Xiamen Tmax Battery Equipments Limited (TMAX) is a manufacturer of a wide range of lithium-ion battery manufacturing equipment and laboratory instruments. In particular, it offers vibratory mills suitable for grinding LFP materials and carbon.
This article summarizes the features, product specifications, and maintenance features of TMAX’s vibratory mills.
TMAX’s vibratory mills are characterized by their compatibility with a wide range of lining materials and grinding media. Material options include not only stainless steel but also nylon, Teflon (PTFE), polyurethane, alumina ceramic, and zirconia.
In grinding battery materials and electronic materials that are sensitive to metal contamination, it is possible to create a metal-free environment using relatively inexpensive polyurethane linings and alumina media.
TMAX provides equipment covering the entire manufacturing process of lithium-ion batteries. TMAX’s equipment lineup covers not only raw material grinding with vibratory mills but also upstream and downstream processes such as mixing, calcination synthesis, electrode production, and even battery pack assembly lines.
When building manufacturing lines for LFP batteries and similar products, this lineup eliminates the hassle of selecting equipment for each process individually and allows full-line equipment to be implemented in one package. This is a key advantage for reducing project man-hours and ensuring consistency across the entire line.
| Process Type | Dry / Wet |
|---|---|
| Operation Mode | Continuous / Batch |
| Examples of Materials Processed | LFP materials, carbon, ceramics, non-metallic minerals, electronic materials, and more |
| Typical Applications | Fine grinding of battery materials, mechanical alloying, powder metallurgy, mixing, and dispersion |
| Applicable Industries | Battery industry, chemical industry, ceramics, mining, laboratories, and more |
| Test Machine | Not specified on the official website |
TMAX’s vibratory mills feature a simple structure and are designed to make cleaning and maintenance easy. In particular, large production models simplify replacement of the grinding cylinder liner and grinding media, helping reduce the labor required to replace consumables.
No grinding examples were listed on the official website.
A key strength of TMAX is its ability to provide solutions that achieve both contamination prevention and cost reduction in the grinding process of lithium-ion battery materials such as LFP and carbon. Its lineup supports everything from laboratory-level small-sample production to large-scale production, making it suitable for companies considering the construction of an entire battery manufacturing line.
The right vibratory mill varies depending on the material, such as metals, ceramics, LFP raw materials, and industrial waste.
This article reviews the specifications of vibratory mills for mass production and their industry-specific applications. It explains and compares vibratory mills suited to different materials based on differences in structure, vibration method, and processing capacity. Please refer to this article when selecting the right grinding machine.
This is a high-durability vibratory mill designed for large-scale production. It is available in single-cylinder, double-cylinder, and triple-cylinder configurations, with the double-cylinder type being the most widely used. This model achieves efficient grinding through powerful impact force generated by high acceleration of 10 g to 15 g.
| Pot Volume | 26.4 gal–317.0 gal (100 L–1,200 L) |
|---|---|
| Media | Steel balls, steel rods, and more |
| Lining | Not specified on the official website |
| Process Type | Dry / Wet |
| Operation Mode | Continuous |
| Examples of Materials Processed | Minerals, refractories, chemical raw materials, glass, graphite, and more |
This is a vibratory ball mill suitable for laboratories and small-scale production. This lineup offers a wide range of capacity options from 0.26 gal to 26.4 gal (1 L to 100 L), making it suitable for fine grinding of electronic materials and ceramics. The jacketed model also allows adjustment of the grinding temperature.
| Pot Volume | 0.26 gal–26.4 gal (1 L–100 L) |
|---|---|
| Media | Stainless steel mill balls, Zirconia mill balls, Alumina mill balls, PU mill balls, Carbon steel mill balls, Tungsten mill balls |
| Lining | Stainless steel, Ceramics, Zirconia, Glazed blocks, Nylon, PTFE, Food-grade rubber, Polyurethane |
| Process Type | Dry / Wet |
| Operation Mode | Continuous / Batch |
| Examples of Materials Processed | Electronic materials, ceramics, pigments, rubber compounds, and more |
Founded in 1995, TMAX is a manufacturer based in China of battery manufacturing equipment and laboratory equipment. The company provides comprehensive solutions for universities and companies worldwide, from lithium-ion battery research and development to mass-production lines.
| Company Name | Xiamen Tmax Battery Equipments Limited |
|---|---|
| Company Location | No. 39, Xinchang Road, Xinyang, Haicang Dist., Xiamen, Fujian, China |
| Branches and Distributors | Not specified on the official website |
| Official Website | https://www.tmaxcn.com/ |
Designed for submicron grinding of advanced ceramics and electronic materials, including hard-to-grind SiC, with metal-free configuration options for high-purity processing. High-G impact energy enables both submicron grinding and mechanochemical processing, supporting advanced material development and alloy synthesis.
Unavoidable bearing replacement can be completed by simply swapping in a spare vibrator unit. This allows operation to resume quickly with minimal downtime.
Supports contamination-controlled grinding for battery materials using low-cost metal-free liner and media options. Polyurethane lining combined with ceramic media such as alumina prevents metal contamination without the need for expensive ceramic liners.
It includes unlimited online technical support, helping users build a self-maintenance and servicing system while receiving technical guidance from the manufacturer.
Built for heavy-duty grinding of hard scrap and difficult industrial materials, including carbide waste and asbestos processing. It enables efficient recycling of tungsten and cemented carbide, and uses impact and heat to break down asbestos into fiber-free raw material.
For easier maintenance, the main drive components are installed outside the grinding cylinder, reducing the labor required for inspection and parts replacement.