Principle of Vacuum Stirring DegassingAccording to the Boyle-Charles law, bubbles in the material will rapidly expand and burst in a vacuum. Even submicron bubbles that cannot be removed under atmospheric pressure can be effectively eliminated in a vacuum.。
Rapid DefoamingBy stirring under vacuum, the bubbles expand and burst at the vacuum phase interface on the top surface, thereby achieving defoaming in a short period of time.。
Ultra-compact designUltra-compact, lightweight device that can be placed anywhere., very suitable for research and development as well as small-scale production.。
Silent and low vibrationIn addition to the compact design, excellent noise reduction and low vibration have also been achieved.。
Easy to cleanSince the mixing is achieved through the flow of materials without the need for propellers, there is no concern about equipment wear or contamination, and cleaning is convenient.If using disposable containers, no cleaning is required.。
Suitable for a variety of materialsIt is not only suitable for materials with high viscosity and high specific gravity, but also for materials with significant differences in viscosity and specific gravity., enabling uniform mixing and dispersion of large materials.。
Syringe fillingAfter stirring and defoaming, it can be transferred and filled into a syringe at high density under vacuum., suitable for occasions requiring high-precision filling。
**Capacity:1.5L。
**Load capacityNot explicitly mentioned, but based on its design, it is suitable for small-capacity processing.。
Speed rangeThe specific speed range is not mentioned, but based on the consistent characteristics of EME equipment, it should have an adjustable speed range.。
Vacuum pumpBuilt-in high vacuum dry pump, ensuring efficient vacuum mixing and deaeration.。
In summary, the Japanese EME-imported EME-type vacuum stirring defoaming mixer UFO-1.5, with its efficient stirring and defoaming performance, compact design, and ease of operation and maintenance, is an ideal choice for handling high-viscosity, high-density materials and applications requiring high-precision filling.。