一种吸波材料高散热蜂窝结构

By combining a hexagonal honeycomb core layer with a heat dissipation pipe, the structure of the absorbing material solves the problems of large space occupation and low efficiency of traditional heat dissipation methods in miniaturized equipment, achieving high-efficiency heat dissipation and wave absorption performance, and extending the life of the equipment.

CN224521390UActive Publication Date: 2026-07-17NANJING KEPIN ELECTRONIC TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NANJING KEPIN ELECTRONIC TECH CO LTD
Filing Date
2025-05-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional heat dissipation methods such as heat sinks and fans occupy a lot of space and have limited heat dissipation efficiency in miniaturized and integrated electronic devices. In addition, fans consume a lot of energy and are noisy, and the heat insulation materials with honeycomb structures cannot conduct heat quickly, so they cannot meet the heat dissipation requirements in high-heat environments.

Method used

The honeycomb core layer is composed of hexagonal honeycomb units, with heat dissipation pipes connected to the outside. The honeycomb core layer has slots that are connected to the heat dissipation pipes with adhesive. Combined with an aluminum alloy panel and supporting structure, it achieves efficient heat dissipation. The honeycomb core layer is made of a lightweight resin matrix and carbonyl iron powder and graphene composite material, which provides wave absorption performance.

Benefits of technology

It improves heat dissipation efficiency, reduces electromagnetic interference, extends equipment life, and meets the heat dissipation requirements of equipment in high-heat environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种吸波材料高散热蜂窝结构,涉及吸波散热技术领域,包括蜂窝芯层,所述蜂窝芯层两侧设置有第一面板与第二面板,且所述蜂窝芯层为多组蜂窝单元紧密排列组成,而蜂窝单元为六边形结构,所述蜂窝芯层外侧连接有多组散热管,所述散热管两端分别贯穿所述第一面板与所述第二面板。本实用新型蜂窝芯层两侧设置第一面板与第二面板,蜂窝芯层由紧密排列的六边形蜂窝单元组成且外侧连接多组散热管,第一面板与第二面板对蜂窝芯层起到保护作用,铝合金材质的面板具备良好导热性,辅助散热,散热管贯穿面板,直接将蜂窝芯层吸收的热量快速传导至结构外部,极大地提高了散热效率,有效降低设备因过热导致的性能下降风险,延长设备使用寿命。
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Claims

1. A high-heat-dissipation honeycomb structure for absorbing microwaves, comprising a honeycomb core layer (1), characterized in that: The honeycomb core layer (1) is provided with a first panel (2) and a second panel (3) on both sides. The honeycomb core layer (1) is composed of multiple honeycomb units arranged closely together. The honeycomb unit is a hexagonal structure. Multiple heat dissipation pipes (4) are connected to the outside of the honeycomb core layer (1). The two ends of the heat dissipation pipes (4) pass through the first panel (2) and the second panel (3) respectively. 2.The wave-absorbing material high-heat-dissipation honeycomb structure according to claim 1, characterized in that: The honeycomb core layer (1) has multiple sets of slots (7) for use with the heat dissipation pipes (4), and the heat dissipation pipes (4) are located at the six corners on the outside of the honeycomb unit. 3.The wave-absorbing material high-heat-dissipation honeycomb structure according to claim 2, characterized in that: The heat dissipation pipe (4) and the slot (7) are connected by adhesive.

4. The wave-absorbing material high-heat-dissipation honeycomb structure according to claim 3, characterized in that: The first panel (2) and the second panel (3) are made of aluminum alloy metal material.

5. The wave-absorbing material high-heat-dissipation honeycomb structure according to claim 4, characterized in that: Multiple sets of support blocks (5) are fixedly connected between the first panel (2) and the second panel (3), and the support blocks (5) are threadedly connected to the first panel (2) and the second panel (3) by connecting bolts (6). 6.The wave-absorbing material high-heat-dissipation honeycomb structure according to claim 5, characterized in that: The first panel (2) and the second panel (3) have multiple sets of threaded grooves (8) for use with the connecting bolts (6).

7. The wave-absorbing material high-heat-dissipation honeycomb structure according to claim 6, characterized in that: The first panel (2) and the second panel (3) have multiple sets of heat dissipation holes for use with the heat dissipation pipe (4).