In the heavy industrial landscape of mining, cement production, and power generation, the integrity of storage silos is paramount. Traditional steel silos often succumb to the relentless abrasion of bulk materials, leading to catastrophic failure and costly downtime. As a premier Ceramic-Lined Steel Silos Manufacturer, we integrate high-purity alumina ceramics with structural steel to create a composite storage solution that outlasts standard metal vessels by up to 10 times.
Our silos utilize Alumina (Al2O3) with purity levels from 92% to 99%, Zirconia (ZrO2), and Silicon Carbide (SiC). These materials offer Mohs hardness second only to diamond, ensuring that even the most abrasive slurry or mineral concentrates cannot degrade the structural integrity of the steel shell.
Utilizing patented installation structures, our ceramic liners are either chemically bonded or mechanically fastened. This modular approach allows for targeted maintenance in high-wear zones, such as the silo hopper and discharge throat, without requiring a complete vessel overhaul.
Beyond physical wear, our ceramic-lined solutions provide an inert barrier against chemical corrosion and high-temperature oxidation, making them ideal for fly ash storage and aggressive chemical processing environments.
Years Industry Experience
9001:2015 Certified
Exporting Countries
Quality Inspection Rate
Choosing a Chinese manufacturer like Zibo Xingli Industrial Ceramics or Hunan Yibeino New Materials offers unparalleled strategic benefits for global enterprises:
Located in the heart of China's ceramic industrial clusters (Zibo and Hunan), we have immediate access to high-purity raw materials and specialized labor, significantly reducing lead times compared to Western counterparts.
Our large-scale production facilities allow us to pass "Information Gain" and economies of scale onto our clients. By optimizing the "Ceramic-Steel-Rubber" composite chain, we offer premium wear protection at a fraction of the lifecycle cost of high-alloy steels.
With multiple patents including "conveying devices for ceramic-lined pipes" and "anti-clogging pipe structures," our engineering team provides bespoke CAD designs tailored to specific global standards (ASTM, DIN, JIS).
Zibo Xingli Industrial Ceramics Co., Ltd & Hunan Yibeino New Materials Co., Ltd. are leading enterprises specializing in the production of industrial alumina ceramic, zirconia ceramic, and carbon-silicon products. Our focus is on providing wear-resistant ceramic ball grinding media, alumina lining, ceramic liner, ceramic pipe, and inert alumina balls for catalyst support.
We have passed the ISO9001:2015 quality system certification. Our strict quality control system integrates product design, manufacturing, and installation services fully into the ISO quality management system. From raw material purchase to factory inspection, we ensure stable product performance.
Our business managers provide on-site communication, offering reasonable anti-wear solutions and detailed project budget quotations based on actual equipment operating conditions.
We design custom technical drawings after fully understanding the equipment status, submitting them for customer confirmation to ensure 100% fit-for-purpose engineering.
We guarantee arrival at customer sites (within China) within 48 hours to solve any technical issues. Our products are backed by ISO14000 environmental management certifications.
Global mining firms (Rio Tinto, BHP) are shifting toward ceramic-lined steel silos to reduce carbon footprints. By extending the life of a silo from 3 years to 20 years, the total steel consumption and energy used in reconstruction are drastically reduced.
Modern silos now integrate IoT sensors to monitor wear levels in real-time. Our ceramic linings are designed to be compatible with these monitoring systems, allowing for "Predictive Maintenance" rather than "Reactive Repair."
In the EU and USA, worker safety regulations regarding structural silo failures are tightening. Ceramic lining prevents the thinning of steel walls, ensuring that silos remain structurally sound under high-pressure discharge conditions.