CN211129668U - Continuous taro peeling machine - Google Patents
Continuous taro peeling machine Download PDFInfo
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- CN211129668U CN211129668U CN201920733294.7U CN201920733294U CN211129668U CN 211129668 U CN211129668 U CN 211129668U CN 201920733294 U CN201920733294 U CN 201920733294U CN 211129668 U CN211129668 U CN 211129668U
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- Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)
Abstract
The utility model discloses a continuous taro peeling machine. The continuous taro peeling machine consists of a material guiding mechanism, a peeling mechanism, a base and a cleaning device. The material guiding mechanism comprises a material guiding groove, a screening device, a cam structure, a first motor, a second motor and a conveying belt, and the peeling mechanism comprises a third motor, a plurality of rollers, a roller interval adjusting device and a blanking baffle. Firstly put into the sieve separator with the taro among, drive the screening of cam structure shake realization taro equidimension not through two motors, the taro after the screening falls on the baffle box, through a motor drive conveyer belt, the taro falls on peeling mechanism, and the relative rotation of rotary drum is peeled the taro, and belt cleaning device washs the taro simultaneously, accomplishes the decortication back, and the taro falls to the rotary drum bottom and waits to take out. The utility model discloses simple structure, peel fast, clean, the device stable performance has fine using value.
Description
Technical Field
The utility model relates to a peeling apparatus, concretely relates to continuous type taro decorticator.
Background
The taro has high nutritive value, the starch content in the tuber reaches 70 percent, the taro can be used as grain and vegetable, is a tonic for the old and the young, and is a vegetarian food for autumn; the taro is also rich in various components such as protein, calcium, phosphorus, iron, potassium, magnesium, sodium, nicotinic acid, various vitamins and the like; plant alkaloid contained in taro mucilage can itch when contacting with skin, and skin itch is easily caused when the taro is peeled and processed manually; the artificial peeling efficiency is low, and the taro after peeling is in long contact time with air, so that the taro is oxidized and turns yellow, the color and flavor of the taro are changed, and the sale of the taro is influenced; how to efficiently peel taros is a big technical problem in the vegetable processing industry.
At present, many taro peeling machines all over the country are intermittent, and the principle is that taros are put into a material tank, a plurality of groups of rod-shaped hard brushes are arranged at the bottom of the material tank, a motor is started to enable the hard brushes to rotate at a high speed while clear water is introduced into the material tank, so that the taros are peeled under the friction of the brushes, but after the taros are peeled, the taros need to be manually taken out; thereby reducing the production efficiency and increasing the labor force; meanwhile, the taro quality is influenced by the long time of exposing the taro in the air.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model lies in, to the above-mentioned not enough of prior art, provide a continuous type taro decorticator.
The utility model discloses a following technical scheme realizes above-mentioned purpose: a continuous taro peeling machine, wherein: comprises a material guiding mechanism, a peeling mechanism and a base; the peeling mechanism is arranged on the base, and a discharge hole of the material guide mechanism is arranged above the peeling mechanism;
the material guide mechanism comprises a material guide groove, a screening device, a motor I, a motor II, a conveying belt and a cam structure, wherein the screening device is arranged above the material guide groove and is connected with the material guide groove; the conveying belt is arranged below the material guide groove, and the power output end of the motor I is connected with the conveying belt; the cam structure is arranged on one side of the material guide groove, and the power output end of the motor II is connected with the cam structure;
the peeling mechanism comprises two motors III, a plurality of rollers, a roller distance adjusting device and a blanking baffle; the rollers are arranged in parallel, and two adjacent rollers rotate relatively; the third motor is arranged at one end of the drum, and the rotation directions of the third motors are opposite; the other end of the rolling barrel penetrates through the blanking baffle plate to be connected with the rolling barrel interval adjusting device.
As a further optimization scheme of the utility model, the device for adjusting the distance between the rollers comprises a rotating handle, a coupling, a screw rod, a movable ear plate, two fixed ear plates and a supporting plate, wherein the movable ear plate and the coupling are sequentially connected with the other end of the roller; the connecting support plate is provided with a sliding chute, and the movable ear plate is arranged on the sliding chute in a sliding manner; the fixed lug plates are fixed on the base and located at the other end of the drum, and the screw rod is arranged between the two fixed lug plates. The barrel spacing adjusting device is used for finely adjusting the distance between two adjacent barrels, and taro can be better peeled.
Furthermore, the rotating handle is arranged on the screw rod, a gear is arranged on one side of the rotating handle, the gear is matched with one end of the coupler, and the coupler is fixedly connected with the drum. The shaft coupling is fixed with the roller, so that the roller is driven to move when the rotating handle moves.
As a further optimization scheme of the utility model, the number of the rolling barrels is an even number. When the number of the rollers is even, two adjacent rollers rotate relatively under the drive of the motor, so that better peeling is realized.
As the utility model discloses a further optimization scheme, the below of motor three is equipped with sharp elevating system, and sharp elevating system is fixed in on the base. The linear lifting mechanism effectively controls the falling height of the taros, ensures that the taros cannot be damaged in the falling process, and ensures the integrity of the taros.
As a further optimization scheme of the utility model, the rollers are connected through belt transmission. The motor is connected through the belt, so that the motor drives other adjacent two drums for setting the motor to rotate relatively.
Furthermore, a tensioning wheel is arranged above the belt, and scales are arranged on the rotating handle. Through setting up the scale, realize when rotating turning handle, the unity of the number of turns of each turning handle, through setting up the take-up pulley, realize that the displacement distance of each barrel when the regulation is unified.
As a further optimization scheme of the utility model, in the below of guide mechanism, the top of rotary drum is equipped with a belt cleaning device, and belt cleaning device connects outside water pipe. The cleaning device cleans the taros while processing the taros, and effectively saves manpower.
The utility model has the advantages that:
through setting up autofilter device: the time for manually selecting the taros is saved, the taros are screened according to the sizes, and the production efficiency is improved;
through setting up over-and-under type gyro wheel: the falling height of the taros is effectively controlled, and the integrity of the taros is ensured;
by providing a cleaning device: the cleaning of the taros is realized, the labor is effectively saved, and the processing speed of the taros is improved;
through setting up the barrel interval adjusting device, effectively adjust the interval of barrel according to the size of taro, peel the taro better.
Drawings
FIG. 1 is a schematic view of the structure of the continuous taro peeling machine of the present invention;
FIG. 2 is a schematic view of the decapping structure of the continuous taro peeler of the present invention;
FIG. 3 is a schematic structural view of the peeling mechanism of the continuous taro peeling machine of the present invention;
1-guide mechanism, 2-peeling mechanism, 3-base, 4-cleaning device, 10-guide chute, 11-screening device, 12-motor I, 13-motor II, 14-conveying belt, 15-cam structure, 21-motor III, 22-roller, 23-roller spacing adjusting device, 24-blanking baffle, 221-belt, 222-tension pulley, 231-rotating handle, 232-coupler, 233-lead screw, 234-movable ear plate, 235-fixed ear plate, 236-supporting plate and 237-chute.
Detailed Description
The present application will now be described in further detail with reference to the drawings, it should be noted that the following detailed description is given for illustrative purposes only and is not to be construed as limiting the scope of the present application, as those skilled in the art will be able to make numerous insubstantial modifications and adaptations to the present application based on the above disclosure.
Example 1
As shown in fig. 1 and 2, the continuous taro peeling machine comprises a material guiding mechanism 1, a peeling mechanism 2 and a base 3. The peeling mechanism 2 is arranged on the base 3, and a discharge hole of the material guide mechanism is arranged above the peeling mechanism 2.
The material guiding mechanism 1 comprises a material guiding groove 10, a screening device 11, a first motor 12, a second motor 13, a conveying belt 14 and a cam structure 15, wherein the screening device 11 is arranged above the material guiding groove 10 and is connected with the material guiding groove 10, a plurality of rows of material feeding ports with different sizes are arranged on the bottom surface of the screening device 11, and the material feeding ports are communicated with the material guiding groove 10 below. The conveying belt 14 is arranged below the material guide groove 10, and the power output end of the motor I12 is connected with the conveying belt 14. The cam structure 15 is arranged on one side of the material guide groove 10, and the power output end of the second motor 13 is connected with the cam structure 15.
During operation, taros are poured into the screener 11, the second motor 13 is started, the second motor 13 enables the cam structure 15 to drive the guide chute 10 and the screener 11 to shake, so that taros of different sizes enter different feeding ports to realize screening of taro sizes, and the taros entering the guide chute 10 are conveyed by the conveying belt 14 to fall onto the peeling mechanism 2 to be peeled.
The peeling mechanism 2 comprises two motors III 21, a plurality of rollers 22, a roller spacing adjusting device 23 and a blanking baffle plate 24. The rollers 22 are provided with a plurality of rows of small holes for peeling, the number of the rollers 22 is even, and only when the number of the rollers is even, the rollers can form a pair and the two adjacent rollers 22 rotate relatively. The two motors three 21 are arranged at one end of the rolling barrels 22, the rotation directions of the motors three 21 are opposite, and in order to realize the relative rotation between two adjacent rolling barrels 22, the two rolling barrels which are separated by one rolling barrel are connected by a belt 221. The other end of the roller 22 passes through the blanking baffle 24 and is connected with the roller spacing adjusting device 23. Peeled taros fall from the blanking baffle 24 and are caught by a container, so that collection is facilitated. In addition, in order to collect waste skins and sewage conveniently, a sewage collecting device and a waste collecting device are further arranged below the drum 22, so that the cleanness of the working environment and the safe and healthy processing of food are guaranteed.
The drum spacing adjusting device 23 shown in fig. 3 comprises a rotating handle 231, a coupling 232, a screw 233, a movable ear plate 234, two fixed ear plates 235 and a supporting plate 236, wherein the other end of the drum 22 is sequentially connected with the movable ear plate 234 and the coupling 232. The connecting support plate 236 is provided with a sliding slot 237, and the movable ear plate 234 is slidably disposed on the sliding slot 237, so as to facilitate sliding of the movable ear plate 235 when adjusting the distance between the drums. The fixed ear plates 235 are fixed on the base, the screw rod 233 is arranged between the two fixed ear plates 235, the rotating handle 231 is arranged on the screw rod 233, one side of the rotating handle 231 is provided with a gear, the gear is matched with one end of the coupler 232, and the coupler 232 is fixedly connected with the drum 22.
The roller adjusting device 23 is used for adjusting the distance between the drums 22 to realize that peeling cannot be fully performed due to the size problem of the taros. At present, manual adjustment is adopted, and the rotating handle 231 on the screw 233 is rotated to perform adjustment. The preset spacing corresponds to the peeled taro and the device can only be fine-tuned.
The pretreated taros are placed into the screener 11, the motor of the guide mechanism 1 is started, the taros fall onto the conveying belt 14, the cleaning device 4 is opened, the taros enter the rotary drum 22 to be peeled, and the peeled taros automatically fall under the action of self gravity.
The peeling machine is used for peeling, the problem that the peeling of the intermittent peeling machine is not uniform can be avoided, the procedure of manually unloading taros can be omitted, the production efficiency is improved, the product quality is improved, the product yield is improved, and the time of exposing taros to air is shortened. The utility model discloses a continuous type taro decorticator can the autofilter taro size, need not the manual work after the taro is peeled off and unload. The technical problem of tedious unloading of the intermittent peeling machine is solved, the adjusting device is added, different types of taros can be processed, continuous production is realized, the production efficiency is greatly improved, and the product quality and the product yield are improved.
Example 2
As embodiment 1 shows, its difference is only, and the below of motor three 21 is equipped with sharp elevating system, and sharp elevating system is fixed in on the base 3, and sharp elevating system has effectively controlled the whereabouts height of taro, guarantees that the taro can not knock down in the whereabouts in-process, guarantees the integrity of taro.
Example 3
As shown in embodiment 1, the difference is that a tension pulley 222 is provided above the belt 221, and a scale is provided on the turning handle 231. Through setting up the scale, realize when rotating the twist grip, the unification of the number of turns of each twist grip, through setting up take-up pulley 222, realize the unification of the migration distance of each barrel when the regulation.
Example 4
A cleaning device 4 is arranged below the material guide mechanism 1 and above the roller 22, and the cleaning device 4 is connected with an external water pipe. The cleaning device cleans the taros while processing the taros, and effectively saves manpower.
The above-described embodiments are merely illustrative of the preferred embodiments of the present invention and are not intended to limit the spirit and scope of the present invention. Without departing from the design concept of the present invention, various modifications and improvements made by the technical solution of the present invention by those skilled in the art should fall into the protection scope of the present invention, and the technical contents claimed by the present invention have been fully recorded in the claims.
Claims (8)
1. A continuous taro peeling machine is characterized in that: comprises a material guiding mechanism (1), a peeling mechanism (2) and a base (3); the peeling mechanism (2) is arranged on the base (3), and a discharge hole of the material guide mechanism (1) is arranged above the peeling mechanism (2);
the material guiding mechanism (1) comprises a material guiding groove (10), a screening device (11), a motor I (12), a motor II (13), a conveying belt (14) and a cam structure (15), wherein the screening device (11) is arranged above the material guiding groove (10) and is connected with the material guiding groove (10); the conveying belt (14) is arranged below the material guide groove (10), and the power output end of the motor I (12) is connected with the conveying belt (14); the cam structure (15) is arranged on one side of the material guide groove (10), and the power output end of the motor II (13) is connected with the cam structure (15);
the peeling mechanism (2) comprises two motors III (21), a plurality of rollers (22), a roller spacing adjusting device (23) and a blanking baffle (24); the rollers (22) are arranged in parallel, and two adjacent rollers rotate relatively; the third motor (21) is connected with one end of the drum (22), and the rotation directions of the third motors (21) are opposite; the other end of the drum (22) passes through the blanking baffle (24) and is connected with the drum spacing adjusting device (23).
2. The continuous taro peeler as claimed in claim 1, wherein: the drum spacing adjusting device (23) comprises a rotating handle (231), a coupler (232), a screw rod (233), a movable ear plate (234), two fixed ear plates (235) and a supporting plate (236), and the other end of the drum (22) is sequentially connected with the movable ear plate (234) and the coupler (232); the connecting support plate (236) is provided with a sliding chute (237), and the movable ear plate (234) is arranged on the sliding chute (237) in a sliding way; the fixed lug plates (235) are fixed on the base, and the screw rod (233) is arranged between the two fixed lug plates (235).
3. The continuous taro peeler as claimed in claim 2, wherein: the rotating handle (231) is arranged on the screw rod (233), a gear is arranged on one side of the rotating handle (231), the gear is matched with one end of the coupler (232), and the coupler (232) is fixedly connected with the drum (22).
4. The continuous taro peeler as claimed in claim 1, wherein: the number of the drums (22) is even.
5. The continuous taro peeler as claimed in claim 1, wherein: a linear lifting mechanism is arranged below the motor III (21), and the linear lifting mechanism is fixed on the base (3).
6. The continuous taro peeler as claimed in claim 1, wherein: the rollers (22) are in transmission connection through a belt (221).
7. The continuous taro peeling machine of claim 6, wherein: a tension wheel (222) is arranged above the belt (221), and scales are arranged on the rotating handle (231).
8. The continuous taro peeler as claimed in claim 1, wherein: a cleaning device (4) is arranged below the material guide mechanism (1) and above the rotary drum (22), and the cleaning device (4) is connected with an external water pipe.
Priority Applications (1)
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CN201920733294.7U CN211129668U (en) | 2019-05-21 | 2019-05-21 | Continuous taro peeling machine |
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CN201920733294.7U CN211129668U (en) | 2019-05-21 | 2019-05-21 | Continuous taro peeling machine |
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CN211129668U true CN211129668U (en) | 2020-07-31 |
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CN201920733294.7U Active CN211129668U (en) | 2019-05-21 | 2019-05-21 | Continuous taro peeling machine |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN118000431A (en) * | 2024-04-08 | 2024-05-10 | 山东鑫正达机械制造有限公司 | Agricultural and sideline products steam peeling treatment equipment |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN118000431A (en) * | 2024-04-08 | 2024-05-10 | 山东鑫正达机械制造有限公司 | Agricultural and sideline products steam peeling treatment equipment |
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Effective date of registration: 20231204 Address after: Room 316, Building 7, No. 528 Binwen Road, Binjiang District, Hangzhou City, Zhejiang Province, 310053 Patentee after: Hongwei Electromechanical (Hangzhou) Co.,Ltd. Address before: Hangzhou City, Zhejiang province Binjiang District 310053 shore road 528 Patentee before: ZHEJIANG INSTITUTE OF MECHANICAL & ELECTRICAL ENGINEERING |