Barium titanate dispersion equipment, drying depolymerization machine   modification activation machine


       Barium titanate, as an important ferroelectric material, is widely used in various fields such as electronics and ceramics due to its high dielectric constant and significant piezoelectric properties. To fully leverage the performance advantages of barium titanate, fine processing is crucial..

There are various methods for preparing barium titanate powder, such as solid-state synthesis, hydrothermal method, oxalate co-precipitation method, and sol-gel method. , each method has its own advantages and disadvantages. However, regardless of the preparation method used, the initial barium titanate powder often has some performance shortcomings, such as poor compatibility with organic polymer materials, which limits its application effectiveness in composite materials.

Toeffectively solve these problems, itis necessary to process it through modification equipment,using mechanicalchemicalmethods to precisely treat the surface of barium titanate powder, purposefully changing its surface physicochemical properties to meet the development needs of modern new materials, new processes, and new technologies.

This coating modification process can bring many significant advantages to barium titanate. First, it greatly improves the compatibility of inorganic barium titanate powder with organic polymer materials. It enhances the interfacial bonding strength between the two. This means that when preparing composite materials, barium titanate can better integrate with other materials, thereby enhancing the mechanical strength and overall performance of the materials. For example, in some composite materials of electronic components, coated and modified barium titanate can significantly improve the stability and durability of the components. Secondly, by optimizing the coating process, the filling amount of powder fillers can also be greatly increased, reducing production costs. While ensuring product performance, it saves raw material costs for enterprises and enhances market competitiveness. Furthermore, surface coating can also endow barium titanate products with certain special physicochemical properties, such as improved corrosion resistance, durability, and service life, broadening the application scenarios of barium titanate.

Inindustrial large-scale production, itis common to use vertical equipment"honeycomb mill" for processing. The honeycomb mill is ahighly continuous, efficient in coating, high activation index, and large processing capacitymodification machine.Its high-speed friction and shear between the stator and rotor can not only deagglomerate and disperse the material but also allow for better dispersion of the powder and surface modifiers, resulting in a more uniform coating on the particle surface.Moreover, the amount of modifier used per unit product is small, making it particularly suitable for the surface modification of ultrafine barium titanate powder. This equipment can operate continuously, has a large processing capacity, and can perfectly adapt to both trial production in small enterprises and large-scale industrial production. Additionally, it has a high utilization rate of modifiers, low usage, high powder coating rate and activation index, and low energy consumption, achieving efficient modification while reducing production costs. Furthermore, the material operates under negative pressure during operation, has good sealing, no dust leakage, minimal pollution, a good operating environment, and low labor intensity, aligning with the concept of modern green production. ,并且单位产品改性剂用量少,特别适用于超细钛酸钡粉体的表面改性。该设备能连续运行生产,处理量大,无论是小型企业的试生产,还是大规模的工业化生产都能完美适配。而且,它的改性药剂使用率高,用量小,粉体包覆率和活化指数高,能耗低,在降低生产成本的同时,实现了高效的改性效果。此外,设备运行时物料负压运行,密封性好,粉尘不泄漏,基本无污染,操作环境好,劳动强度低,符合现代绿色生产的理念。

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