Chemical pump, corrosion-resistant pump, Suzhou Langnuo general agent NH-250PS-F-3
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Chemical pump, corrosion-resistant pump, Suzhou Langnuo general agent NH-250PS-F-3
Details Series Magnetic drive pump for hazardous areas For chemical transfer in hazardous areas Anti-corrosion materials Models with flow rates up to Can be used with hoses , threaded and flange connections. With its fully sealed, leak-free and corrosion-resistant characteristics, the magnetic pump is widely used in petrochemical, pharmaceutical, electroplating, environmental protection, water treatment, film and television printing, national defense and other departments to pump flammable, explosive, toxic and precious liquids. It is a leak-free and pollution-free solution. The ideal pump for civilized workshops and civilized factories. The following matters should be considered during the installation process of the magnetic pump Place the unit on the foundation, place a pair of wedge pads between the bottom plate and the foundation, and adjust the wedge pads to align the level of the pump. After adjustment, tighten the anchor bolts. The pump and motor should be inspected before installation. All parts should be intact and there should be no debris in the magnetic pump. Foundation dimensions: Make a concrete foundation and bury the anchor bolts at the same time. The suction and discharge pipeline of the force pump should be supported by a bracket, and the magnetic pump cannot be used for support. The diameter of the inlet and outlet pipes should be consistent with the diameter of the pump inlet and outlet. After the installation is completed, finally turn the magnetic pump coupling by hand to check whether there is any friction. If the rotation is easy and even, the installation is complete. The pump is strictly prohibited from pumping media containing particles and easily crystallized. It is not allowed to operate continuously with the discharge port closed, and the minimum flow rate must be maintained. To prevent debris from entering the magnetic pump, a filter should be installed at the inlet, and the filtering area should be greater than ~ times the cross-sectional area of the pipeline. When the viscosity is too high, the performance and power of the magnetic pump will change. Please follow the instructions for details. It is necessary to ensure that the installation height of the magnetic pump complies with the NPSH of the pump, and consider the pipeline loss and medium temperature. Introduction to the advantages of magnetic pump Magnetic pump is a kind of non-contact torque transmission through magnetic transmission and magnetic coupling, thereby replacing dynamic seal with static seal, making the pump completely leak-free. Since the magnetic rotor in the pump shaft is completely sealed by the isolation sleeve of the pump body, the problem of leakage, leakage, and leakage is completely solved, and the potential safety hazard of leakage of flammable, explosive, toxic, and harmful media through the pump seal in the refining and chemical industry is eliminated, effectively ensuring the physical and mental safety of employees. Healthy and safe production. Compared with centrifugal pumps that use mechanical seals or packing seals, magnetic pumps have the following advantages: The shaft changes from a dynamic seal to a closed static seal, completely avoiding medium leakage. Requires independent lubrication and cooling water, reducing energy consumption. Coupling transmission becomes synchronous drag, without contact and friction. It has low power consumption and high efficiency, and has a damping and vibration reduction effect, which reduces the impact of motor vibration on the pump and the impact on the motor when cavitation vibration occurs in the pump. When loading, the inner and outer magnetic rotors slip relative to each other, which protects the motor pump. When the driven part of the magnetic actuator operates under overload or the rotor is stuck, the main and driven parts of the magnetic actuator will automatically slip off to protect the pump. At this time, the permanent magnets on the magnetic actuator will produce eddy magnetic losses under the action of the alternating magnetic field of the active rotor, causing the temperature of the permanent magnets to rise and the magnetic actuator to slip and fail. A total of0articles Related Comments: |