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Changzhou Ruiting Drying Engineering Co., Ltd
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Changzhou Ruiting Drying Engineering Co., Ltd

  • E-mail

    616584903@qq.com

  • Phone

    15706156656

  • Address

    Sanhekou Ninghe Village, Zhenglu Town

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Pharmaceutical excipient rotary flash dryer

NegotiableUpdate on 01/10
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Overview
The pharmaceutical excipient rotary flash dryer uses hot air to enter the bottom of the dryer through a tangent line, and is driven by a stirrer to form a strong rotating wind field. The paste like material is fed into the dryer by a spiral feeder, and under the strong action of high-speed rotating stirring blades, the material is dispersed by impact, friction, and shear forces. The block like material is quickly crushed, fully contacted with hot air, heated, and dried.
Product Details

药用辅料旋转闪蒸干燥机


Pharmaceutical excipient rotary flash dryer
Product Introduction

It is a new type of drying equipment developed by our factory based on the introduction and absorption of * technology. This machine has advanced technology, reasonable design, compact structure, wide applicability, high production capacity, good product quality, high efficiency, energy saving, and can complete drying, crushing, and screening in one device at a time, eliminating environmental pollution. The overall performance of the machine has reached the advanced technological level.

Pharmaceutical excipient rotary flash dryerworking principle

Hot air enters the mixing and crushing drying chamber from the bottom of the dryer at a suitable spraying speed through the inlet pipe, generating strong shear, blowing, and rotating effects on the material. As a result, the material is subjected to centrifugation, shear, collision, and friction, leading to particle reduction and enhanced mass and heat transfer. At the bottom of the dryer, larger and wetter particle clusters are mechanically crushed by the agitator, while particles with lower moisture content and smaller particle size are carried up by the rotating airflow and further dried during the upward process. Due to the rotating flow of gas-solid phases, the inertia of the solid phase is greater than that of the gas phase, and the relative velocity between the solid and gas phases is higher, which enhances the mass and heat transfer between the two phases. Therefore, the production intensity of this machine is high.

Features:
Multiple feeding devices are available for selection, ensuring continuous and stable feeding without bridging during the process.
A special cooling device is installed at the bottom of the dryer to avoid material deterioration in the high-temperature zone at the bottom.
Special pneumatic sealing device and bearing cooling device effectively extend the service life of the transmission part.
The special air distribution device reduces equipment resistance and effectively provides the processing air volume of the dryer.
The drying chamber is equipped with grading rings and swirl blades, and the material fineness and final moisture content can be adjusted. (If the final moisture content of calcium carbonate can be adjusted to ≤ 0.1%)
Compared to other drying methods, it can effectively increase the specific gravity of materials.
The drying chamber has a high circumferential gas velocity and short material residence time, effectively preventing material sticking to the wall and thermal sensitive material deterioration, achieving high efficiency, speed, small equipment, and large production.

Suitable materials:
Inorganic substances: boric acid, calcium carbonate, hydroxides, copper sulfate, iron oxide, barium carbonate, antimony trioxide, various metal hydroxides, various heavy metal salts, synthetic cryolite, etc.
Organic compounds: Atrazine (pesticide insecticide), lauric acid, benzoic acid, benzoic acid, fungicide, sodium oxalate, cellulose acetate, etc.
Ceramics: kaolin, silica, clay.
Dyes: anthraquinone, black iron oxide, indigo pigment, butyric acid, titanium hydroxide, zinc sulfide, various azo dye intermediates.
Food category: soy protein, gelatinous starch, distiller's grains, wheat sugar, wheat starch.

Technical parameter table:

model Host internal diameter (mm) Processing air volume (m3/h) Evaporation water volume (kg/h) Large installed capacity (KW) Large height (m) Occupation Plan (m2)
XSG-4 400 1150-2300 58-73 21.4 4.6 27
XSG-6 600 2500-5100 130-163 34.2 5.5 39
XSG-8 800 4500-9000 238-297 63.5 6.0 40
XSG-10 1000 7000-13500 345-430 68 6.5 55
XSG-12 1200 10000-20000 515-645 94 6.8 62
XSG-14 1400 16600-28000 730-910 130 7.0 89
XSG-16 1600 18000-38100 962-1203 160 7.2 160