We are a global company that produces and sells wear-resistant accessories for ball mills and crushers. We have a professional team and engineers, a complete after-sales service system, and can also provide you with wear-resistant solutions.
Established in 1992, Zhili New Materials is one of the world's leading wear-resistant material processing centers. Our 18,000 m² modern factory is equipped with advanced production facilities including medium-frequency induction furnaces, resin sand production lines, lost foam casting, and high-efficiency welding robots.
Medium-frequency induction furnaces, argon refining, composite material embedding, and isothermal heat treatment ensure superior product quality.
Senior engineers and technical experts specializing in material R&D, process design, and production optimization.
We tailor products and wear-resistant solutions according to your specific working conditions and machine models.
Serving customers in 50+ countries across cement, mining, power, steel, and recycling industries for 26+ years.
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The efficient operation of advanced production equipment, standardized operating procedures, and stringent quality control system impressed the delegation, who ...
Read More →Crusher liners, for instance, required replacement every 15 days on average—a situation that not only drastically inflated procurement costs for spare parts but...
Read More →To address this issue, the company collaborated with a foundry to upgrade the technology, replacing the traditional heat-resistant steel with HTRCr16 high-chrom...
Read More →This results in a significantly lower total procurement cost compared to stud-type roller sleeves, offering superior economic be...
The heat-resistant steel rotary kiln guard plates and chains produced by Zhili New Materials are favored by the cement industry...
some cross bar materials require a chromium (Cr) content of not less than 24%, a nickel (Ni) content of more than 20%, etc., and...
Send us your drawings or working conditions. Our technical team will recommend the most suitable material and solution.