CN114304665B - Chinese yam peeling device for food production - Google Patents

Chinese yam peeling device for food production Download PDF

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Publication number
CN114304665B
CN114304665B CN202111503549.9A CN202111503549A CN114304665B CN 114304665 B CN114304665 B CN 114304665B CN 202111503549 A CN202111503549 A CN 202111503549A CN 114304665 B CN114304665 B CN 114304665B
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block
shell
spring
bracket
connecting shaft
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CN114304665A (en
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谢鑫玲
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/90Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in food processing or handling, e.g. food conservation

Abstract

The invention relates to a yam peeling device, in particular to a yam peeling device for food production. The invention aims to provide the yam peeling device for food production, which can save time and has high safety. The yam peeling device for food production comprises a base and a first shell, wherein one side of the top of the base is connected with the first shell; the side, far away from the first shell, of the top of the base is connected with the second shell; the transmission mechanism is arranged on the base. According to the invention, the transmission mechanism and the rotating mechanism are matched, so that the yam can be peeled quickly, the time is saved, manual operation is not needed, the cutting of hands is avoided, the safety is high, the yam can be clamped by the second clamping mechanism, and the stability of the yam is improved.

Description

Chinese yam peeling device for food production
Technical Field
The invention relates to a yam peeling device, in particular to a yam peeling device for food production.
Background
The Chinese yam is a food material and has high nutritive value, the Chinese yam is required to be peeled in the food production industry, the follow-up processing is convenient, at present, people usually use a kitchen knife to peel the Chinese yam manually, people stand on a chopping board, then use the kitchen knife to peel off the Chinese yam skin, and the speed of moving the kitchen knife is slower, so that the Chinese yam skin can be peeled off completely, the hands of people are relatively close to the kitchen knife, the hands are easy to cut, and the safety is low.
How to design a device with time saving and high safety becomes the problem to be solved at present.
Disclosure of Invention
In order to overcome the defects that people move the kitchen knife slowly, so that the Chinese yam skin can be completely peeled off only by taking a lot of time, and the hands of people are relatively close to the kitchen knife and are easy to cut, and the safety is low, the invention aims to provide the Chinese yam peeling device for food production, which can save time and has high safety.
The technical proposal is as follows: the yam peeling device for food production comprises a base and a first shell, wherein one side of the top of the base is connected with the first shell; the side, far away from the first shell, of the top of the base is connected with the second shell; the transmission mechanism is arranged on the base; the first clamping mechanism is arranged on the second shell; and the second shell is provided with a rotating mechanism.
As a further preferable scheme, the transmission mechanism comprises a first bracket, and both sides of the top of the base are connected with the first bracket; the servo motors are arranged on one side of the top of the base; the two lead screws are rotatably arranged between the first brackets, and penetrate through the first shell and the second shell; the driving wheels are arranged on the screw rods, and the driving wheels are also arranged on the output shafts of the servo motors; the transmission belt is wound between the two transmission wheels on the same side; the sliding blocks are arranged between the screw rods in a threaded manner; the two sides of the top of the sliding block are connected with the second brackets; and a blade is arranged between the second brackets.
As a further preferable scheme, the first clamping mechanism comprises a third bracket, and one side of the top of the second shell is connected with the third bracket; the first connecting shaft is rotatably arranged on the third bracket; the first placing block is connected to the first connecting shaft; the top of the first placing block is provided with a bolt in a threaded manner; the inner wall of the first placing block is provided with a clamping block in a sliding mode; and a first spring is connected between the clamping block and the first placing block.
As a further preferable scheme, the rotating mechanism comprises a fourth bracket, and one side, close to the third bracket, of the top of the second shell is connected with the fourth bracket; the second connecting shaft is rotationally connected to the fourth bracket; bevel gears are arranged on the second connecting shaft and the first connecting shaft, and the two bevel gears are meshed; the ratchet gear is connected with the second connecting shaft; a first L-shaped rod is connected to one of the second brackets; the ratchet block is arranged at the top of the first L-shaped rod at uniform intervals in a sliding mode, and is matched with the ratchet gear; and a second spring is connected between the ratchet block and the first L-shaped rod.
As a further preferable scheme, the device also comprises a fixing mechanism, wherein the fixing mechanism comprises a first fixing block, and one side, close to the fourth bracket, of the top of the second shell is connected with the first fixing block; the top of the first fixed block is connected with a second fixed block; the top of the first fixed block is slidably provided with a first push block; the second pushing block is arranged at the top of the first fixed block in a sliding manner; the third spring is connected between the second pushing block and the first fixed block; the top of the first fixed block is slidably provided with a second L-shaped rod; a circular fixing rod, wherein one side of the second L-shaped rod is connected with a circular fixing rod, and the circular fixing rod is matched with the ratchet gear; the third pushing block is connected to one side of the second L-shaped rod; a fourth spring is connected between the third pushing block and the second fixed block; the fourth pushing block is arranged on one side of the first L-shaped rod in a sliding mode; and a fifth spring is connected between the fourth pushing block and the first L-shaped rod.
As a further preferable scheme, the device further comprises a second clamping mechanism, wherein the second clamping mechanism comprises a fifth bracket, and the top of the first shell is connected with the fifth bracket; the upper part of the fifth bracket is rotatably connected with a third connecting shaft; the second placing block is connected to the third connecting shaft; the lower part of one side of the second placing block is connected with a supporting block; the upper part of one side of the second placing block is connected with at least four guide posts; the fifth pushing block is arranged between the guide posts in a sliding manner; a sixth spring is arranged on each guide post, and two ends of the sixth spring are respectively connected with the second placing block and the fifth pushing block; and the pressing block is arranged at the top of the fifth pushing block in a threaded manner.
As a further preferable scheme, the device also comprises a collecting mechanism, wherein the collecting mechanism comprises a collecting box, and the collecting box is arranged between the first shell and the second shell in a sliding manner; the cylinder is connected with one side of the collecting box; the handle is rotatably connected to the cylinder.
As a further preferable scheme, round holes are uniformly formed on one side of the ratchet wheel at intervals around the circumferential direction, and the round fixing rod is matched with the round holes.
Compared with the prior art, the invention has the following advantages:
1. according to the Chinese yam peeling machine, the transmission mechanism and the rotating mechanism are matched, so that the Chinese yam can be peeled quickly, the time is saved, manual operation is not needed, the cutting of hands is avoided, and the safety is high.
2. According to the invention, the yam can be prevented from turning over through the fixing mechanism, so that the yam skin can be completely cut off.
3. According to the invention, the Chinese yam can be clamped through the second clamping mechanism, so that the stability of the Chinese yam is improved.
4. The invention can facilitate people to collect the yam skins through the collecting mechanism.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of a transmission mechanism of the present invention.
Fig. 3 is an enlarged schematic view of a portion a of the present invention.
Fig. 4 is a schematic perspective view of a first clamping mechanism according to the present invention.
Fig. 5 is an enlarged schematic view of section B of the present invention.
Fig. 6 is a schematic perspective view of a rotary mechanism according to the present invention.
Fig. 7 is an enlarged schematic view of section C of the present invention.
Fig. 8 is a schematic view of a partial perspective structure of the present invention.
Fig. 9 is an enlarged schematic view of section D of the present invention.
Fig. 10 is a schematic view of a first partial structure of the fixing mechanism of the present invention.
Fig. 11 is a schematic view of a second part of the structure of the novel fixing mechanism.
Fig. 12 is a schematic view of a third part of the structure of the novel fixing mechanism.
Fig. 13 is an enlarged schematic view of the portion E of the present application.
Fig. 14 is a schematic perspective view of the present second clamping mechanism.
Reference numerals in the figures: 1. a base, 2, a transmission mechanism, 21, a first bracket, 22, a servo motor, 23, a transmission wheel, 24, a transmission belt, 25, a screw rod, 26, a slider, 27, a second bracket, 28, a blade, 3, a first clamping mechanism, 31, a third bracket, 32, a first connecting shaft, 33, a first placing block, 34, a bolt, 35, a clamping block, 36, a first spring, 4, a rotation mechanism, 41, a fourth bracket, 42, a second connecting shaft, 43, a bevel gear, 44, a ratchet gear, 45, a first L-shaped rod, 46, a ratchet block, 47, a second spring, 5, a fixing mechanism, 51, a first fixing block, 52, second fixed block, 53, first push block, 54, second push block, 55, third spring, 56, second L-shaped rod, 57, circular fixed rod, 58, third push block, 59, fourth spring, 510, fourth push block, 511, fifth spring, 6, second clamping mechanism, 61, fifth bracket, 62, third connecting shaft, 63, second placement block, 64, support block, 65, guide post, 66, fifth push block, 67, sixth spring, 68, press block, 7, collection mechanism, 71, collection box, 72, cylinder, 73, handle, 8, first housing, 9, second housing.
Detailed Description
The following description of the embodiments of the present invention 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 invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Example 1
1-9, including base 1, drive mechanism 2, first clamping mechanism 3, rotary mechanism 4, first casing 8 and second casing 9, base 1 top right side is connected with first casing 8, and base 1 top left side is connected with second casing 9, and drive mechanism 2 is installed at base 1 top, and first clamping mechanism 3 and rotary mechanism 4 are installed at second casing 9 top.
The transmission mechanism 2 comprises a first bracket 21, servo motors 22, driving wheels 23, driving belts 24, screw rods 25, sliding blocks 26, second brackets 27 and blades 28, wherein the left side and the right side of the top of the base 1 are respectively connected with the first bracket 21, the left side of the top of the base 1 is provided with the two servo motors 22, the two servo motors 22 are respectively positioned at the left side of the left first bracket 21, the two screw rods 25 are rotatably arranged between the two first brackets 21, the two screw rods 25 respectively penetrate through the first shell 8 and the second shell 9, the driving wheels 23 are respectively arranged at the left parts of the two screw rods 25, the driving wheels 23 are respectively arranged on the output shafts of the two servo motors 22, the driving belts 24 are respectively wound between the two driving wheels 23 at the front side, the driving belts 24 are respectively wound between the two driving wheels 23 at the rear side, the sliding blocks 26 are respectively arranged between the two screw rods 25 in a threaded manner, the front side and the rear side of the top of the sliding blocks 26 are respectively connected with the second brackets 27, and the blades 28 are respectively arranged between the two second brackets 27.
The first clamping mechanism 3 comprises a third bracket 31, a first connecting shaft 32, a first placing block 33, a bolt 34, a clamping block 35 and a first spring 36, wherein the left side of the top of the second shell 9 is connected with the third bracket 31, the first connecting shaft 32 is rotatably arranged on the third bracket 31, the right end of the first connecting shaft 32 is connected with the first placing block 33, the bolt 34 is arranged on the top of the first placing block 33 in a threaded manner, the clamping block 35 is arranged on the top of the first placing block 33 in a sliding manner, and the first spring 36 is connected between the top of the clamping block 35 and the first placing block 33.
The rotating mechanism 4 comprises a fourth bracket 41, a second connecting shaft 42, bevel gears 43, ratchet gears 44, a first L-shaped rod 45, ratchet blocks 46 and a second spring 47, wherein the front side of the top of the second shell 9 is connected with the fourth bracket 41, the upper part of the fourth bracket 41 is rotatably connected with the second connecting shaft 42, the bevel gears 43 are arranged on the second connecting shaft 42 and the first connecting shaft 32, the two bevel gears 43 are meshed, the front end of the second connecting shaft 42 is connected with the ratchet gears 44, the top of the second bracket 27 on the front side is connected with the first L-shaped rod 45, the ratchet blocks 46 are arranged on the left side of the top of the first L-shaped rod 45 in a uniformly-spaced sliding mode, the ratchet blocks 46 are matched with the ratchet gears 44, and the second spring 47 is connected between the ratchet blocks 46 and the first L-shaped rod 45.
People put the Chinese yam into the first placing block 33, then the bolt 34 moves downwards, the bolt 34 pushes the clamping block 35 to move downwards, the first spring 36 is compressed, when the clamping block 35 moves downwards to press the Chinese yam, people stop rotating the bolt 34, then the servo motor 22 is controlled to rotate clockwise, the servo motor 22 drives the screw rod 25 to rotate clockwise through the driving wheel 23 and the driving belt 24, the screw rod 25 drives the sliding block 26 to move rightwards, the sliding block 26 drives the second bracket 27 to move rightwards, the second bracket 27 drives the blade 28 to move rightwards, the blade 28 peels the Chinese yam, meanwhile, the second bracket 27 drives the first L-shaped rod 45 to move rightwards, the first L-shaped rod 45 drives the ratchet block 46 to move rightwards, under the action of the second spring 47, the ratchet block 46 slides on the ratchet gear 44, when the blade 28 moves rightwards to the end, people control the servo motor 22 to rotate anticlockwise, the servo motor 22 drives the screw rod 25 to rotate anticlockwise through the driving wheel 23 and the driving belt 24, the screw rod 25 drives the sliding block 26 to move leftwards, the sliding block 26 drives the second bracket 27 to move leftwards, the second bracket 27 drives the blade 28 to move leftwards, meanwhile, the second bracket 27 drives the first L-shaped rod 45 and the ratchet block 46 to move leftwards, when the ratchet block 46 moves leftwards and is meshed with the ratchet gear 44, the ratchet block 46 drives the ratchet gear 44 to rotate, the ratchet gear 44 drives the second connecting shaft 42 to rotate, the second connecting shaft 42 drives the first connecting shaft 32 to rotate through the bevel gear 43, the first connecting shaft 32 drives the first placing block 33 to rotate, the first placing block 33 drives the Chinese yam to rotate, the blade 28 can peel the other part of the Chinese yam, when the blade 28 moves leftwards to the end, people control the servo motor 22 to rotate clockwise, the blade 28 moves rightwards, after the yam is peeled continuously, the servo motor 22 is turned off, the rotary bolt 34 moves upwards, the clamping block 35 is reset upwards under the action of the first spring 36, the peeled yam is loosened, and then the peeled yam is taken out again.
Example 2
On the basis of the embodiment 1, as shown in fig. 1, 7, 10, 11, 12, 13 and 14, the device further comprises a fixing mechanism 5, the fixing mechanism 5 comprises a first fixing block 51, a second fixing block 52, a first push block 53, a second push block 54, a third spring 55, a second L-shaped rod 56, a round fixing rod 57, a third push block 58, a fourth spring 59, a fourth push block 510 and a fifth spring 511, the front side of the top of the second shell 9 is connected with the first fixing block 51, the first fixing block 51 is positioned at the front side of the fourth bracket 41, the front side of the top of the first fixing block 51 is connected with the second fixing block 52, the back side of the top of the first fixing block 51 is slidably provided with the first push block 53 and the second push block 54, the first ejector pad 53 is located the right side of second ejector pad 54, be connected with third spring 55 between second ejector pad 54 and the first fixed block 51, first fixed block 51 top rear side sliding is equipped with second L shape pole 56, second L shape pole 56 is located the front side of first ejector pad 53 and second ejector pad 54, second L shape pole 56 rear side is connected with circular dead lever 57, the ratchet wheel 44 front side has round hole around the even interval of circumferencial direction, circular dead lever 57 and round hole cooperation, second L shape pole 56 front side is connected with third ejector pad 58, be connected with fourth spring 59 between third ejector pad 58 and the second fixed block 52, first L shape pole 45 front side left part sliding is equipped with fourth ejector pad 510, be connected with fifth spring 511 between fourth ejector pad 510 and the first L shape pole 45.
When the first L-shaped rod 45 moves leftwards, the first L-shaped rod 45 drives the fourth push block 510 to move leftwards, when the fourth push block 510 moves leftwards and touches the first push block 53, the fourth push block 510 pushes the first push block 53 to move leftwards, the first push block 53 pushes the second push block 54 to move leftwards, the third spring 55 is compressed, when the first push block 53 and the second L-shaped rod 56 are contacted, the fourth push block 510 pushes the first push block 53 to move forwards, the first push block 53 pushes the second L-shaped rod 56 to move forwards, the second L-shaped rod 56 drives the third push block 58 to move forwards, the fourth spring 59 is compressed, the second L-shaped rod 56 drives the circular fixing rod 57 to move forwards, the circular fixing rod 57 moves out of the circular hole on the ratchet gear 44, the ratchet gear 44 is loosened, so that the Chinese yam can smoothly rotate, when the fourth push block 510 and the first push block 53 are not contacted, the second L-shaped rod 56 and the third push block 58 are reset backwards under the action of the fourth spring 59, the round fixing rod 57 is reset backwards along with the round fixing rod 57, the round fixing rod 57 is inserted into a round hole on the ratchet gear 44 again, the ratchet gear 44 is fixed, the phenomenon that the Chinese yam turns over the head is avoided, the phenomenon that the Chinese yam turns over the head can be avoided, the Chinese yam skin can be completely cut off, the second push block 54 is reset rightwards under the action of the third spring 55, when the first L-shaped rod 45 moves rightwards, the first L-shaped rod 45 drives the fourth push block 510 to move leftwards, when the fourth push block 510 moves leftwards and contacts the first push block 53, the fourth push block 510 moves backwards, the fifth spring 511 is compressed, and when the fourth push block 510 moves leftwards beyond the first push block 53, the fourth push block 510 returns forwards under the action of the fifth spring 511.
The second clamping mechanism 6 is further included, the second clamping mechanism 6 includes a fifth bracket 61, a third connecting shaft 62, a second placing block 63, a supporting block 64, guide posts 65, a fifth pushing block 66, a sixth spring 67 and a pressing block 68, the top of the first shell 8 is connected with the fifth bracket 61, the upper portion of the fifth bracket 61 is rotatably connected with the third connecting shaft 62, the left end of the third connecting shaft 62 is connected with the second placing block 63, the lower portion of the left side of the second placing block 63 is connected with the supporting block 64, the upper portion of the left side of the second placing block 63 is connected with four guide posts 65, a fifth pushing block 66 is slidably arranged between the four guide posts 65, the four guide posts 65 are all provided with sixth springs 67, the two ends of each sixth spring 67 are respectively connected with the second placing block 63 and the fifth pushing block 66, and the pressing block 68 are arranged on the top of each fifth pushing block 66 in a threaded manner.
The fifth pushing block 66 is pushed rightward by people, the fifth pushing block 66 is moved away, the sixth spring 67 is compressed, then the Chinese yam is placed on the supporting block 64, the fifth pushing block 66 is loosened, the fifth pushing block 66 is reset leftward under the action of the sixth spring 67, then the rotary pressing block 68 is moved downward by people to press the Chinese yam, stability of the Chinese yam is improved, after the peeling of the Chinese yam is completed, the rotary pressing block 68 is moved upward by people to loosen the peeled Chinese yam, and then the peeled Chinese yam is taken out.
The collecting mechanism 7 comprises a collecting box 71, a cylinder 72 and a handle 73, the collecting box 71 is slidably arranged between the first shell 8 and the second shell 9, the right side of the collecting box 71 is connected with the cylinder 72, and the handle 73 is rotatably connected to the cylinder 72.
The peeled yam skin falls into the collecting box 71, the yam skin is prevented from falling onto the base 1, the collection of people is facilitated, after the yam skin is peeled, people pull the handle 73 rightwards, the handle 73 drives the cylinder 72 to move rightwards, the cylinder 72 drives the collecting box 71 to move rightwards, the collecting box 71 is taken out, the yam skin in the collecting box 71 is cleaned, and then the collecting box 71 is put back between the first shell 8 and the second shell 9.
While the present invention has been described in detail with reference to the above embodiments, it will be apparent to those skilled in the art from this disclosure that various changes or modifications can be made therein without departing from the spirit and scope of the invention as defined in the following claims. Accordingly, the detailed description of the disclosed embodiments is to be taken only by way of illustration and not by way of limitation, and the scope of protection is defined by the content of the claims.

Claims (4)

1. The utility model provides a food production is with chinese yam peeling apparatus which characterized in that includes:
the device comprises a base (1) and a first shell (8), wherein one side of the top of the base (1) is connected with the first shell (8);
the second shell (9) is connected with one side, far away from the first shell (8), of the top of the base (1);
the transmission mechanism (2) is arranged on the base (1);
the first clamping mechanism (3) is arranged on the second shell (9);
the rotating mechanism (4) is arranged on the second shell (9);
the transmission mechanism (2) comprises:
the first brackets (21) are connected to two sides of the top of the base (1);
the servo motors (22) are arranged on one side of the top of the base (1);
the screw rods (25) are rotatably arranged between the first brackets (21), and the screw rods (25) penetrate through the first shell (8) and the second shell (9);
the driving wheels (23) are arranged on the screw rods (25), and the driving wheels (23) are also arranged on the output shafts of the servo motors (22);
a driving belt (24) is wound between the two driving wheels (23) on the same side;
the sliding blocks (26) are arranged between the screw rods (25) in a threaded mode, and the sliding blocks (26) are arranged between the screw rods;
the two sides of the top of the sliding block (26) are connected with the second brackets (27);
a blade (28), wherein the blade (28) is arranged between the second brackets (27);
the first clamping mechanism (3) comprises:
the third bracket (31) is connected with one side of the top of the second shell (9);
the first connecting shaft (32) is rotatably arranged on the third bracket (31);
the first placing block (33) is connected to the first connecting shaft (32);
the bolt (34) is arranged on the top of the first placing block (33) in a threaded manner, and the bolt (34) is arranged on the top of the first placing block;
the clamping block (35), the inner wall of the first placing block (33) is provided with the clamping block (35) in a sliding manner;
a first spring (36), wherein the first spring (36) is connected between the clamping block (35) and the first placing block (33);
the rotating mechanism (4) comprises:
a fourth bracket (41), wherein one side, close to the third bracket (31), of the top of the second shell (9) is connected with the fourth bracket (41);
a second connecting shaft (42), wherein the fourth bracket (41) is rotatably connected with the second connecting shaft (42);
bevel gears (43), wherein the bevel gears (43) are arranged on the second connecting shaft (42) and the first connecting shaft (32), and the two bevel gears (43) are meshed;
a ratchet gear (44), wherein the second connecting shaft (42) is connected with the ratchet gear (44);
a first L-shaped rod (45), wherein one second bracket (27) is connected with the first L-shaped rod (45);
a ratchet block (46), wherein the top of the first L-shaped rod (45) is provided with the ratchet block (46) in a sliding mode at uniform intervals, and the ratchet block (46) is matched with the ratchet gear (44);
a second spring (47), wherein the second spring (47) is connected between the ratchet block (46) and the first L-shaped rod (45);
the utility model also comprises a fixing mechanism (5), and the fixing mechanism (5) comprises:
the first fixing block (51) is connected with one side, close to the fourth bracket (41), of the top of the second shell (9);
the top of the first fixed block (51) is connected with a second fixed block (52);
the first pushing block (53) is arranged on the top of the first fixed block (51) in a sliding mode, and the first pushing block (53) is arranged on the top of the first fixed block;
the second pushing block (54) is arranged on the top of the first fixed block (51) in a sliding mode, and the second pushing block (54) is arranged on the top of the first fixed block;
a third spring (55), wherein the third spring (55) is connected between the second pushing block (54) and the first fixed block (51);
the second L-shaped rod (56) is arranged on the top of the first fixed block (51) in a sliding mode, and the second L-shaped rod (56) is arranged on the top of the first fixed block; a circular fixing rod (57), wherein one side of the second L-shaped rod (56) is connected with the circular fixing rod (57), and the circular fixing rod (57) is matched with the ratchet gear (44);
a third push block (58), wherein one side of the second L-shaped rod (56) is connected with the third push block (58);
a fourth spring (59), wherein the fourth spring (59) is connected between the third pushing block (58) and the second fixed block (52);
a fourth push block (510), wherein one side of the first L-shaped rod (45) is provided with the fourth push block (510) in a sliding manner;
and a fifth spring (511), wherein the fifth spring (511) is connected between the fourth pushing block (510) and the first L-shaped rod (45).
2. A yam peeling apparatus for food production as in claim 1, further comprising a second clamping mechanism (6), the second clamping mechanism (6) comprising:
a fifth bracket (61), wherein the top of the first shell (8) is connected with the fifth bracket (61); a third connecting shaft (62), wherein the upper part of the fifth bracket (61) is rotatably connected with the third connecting shaft (62);
the second placing block (63) is connected to the third connecting shaft (62);
a support block (64), wherein the lower part of one side of the second placing block (63) is connected with the support block (64);
the upper part of one side of the second placing block (63) is connected with at least four guide posts (65); a fifth pushing block (66), wherein the fifth pushing block (66) is arranged between the guide posts (65) in a sliding manner;
a sixth spring (67), each guide post (65) is provided with a sixth spring (67), and two ends of the sixth spring (67) are respectively connected with the second placing block (63) and the fifth pushing block (66);
the pressing block (68) is arranged on the top of the fifth pushing block (66) in a threaded mode, and the pressing block (68) is arranged on the top of the fifth pushing block.
3. A yam peeling apparatus for food production as in claim 2, further comprising a collection mechanism (7), the collection mechanism (7) comprising:
a collecting box (71), wherein the collecting box (71) is slidably arranged between the first shell (8) and the second shell (9);
a cylinder (72), one side of the collection box (71) is connected with the cylinder (72);
and the handle (73) is rotatably connected to the cylinder (72), and the handle (73) is rotatably connected to the cylinder.
4. A yam peeling apparatus for food production as in claim 3, wherein the ratchet gear (44) has circular holes evenly spaced around the circumference on one side, and the circular fixing rod (57) is engaged with the circular holes.
CN202111503549.9A 2021-12-10 2021-12-10 Chinese yam peeling device for food production Active CN114304665B (en)

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CN114304665B true CN114304665B (en) 2024-03-01

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Publication number Priority date Publication date Assignee Title
CN115039892B (en) * 2022-07-19 2023-10-03 江苏沃得农业机械股份有限公司 Adjustable cutter disc for sugarcane machine

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