In modern machining workshops, cutting fluids serve as vital media for maintaining tool lifespan, controlling processing temperatures, and enhancing surface finish. However, during operations like turning, milling, and grinding, metal particles (particularly iron and steel chips) continuously mix with coolant to form suspended particles. The PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC system can remove these iron particles. If not promptly removed, this not only accelerates wear on pumps and nozzles but may also scratch workpiece surfaces, ultimately leading to product scrap.
More critically, these iron-containing particles are prone to oxidation under microbial action, generating foul odors and promoting bacterial proliferation. This accelerates the degradation of cutting fluid's service life, necessitating more frequent replacements and increasing environmental treatment costs. To address this challenge, PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC systems have become essential purification solutions. Among these, rubber roller-type magnetic separators have gained widespread popularity due to their unique "adsorption-pressing-scraping" mechanism.
The working principle of PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC is as follows: the liquid to be treated flows through the surface of the rotating magnetic roller, and the ferromagnetic particles are firmly adsorbed by the strong magnetic field; then, the non-magnetic rubber pressure roller applies pressure on the adsorbed layer, extrudes the liquid, and forms a dry cake of impurities; finally, it is peeled off and collected by the scraper.
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