CQB-type magnetic drive pump precautions

CQB-type magnetic drive pump is developed a new leak-free corrosion-resistant pump is CQ magnetic drive pump complement and improvement, the main features of the magnetic pump over-current part of the use of stainless steel, organic acids , Organic compounds, alkali, neutral solution and a variety of gases have good corrosion resistance. Now to introduce the CQB-type magnetic drive pump in use precautions. CQB-type magnetic drive pump CQB-type magnetic drive pump Notes 1, due to the cooling and lubrication of magnetic pump bearings by the media being transported, it is absolutely forbidden to dry run, while avoiding the power and restart after the start of the work caused by space-time Carry operation. 2, was transported medium, if it contains solid particles, magnetic drive pump inlet to add filter: If containing ferromagnetic particles, the need to add magnetic filter. 3, magnetic drive pump in the use of ambient temperature should be less than 40 ℃, the motor temperature rise shall not exceed 75 ℃. 4, magnetic drive pump is transported medium and its temperature should be within the allowable range of the pump. Engineering plastic pump temperature 5, the magnetic drive pump for the transmission fluid is easy to precipitate crystallization of the media, after use should be promptly cleaned, drain the pump effusion. 6, 100 hours after the magnetic drive pump running, the bearing should be dismantled and the end face of the moving ring wear and tear, and replace the consumable parts should not be reused. 7, CQB magnetic pump magnetic coupling inside and outside the use of high-performance permanent magnet materials, the following devices may have potential hazards, please keep the following devices with this series of pumps. Further Reading: pump valve pipe fittings Exhibition 2016 Exhibition of Information Industry, Internet (Xiamen) Technology Co., Ltd. Author: Asian pumps Network Editor: Yao Xiaoxia (QQ / micro letter:) http://beng.liuti.cn/ (Hotline :)

Valves

Valves are found in virtually every industrial process, including water and sewage processing, mining, power generation, processing of oil, gas and petroleum, food manufacturing, chemical and plastic manufacturing and many other fields.

People in developed nations use valves in their daily lives, including plumbing valves, such as taps for tap water, gas control valves on cookers, small valves fitted to washing machines and dishwashers, safety devices fitted to hot water systems, and poppet valves in car engines.

In nature there are valves, for example one-way valves in veins controlling the blood circulation, and heart valves controlling the flow of blood in the chambers of the heart and maintaining the correct pumping action.

Valves may be operated manually, either by a handle, lever, pedal or wheel. Valves may also be automatic, driven by changes in pressure, temperature, or flow. These changes may act upon a diaphragm or a piston which in turn activates the valve, examples of this type of valve found commonly are safety valves fitted to hot water systems or boilers.

More complex control systems using valves requiring automatic control based on an external input (i.e., regulating flow through a pipe to a changing set point) require an actuator. An actuator will stroke the valve depending on its input and set-up, allowing the valve to be positioned accurately, and allowing control over a variety of requirements.

Stop Valves, Ball Cock, Angle Valves, Gate Valves, Check Valves

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