A three-dimensional braided reinforced composite squeegee and a method of making the same

By combining a three-dimensional fiber braided reinforcement with a resin layer, along with a flow channel and in-situ polymerization process, a lightweight, high-strength, and wear-resistant composite scraper was prepared. This solved the problem of improving the performance of existing scrapers and enabled efficient use and low-cost maintenance of the scraper.

CN122403003APending Publication Date: 2026-07-17NINGXIA TIANDI BENNIU IND GRP +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
NINGXIA TIANDI BENNIU IND GRP
Filing Date
2026-04-22
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The lightweight, high-strength, and wear-resistant properties of existing scrapers are difficult to improve effectively. Traditional metal scrapers have reached a bottleneck in terms of weight, strength, and wear resistance, and their complex structures have high performance requirements.

Method used

A lightweight, high-strength, and wear-resistant composite scraper is formed by combining a three-dimensional fiber braided reinforcement with a resin layer. The three-dimensional fiber braided reinforcement is prepared by three-dimensional braiding technology, combined with continuous flow channels and in-situ resin polymerization process.

Benefits of technology

It improves the scraper's resistance to impact delamination and wear resistance, reduces equipment maintenance costs, extends service life, and has good economic benefits and application prospects.

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Abstract

本发明公开了一种基于三维编织增强的复合材料刮板,涉及刮板技术领域;该复合材料刮板包括纤维三维编织增强体和树脂层;其中,纤维三维编织增强体自内而外依次包括内层与厚度为3mm~20mm外层;外层的纤维体积含量大于内层的纤维体积含量;纤维三维编织增强体沿其长度方向具有连续贯穿的导流通道;采用纤维三维编织技术制备纤维三维编织增强体,该三维编织结构能够在多个方向上对基体进行增强,相比于传统的二维增强结构,能够更有效地提高复合材料刮板的力学性能,特别是提升复合材料刮板的抗冲击分层的能力,由此解决传统层合结构复合材料刮板抗冲击性差和耐磨性不足的问题。
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