CN210084206U - Conveying mechanism for cut rice vermicelli - Google Patents

Conveying mechanism for cut rice vermicelli Download PDF

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Publication number
CN210084206U
CN210084206U CN201920728821.5U CN201920728821U CN210084206U CN 210084206 U CN210084206 U CN 210084206U CN 201920728821 U CN201920728821 U CN 201920728821U CN 210084206 U CN210084206 U CN 210084206U
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China
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conveying
rod
vermicelli
driven
rice
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CN201920728821.5U
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Chinese (zh)
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张强
刘蓉
白明全
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Mianyang Zhongfu Food Co Ltd
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Mianyang Zhongfu Food Co Ltd
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Abstract

The utility model provides a conveying mechanism after rice vermicelli is cut, it is a plurality of including the peg that is used for hanging the bean vermicelli, and be used for carrying the conveyor components who carries to the peg, a serial communication port, conveyor components includes a pair of interval arrangement and is the body of rod conveyer belt of key type, driving gear with body of rod conveyer belt inner circle meshing, set up relatively with the driving gear and with body of rod conveyer belt inner circle complex driven plate, the driving gear rotates through rotating motor drive, the peg is connected between a pair of body of rod conveyer belt, be equipped with the subassembly of taking off at body of rod conveyer belt direction of delivery's front end, the subassembly of taking off is including the pole that is located body of rod conveyer belt direction of delivery below foremost and be used for driving. After the machine is applied to the cutting process, the cut rice vermicelli is hung on the mechanism for conveying, screening and automatic taking down, the mechanism structure is stable, mechanical parts can not influence the vermicelli, and the whole process efficiency is improved.

Description

Conveying mechanism for cut rice vermicelli
Technical Field
The utility model relates to a rice vermicelli processing, in particular to a conveying mechanism after rice vermicelli is cut.
Background
The fresh squeezed wet rice vermicelli is a convenient food which is currently favored by consumers. In the processing, the vermicelli is cut/cut after being formed into filaments/strips so as to facilitate the storage, the packaging and the like of the rice vermicelli. The existing mode is that the cutting is carried out independently, and then the cut vermicelli is sent to the next procedure in batch/centralized mode after the cutting is finished, or the cut vermicelli is simply screened firstly, the too short vermicelli is removed, and then the cut vermicelli is sent to the next procedure in centralized mode. This is disadvantageous in terms of time and process cost savings for delicate production management, and is cumbersome in terms of environmental factors to maintain sterilization/disinfection if the time taken before and after the transport process is too long and the transport process is involved. Therefore, improvements or improvements are highly desirable.
SUMMERY OF THE UTILITY MODEL
The utility model provides a conveying mechanism after rice vermicelli is cut to solve above-mentioned current problem, be applied to and cut the process after, to hang the rice vermicelli of cutting and carry in the mechanism, filter, take off automatically, mechanism stable in structure, and mechanical parts can not cause the influence to the vermicelli, and improved whole process efficiency.
The utility model discloses a following technique:
the utility model provides a conveying mechanism after rice vermicelli is cut, is including being used for hanging that the peg of bean vermicelli is a plurality of and be used for carrying the conveying subassembly to the peg, its characterized in that:
the conveying assembly comprises a pair of rod conveying belts which are arranged at intervals and in a key shape, a driving gear meshed with inner rings of the rod conveying belts, and a driven disc which is arranged opposite to the driving gear and matched with the inner rings of the rod conveying belts, wherein the driving gear is driven to rotate by a rotating motor, specifically, the inner rings of the rod conveying belts are provided with grooves, and tooth-shaped protrusions are arrayed in the grooves to enable the rod conveying belts to be meshed with the driving gear. The driving gears are connected through a driving shaft, and the driving shaft is driven to rotate by a rotating motor through a belt. The driven discs are connected through driven shafts, the driving shafts and the driven shafts are both arranged on the support columns with the shaft seats, and particularly, the driven discs are driven gears and are meshed with the inner rings of the rod body conveying belts;
the peg is connected between a pair of body of rod conveyer belt, is equipped with the subassembly of taking off at body of rod conveyer belt direction of delivery's front end, takes off the subassembly including being located the body of rod conveyer belt direction of delivery below round bar and being used for the lifting unit that the drive round bar goes up and down, and the round bar is parallel with the peg, and lifting unit includes a pair of synchronous operation's lift cylinder, is equipped with the slope between the lift cylinder and connects the flitch.
Furthermore, the driving shaft and the driven shaft are provided with material receiving conveying belts. Two side edges of the material receiving conveying belt are provided with barrier strips. A material receiving basket is arranged right below the front end of the material receiving conveying belt in the conveying direction.
The utility model discloses beneficial effect:
1. the vermicelli hung after being cut can be effectively conveyed, the conveying process and time can be utilized to perform hot air action, drying action and the like, the independent process time is saved, meanwhile, vermicelli which are too short or have too large length difference at two sides and do not reach the standard in the conveying process fall to a material receiving conveying belt along with the conveying under the action of self weight, so that the concentrated treatment is facilitated, and a certain screening function is realized;
2. at the foremost end of hanging and conveying, vermicelli is taken down through a lifting round rod, the vermicelli can be automatically taken down by reasonably arranging a stroke by utilizing the hanging state characteristics of the vermicelli and the self weight of the vermicelli, the vermicelli is intensively collected by an inclined material receiving plate, the next procedure is carried out, and the manual labor and the time for special carrying are saved;
3. in the conveying process, vermicelli is influenced by the structure of the hanging rod and is concentrated in the middle bearing section, and meanwhile, the vermicelli is meshed with the inner ring and is provided with the groove, so that possible interference between the vermicelli and mechanical parts is avoided; simultaneously, structurally, utilized the power combination of driving shaft and driven shaft itself, ingenious for connecing the material conveyer belt to provide power, rational in infrastructure science.
Drawings
Fig. 1 is a first perspective view of the present invention.
Fig. 2 is a schematic perspective view of the present invention.
Fig. 3 is a third perspective view of the present invention.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments.
As shown in fig. 1-3, the conveying mechanism for the cut rice vermicelli comprises a plurality of hanging rods 1 and conveying assemblies for conveying the hanging rods 1.
The conveying assembly comprises a pair of key-shaped rod body conveying belts 10 which are arranged at intervals, one sides of inner rings of the rod body conveying belts 10 are meshed with the driving gears 20 and are opposite, the other sides of the inner rings of the rod body conveying belts are matched with the driven discs 21, and the rod body conveying belts 11 are supported through the driving gears 20 and the driven discs 21 to form a conveying operation mechanism.
Specifically, the driving gear 20 is driven to rotate by a rotating motor 25. The driving gears 20 are connected with each other through a driving shaft 22, and the driving shaft 22 is driven to rotate by a rotating motor 25 through a belt 24.
Specifically, the driven discs 21 are connected through the driven shaft 23, and the driving shaft 22 and the driven shaft 23 are both arranged on a support with a shaft seat.
The hanger 1 is connected between a pair of rod conveyors 10, i.e. forming a spaced conveying structure.
As a specific embodiment, the inner ring of the rod conveyor 10 has a groove 14, the groove 14 has tooth-shaped protrusions 15 arranged therein to enable the rod conveyor 10 to engage with the driving gear 20, and the driven disc 21 is also a driven gear and engages with the inner ring of the rod conveyor 10, thereby effectively improving the stability of the operation of the rod conveyor 10.
The front end of the conveying direction of the rod conveyor 10 is provided with a take-down component, and the take-down component comprises a round rod 41 positioned below the foremost end of the conveying direction of the rod conveyor 10 and a lifting component used for driving the round rod 41 to lift.
When the vermicelli hanging device is used, the cut vermicelli is sequentially hung on the hanging body 1 side by side, and the hanging body 1 is conveyed forwards along with the transmission of the rod body conveying belt 10. Because the frame body structural design of this mechanism for the middle part is the fretwork, can introduce processes such as hot-blast, stoving in transportation process, and the transmission course and the time that will carry next process further utilize, improve lean management efficiency.
During the conveying process, the rotating motor 25 drives the driving shaft 22 to rotate through the belt 24, the driving gear 20 is meshed with the tooth-shaped protrusions 15 to drive the rod conveyor 10 to transmit, and the driven disc 21 is used for matching with the driving gear 20 and supporting the rod conveyor 10. Because the groove 14 is arranged and the tooth-shaped bulge 15 is positioned in the groove 14, the possibility of interference between the vermicelli and the conveying mechanism is avoided.
Preferably, the hanging rod 1 is designed as follows: the middle bearing section 11, the inclined section 13 and the limiting section 12; the inclined section 13 serves as a transition between the intermediate bearing section 11 and the two end limiting sections 12. Therefore, when hanging, the vermicelli is placed on the middle bearing section 11, the vermicelli is prevented from moving to two sides of the hanging rod 1, and interference between the vermicelli and mechanical parts is further avoided; due to the transitional design of the inclined section 13, the silk breakage and the like caused by possible physical damage to the silk noodles due to the edge angles are avoided.
As a further preferable mode of the present embodiment, the receiving conveyor 3 is provided on the driving shaft 22 and the driven shaft 23. Two side edges of the material receiving conveying belt 3 are provided with barrier strips 31. A receiving basket 32 is arranged right below the front end of the receiving conveyor belt 3 in the conveying direction.
Because in the bean vermicelli after cutting, there is the too short or hang the too big condition of back both sides length difference, consequently, when hanging and carrying behind peg 1, the very big possibility all exists not to conform to the bean vermicelli that length required and drops in hanging the transport, can effectually collect the bean vermicelli that drops through connecing material drive belt 3 to connect the material frame 32 of conveying direction front end below to collect, do benefit to the value redevelopment after centralized processing or retrieving through environmental protection technology. Due to the arrangement of the baffle strips 31, the waste vermicelli can be prevented from moving towards two sides due to the shaking generated in the conveying process of the material receiving conveying belt 3, and the effect of centralized collection is ensured.
At the foremost end of the hanging rod 1 in the conveying direction, a round rod 41 parallel to the hanging rod 1 is arranged, and two ends of the round rod 41 are connected to a pair of lifting cylinders 42 running synchronously through vertical rods, and are specifically connected with telescopic rods of the lifting cylinders 42. The round rod 41 and the lifting cylinder 42 form a take-down component, when the hanging rod 1 moves to the middle height of the rod body conveyor belt 10 and is positioned at the foremost end, the round rod 41 is lifted, so that the round rod 41 enters between the vertical sections at two sides of the hung vermicelli, and the lifting height does not interfere with the moving track of the hanging rod 1. And slowly and continuously raising the round rod 41 slowly during the continuous operation of the hanging rod 1, after the hanging rod 1 runs out of the lifting track of the round rod 41, raising the round rod 41 by the vertical horse to enable vermicelli on the hanging rod 1 to slide down from the other side due to the influence of gravity, withdrawing the round rod 41, continuously returning the unloaded hanging rod 1, and then carrying out the next operation of taking down the hanging rod 1 carrying the vermicelli by the same operation.
In order to collect the vermicelli after being taken off, an inclined material receiving plate 42 is arranged between the lifting cylinders 43, and a gap between the top end of the inclined material receiving plate 42 and the material receiving basket 32 is ensured to prevent the two materials from being interfered. Preferably, the top of the inclined material receiving plate 42 is provided with a vertical plate to further prevent waste vermicelli conveyed by the material receiving conveyor belt 3 from entering the inclined material receiving plate 42. Specifically, the inclined material receiving plate 42 and the lifting cylinder 43 are fixed on the base 44.
Will the utility model discloses after being applied to the process of cutting, the rice vermicelli hanging that will cut is carried in the mechanism, is filtered, is taken off automatically, and mechanism stable in structure, and mechanical parts can not cause the influence to the vermicelli to whole process efficiency has been improved.

Claims (10)

1. A conveying mechanism for the cut rice vermicelli, which comprises a plurality of hanging rods (1) for hanging the rice vermicelli and a conveying assembly for conveying the hanging rods (1), it is characterized in that the conveying component comprises a pair of rod body conveying belts (10) which are arranged at intervals and are in a key shape, a driving gear (20) which is meshed with the inner rings of the rod body conveying belts (10), and a driven disc (21) which is arranged opposite to the driving gear (20) and is matched with the inner rings of the rod body conveying belts (10), the driving gear (20) is driven to rotate by a rotating motor (25), the hanging rod (1) is connected between the pair of rod body conveying belts (10), the front end of the conveying direction of the rod body conveying belt (10) is provided with a taking-down component, and the taking-down component comprises a round rod (41) and a lifting component, wherein the round rod (41) is located below the foremost end of the conveying direction of the rod body conveying belt (10), and the lifting component is used for driving the round rod (41) to lift.
2. The mechanism as claimed in claim 1, wherein the grooves (14) are formed in the inner circle of the rod conveyor belt (10), and the tooth-shaped protrusions (15) are arrayed in the grooves (14) to enable the rod conveyor belt (10) to be meshed with the driving gear (20).
3. The conveying mechanism for slit rice noodles as claimed in claim 1, wherein the driving gears (20) are connected through a driving shaft (22), and the driving shaft (22) is driven to rotate by a rotating motor (25) through a belt (24).
4. The conveying mechanism of the slit rice-flour noodles as claimed in claim 3, wherein the driven discs (21) are connected through the driven shaft (23), and the driving shaft (22) and the driven shaft (23) are both arranged on the support with the shaft seat.
5. The mechanism as claimed in claim 4, wherein the driven plate (21) is a driven gear engaged with the inner ring of the rod conveyor (10).
6. The conveying mechanism after rice vermicelli is slit according to claim 3, wherein the driving shaft (22) and the driven shaft (23) are provided with the material receiving conveying belt (3).
7. The conveying mechanism after rice vermicelli is slit according to claim 6, wherein the edges of two sides of the material receiving conveying belt (3) are provided with baffle strips (31).
8. The conveying mechanism for cut rice vermicelli according to claim 6, wherein a material receiving basket (32) is arranged right below the front end of the material receiving conveying belt (3) in the conveying direction.
9. The mechanism for conveying sliced rice noodles as claimed in claim 1, wherein the lifting assembly comprises a pair of synchronously operating lifting cylinders (43), and an inclined material receiving plate (42) is arranged between the lifting cylinders (43).
10. The mechanism for conveying split rice-flour noodles as claimed in claim 1, wherein the hanging rod (1) comprises a middle bearing section (11) and limiting sections (12) which are transited to two ends through inclined sections (13), and the round rod (41) is parallel to the hanging rod (1).
CN201920728821.5U 2019-05-21 2019-05-21 Conveying mechanism for cut rice vermicelli Active CN210084206U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920728821.5U CN210084206U (en) 2019-05-21 2019-05-21 Conveying mechanism for cut rice vermicelli

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920728821.5U CN210084206U (en) 2019-05-21 2019-05-21 Conveying mechanism for cut rice vermicelli

Publications (1)

Publication Number Publication Date
CN210084206U true CN210084206U (en) 2020-02-18

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ID=69479288

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920728821.5U Active CN210084206U (en) 2019-05-21 2019-05-21 Conveying mechanism for cut rice vermicelli

Country Status (1)

Country Link
CN (1) CN210084206U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112830159A (en) * 2021-02-21 2021-05-25 安徽妮妮农业科技有限公司 Vermicelli processing and conveying device
CN114955544A (en) * 2022-08-01 2022-08-30 烟台三嘉粉丝有限公司 Continuous automatic conveying equipment of vermicelli blanching machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112830159A (en) * 2021-02-21 2021-05-25 安徽妮妮农业科技有限公司 Vermicelli processing and conveying device
CN114955544A (en) * 2022-08-01 2022-08-30 烟台三嘉粉丝有限公司 Continuous automatic conveying equipment of vermicelli blanching machine

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