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Recently, our company has achieved a major development breakthrough. Its independently developed new generation of computerized metering dry powder mixer has been successfully launched on the market, attracting widespread attention in the industry and further consolidating the company's position at the forefront of dry powder mixing technology.This new computerized metering dry powder mixer is equipped with an intelligent metering control system that the company has spent several years to develop.
After months of hard work, Bremetz's R&D team successfully optimized the core transmission structure of the single-shaft continuous mixer. By adopting a new type of high-precision planetary gear reducer and a customized alloy steel single-shaft connection design, the equipment transmission efficiency is greatly improved, and the energy loss during operation is effectively reduced.
In recent years, with the increasing demand for high-humidity material processing in various industries, the high-humidity material crusher industry has shown a booming development trend, and technological innovation has become a key driving force for the progress of the industry.High-humidity material crusher manufacturers have increased their R&D investment and are committed to improving the performance and efficiency of the equipment.
In today's material crushing field, intelligence and efficiency have become key trends in industry development. A new type of equipment called "Intelligent and efficient semi-wet material crusher" is gradually emerging, bringing new changes and opportunities to related industries.It is understood that this semi-wet material crusher combines advanced intelligent technology and efficient crushing performance, making it stand out among many similar products.
Assistance in organic fertilizer production: The application of double-shaft horizontal mixers in granular organic fertilizer production lines is becoming more and more widespread.
Equipment cleaning is a headache for feed mills, especially for factories with busy production tasks. However, if this problem is ignored, feed products will not be able to guarantee long-term quality stability. For Dabinong, many products are high oil content, once the problem is more serious consequences.In fact, almost all equipment needs to be cleaned after a period of use, some need to clean the outside, some need to clean both inside and outside.
The production process of granular organic fertilizer includes fermentation, crushing and mixing, granulation, drying and other process stages. On the surface, since the granules are formed, is drying redundant? Not at all, and it is quite important. So why do we need to dry the granules after granulation? The reasons are roughly as follows:1. Reduce the moisture content of granular organic fertilizerAs we all know, the moisture content of organic fertilizer raw materials is relatively high.
Feeding device: There is usually a hopper for storing the fertilizer raw material powder or mixture to be granulated. The design of the hopper should ensure that the material can smoothly enter the subsequent processing link, and generally adopts a suitable angle and shape to prevent material accumulation or blockage.Feeding adjustment mechanism: In order to control the flow of materials entering the granulator, a corresponding adjustment mechanism will be equipped.Agitator: This is the core component of the mixing system.
The multi-purpose pulverizer is equipped with an advanced intelligent control system, which brings a new operating experience to users. The system can automatically identify the type, hardness, humidity and other characteristics of the material, and automatically adjust the pulverizing parameters such as rotation speed, feed speed, pulverizing force, etc. according to this information.This intelligent automatic adjustment function not only improves the pulverizing efficiency, but also effectively avoids energy waste and equipment damage caused by improper manual settings.
Recently, screw feeder technology has achieved a series of significant breakthroughs. In the design of the spiral shaft and spiral blades, R&D personnel used advanced computer simulation technology to optimize the shape and pitch of the blades. The new spiral blade can push materials more evenly and stably, effectively reducing the fluctuation of materials during transportation, greatly improving the accuracy of material transportation.