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Industrial leak free fluorine alloy TCU temperature controlled magnetic pump

NegotiableUpdate on 04/24
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Overview
Industrial leak free fluorine alloy TCU temperature controlled magnetic pump: $n TCU temperature controlled stainless steel magnetic pump. This pump is a magnetic driven ultra-high temperature vortex pump, which transfers circulating media such as liquids without particles or fibers (water, thermal oil, ethylene glycol). The pump has a beautiful appearance, low vibration, and low noise. It is suitable for circulating high-temperature heat transfer oil up to 350 ℃ and hot water up to 180 ℃. Application areas: precision high-temperature mold temperature machine, leather roller heating equipment, TCU temperature control printing and dyeing equipment, chemical and pharmaceutical extraction reaction kettle insulation and other industries.
Product Details

Industrial leak free fluorine alloy TCU temperature controlled magnetic pumpadvantage

  1. The motor shaft drives the outer magnetic shaft, which uses the magnetic field to transmit torque through the air gap and the thin wall of the isolation sleeve, driving the pump shaft to rotate together. Therefore, the leakage channel of the shaft seal has been fundamentally eliminated, achieving sealing.

    2. There is overload protection when transmitting power.

3. Magnetic materials and magnetic circuit design require precision.

4. The maintenance and repair workload of magnetic pumps is small

Precautions for using industrial leak free fluorine alloy TCU temperature controlled magnetic pump

1. It is prohibited for internal and external magnetic steel to directly contact iron materials.

2. The dismantled magnetic pump must have its inlet and outlet flanges sealed as soon as possible. Excluding those that require repair.

The theoretical small continuous stable flow rate of a magnetic pump is about 30% of the rated flow rate. Please try to stay as close to the rated flow point as possible and away from small continuous stable flow points for daily use.

When starting or stopping the pump, the wear on the bearings is much greater than during normal operation, and it can cause brittle fracture of the graphite bearings. Therefore, in order to extend the service life of graphite bearings, the chemical magnetic pump should be operated continuously as much as possible and the number of starts and stops should be reduced.

If the pipeline and pump are not filled with liquid during operation, components such as bearings, isolation sleeves, and inner magnets will be burned. So, it is forbidden to idle and dry friction.

6. As the cooling and lubrication of the magnetic pump bearings and isolation sleeves rely on the medium being transported, it is absolutely forbidden to operate them in idle or under current mode. At the same time, it is necessary to avoid idle operation caused by restarting after a power outage during operation. The pump should be operated continuously as much as possible to reduce the number of starts and stops.

7. Whether the outlet flow rate meets the rated value. Operating at excessive flow rates can cause increased axial displacement of the impeller, severe outlet vibration of the pump, and motor overload.

If there are abnormal sounds and vibrations, usually caused by cavitation or bearing wear, the vehicle must be stopped immediately. Significant noise and vibration indicate that a malfunction has occurred.

If there are solid particles in the conveyed medium, a filter screen should be added to the inlet of the chemical magnetic pump; If it contains ferromagnetic particles, a magnetic filter should be added.

10. The ambient temperature of the chemical pump during use should be less than 40 ℃, and the motor temperature should not exceed 75 ℃.