A platform for high-speed catering management

CN224735028UActive Publication Date: 2026-09-11林孔文 +2
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Patent Information

Application Number
CN202521676619.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-07
Publication Date
2026-09-11
Estimated Expiration
2035-08-07

AI Technical Summary

Technical Problem

当前,传统餐饮收银平台普遍存在结构固定、功能单一的问题:一方面,操作台面面积固定,高峰时段易出现点餐、结算操作拥挤的情况,导致服务效率下降;另一方面,设备收纳空间与操作空间的分配难以动态调整,非高峰时段多余的操作空间会造成场地浪费,而高峰时段又面临物料存放空间不足的困境

Benefits of technology

[0009] As can be seen from the above description of the structure of this utility model, compared with the prior art, this utility model has the following advantages: Through the coordinated work of the side panel's flip-up plate, fixed plate, and connecting arm, the flexible expansion and storage of the operating table surface is achieved; the three-section folding structure of the partition (support plate, movable plate number one, and movable plate number two) can be quickly converted into a supporting platform or storage state, dynamically balancing the operating and storage spaces. In summary, this utility model achieves dynamic adaptation between operating and storage spaces through innovative structural design, effectively solving the problems of low space utilization and insufficient operational flexibility of traditional equipment, significantly improving service efficiency and site adaptability in high-speed catering scenarios, and possessing strong practical value and promotional significance.

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Abstract

The utility model relates to the field of high -speed facilities especially is point to a kind of platform for high -speed catering management, and the platform includes cashier desk. Multiple drawers are equipped in the side of cashier desk, and the other side is equipped with containing space. The partition separates the containing space into storage cavity and main cavity. The side plate of cashier desk close to containing space includes turnover plate, fixed plate and connecting arm. The utility model realizes the flexible extension and storage of operation platform by the cooperation of turnover plate, fixed plate and connecting arm of side plate;The three-section folding structure (support plate, No. One movable plate, No. Two movable plate) of partition can be quickly converted into supporting platform or storage state, and dynamic balance operation and storage space. In summary, the utility model realizes the dynamic adaptation of operation space and storage space by innovative structure design, effectively solves the problem of low space utilization rate and insufficient operation flexibility of traditional equipment, significantly improves the service efficiency and site adaptability under high-speed catering scene, has strong practical value and popularization significance.
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Description

Technical Field

[0001] This utility model relates to the field of high-speed facilities, and in particular to a platform for high-speed catering management. Background Technology

[0002] In highway service area catering scenarios, the significant peak-hour characteristics of customer flow place extremely high demands on the space utilization and operational flexibility of catering management equipment. Currently, traditional catering POS platforms generally suffer from fixed structures and limited functions: on the one hand, the fixed countertop area easily leads to congestion during peak hours for ordering and payment, resulting in decreased service efficiency; on the other hand, the allocation of equipment storage space and operating space is difficult to adjust dynamically, with excess operating space during off-peak hours leading to wasted space, while during peak hours there is a shortage of material storage space. Summary of the Invention

[0003] In view of the shortcomings mentioned above, this utility model provides a platform for high-speed catering management.

[0004] The present invention adopts the following technical solution: A platform for high-speed catering management, characterized in that the platform includes: The cash register has multiple drawers on one side and an accommodating space on the other side. The side panel near the accommodating space includes a flip-up panel, a fixed panel, and connecting arms. The fixed panel is fixed to the cash register base. The flip-up panel is located above the fixed panel and is hinged to the cash register work platform. Connecting arms are hinged to both sides of the flip-up panel facing away from the work platform. The two connecting arms can move between the two sides of the fixed panel. A partition separates the accommodating space into a storage cavity and a main unit cavity. The partition includes a support plate, a first movable plate, and a second movable plate. The support plate is fixed to the base, and the first movable plate is hinged to its upper part. The second movable plate is hinged to the other end of the first movable plate, and the other end of the second movable plate is detachably installed on the wall of the main unit cavity. Specifically, after the flip plate is rotated upwards to a horizontal position and level with the working platform, the first and second movable plates are rotated downwards to a horizontal position and placed on the fixed plate. Then, the two connecting arms are rotated to fix the second movable plate.

[0005] As a further improvement, the second movable plate is connected to the connecting arm via screws through threaded holes.

[0006] As a further improvement, the fixing plate and the connecting arm are connected by screws through threaded holes.

[0007] As a further improvement, the main unit cavity wall is provided with a limiting strip, which is connected to the second movable plate through a screw and a threaded hole.

[0008] As a further improvement, the second movable plate is provided with a limiting groove that is adapted to the limiting strip and is fixed by screws.

[0009] As can be seen from the above description of the structure of this utility model, compared with the prior art, this utility model has the following advantages: Through the coordinated work of the side panel's flip-up plate, fixed plate, and connecting arm, the flexible expansion and storage of the operating table surface is achieved; the three-section folding structure of the partition (support plate, movable plate number one, and movable plate number two) can be quickly converted into a supporting platform or storage state, dynamically balancing the operating and storage spaces. In summary, this utility model achieves dynamic adaptation between operating and storage spaces through innovative structural design, effectively solving the problems of low space utilization and insufficient operational flexibility of traditional equipment, significantly improving service efficiency and site adaptability in high-speed catering scenarios, and possessing strong practical value and promotional significance. Attached Figure Description

[0010] Figure 1 This is a front view structural diagram of the present invention.

[0011] Figure 2 This is a three-dimensional structural diagram of the present invention.

[0012] Figure 3 This is a schematic diagram of the three-dimensional structure after the flip panel is rotated upwards to a horizontal position.

[0013] Figure 4 for Figure 3 An enlarged diagram of A in the diagram.

[0014] Figure 5 This is a schematic diagram of the front view of the flip plate after it has been rotated upwards to a horizontal position. Detailed Implementation

[0015] The specific embodiments of this utility model are described below with reference to the accompanying drawings.

[0016] As attached Figure 1As shown, a platform for high-speed catering management includes a cashier counter 1 and a partition 12. The cashier counter 1, as the core operating area of ​​the entire platform, is designed with practical ease of use in mind. On one side of the cashier counter 1, multiple drawers 11 are provided, which can be used to store various items such as tableware, receipts, and change, achieving an orderly division of storage space. On the other side of the cashier counter 1, a storage space is cleverly divided into two independent chambers by the partition 12: a storage cavity 13 and a main unit cavity 14. The storage cavity 13 can be used to store ingredients, beverages, and other items for sale or frequently used materials, while the main unit cavity 14 is specifically designed to house the platform's core control equipment—the main unit 4. Simultaneously, a computer 3 connected to the main unit 4 is installed on the working platform 1a of the cashier counter 1. Staff can use the computer 3 to complete a series of catering management operations such as ordering, settlement, and inventory checks, forming an integrated workflow of "operation-control-storage".

[0017] As attached Figure 2 , Figure 3 and Figure 5 As shown, the side panel 2 of the cash register 1 near the storage space adopts an adjustable structure, consisting of three parts: a flip panel 21, a fixed panel 22, and connecting arms 23. These three parts work together to flexibly adjust the structural shape to adapt to different usage needs. The fixed panel 22, as a basic support component, is firmly fixed to the base 1b of the cash register 1, providing solid support for the entire side panel structure. The flip panel 21 is positioned above the fixed panel 22 and is hinged to the working platform 1a of the cash register 1. This design allows the flip panel 21 to rotate around the hinge point, such as flipping upwards to a horizontal position to expand the work surface. Connecting arms 23 are hinged to both sides of the end of the flip panel 21 facing away from the working platform 1a. These two connecting arms 23 can move flexibly on both sides of the fixed panel 22, providing multiple possibilities for subsequent fixing of the flip panel 21. This design allows the side panel 2 to freely switch between an expanded mode and a retractable mode, meeting the needs of expanding operating space during peak hours or saving space during off-peak hours.

[0018] As attached Figure 2 , Figure 3 and Figure 5As shown, the partition 12 adopts a three-section foldable structure, consisting of a support plate 121, a first movable plate 122, and a second movable plate 123. The support plate 121 is fixedly installed on the base 1b, providing stable bottom support for the entire partition structure. Above the support plate 121, the first movable plate 122 is hinged, and the other end of the first movable plate 122 is hinged to the second movable plate 123 via a hinge. This multi-section hinge structure allows the partition 12 to be folded and unfolded flexibly. The other end of the second movable plate 123 is detachably installed on the cavity wall of the main unit cavity 14, which ensures the stability of the partition during normal use and facilitates disassembly and adjustment when needed.

[0019] The platform's structural conversion mechanism is cleverly designed, allowing for rapid adjustment to different usage modes based on actual operational needs. When expanding the work surface, the following steps can be taken: First, rotate the flip plate 21 upwards to a horizontal position, making it level with the work platform 1a. At this point, the flip plate 21 becomes an effective extension of the work platform 1a, increasing the operating space. Next, rotate the first movable plate 122 and the second movable plate 123 downwards to a horizontal position. At this point, the adjacent sides of the first movable plate 122 and the second movable plate 123 abut against each other, allowing them to be stably mounted on the fixed plate 22. These two movable plates together form an additional support platform. Finally, rotate the two connecting arms 23 and fix their ends to the second movable plate 123, forming a stable extended work surface. Simultaneously, the additional support platform formed by the two movable plates can also be used to place items, expanding storage space.

[0020] When there is no need to expand the operating table, the first movable plate 122 can be rotated upward to a vertical position, the second movable plate 123 can be rotated to a horizontal position and fixed to the cavity wall of the main unit cavity 14, and at the same time the flip plate 21 and the connecting arm 23 can be rotated downward to a vertical position, aligned with the fixed plate 22 and fixed.

[0021] As attached Figure 3 and Figure 4 As shown, the platform employs threaded connections in multiple places for connection and fixation, ensuring both reliability and ease of disassembly and maintenance. Specifically, the connection between the second movable plate 123 and the connecting arm 23 is achieved by screws 25 passing through the pre-set threaded holes 24 on both. Threaded holes 24 are provided on both sides of the second movable plate 123 and at the ends of the two connecting arms 23. When fixation is required, the screws 25 are screwed into the threaded holes 24 to achieve a detachable connection.

[0022] Similarly, a similar connection method is used between the fixing plate 22 and the connecting arm 23. Threaded holes 24 are provided on both sides of the fixing plate 22 and at the ends of the two connecting arms 23. When the flip plate 21 and the connecting arm 23 are rotated downwards to a vertical position, the fixing plate 22 and the connecting arm 23 can be detachably connected by screws 25 passing through these threaded holes 24, further enhancing the stability of the structure.

[0023] As attached Figure 3 and Figure 4 As shown, to ensure the stability of the second movable plate 123 installed on the cavity wall of the main unit cavity 14, a limiting strip 124 is provided on the cavity wall of the main unit cavity 14. The limiting strip 124 and the second movable plate 123 are connected by screws 25 through threaded holes 24. Specifically, corresponding threaded holes 24 are provided on both the limiting strip 124 and the second movable plate 123, and the two can be detachably connected by screwing in the screws 25.

[0024] Furthermore, to improve the accuracy and stability of the connection between the second movable plate 123 and the limiting strip 124, a limiting groove 125 adapted to the limiting strip 124 is provided on the second movable plate 123. During installation, the limiting strip 124 is first accurately placed into the limiting groove 125, at which point the threaded holes 24 of the two are exactly aligned. Then, the connection and fixation are achieved by screws 25, thereby effectively avoiding positional displacement during the connection process and ensuring the precise assembly of the entire structure.

[0025] This invention achieves flexible expansion and storage of the work surface through the coordinated operation of the flip-up plate 21, fixed plate 22, and connecting arm 23 of the side plate 2. The three-section folding structure of the partition 12 (support plate 121, first movable plate 122, and second movable plate 123) can be quickly converted into a support platform or storage state, dynamically balancing operation and storage space. In summary, this invention achieves dynamic adaptation between operation and storage space through innovative structural design, effectively solving the problems of low space utilization and insufficient operational flexibility of traditional equipment, significantly improving service efficiency and site adaptability in high-speed catering scenarios, and has strong practical value and promotional significance.

[0026] The above are merely specific embodiments of this utility model, but the design concept of this utility model is not limited thereto. Any non-substantial modifications made to this utility model using this concept shall be considered as an infringement of the protection scope of this utility model.

Claims

1. A platform for high-speed catering management, characterized in that, The platform includes: The cash register has multiple drawers on one side and an accommodating space on the other side. The side panel near the accommodating space includes a flip-up panel, a fixed panel, and connecting arms. The fixed panel is fixed to the cash register base. The flip-up panel is located above the fixed panel and is hinged to the cash register work platform. Connecting arms are hinged to both sides of the flip-up panel facing away from the work platform. The two connecting arms can move between the two sides of the fixed panel. A partition separates the accommodating space into a storage cavity and a main unit cavity. The partition includes a support plate, a first movable plate, and a second movable plate. The support plate is fixed to the base, and the first movable plate is hinged to its upper part. The second movable plate is hinged to the other end of the first movable plate, and the other end of the second movable plate is detachably installed on the wall of the main unit cavity. Specifically, after the flip plate is rotated upwards to a horizontal position and level with the working platform, the first and second movable plates are rotated downwards to a horizontal position and placed on the fixed plate. Then, the two connecting arms are rotated to fix the second movable plate.

2. The platform as described in claim 1, characterized in that: The second movable plate is connected to the connecting arm via screws and threaded holes.

3. The platform as described in claim 1, characterized in that: The fixing plate and the connecting arm are connected by screws through threaded holes.

4. The platform as described in claim 1, characterized in that: The main unit cavity wall is provided with a limiting strip, which is connected to the second movable plate through a screw and a threaded hole.

5. The platform as described in claim 4, characterized in that: The second movable plate is provided with a limiting groove that is adapted to the limiting strip and is fixed by screws.