一种纳米自修复涂层机器人及其制备方法

By designing a nano-self-healing coating robot and combining it with a multi-response intelligent repair system with functional and driving layers, efficient repair of surface damage to ship carbon capture equipment was achieved. This solved the problems of low repair efficiency and poor environmental adaptability of traditional coatings under complex working conditions, and provided long-term and reliable protection.

CN120900531BActive Publication Date: 2026-07-17WEIHAI COSCO SHIPBUILDING TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
WEIHAI COSCO SHIPBUILDING TECH CO LTD
Filing Date
2025-07-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional self-healing coatings have low repair efficiency and poor environmental adaptability in ship carbon capture equipment, and cannot effectively cope with complex working conditions and marine salt spray corrosion, resulting in high equipment corrosion risk and short service life.

Method used

The design of a nano-self-healing coating robot includes a functional layer and a driving layer. The functional layer consists of a hollow core and shell, repair units and copolymer layers. The driving layer consists of a substrate material module, a force sensing module, a positioning sensing module and a driving module. Damage repair is achieved by using multi-field coupling driving technology.

Benefits of technology

It enables timely repair of equipment surface damage, improves the mechanical properties and environmental adaptability of the coating, provides long-term and reliable protection, and solves the problems of low repair efficiency and poor environmental adaptability of traditional coatings under complex working conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明公开了一种纳米自修复涂层机器人及其制备方法,其属于船舶碳捕集设备技术领域。纳米自修复涂层机器人包括结合设置的功能层和驱动层,驱动层设置在功能层表面;功能层包括设置有缺口的空心核壳及聚合在空心核壳上的修复单元、共聚物层,修复单元包括NH2‑MXene修复单元;驱动层包括基底材料模块及集成设置在基底材料模块上的力传感模块、定位传感模块、驱动模块。本发明通过构建多响应智能修复系统,可以及时对设备表面损伤进行初步修复,采用NH2‑MXene修复单元作为修复基质,能够精确地对损伤部位进行修复,有效保障了涂层的机械性能,并采用多场耦合驱动技术,实现对腐蚀损伤的高效修复,为船舶碳捕集超重力设备提供了长效、可靠的防护。
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