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(1) **Vibration Multi-Layer Fluidized Dryer**
Developed by Northeastern University, this high-efficiency drying system has earned recognition at the Eureka World Invention Fair. It features an inner and outer cylinder, a ring orifice plate, and two cross-mounted vibration motors. As the motors rotate, they generate vertical excitation force and torsional movement, causing the dryer body to vibrate vertically and twist around its axis. This motion allows materials to move continuously in a jumping motion across horizontal layers. A blower supplies hot air through the orifice plate, flowing upward through the material bed. The constant tumbling of particles enhances contact between the material and the drying medium, improving heat and mass transfer efficiency. This dryer is ideal for small-scale operations (up to 1 ton/hour), suitable for granular, powdery, and sheet-like materials. It is widely used in the feed industry for drying fish meal, distiller’s grains, and other by-products.
(2) **Rotary Flash Dryer**
This advanced drying equipment combines mechanical dispersion with fluidization. The system includes a feeder, drying chamber, cyclone separator, and bag filter. High-moisture materials are introduced tangentially into the chamber and mixed with hot air. The stirrer and high-speed airflow break up the material into fine particles, enabling rapid heat and mass transfer. A particle sizer at the top ensures uniform product size. The rotary flash dryer is efficient, energy-saving, and ideal for sticky, paste-like, or cake-like materials such as blood meal, fish meal, and protein pastes.
(3) **Break Loose Rotary Dryer**
This forward-flow dryer uses a rotating drum equipped with lifting plates and an internal crushing device. As the drum rotates, the material is lifted, dropped, and broken down repeatedly, increasing surface area for better drying. Hot air flows through the drum, enhancing heat transfer. This dryer is particularly effective for high-moisture materials like manure, crop residues, and sludge. It offers high thermal efficiency, low oxidation risk, and can handle large volumes efficiently.
(4) **Tube Dryer**
Based on conduction and radiation principles, the tube dryer uses counter-current or co-current flow of steam and material. A negative-pressure chamber ensures continuous stirring via shovel plates. The system is energy-efficient, capable of handling high moisture content materials such as distiller’s grains, starch, and organic waste. It is compact, easy to maintain, and widely used in industries including food, feed, and chemicals.
(5) **Hot Air High-Speed Mixing Dryer**
Designed for high-viscosity and high-moisture materials, this machine from Shenyang Yitong combines high-speed mixing with hot air drying. It operates in two stages: first, the material is rapidly dried using intense convection, then further dried in a slower phase. This two-step process maximizes efficiency and product quality. It is used for drying penicillin mycelia, beer dregs, and other challenging materials, with capacities reaching up to 500 tons per day.
(6) **Multi-Layer Rotary Dryer**
This advanced dryer incorporates multi-layer drums with specialized lifting plates, ensuring full contact between material and hot air. It uses a high-temperature, high-humidity drying process, achieving high thermal efficiency (up to 80%). The system is fully automated, suitable for drying agricultural by-products like cassava residue, straw, and herbal materials. Its performance surpasses conventional systems, offering greater thermal capacity and reduced energy consumption.
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Titanium Seamless Tube
Titanium seamless pipe is a type of tubular product made from titanium or titanium alloys that is produced without any welded joints or seams. It is known for its exceptional quality, reliability, and versatility in various industries.
Titanium seamless pipes offer excellent corrosion resistance, making them suitable for applications in aggressive environments such as chemical processing, marine engineering, and oil and gas exploration. They can withstand exposure to corrosive substances, including acids, alkalis, and seawater, without deteriorating or compromising performance.
With their high strength-to-weight ratio, titanium seamless pipes provide a lightweight yet durable solution for structural applications. They are commonly used in aerospace components, exhaust systems, and sports equipment, where both strength and weight reduction are critical factors.
Titanium seamless pipes also exhibit excellent heat resistance, allowing them to withstand high temperatures without deformation or degradation. This makes them suitable for applications involving heat transfer, such as heat exchangers and power generation systems.
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