一种实验室一体化板材

By designing an integrated laboratory panel, adopting an I-beam structure and innovative connection design, the problem of asymmetrical maintenance caused by the independent operation of various professional systems in the laboratory was solved, and an efficient and stable laboratory environment was achieved.

CN224514548UActive Publication Date: 2026-07-17NANJING NUODAN ENG TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NANJING NUODAN ENG TECH CO LTD
Filing Date
2025-06-30
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In the construction of the laboratory, the independent operation of each professional system leads to information asymmetry in maintenance and repair work, resulting in low maintenance efficiency and erroneous operations, which affects the normal operation of the laboratory.

Method used

A laboratory integrated panel material was designed, employing innovative designs such as an I-beam structure, trapezoidal connecting grooves, perforations, and through-holes to ensure the stability and flexibility of the panel material and provide convenient installation and maintenance methods.

Benefits of technology

It improves the operational efficiency and quality of the laboratory, meets the special requirements of the laboratory environment, and ensures the high strength, stability, and convenient maintenance of the boards.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型提供一种实验室一体化板材,采用创新的工字型设计,具备高强度、稳定性和抗弯性能。板材上下端设置多层递减间距的梯形连接槽,并设有导向卡槽,确保拼接牢固、稳定。中部镂孔设计提供通风和排水功能,降低重量并防止湿气积聚。镂孔内设连接柱,前端弧形设计实现紧密连接。板材两侧端有贯穿对接孔,增强拼接灵活性,顶部和底部设定位孔,便于精确安装。每层连接槽外侧壁有对称的钉板孔,确保安装固定稳定。连接槽深度小于板材厚度的一半,增强整体坚固性。连接柱末端嵌槽设计提供高可拆卸性,便于后期调整或更换。该板材提高了实验室效率与质量,满足特殊环境需求。
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Claims

1. A laboratory integrated plate comprising a plate body (1), characterized in that: The upper and lower ends of the board body (1) are symmetrically provided with several layers of connecting grooves (2) with the same spacing; the board body (1) is designed in an I-shape; the middle part of the board body (1) is uniformly provided with perforations (3); the two sides of the board body (1) are provided with transversely connected through-holes (4); the top and bottom of the board body (1) are also provided with positioning holes (5).

2. The laboratory integration panel of claim 1, wherein: The connecting groove (2) is trapezoidal in shape; the spacing of the connecting groove (2) decreases from the inside to the outside; the connecting groove (2) is also provided with a guide slot (21).

3. The lab-on-a-chip plate of claim 1, wherein: The perforation (3) is provided with a connecting post (31); the end of the connecting post (31) is engaged with the perforation (3); the front end of the connecting post (31) is arc-shaped.

4. The lab-on-a-chip sheet of claim 1, wherein: Each layer of the connecting groove (2) is also provided with nail plate holes (22) on its outer side wall; the nail plate holes (22) are symmetrically arranged along the transverse center and vertical center of the plate body (1).

5. The lab-on-a-panel of any one of claims 1-4, wherein: The plate body (1) is symmetrically arranged on both sides; the depth of the connecting groove (2) is less than half the thickness of the plate body (1); the hollow hole (3) is set in the recess between the bottommost connecting groove (2) at the top and the topmost connecting groove (2) at the bottom, and the depth of the recess is half the depth of the connecting groove (2).

6. The lab-on-a-chip sheet of claim 3, wherein: The end of the connecting post (31) is provided with a groove (32); the outer diameter of the groove (32) is the same as the inner diameter of the hole (3); the connecting post (31) is detachably installed in the hole (3) through the groove (32) at the end.