Cache feeding device

Through the combination of feed line, cache module and chain board line, the rotating device is used to achieve the coordination of cache line and feed line and chain board line, which solves the problems of complex structure, large area, difficulty in cleaning and high cost of cache transmission line, and improves the automated production efficiency of food products.

CN223225223UActive Publication Date: 2025-08-15CHANGYUAN MAIDE (DONGGUAN) TECH CO LTD
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Patent Information

Application Number
CN202421833830.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-08-15
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The existing cache transmission line has complex structures, large space, difficult to clean and maintain, high cost, low production efficiency, and difficult to meet the automated production needs of food products.

Method used

The combination of feed line, cache module and chain board line is adopted, including a transmission board, a first cache line, a second cache line and a rotating device. The transmission board is driven to rotate through the rotating device, so that the buffer line cooperates with the feed line and chain board line to realize the automatic cycle loading and unloading of the product, ensuring the consistency and uniformity of the transmission speed.

Benefits of technology

The conversion from non-uniform feeding to uniform discharge is realized, which improves production efficiency, simplifies the structure, reduces land occupation and maintenance costs, is easy to clean, and is suitable for automated production of food products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cache feeding device and aims to provide a cache feeding device which is simple in structure, small in occupied space, easy to clean and maintain, lower in cost, convenient to cache and higher in efficiency. The buffering device comprises a feeding line, a buffering module and a chain plate line, the buffering module is arranged between the feeding line and the chain plate line, the buffering module comprises a conveying plate, a first buffering line, a second buffering line and a rotating device, the first buffering line and the second buffering line are arranged at the upper end and the lower end of the conveying plate respectively, and the rotating device is arranged between the first buffering line and the second buffering line. The rotating device is arranged on one side of the middle of the conveying plate, the rotating device drives the conveying plate to rotate so that the first cache line and the second cache line can be matched with products on the feeding line, and the first cache line and the second cache line can be matched with the chain plate line. The product feeding and buffering device is applied to the technical field of product feeding and buffering.
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Description

Technical Field

[0001] The utility model is applied to the technical field of material feeding and caching, and particularly relates to a caching feeding device. Background Art

[0002] With the continuous development of science and technology, the production process of various products is becoming more and more automated. In the production of food products, such as candy, betel nut, spicy strips and other products, since these products are rich in water and sugar, they are prone to stickiness during the production process. Manual production and packaging will result in outer packaging contamination, which greatly reduces the consumer's eating experience. In addition, manual production and packaging are inefficient and do not meet the company's automated production needs. Therefore, automated equipment is gradually replacing traditional manual production and packaging. In the production process of such products, it is necessary to go through production, caching and packaging processes. In the caching process stage, the cache conveyor line currently on the market is achieved by connecting multiple sections of cache conveyor lines to achieve a change from a non-uniform loading speed to a uniform discharging speed. The structure of this equipment is relatively complicated and requires multiple sections of cache transfer lines to cooperate with each other. The gaps between the multiple sections of cache transfer lines are not easy to clean, the manufacturing and maintenance costs are high, and the failure probability of multiple groups of cache transfer lines is higher, and the production efficiency is low. If a cache feeding device with a simple structure, small footprint, easy cleaning and maintenance, lower cost, convenient caching and higher efficiency can be designed, the above problems can be solved. Utility Model Content

[0003] The technical problem to be solved by the utility model is to overcome the deficiencies of the prior art and provide a cache feeding device with a simple structure, small footprint, easy cleaning and maintenance, lower cost, convenient caching and higher efficiency.

[0004] The technical solution adopted by the present invention is: the present invention includes a feeding line, a cache module and a chain plate line, the cache module is arranged between the feeding line and the chain plate line, the cache module includes a transmission plate, a first cache line, a second cache line and a rotating device, the first cache line and the second cache line are respectively arranged at the upper and lower ends of the transmission plate, the rotating device is arranged on one side of the middle of the transmission plate, the rotating device drives the transmission plate to rotate so that the first cache line and the second cache line are respectively matched with the products on the feeding line, and the first cache line and the second cache line are respectively matched with the chain plate line.

[0005] Furthermore, a plurality of position-limiting bars are respectively provided on the outer surface of the first cache line conveyor belt and the outer surface of the second cache line conveyor belt, and the plurality of position-limiting bars are respectively matched with the product position limiting bars.

[0006] Furthermore, the rotating device drives the transmission plate to rotate so that the first cache line on the upper end of the transmission plate cooperates with the feed line, and the second cache line cooperates with the chain plate line.

[0007] Furthermore, the rotating device drives the transmission plate to reverse so that the second cache line at the lower end of the transmission plate cooperates with the feed line, and the first cache line cooperates with the chain plate line.

[0008] Furthermore, the running speed of the first cache line conveyor belt end is synchronized with the running speed of the feed line conveyor belt end, and the running speed of the second cache line conveyor belt end is synchronized with the running speed of the chain plate line conveyor belt end.

[0009] Furthermore, the running speed of the second cache line conveyor belt end is synchronized with the running speed of the feed line conveyor belt end, and the running speed of the first cache line conveyor belt end is synchronized with the running speed of the chain plate line conveyor belt end.

[0010] Furthermore, the feed line cooperates with the first cache line so that the several limit bars at the lower end of the first cache line conveyor belt drive the product to slide on the upper end surface of the transmission plate, and the product is transmitted to the unloading end of the transmission plate through the first cache line.

[0011] Furthermore, the feed line cooperates with the feed end of the second cache line so that the feed line pushes the product into the feed end of the second cache line and transmits it to the unfeed end of the second cache line through the conveyor belt end of the second cache line.

[0012] The beneficial effects of the present invention are as follows: the first cache line and the second cache line are swung left and right by the rotating device, the first cache line and the second cache line are respectively cooperated with the feeding line to load materials, and during the loading process of one group of cache lines, the other group of cache lines is synchronously unloading materials to ensure high efficiency, a number of equidistant limit bars on the first cache line and the second cache line are adapted to the product size, which can ensure that the loading spacing of each product is equal, when the feeding line conveys the product to the first cache line, the conveying speed of the first cache line is consistent with that of the feeding line; when the first cache line is to the chain plate line, the conveying speed of the first cache line is consistent with that of the chain plate line and both are uniform; when the feeding line conveys the product to the second cache line, the conveying speed of the second cache line is consistent with that of the feeding line; when the second cache line is to the chain plate line, the conveying speed of the second cache line is consistent with that of the chain plate line and both are uniform, the structure is simple, and the non-uniform loading speed can be changed to a uniform discharging speed, and the automatic cycle loading and unloading is more efficient. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is the main view of the utility model;

[0014] Figure 2 It is a front view of another state of the utility model. DETAILED DESCRIPTION

[0015] like Figures 1 to 2 As shown, in this embodiment, the utility model includes a feed line 1, a cache module 2 and a chain plate line 3. The cache module 2 is arranged between the feed line 1 and the chain plate line 3. The cache module 2 includes a transmission plate 4, a first cache line 5, a second cache line 6 and a rotating device 7. The first cache line 5 and the second cache line 6 are respectively arranged at the upper and lower ends of the transmission plate 4. The rotating device 7 is arranged on one side of the middle of the transmission plate 4. The rotating device 7 drives the transmission plate 4 to rotate so that the first cache line 5 and the second cache line 6 are respectively matched with the product 8 on the feed line 1. The first cache line 5 and the second cache line 6 are respectively matched with the chain plate line 3. It can be seen that the first cache line 5 and the second cache line 6 are swung left and right by the rotating device 7. The first cache line 5 and the second cache line 6 are respectively matched with the feed line 1 for loading. During the loading process of one group of cache lines, the other group of cache lines are synchronously unloading. The automatic cycle of loading and unloading is more efficient.

[0016] like Figure 1 and Figure 2 As shown, in this embodiment, the outer surfaces of the first and second buffer lines 5 and 6 are each provided with a plurality of limit bars 9, each of which cooperates with the products 8 to limit their position. Thus, the equidistant limit bars 9 on the first and second buffer lines 5 and 6 are adapted to the size of the products 8, ensuring that only one group of products 8 is loaded at a time, and that the loading spacing between each product 8 is equal.

[0017] like Figure 1 and Figure 2 As shown, in this embodiment, the rotating device 7 drives the transmission plate 4 to rotate so that the first buffer line 5 at the upper end of the transmission plate 4 cooperates with the feed line 1, and the second buffer line 6 cooperates with the chain plate line 3. As can be seen, when the first buffer line 5 is loading, the second buffer line 6 is unloading synchronously.

[0018] like Figure 1 and Figure 2As shown, in this embodiment, the rotating device 7 drives the transmission plate 4 to reverse so that the second buffer line 6 at the lower end of the transmission plate 4 cooperates with the feed line 1, and the first buffer line 5 cooperates with the chain plate line 3. Thus, when the second buffer line 6 is loading, the first buffer line 5 is unloading synchronously.

[0019] like Figure 1 and Figure 2 As shown, in this embodiment, the conveyor belt end speed of the first cache line 5 is synchronized with the conveyor belt end speed of the feed line 1, and the conveyor belt end speed of the second cache line 6 is synchronized with the conveyor belt end speed of the chain plate line 3. Thus, when the feed line 1 conveys the product 8 to the first cache line 5, the conveying speed of the first cache line 5 is consistent with that of the feed line 1; when the second cache line 6 conveys the product 8 to the chain plate line 3, the conveying speed of the second cache line 6 is consistent with that of the chain plate line 3, and both are uniform.

[0020] like Figure 1 and Figure 2 As shown, in this embodiment, the conveyor belt end running speed of the second cache line 6 is synchronized with the conveyor belt end running speed of the feed line 1, and the conveyor belt end running speed of the first cache line 5 is synchronized with the conveyor belt end running speed of the chain plate line 3. Therefore, when the feed line 1 conveys the product 8 to the second cache line 6, the conveying speed of the second cache line 6 is consistent with the conveying speed of the feed line 1; when the first cache line 5 is conveyed to the chain plate line 3, the conveying speed of the first cache line 5 is consistent with the conveying speed of the chain plate line 3 and both are uniform.

[0021] like Figure 1 and Figure 2 As shown, in this embodiment, the feed line 1 cooperates with the first buffer line 5 so that the plurality of limit bars 9 at the lower end of the conveyor belt of the first buffer line 5 drive the products 8 to slide on the upper end surface of the transmission plate 4, and the products 8 are transferred to the unloading end of the transmission plate 4 through the first buffer line 5. It can be seen that when the products 8 enter from the loading end of the first buffer line 5, the limit bars 9 push the products 8 to slide on the transmission plate 4. Each group of limit bars 9 cooperates with a group of products 8. After loading is completed, the products are transferred to the unloading position by the rotating device 7 for synchronous unloading.

[0022] like Figure 1 and Figure 2As shown, in this embodiment, the feed line 1 cooperates with the loading end of the second buffer line 6 so that the feed line 1 pushes the product 8 into the loading end of the second buffer line 6, and then transmits it to the unloading end of the second buffer line 6 via the conveyor end of the second buffer line 6. Thus, when the product 8 enters from the loading end of the second buffer line 6, the feed line 1 pushes the product 8 between the two sets of limit bars 9. After loading is completed, the product is transferred to the unloading position by the rotating device 7 for synchronous unloading.

[0023] The working principle of the present invention is as follows: when the product 8 is transferred from the feed line 1 to the first cache line 5, the first cache line 5 drives the belt roller to rotate through the motor, thereby driving the belt to operate, and the product 8 is continuously transferred to the first cache line 5 conveyor belt, and moves synchronously with the first cache line 5 through the limit stop bar 9, thereby realizing the transfer of the product 8. When the first cache line 5 is full, the rotating device 7 drives the transmission plate 4 to rotate, realizing the entire cache module 2 to rotate and deflect through the R axis, and the loading port of the second cache line 6 is lifted to the discharge port of the feed line 1 , the product 8 is conveyed to the second cache line 6. When the product 8 is conveyed from the feed line 1 to the second cache line 6, the second cache line 6 drives the belt roller to rotate through the motor, thereby driving the belt to operate. The product 8 is continuously conveyed to the conveyor belt of the second cache line 6. The first cache line 5 moves synchronously to unload the several products 8 on the first cache line 5 onto the chain plate line 3. After unloading, the deflection cycle is synchronized to unload the several products 8 on the second cache line 6. Repeat the above steps to realize automatic cache feeding of products.

[0024] Although the embodiments of the present invention are described with practical solutions, they do not limit the meaning of the present invention. For those skilled in the art, it is obvious to modify the implementation scheme and combine it with other solutions based on this description.

Claims

1. A buffer feeding device, comprising a feeding line (1), a buffer module (2) and a chain plate line (3), characterized in that: The cache module (2) is arranged between the feed line (1) and the chain plate line (3). The cache module (2) includes a transmission plate (4), a first cache line (5), a second cache line (6) and a rotating device (7). The first cache line (5) and the second cache line (6) are respectively arranged at the upper and lower ends of the transmission plate (4). The rotating device (7) is arranged on one side of the middle part of the transmission plate (4). The rotating device (7) drives the transmission plate (4) to rotate so that the first cache line (5) and the second cache line (6) are respectively matched with the product (8) on the feed line (1). The first cache line (5) and the second cache line (6) are respectively matched with the chain plate line (3).

2. A buffer feeding device according to claim 1, characterized in that: The outer surface of the conveyor belt of the first cache line (5) and the outer surface of the conveyor belt of the second cache line (6) are respectively provided with a plurality of limit bars (9). The plurality of limit bars (9) are respectively matched with the product (8) for limiting.

3. The buffer feeding device according to claim 1, characterized in that: The rotating device (7) drives the transmission plate (4) to rotate so that the first cache line (5) at the upper end of the transmission plate (4) cooperates with the feed line (1), and the second cache line (6) cooperates with the chain plate line (3).

4. The buffer feeding device according to claim 1, characterized in that: The rotating device (7) drives the transmission plate (4) to reverse so that the second cache line (6) at the lower end of the transmission plate (4) cooperates with the feed line (1), and the first cache line (5) cooperates with the chain plate line (3).

5. The buffer feeding device according to claim 3, characterized in that: The running speed of the conveyor belt end of the first cache line (5) is synchronized with the running speed of the conveyor belt end of the feed line (1), and the running speed of the conveyor belt end of the second cache line (6) is synchronized with the running speed of the conveyor belt end of the chain plate line (3).

6. The buffer feeding device according to claim 4, characterized in that: The running speed of the conveyor belt end of the second cache line (6) is synchronized with the running speed of the conveyor belt end of the feed line (1), and the running speed of the conveyor belt end of the first cache line (5) is synchronized with the running speed of the conveyor belt end of the chain plate line (3).

7. The buffer feeding device according to claim 2, characterized in that: The feed line (1) cooperates with the first cache line (5) so that the plurality of limit bars (9) at the lower end of the conveyor belt of the first cache line (5) drive the product (8) to slide on the upper end surface of the transmission plate (4), and the product (8) is transmitted to the unloading end of the transmission plate (4) through the first cache line (5).

8. The buffer feeding device according to claim 1, characterized in that: The feed line (1) cooperates with the loading end of the second cache line (6) so that the feed line (1) pushes the product (8) into the loading end of the second cache line (6) and transmits it to the unloading end of the second cache line (6) through the conveyor end of the second cache line (6).