Food conveying reversing mechanism
By designing a food conveying reversing mechanism, a push chain and an arc-shaped track plate are used to achieve stable conveying and 90-degree reversal of strip blanks. This solves the problem that strip blanks cannot smoothly enter the bending and forming mold, shortens the production line length, and improves processing efficiency and space utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2026-03-27
AI Technical Summary
In existing technologies, during food processing, the conveying direction of strip-shaped blanks is not easily changed during forming, which makes it difficult to smoothly enter the bending forming mold, and the production line is too long and occupies too much space.
A food conveying and reversing mechanism was designed, comprising a front-end conveying component, an intermediate material distribution component, and a reversing component. The mechanism utilizes a push chain and an arc-shaped track plate to achieve stable conveying and 90-degree reversal of the strip-shaped blank. Through the cooperation of the push protrusion and the positioning transmission roller, the blank is ensured to smoothly enter the positioning groove and be reversed.
It enables stable conveying and convenient reversing of strip blanks, shortens the production line length, and improves processing efficiency and space utilization.
Smart Images

Figure CN224046369U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of food processing, and in particular relates to a food conveying and reversing mechanism. Background Technology
[0002] In food processing, conveying is a continuous process, with food materials being continuously transported along the production line to achieve processing at each stage. Currently, there are many types of processed food, among which candy canes are a popular choice. Candy canes are a type of irregularly shaped candy, resembling a candy cane with a hook at one end. The production process typically involves shaping the candy material into long, strip-shaped blanks, which are then fed into a bending and forming mechanism. This causes one end of the strip to be bent into a hook shape, thus achieving the required form. However, the forming process often involves... In the shearing method, the strip blanks are generally conveyed vertically after shearing, meaning the conveying direction of the strip blanks is consistent with their length extension direction. However, this directional transmission makes it difficult for the strip blanks to smoothly enter the bending forming mold. Therefore, it is necessary to change the conveying direction of the strip blanks so that they can smoothly enter the bending forming mold. Existing technology does not have a stable and convenient conversion structure. At the same time, the entire processing production line extends along the length of the strip blanks, making the entire production line too long, occupying too much production space, and making processing inconvenient. Utility Model Content
[0003] To address the shortcomings of the existing technology, this utility model provides a food conveying and reversing mechanism that can stably and conveniently convey and reverse food while shortening the processing line length.
[0004] To solve the above problems, the technical solution adopted by this utility model is as follows:
[0005] The utility model relates to a food conveying reversing mechanism, including front end conveying assembly, intermediate material distributing assembly, reversing assembly, the front end of intermediate material distributing assembly installs front end conveying assembly, the rear end of intermediate material distributing assembly installs reversing assembly, intermediate material distributing assembly includes transmission case, fixed plate, push chain, push protruding block, the inside reciprocating transmission of transmission case installs a push chain, even install a plurality of push protruding blocks on the push chain, the upper end of transmission case installs fixed plate, the middle of fixed plate is equipped with strip opening, the inside reciprocating transmission of transmission case pushes chain and drives a plurality of push protruding blocks to move back and forth and makes the outer end of push protruding block to wear out strip opening, and a plurality of push protruding blocks between constitute a plurality of push material intervals in turn, reversing assembly includes arc rail board, arc chain, positioning transmission roller, the arc rail board is equipped with two, two arc rail boards are opposite distribution, two arc rail boards inside reciprocating transmission install arc chain, even install a plurality of positioning transmission rollers between two arc chains, a plurality of positioning transmission rollers abut in turn and form a plurality of positioning grooves.
[0006] Further, the rear end of the fixed plate is provided with two material return plates on both sides, a material guide groove is formed between the two material return plates, the plurality of positioning grooves move in turn with the plurality of positioning transmission rollers, and the plurality of positioning grooves are distributed in turn corresponding to the material guide groove.
[0007] Further, the positioning transmission roller is in a tapered structure with a small inner end and a large outer end.
[0008] Further, the arc rail board and the arc chain are both curved in a ninety-degree structure.
[0009] Further, both ends of the inside of the transmission case are respectively provided with rotating sprockets.
[0010] Further, the front end conveying assembly is a conveyor belt transmission structure.
[0011] The utility model has the advantages as follows:
[0012] The utility model discloses a front end conveying assembly is with the shearing multiple strip blank is sent into the middle of fixed plate in proper order, makes the strip blank fall into the strip opening of fixed plate, and the diameter of strip blank is greater than the opening width of strip opening, so that the strip blank does not drop, so when the chain is reciprocating transmission in transmission box, makes one strip blank fall in proper order on every pushing material interval, and the movement of chain makes the chain drive multiple push bumps and move in proper order, and the outer end of push bump is worn out strip opening, so through multiple push bumps and move in proper order, makes multiple strip blank can keep certain interval stable conveying, and makes multiple strip blank enter multiple positioning groove formed by multiple positioning transmission roller in proper order, so that the strip blank can be positioned on the positioning groove, and multiple strip blank is driven to change 90 degrees through the arc transmission of multiple positioning transmission roller, so the whole structure design is ingenious, and the drive is convenient and stable. BRIEF DESCRIPTION OF DRAWINGS
[0013] Fig. 1 It is the structural schematic diagram of the front end conveying assembly and the middle material distributing component of the utility model.
[0014] Fig. 2 It is the internal structure schematic diagram of the middle material distributing component of the utility model.
[0015] Fig. 3 It is the structural schematic diagram of the reversing component of the utility model.
[0016] Fig. 4 It is the sectional structure schematic diagram of the positioning transmission roller and the strip blank of the utility model.
[0017] Fig. 5 It is the reversing structure schematic diagram of multiple strip blank of the utility model. PREFERRED EMBODIMENT
[0018] The utility model contents are further explained in detail below in combination with the drawings.
[0019] As Figs. 1 to 5As shown, a food conveying reversing mechanism includes a front-end conveying component 1, an intermediate distributing component 2, and a reversing component 3. The front-end conveying component 1 is installed at the front end of the intermediate distributing component 2; the reversing component 3 is installed at the rear end of the intermediate distributing component 2. The intermediate distributing component 2 includes a transmission box 21, a fixed plate 22, a push chain 23, and push protrusions 24. A push chain 23 is reciprocated inside the transmission box 21. Multiple push protrusions 24 are evenly installed on the push chain 23. The fixed plate 22 is installed at the upper end of the transmission box 21. A strip-shaped opening 223 is formed in the middle of the fixed plate 22. The push chain... The chain 23 reciprocates inside the transmission box 21, driving the chain 23 to move multiple pushing protrusions 24 back and forth, causing the outer ends of the pushing protrusions 24 to pass through the strip-shaped opening 223. The multiple pushing protrusions 24 sequentially form multiple pushing zones. The reversing component 3 includes an arc-shaped track plate 31, an arc-shaped chain, and positioning transmission rollers 33. There are two arc-shaped track plates 31, which are distributed opposite each other. Arc-shaped chains are installed inside both arc-shaped track plates 31 for reciprocating transmission. Multiple positioning transmission rollers 33 are evenly installed between the two arc-shaped chains. The multiple positioning transmission rollers 33 sequentially abut against each other and form multiple positioning grooves 331.
[0020] like Figs. 1 to 5 As shown, in order to facilitate the stable entry of the strip blank 4 into the multiple positioning grooves 331 formed by the multiple positioning transmission rollers 33, the rear ends of the fixed plate 22 are provided with pouring plates 221, and a guide groove 222 is formed between the two pouring plates 221. The multiple positioning grooves 331 move sequentially with the multiple positioning transmission rollers 33, so that the multiple positioning grooves 331 are distributed in sequence with the guide groove 222.
[0021] like Figs. 1 to 5 As shown, in order for multiple positioning drive rollers 33 to abut against each other in sequence to form positioning grooves 331, the positioning drive rollers 33 have a conical structure with a smaller inner end and a larger outer end.
[0022] like Figs. 1 to 5 As shown, to achieve a 90-degree reversing structure, both the arc-shaped track plate 31 and the arc-shaped chain are bent at a 90-degree angle. Furthermore, the transmission box 21 has rotating sprockets 211 at both ends; the two ends of the push chain 23 are respectively engaged and sleeved on the rotating sprockets 211. Furthermore, the front-end conveying assembly 1 is a conveyor belt conveying structure.
[0023] The utility model discloses a front end conveying assembly 1 is with the shearing multiple strip blank 4 is sent into the middle of fixed plate 22 in proper order, makes the strip blank 4 fall into the strip opening 223 of fixed plate 22, and the diameter of strip blank 4 is greater than the opening width of strip opening 223, so that the strip blank does not fall down, so when the chain 23 is reciprocating transmission in the transmission case 21, makes one strip blank 4 fall in proper order on every pushing material section, with the movement of chain 23, makes chain 23 drive multiple push bumps 24 and move in proper order, and makes the outer end of push bump 24 wear out strip opening 223, so through multiple push bumps 24 and push strip blank 4 and move in proper order, so that multiple strip blank 4 can keep certain interval and stably convey, and make multiple strip blank 4 enter multiple positioning groove 331 formed by multiple positioning transmission roller 33 in proper order, so that strip blank 4 can be positioned on positioning groove 331, and through the arc transmission of multiple positioning transmission roller 33 drive multiple strip blank 4 and carry out ninety degrees reversing, so the whole structure design is ingenious, and the drive is convenient and stable.
[0024] The above only is the preferred embodiment of the utility model, and does not use to limit the utility model, and any modification, equivalent replacement, improvement etc. that is made within the spirit and principle of the utility model should be contained in the protection scope of the utility model.
Claims
1. A food product conveying reversing mechanism, characterized by, Including front end conveying assembly, intermediate material distribution assembly, reversing assembly, the front end of intermediate material distribution assembly installs front end conveying assembly, the rear end of intermediate material distribution assembly installs reversing assembly, intermediate material distribution assembly includes transmission case, fixed plate, push chain, push block, the inside reciprocating transmission of transmission case installs a push chain, multiple push blocks are evenly installed on the push chain, the upper end of transmission case installs fixed plate, the middle of fixed plate is provided with strip-shaped opening, the inside reciprocating transmission of transmission case pushes chain, and push chain drives multiple push blocks to reciprocate and moves and makes the outer end of push block to wear out strip-shaped opening, and multiple push blocks sequentially constitute multiple push material intervals between multiple push blocks, reversing assembly includes arc-shaped track plate, arc-shaped chain, positioning transmission roller, the arc-shaped track plate is equipped with two, two arc-shaped track plates are oppositely distributed, and arc-shaped chain is reciprocating transmission installed in the inside of two arc-shaped track plates, multiple positioning transmission rollers are evenly installed between two arc-shaped chains, and multiple positioning transmission rollers sequentially abut and form multiple positioning grooves.
2. The food product delivery commutating mechanism of claim 1, wherein, The rear end of fixed plate is provided with two material return plates on both sides, and the guide groove is formed between two material return plates, multiple positioning grooves move with multiple positioning transmission rollers sequentially, and multiple positioning grooves are sequentially distributed with guide groove.
3. The food product delivery commutating mechanism of claim 1, wherein, The positioning transmission roller is conical structure with small inner end and large outer end.
4. The food product delivery commutating mechanism of claim 1, wherein, The arc-shaped track plate and arc-shaped chain are bent with ninety-degree structure.
5. The food product delivery commutating mechanism of claim 1, wherein, The inside of transmission case is respectively provided with rotating sprocket on both ends, and the both ends of push chain are respectively engaged with rotating sprocket.
6. The food product delivery commutating mechanism of claim 1, wherein, The front end conveying assembly is conveying belt transmission structure.