Product introduction
KDJ series one-piece mechanical stirring reactor adopts overhead magnetic coupling stirrer, quick-open structure, touch screen control, desktop design, which has compact structure, small footprint, easy disassembly, beautiful and exquisite. It is widely used in petroleum, chemical, pharmaceutical, materials, metallurgy and other fields, such as catalytic reaction, polymerization reaction, supercritical reaction, high-temperature and high-pressure synthesis reaction, hydrogenation reaction and so on.
Mechanical stirring reactor compared with magnetic stirring reactor.
Advantages:Stirring more fully, more suitable for stirring viscous substances, more adapted to high-temperature reaction
Disadvantages:More expensive, heavier kettle cover, high maintenance costs.
Product Features:
- Adopting quick-open caliper structure, easy to disassemble and easy to clean the equipment;
- The main sealing surface adopts tongue and groove sealing structure, and the high and low temperature sealing gaskets can be customized according to the actual working conditions;
- Standard with over-temperature and over-pressure automatic stop heating function, and over-deviation temperature automatic power-off function, to avoid dangerous accidents caused by over-temperature.
- Standard with overpressure parallel automatic pressure relief function, to avoid dangerous accidents caused by overpressure.
- Heating furnace using steel jacket heating ring, more uniform heating, faster, integrated with the controller, heating components using modular design, uniform heating, high heating efficiency.
- Integrated integrated frame embedded high-frequency intelligent control system, high feedback sensitivity, to avoid high-temperature jamming phenomenon.
- Temperature control system for the kettle / heating furnace dual PID temperature control, heat source temperature display limit protection, heat source runaway protection.
- Self-contained general-purpose USB3.0 interface, real-time experimental data acquisition, convenient for the analysis of experimental results.