
A special agitator shaft with symmetrically arranged agitator pegs and sleeves of tungsten carbide for wear protection devel- Vertical, batch operation mill for the preparation of tungsten Ideal flow behaviour due to a special agitator peg arrange-ment and the hemispherically shaped chamber floor integrated screen plate for grinding media separationIntensive cooling through a double-wall grinding tank and cooled circulation pipeline

Product inlet via rotor / immersion tube system prevents back flow of grinding media into the feed line.

Generally, there are two ways to obtain nano-powders. A bottom-up manufacturing method (bottom up) for chemical methods, such as chemical precipitation, sol-gel process (sol-gel),... Another method is physical method, which changes the powder particles from big to small (top down), such as mechanical ball milling,... And so on.

The Development In 1963, the first vertical agitator was developed internationally, the first horizontal agitator was developed in 1975, the first horizontal agitator bead mill with eccentric disks was introduced to the public and the horizontal disc grinder was introduced, in 2004, which became the industry standard. In the following years, the grinding media separation systems, the geometry of the grinding disks and the various grinding chamber materials were further developed.

The grinding system pin nanomill shows the evolutionary develop- ment of system with the rotor-slotted pipe separating system. The enclosed horizontal agitator mill is designed for highest product throughput rates and possesses a pin grinding system for highest grinding intensity.

In 2011, we developed the first zirconia comminution chamber technology in China. It has no metal ion pollution and is used in batteries, pharmaceuticals, glazes, ink and food.

一般材料費粉碎分為物理粉碎和化學粉碎等方式,其中物理粉碎以不改變材料的特性而在市場上得到廣泛的應用,物理分散分為干法和濕法,而納米砂磨機的優勢表現在濕法研磨的應用上。其中主要的優勢集中在以下幾點:
1、借助氧化鋯球可以得到納米級別的粉體漿料,能發揮出材料的特性。
2、利用大規模生產,節約成本,特別是部分材料研磨完后無需后續工藝,如干燥等,直接應用,可以直接節約很多成本,如油漆、納米功能涂料等
3、納米砂磨機研磨完成后可以得到較窄的粒度分布。遠遠高于分級輪或機械分離出粒度分布。
4、通過不同粉碎腔體材料的選擇,可以得到較高的材料純度,如99.9%,99.999%等,特別適合一些高純材料研磨是市場。
5、通過設備定制設置,可以應用于防爆和非防爆廠區。