives the cutter 29 to reciprocate up and down, so that vegetables are cut uninterruptedly. The cut vegetables fall outside the rectangular tube 21 by the baffle 212, and the baffles 212 are welded to both sides of the inner wall of the rectangular tube 21.
It should be noted that the speed of the electric push rod 28 or the driving motor 24 can be manually adjusted when the width of the cut thread needs to be changed.
The dicing device is shown in fig. 5 and 6, wherein one end of the rectangular tube 31 is a through hole, the other end is closed, and the side surface is provided with an extended rectangular tube, the extended rectangular tube is provided with an electric push rod 39, and the electric push rod 39 controls the cutter 391 to reciprocate up and down. The driven wheel 33 and the driving motor 34 are fixed on the inner wall of the rectangular tube 31, and when the driving motor 34 is driven by electricity, the driving belt 32 can be driven to rotate, so that the vegetables are conveyed to the collecting groove 35.
One end of the material collecting groove 35 is fixed on the inner wall of the rectangular pipe 31 through a pin shaft, the middle position of the material collecting groove is connected with a plurality of springs 351, and the other ends of the springs are fixed on the inner wall of the rectangular pipe 31. Vegetables can constantly fall on album thing groove 35 through the transmission of conveyer belt 32, and after reaching certain weight, can compress spring 351, make the vegetables of collection thing groove 35 all pour into in cutting groove 36.
The cutting groove 36 is formed by two curved plates, one end of each curved plate is welded on the inner wall of the rectangular pipe 31, and the other end of each curved plate extends out of the outer extending pipe on the side face of the rectangular pipe 31. The cutter 391 is located right in front of the cutting groove 36. The middle position of the cutting groove 36 is provided with a long rack 38 welded on the bottom surface of the rectangular tube 31, the rack is matched with a driving motor 371 connected to the push plate 37, the push rod 37 can be ensured to reciprocate in the cutting groove 36, and thus, the vegetables in the cutting groove can be pushed to the lower part of the cutter 391, and the cutting is convenient.
The dicing device has the working principle that: the conveyor 32 first conveys the filamentous vegetables into the collection tank 35, and when the pressure in the collection tank is too high, the vegetables are poured into the cutting tank 36. Then the baffle 37 moves forwards to push the vegetables below the cutter 391, and the cutter 391 reciprocates up and down under the control of the electric push rod 39 to cut the vegetables into cubes. The push plate 37 then returns to its original position to wait for the vegetables to continue to fall into the cutting groove 36.
The rotational speed of the drive motor 34 or drive motor 371 can be varied if desired to vary the length of the diced vegetables.
When the three devices are sequentially contacted with each other as shown in the figure, the vegetables are cut into slices after passing through the slicing device 1, and then the sliced vegetables fall on the conveyor belt of the shredding device 2, are then shredded, and are finally diced.
Only by juxtaposing the devices 2 and 3 and placing the vegetables on the conveyor belt of the device 2, the vegetables can be shredded and then diced.
These three devices can also be used individually, for example only device 1 is needed for slicing and only device 2 is needed for shredding.
While the foregoing is directed to embodiments of the present invention, it will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and that various changes may be made without departing from the spirit and scope of the invention.

Claims (3)

1. A vegetable cutting device characterized in that: the vegetable slicing device comprises a vegetable slicing device, a vegetable shredding device and a vegetable dicing device;
the vegetable slicing device comprises a box body (11), wherein the box body is similar to a rectangular pipe, one end of the box body is provided with a feeding hole (111), the other end of the box body is open, a movable conveyor belt (13) and a conveyor belt (14) are installed in the box body, rollers (15) and (17) are installed at the open end of the box body, the box body is provided with four positioning holes (112), two rotating shafts of the movable conveyor belt (13) penetrate through the positioning holes (112), and the movable conveyor belt (13) is fixed on a movable frame (12) by utilizing the two rotating shafts of the; the moving frame (12) is connected to the box body (11) through four springs (121), one end of a driving wheel of the conveying belt (14) is provided with a driving motor (18), and the other end of the driving wheel is fixed with a bevel gear (141); the bevel gear (141) is matched with a bevel gear at the lower end of the transmission rod (19), a guide rail groove is formed in the upper end of the transmission rod (19), the guide rail groove is matched with a corresponding guide rail on the movable bevel gear (191), and the movable bevel gear (191) is matched with a bevel gear (131) fixed on the movable conveyor belt (13);
the fixing seat (151) is fixed on the side face of the box body (11) through bolts, the rollers (15) and (17) are fixed at the notch of the box body by the fixing seat (151), crawler-type cutters (16) are wound on the two rollers and are V-shaped blades, driving motors are respectively installed inside the rollers (15) and (17), and a baffle plate (171) is installed above the rollers (17);
the vegetable shredding device comprises a rectangular pipe (21), a pressing wheel (25) and a conveyor belt (22) are mounted in the rectangular pipe (21), a driven wheel (23) is fixed at a gap of the rectangular pipe (21) through a fixed seat (211), and the fixed seat (211) is fixed on two sides of the rectangular pipe (21) through bolts;
the vegetable dicing device comprises a rectangular pipe (31), one end of the rectangular pipe (31) is open, the other end of the rectangular pipe is closed, the side face of the rectangular pipe is provided with an outward extending rectangular pipe, an electric push rod (39) is installed on the outward extending rectangular pipe, and a cutter (391) is arranged at one end of the electric push rod (39);
one end of the material collecting groove (35) is fixed on the inner wall of the rectangular pipe (31) through a pin shaft, a plurality of springs (351) are connected to the middle position of the material collecting groove (35), and the other ends of the springs (351) are connected to the inner wall of the rectangular pipe (31);
the cutting groove (36) is composed of two curved plates, one end of each curved plate is welded on the inner wall of the rectangular pipe (31), and the other end of each curved plate extends out of the outer extending pipe of the side face of the rectangular pipe (31).
2. The vegetable cutting apparatus of claim 1, wherein: the pinch roller (25) is a cylinder and is fixed at the top of the rectangular pipe (21) through a plurality of springs (27) and a U-shaped fixing rod (26), an electric push rod (28) is installed at the top of the rectangular pipe (21), and a cutter (29) is installed at one end of the electric push rod (28).
3. The vegetable cutting apparatus of claim 1, wherein: the inner wall of the rectangular pipe (21) is fixedly provided with a driven wheel (23) and a driving motor (24), and the driving motor (24) drives the conveyor belt (22) to rotate.
CN201811478796.6A 2018-12-05 2018-12-05 Vegetable cutting equipment Active CN109910097B (en)

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CN109910097B true CN109910097B (en) 2020-11-06

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Publication number Priority date Publication date Assignee Title
CN111421592B (en) * 2020-03-30 2024-09-24 福建省永安林业(集团)股份有限公司永安人造板厂 Cut flower machine for rehydrated bamboo shoots
CN112338971B (en) * 2020-10-21 2022-07-22 重庆厨韵调味品有限公司 Processing machinery for agricultural product with automatic feeding mechanism
CN112332288B (en) * 2020-10-22 2021-12-14 湖南金缆电工科技有限责任公司 Portable cable cuts device for cable installation

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Effective date of registration: 20231110

Address after: Building 1, 2nd Floor, No. 238 Huimao Road, Jiangkou Street, Fenghua District, Ningbo City, Zhejiang Province, 315500

Patentee after: Ningbo Fenghua District Jiazhihong Food Machinery Co.,Ltd.

Address before: 448000 Jingchu Institute of technology, 33 Xiangshan Avenue, Jingmen City, Hubei Province

Patentee before: Song Shaoqi