A cellular modular based well submersible pump storage architecture

CN224618376UActive Publication Date: 2026-08-11ZHEJIANG DOYIN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0002]现有井用潜水泵样机的存储仅是通过将现有井用潜水泵样机堆放在仓库一角,这种井用潜水泵样机储存方式,堆叠杂乱,立体空间未充分利用、占用过多地面面积,且多层堆叠放置不易抽取查看样机详情,查找和取放不便,还容易引发样品堆的倒塌,造成事故,且样品整体转移不便

Benefits of technology

[0009]The beneficial effects of this utility model are as follows: This utility model designs a storage architecture for well submersible pumps based on a honeycomb modular design. Through high-density storage design, it significantly improves the utilization rate of vertical space, effectively saves ground area, reduces warehousing costs, enables rapid and accurate positioning and convenient access of prototypes, greatly shortens operation time, improves warehouse operation efficiency, enables real-time visibility of inventory status and traceability of information, and improves management precision.

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Abstract

This utility model discloses a honeycomb-based modular storage architecture for submersible pumps in wells. It includes an outer frame for the storage rack, with multiple upper storage frames evenly distributed in the upper layer and multiple lower storage frames evenly distributed in the lower layer. Each upper storage frame comprises a honeycomb-shaped fixed frame and a circular pull-out storage box. Multiple circular storage slots are evenly distributed in a honeycomb pattern within the fixed frame, and circular pull-out storage boxes are installed within these slots. The lower storage frame comprises an array-shaped fixed frame and a square pull-out storage box. Multiple square storage slots are arranged in an array within the fixed frame, and square pull-out storage boxes are installed within these slots. This utility model, through its high-density storage design, significantly improves vertical space utilization, effectively saves floor space, reduces storage costs, enables rapid and accurate positioning and convenient access for the prototype, and greatly shortens operation time.
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Description

Technical Field

[0001] This utility model relates to the field of storage tooling technology, and in particular to a storage architecture for well submersible pumps based on a cellular modular design. Background Technology

[0002] The current storage of submersible pump prototypes for wells is simply to stack them in a corner of the warehouse. This method of storing submersible pump prototypes is messy, does not make full use of three-dimensional space, occupies too much ground area, and makes it difficult to extract and view the details of the prototypes when they are stacked in multiple layers. It is inconvenient to find and put away the prototypes, and it is also easy to cause the sample stacks to collapse, causing accidents. In addition, it is inconvenient to transfer the samples as a whole. Utility Model Content

[0003] To solve the above-mentioned technical problems, this utility model designs a storage architecture for well submersible pumps based on a honeycomb modular design.

[0004] The present invention adopts the following technical solution: A honeycomb-based modular storage architecture for submersible pumps in wells includes an outer frame for the storage rack. Multiple upper storage frames are evenly distributed within the upper layer of the outer frame, and multiple lower storage frames are evenly distributed within the lower layer. Each upper storage frame includes a honeycomb-shaped fixed frame and a circular pull-out storage box. Multiple circular storage slots are evenly distributed in a honeycomb pattern within the fixed frame, and circular pull-out storage boxes are installed within these slots. Each lower storage frame includes an array-shaped fixed frame and a square pull-out storage box. Multiple square storage slots are arranged in an array within the fixed frame, and square pull-out storage boxes are installed within these slots.

[0005] Preferably, the circular pull-out storage box and the square pull-out storage box are transparent.

[0006] Preferably, the circular pull-out storage box and the square pull-out storage box are respectively equipped with slide rails, and the circular storage slot and the square storage slot are respectively provided with corresponding slide grooves, and the slide rails move along the slide grooves in cooperation with the slide grooves.

[0007] Preferably, the circular pull-out storage box and the square pull-out storage box are each equipped with a handle.

[0008] Preferably, the bottom of the outer frame of the storage rack is provided with casters and feet.

[0009] The beneficial effects of this utility model are as follows: This utility model designs a storage architecture for well submersible pumps based on a honeycomb modular design. Through high-density storage design, it significantly improves the utilization rate of vertical space, effectively saves ground area, reduces warehousing costs, enables rapid and accurate positioning and convenient access of prototypes, greatly shortens operation time, improves warehouse operation efficiency, enables real-time visibility of inventory status and traceability of information, and improves management precision. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of a structure of the upper-layer storage framework in this utility model; Figure 3 This is a schematic diagram of a lower-level storage framework in this utility model; In the diagram: 1. Storage rack outer frame, 2. Upper storage frame, 3. Honeycomb fixed frame, 4. Lower storage frame, 5. Casters, 6. Foot cup, 7. Circular pull-out storage slot, 8. Handle, 9. Slide, 10. Square pull-out storage box. Detailed Implementation

[0011] The technical solution of this utility model will be further described in detail below through specific embodiments and with reference to the accompanying drawings: Example: Figures 1-3 As shown, a honeycomb-based modular storage architecture for well submersible pumps includes an outer frame 1. Three upper storage frames 2 are evenly distributed within the outer frame, and two lower storage frames 4 are evenly distributed within the outer frame. The upper storage frames include a honeycomb-shaped fixed frame 3 and circular pull-out storage boxes. Multiple circular storage slots are evenly distributed in a honeycomb pattern within the fixed frame, and circular pull-out storage boxes 7 are installed within these slots. The lower storage frames include an array-shaped fixed frame and square pull-out storage boxes 10. Multiple square storage slots are arranged in an array within the fixed frame, and square pull-out storage boxes are installed within these slots.

[0012] Both the round and square pull-out storage boxes are transparent, allowing for easy access to view the samples inside.

[0013] The round and square pull-out storage boxes are equipped with slide rails, and the round and square storage slots are respectively provided with corresponding slide grooves 9. The slide rails move along the slide grooves in cooperation with the slide grooves.

[0014] Both the round and square pull-out storage boxes are equipped with handles 8. The bottom of the outer frame of the storage rack is equipped with casters 5 and feet 6.

[0015] This utility model significantly improves the utilization rate of vertical space through high-density storage design, effectively saves ground area, reduces warehousing costs, enables rapid and accurate positioning and convenient access of prototypes, greatly shortens operation time, improves warehouse operation efficiency, realizes real-time visibility of inventory status and traceability of information, and enhances management precision.

[0016] The embodiments described above are merely preferred solutions of this utility model and are not intended to limit this utility model in any way. Other variations and modifications are possible without departing from the technical solutions described in the claims.

Claims

1. A cell-based modular submersible pump storage architecture for wells, comprising an outer frame for the storage rack, characterized in that, The storage rack has multiple upper storage frames evenly distributed in the upper layer and multiple lower storage frames evenly distributed in the lower layer. The upper storage frame includes a honeycomb-shaped fixed frame and a circular pull-out storage box. The honeycomb-shaped fixed frame has multiple circular storage slots evenly distributed in a honeycomb pattern, and a circular pull-out storage box is installed in each of the circular storage slots. The lower storage frame includes an array-shaped fixed frame and a square pull-out storage box. The array-shaped fixed frame has multiple square storage slots arranged in an array, and a square pull-out storage box is installed in each of the square storage slots.

2. The well submersible pump storage architecture based on a honeycomb modular design according to claim 1, characterized in that, The round and square pull-out storage boxes are transparent.

3. The well submersible pump storage architecture based on a honeycomb modular design according to claim 1, characterized in that, The circular and square pull-out storage boxes are each equipped with a slide rail, and corresponding grooves are provided in the circular and square storage slots. The slide rails move along the grooves in cooperation with the grooves.

4. The well submersible pump storage architecture based on a honeycomb modular design according to claim 1, characterized in that, The round pull-out storage box and the square pull-out storage box are each equipped with a handle.

5. The well submersible pump storage architecture based on a honeycomb modular design according to claim 1, characterized in that, The bottom of the outer frame of the storage rack is equipped with casters and feet.