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Because of the conventional reaction kettle temperature control mode, such as boiler, electromagnetic heating mode, the temperature control accuracy is poor, the complex process can not guarantee its control accuracy.
the automatic temperature control device of Wuxi Crown Subreaer is based on the control needs of the nonlinear, strongly coupled and uncertain process of reactor temperature lag, and a temperature control device based on PID control method is proposed.
Wuxi Crown Sub-Hot and Cold All-in-One solves the chemical and pharmaceutical industry with a special device for accurate temperature control, used to meet the intermittent reactor temperature control or continuous process of heating and cooling, thermostat system.
reactor can be divided into heat absorption reaction and heat release reaction according to the characteristics of the reaction.
generally speaking, the polymerization reaction belongs to the heat release reaction, and the fission reaction belongs to the heat absorption reaction.
of the reactor generally includes four stages: warm-up, heating, thermostat and cooling.
the thermostat segment is a key stage to reflect the process, which has an important impact on product quality and output, so improving the control accuracy of the thermostat segment is the key to improving product quality.
the actual reaction process is often accompanied by a strong heat release effect, so that the reaction temperature changes.
For the characteristics of reactor temperature control, Wuxi Guanya research and development using PID-controlled reactor temperature control reactor automatic temperature control device, through the neural network's online learning function, enhance the system's automatic regulation and adaptive capacity, so that the reactor thermostat temperature control more stable reactor automatic temperature control device can be based on the actual production process to determine the heating power and pumping power, to avoid the phenomenon of too much or insufficient power.
according to the customer's production process to develop a variety of special models of hot and cold all-in-one machine, explosion-proof type.
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