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.
一是銅鋁箔導電性好,質地軟,價格便宜。我們都知道,鋰電池工作原理是將化學能轉化為電能的一種電化學裝置,那么在這個過程中,我們需要一種介質把化學能轉化的電能傳遞出來,這里就需要導電的材料。而在普通材料中,金屬材料是導電性最好的材料而在金屬材料里價格便宜導電性又好的就是銅箔和鋁箔。同時,在鋰電池中,我們主要有卷繞和疊片兩種加工方式。相對于卷繞來說,需要用于制備電池的極片具有一定的柔軟性,才能保證極片在卷繞時不發生脆斷等問題,而金屬材料中,銅鋁箔也是質地較軟的金屬。最后就是考慮電池制備成本,相對來說,銅鋁箔價格相對便宜,世界上銅和鋁元素資源豐富。
二是銅鋁箔在空氣中也相對比較穩定。鋁很容易跟空氣中的氧氣發生化學反應,在鋁表面層生成一層致密的氧化膜,阻止鋁的進一步反應,而這層很薄的氧化膜在電解液中對鋁也有一定的保護作用。銅在空氣中本身比較穩定,在干燥的空氣中基本不反應。
三是鋰電池正負極電位決定正極用鋁箔,負極用銅箔,而非反過來。正極電位高,銅箔在高電位下很容易被氧化,而鋁的氧化電位高,且鋁箔表層有致密的氧化膜,對內部的鋁也有較好的保護作用。采用兩者做集流體都是因為兩者導電性好,質地比較軟(可能這也會有利于粘結),也相對常見比較廉價,同時兩者表面都能形成一層氧化物保護膜。
而通常作為正極的鋁箔,其基材氧化鋁都需要用到砂磨機,在醇類體系下研磨到1-2微米,涂布后制備鋁箔,發揮其最佳物理和化學性能。