Company Introduction

Dezhou Meirun Wear-resistant Materials Co., Ltd. is a high-tech enterprise specializing in the R&D and precision customization of high-performance wear-resistant products. Integrating technology development, customized production, marketing, and after-sales service, the company is committed to providing efficient and reliable wear-resistant material application solutions for multiple industries.

With over 10,000 square meters of modern production plant, our core products include series of sheets and rods made of Ultra-High Molecular Weight Polyethylene (UHMWPE), High-Density Polyethylene (HDPE), Polypropylene (PP), Polyoxymethylene (POM), Polytetrafluoroethylene (PTFE) and Nylon. In response to industry-specific demands, we also supply custom-machined parts such as outrigger pads, paving boards, football rebound boards, chain guides, and more. Supported by a mature service system, we offer end-to-end customized services—from initial demand to finished product delivery.


To ensure product quality and production efficiency, , Meirun is equipped with industry-leading customized CNC machine tools and precision testing equipment. We have established a comprehensive quality control system and standardized production processes, reinforced by scientific and standardized management systems, to guarantee consistent and reliable product performance. With solid manufacturing and quality control capabilities, the company has secured a leading position as both a manufacturer and distributor of wear-resistant materials in North China.


Talent serves as the core driving force of our development. Meirun currently has over 300 employees, including 28 senior engineers and more than 100 technical professionals. Over 80% of our staff have higher education backgrounds, forming a multi-disciplinary team capable of driving innovation in R&D, lean production, and professional sales, which provides solid support for technological breakthroughs and market services. 


Since its establishment, the company has always adhered to the corporate spirit of "Unity, Diligence, Pragmatism, and Efficiency" and upheld the business philosophy of "Customer First, Integrity-Based". It has won customers' trust with high-quality products and thoughtful services, and continuously expanded its market share through advanced technology and strong strength, establishing an outstanding reputation in the industry.

The perfect delivery of every product is the best embodiment of Meirun's corporate philosophy. In the future, we warmly look forward to cooperating with partners at home and abroad to jointly create a new future for the wear-resistant materials industry!





UHMWPE Sheet

Officially named Ultra-High Molecular Weight Polyethylene (UHMWPE) Sheet, it has a molecular chain far longer than ordinary polyethylene and a stable structure, making it a representative of "high durability" in engineering plastics. Specifically designed for high-frequency wear scenarios such as mining and chemical industries, it is also suitable for low-temperature and corrosive working conditions, balancing performance and scenario compatibility.​

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High-Density Polyethylene (HDPE) sheet

High-Density Polyethylene (HDPE) sheets are highly versatile plastic sheets. They can be widely adapted to the needs of multiple fields such as industry, daily life, municipal administration, and logistics, featuring convenient processing and flexible application scenarios.

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PP Sheet

Polypropylene (PP) Sheet, it is a thermoplastic resin sheet polymerized from propylene monomers, with a density of 0.90~0.91g/cm³. As a category of commonly used plastic sheets, it features light weight and regular structure, while combining basic toughness and processing adaptability, which can meet the molding needs of lightweight and multi-scenario applications.

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Nylon Sheet

As a thermoplastic engineering plastic sheet, its core types are nylon 6 and nylon 66. With high strength and toughness, it has become a universal basic sheet in the engineering field. Divided into cast nylon sheets and extruded nylon sheets by molding process, it is suitable for different scenarios, covering applications from large thick-walled parts to precision mass-produced parts.​

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Polyethylene Two-Color Three-Layer Sheet

Made of High-Density Polyethylene (HDPE) as the base material, it is integrally manufactured through a three-layer co-extrusion composite process. ,The surface layer and middle layer adopt differentiated color formulas (e.g., bright color for the surface layer, base color for the middle layer) or functional formulas (e.g., UV-resistant for the surface layer, toughness-enhanced for the middle layer). The layers are tightly bonded and not easy to delaminate, which not only ensures decorativeness but also further enhances the overall structural strength and usage stability of the sheet.

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PTFE Sheet

Polytetrafluoroethylene (PTFE) Sheet is a perfluorinated polymer material sheet polymerized from tetrafluoroethylene monomers. It is known as the "King of Plastics" for its outstanding performance. Its molecules contain stable perfluorocarbon chains, giving it extremely strong chemical inertness. It can be made into sheets of different thicknesses, which can not only meet the processing needs of precision components but also be suitable for the linings of large-scale equipment. It is especially suitable for special high-temperature and strong-corrosion working conditions such as chemical industry and aerospace.​

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POM Sheet

Polyoxymethylene (POM) Sheet has mechanical properties close to metals and high hardness, and is known as "Steel-like". With a density of approximately 1.41~1.43g/cm³, it can be processed into sheets of different specifications through processes such as injection molding and cutting. It is often used to replace metals like copper and zinc in the manufacturing of lightweight and high-precision components.

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PU Sheet

With a hardness range of 85-95 Shore A, it is a medium-hard polyurethane sheet that combines moderate support and buffer toughness. It can be processed into sheets or special-shaped parts through cutting and molding, complies with environmental standards, and is suitable for industrial stress buffering and civil structural support scenarios.

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