Frying line split type inner container assembly

By using a split side panel assembly design, the problems of food jamming, sagging, and thermal expansion deformation in the frying line inner liner assembly are solved, achieving seamless contact conveying, reducing raw material loss, and improving the operational stability and conveying efficiency of the frying line.

CN223943646UActive Publication Date: 2026-02-27SHANDONG YUSHEN IND EQUIPMENT CO LTD
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Patent Information

Application Number
CN202520406519.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-02-27
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

In the current frying line inner liner assembly, food easily gets stuck in the gaps, the upper conveyor device sags, and the side plate deforms due to thermal expansion, leading to poor conveying and raw material loss.

Method used

It adopts a split side panel assembly design, with the lower side panel and the upper side panel being staggered. A support platform is provided between the top of the lower side panel and the upper side panel to support the upper conveying device. The upper conveying device is directly supported on the support platform to avoid food getting stuck in gaps and bending deformation, and to reduce the impact of thermal expansion.

Benefits of technology

Seamless contact conveying is achieved, reducing raw material loss and improving the long-term operational stability and conveying efficiency of the frying line.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a frying line split type inner container general assembly, which relates to the technical field of food frying equipment, and comprises two opposite side plate assemblies, a lower transmission device and an upper transmission device are arranged between the two side plate assemblies, each side plate assembly comprises a lower side plate, and the lower transmission device is arranged on the lower side plate; the top of each lower side plate is fixedly provided with an upper side plate, and the upper conveying device is installed on the upper side plates. The upper side plates are arranged in a staggered mode in the far side direction of the two lower side plates, and supporting tables are arranged between the tops of the lower side plates and the corresponding upper side plates and used for bearing the upper conveying device. Food is prevented from being clamped, extra support is not needed, the influence of thermal expansion is small, long-time smooth conveying is facilitated, and raw material loss is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to food oil -frying equipment technical field especially relates to a split type inner bag total assembly. BACKGROUND

[0002] The oil -frying line is the food processing equipment that uses high -temperature edible oil to food carries out continuous frying, and its oil shell installs the inner bag total assembly to food and carries out continuous conveying, the structure of the inner bag total assembly mainly includes lower transmission device and its upper transmission device, and the transmission device and lower transmission device are all net chain type conveying device, and the passage formed between transmission device and lower transmission device is food conveying passage.

[0003] In the prior art, the lower transmission device and the upper transmission device are commonly installed on the opposite side plates, as shown in the prior art, this structure has many deficiencies in use, as follows. Figure 4

[0004] First, the fried food is mostly floating on the oil surface, and due to the limitation of the upper transmission device, the food is actually transported by adhering to the transmission surface of the upper transmission device. In order to ensure that the upper transmission device can transport all the food, the guide rail of the upper transmission device is arranged above the conveying section. Due to the assembly gap between the chain in the transmission device and the corresponding side plate, the food often gets stuck, and even falls into the interior of the upper transmission device, which causes the abnormal operation of the upper transmission device and the loss of raw materials.

[0005] Second, the long conveying path causes the conveying section of the upper transmission device to be vertically bent, which affects normal conveying. The conventional method is to arrange a longitudinal support rod along the conveying direction under the conveying section of the upper transmission device to support it. However, due to the long conveying path, the longitudinal support rod is also long, so the longitudinal support rod is also vertically bent. Therefore, a plurality of transverse support rods connected to the side plates are arranged on the support rod to strengthen the support. However, the transverse support rods form an obstacle structure at the conveying surface of the upper transmission device, which causes the food to be transported slowly, as shown in the prior art. Some food is over-fried due to the long blocking time, which forms waste and also causes the loss of raw materials. Figure 5

[0006] Third, during use, the side plate is equivalent to the lower half being in the high-temperature oil body, and the upper half being exposed outside the high-temperature oil body. The lower half of the side plate is more obviously expanded by heat due to the direct heating effect of the high-temperature oil body, and the whole side plate is twisted and deformed. The deformation accumulation after long-term use causes the inner bag total assembly to be unable to normally operate.

[0007] ​​In summary, the liner assembly needs to be improved. Content of the utility model

[0008] The technical problem solved by the utility model is to provide a frying line split type liner assembly which avoids food jamming, does not need additional support, is less affected by thermal expansion, is beneficial to long-term smooth conveying and raw material loss reduction.

[0009] To solve the above technical problems, the technical scheme of the utility model is as follows: a frying line split type liner assembly, comprising two oppositely arranged side plate assemblies, a lower conveying device and an upper conveying device are installed between the two side plate assemblies, the side plate assembly comprises a lower side plate, and the lower conveying device is installed on the lower side plate; an upper side plate is fixedly installed on the top of each lower side plate, the upper conveying device is installed on the upper side plate; the upper side plate is arranged in a staggered manner along the far side direction of the two lower side plates, a support table is arranged between the top of the lower side plate and the corresponding upper side plate, and the support table is used for supporting the upper conveying device.

[0010] As a preferred technical scheme, the upper side plate comprises a plurality of upper side sub-plates arranged in sequence along the conveying direction.

[0011] As a preferred technical scheme, an upper side guide rail is fixedly arranged on the lower side of the upper side plate and located below the upward section of the upper conveying device.

[0012] As a preferred technical scheme, a lower side guide rail is arranged on the lower side of the lower side plate and located below the upward section and the downward section of the lower conveying device.

[0013] As a preferred technical scheme, a plurality of expansion joints are arranged on the lower side plate.

[0014] Due to the adoption of the above technical scheme, the frying line split type inner container assembly comprises two oppositely arranged side plate assemblies, a lower conveying device and an upper conveying device are installed between the two side plate assemblies, the side plate assembly comprises a lower side plate, the lower conveying device is installed on the lower side plate, the top of each lower side plate is fixedly installed with an upper side plate, the upper conveying device is installed on the upper side plate, the upper side plate is arranged in a staggered manner along the far side direction of the two lower side plates, a support table is arranged between the top of the lower side plate and the corresponding upper side plate, and the support table is used for supporting the upper conveying device. The side plate assembly on each side is arranged in a split structure of a lower side plate and an upper side plate, the expansion deformation of the lower side plate caused by the direct heating action of the high-temperature oil body has a small influence on the upper side plate, and therefore, deformation accumulation is not easy to occur in a long-term use process, and the influence of thermal expansion is small. The staggered arrangement of the upper side plate enables the top of the upper side plate to form the support table, after the upper conveying device is supported on the support table, the conveying surface part of the upper conveying device located between the two support tables can still maintain the overall conveying effect on food, the upper conveying device is supported on the support table to form seamless contact, and food jamming is effectively avoided. In addition, the conveying section of the upper conveying device is equivalent to being supported on the support table throughout the whole process, vertical bending deformation does not occur, additional support is not needed, the whole body is beneficial to long-term smooth conveying, all food can form smooth frying processing, and raw material loss is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0015] The following drawings merely aim to schematically illustrate and explain the present application and do not limit the scope of the present application. Among them:

[0016] Figure 1 is a transverse sectional view of an embodiment of the present application;

[0017] Figure 2 is a longitudinal sectional view of an embodiment of the present application;

[0018] Figure 3 is Figure 2 an enlarged schematic view of structure I of

[0019] Figure 4 is a transverse sectional view of an existing inner container assembly;

[0020] Figure 5 is Figure 4 an A-A structure schematic view of

[0021] In the drawings: 1 - oil shell; 2 - side plate assembly; 21 - lower side plate; 22 - upper side plate; 23 - upper side plate; 24 - expansion joint; 3 - lower conveying device; 31 - lower side guide rail; 4 - upper conveying device; 41 - upper side guide rail; 5 - support table; 9 - side plate; 91 - longitudinal support rod; 92 - transverse support rod. DETAILED DESCRIPTION

[0022] The utility model is further illustrated below in combination with the drawings and examples. In the following detailed description, certain exemplary embodiments of the utility model are described by way of illustration only. It is needless to say that those skilled in the art can realize that the described embodiments can be modified in various ways without departing from the spirit and scope of the utility model. Therefore, the drawings and description are illustrative in nature and are not used to limit the protection scope of the claims.

[0023] As Figure 1 , Figure 2 and Figure 3 Commonly shown, the frying line split type liner assembly, including two opposite side plate assembly 2, two side plate assembly 2 between installation has lower transmission device 3 and upper transmission device 4.Conventionally, the lower transmission device 3 and the upper transmission device 4 are all net chain type conveying device, and each conveying device at least includes two sets of chain wheels, and two sets of chain wheels are installed between two conveying chains, and the net chain structure is installed between the corresponding positions of the two conveying chains.Accordingly, each transmission device is formed with an upper side running section (uplink section) and a lower side running section (downlink section);The uplink section of the lower transmission device 3 plays a conveying role, and is the conveying section of the lower transmission device 3, and the downlink section of the upper transmission device 4 plays a conveying role, and is the conveying section of the upper transmission device 4.

[0024] The side plate assembly 2 includes a lower side plate 21, and the lower transmission device 3 is installed on the lower side plate 21.Conventionally, the lower side plate 21 is provided with a lower guide rail 31 on the lower side of the uplink section and the lower side of the downlink section of the lower transmission device 3 respectively to guide and support the uplink section and the downlink section of the lower transmission device 3 respectively.

[0025] The top of each lower side plate 21 is fixedly installed with an upper side plate 22, and the upper transmission device 4 is installed on the upper side plate 22.Thus, the split setting of the side plate assembly 2 makes the lower side plate 21 located mainly in the high-temperature oil body have smaller influence on the upper side plate 22 when obvious swelling deformation occurs, so that deformation accumulation does not easily occur after long-term use, and smooth conveying can be maintained for a long time.

[0026] Preferably, the lower side plate 21 is provided with a plurality of expansion joints 24, and the expansion joints 24 are arranged to better adapt to the swelling deformation amount of the middle position of the lower side plate 21, so that the lower side plate 21 itself is not easily twisted and deformed, and the influence on the upper side plate 22 is further smaller.

[0027] The upper side plate 22 is arranged in the distal direction of the lower side plates 21, and a support table 5 is arranged between the top of the lower side plate 21 and the corresponding upper side plate 22, which is used to support the upper conveying device 4. In the above structure, the upper conveying device 4 is directly supported on the support table 5, and more specifically, the conveying chain of the descending section of the upper conveying device 4 is supported on the support table 5; the chain plate in the descending section of the upper conveying device 4 can fully cover the conveying channel and fully convey the food. The upper conveying device 4 is supported on the support table 5 to form a seamless contact, which effectively avoids food jamming. In addition, the conveying section of the upper conveying device 4 is supported on the support table 5 throughout the conveying process, and does not need to be additionally supported.

[0028] In the case that the descending section of the upper conveying device 4 can be supported on the support table 5, the upper side plate 22 of the present embodiment is provided with an upper side guide rail 41 on the descending section of the upper conveying device 4, which can guide and support the descending section of the upper conveying device 4. The support table 5 can be integrally bent on the top of the lower side plate 21, or can be a separately fixed and installed or welded structure, which is not limited herein, and the present embodiment only illustrates the structure of the integrally bent top.

[0029] Preferably, the upper side plate 22 comprises a plurality of upper side sub-plates 23 arranged in sequence along the conveying direction, i.e., the upper side plate 22 is a structure formed by the plurality of upper side sub-plates 23. The sub-plate structure can reduce the manufacturing material cost and make the upper side plate 22 less affected by the expansion deformation of the lower side plate 21.

[0030] The embodiment is in use in the oil tank 1, which is filled with oil body at the same level as the descending section of the upper conveying device 4. The lower side plate 21 is entirely in the high-temperature oil body, while the upper side plate 22 is basically not in contact with the oil body. Compared with the integral setting, the more obvious expansion deformation of the lower side plate 21 is not easily transmitted to the upper side plate 22. The separation of the upper side plate 22 and the lower side plate 21 also makes the heat conduction from the lower side plate 21 to the upper side plate 22 worse, and the upper side plate 22 basically does not produce obvious thermal expansion deformation, and is less affected by thermal expansion. The embodiment further reduces the influence of thermal expansion by the expansion joint 24 and the separation of the upper side plate 22. The upper and lower separation of the side plate assembly 2 enables the upper side plate 22 to form the support table 5 by misalignment, directly support the upper conveying device 4 on the support table 5, and itself form better deformation resistance. There is no gap between the support table 5 and the upper side plate 22. The food floating near the oil body liquid surface will not be jammed at the conveying surface of the upper conveying device 4, and can be smoothly conveyed without obstruction under the driving of the conveying section of the upper conveying device 4. All food can be smoothly fried, which is beneficial to reduce the loss of raw materials.

[0031] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above embodiments. The above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application. These changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A frying line split tank assembly comprising two opposite arranged side plate assemblies, a lower conveying device and an upper conveying device are installed between the two side plate assemblies, characterized in that: The side plate assembly comprises lower side plates, the lower conveying devices are mounted on the lower side plates; top portions of each of the lower side plates are fixedly mounted with upper side plates, the upper conveying devices are mounted on the upper side plates; the upper side plates are arranged in a staggered manner along the far side direction of the two lower side plates, and support tables are arranged between the top portions of the lower side plates and the corresponding upper side plates, and the support tables are used for supporting the upper conveying devices.

2. The split bladder assembly of claim 1, wherein: The upper side plate comprises a plurality of upper side sub-plates arranged in sequence along the conveying direction.

3. The split bladder assembly of claim 1, wherein: An upper side guide rail is fixedly arranged on the upper side plate below the upward section of the upper conveying device.

4. The split bladder assembly of claim 1, wherein: Lower side guide rails are arranged on the lower side plate below the upward section and below the downward section of the lower conveying device.

5. The split tank assembly of any one of claims 1 to 4, wherein: A plurality of expansion joints are arranged on the lower side plate.