Manufacturer price of intelligent pneumatic midline butterfly valve Three way pneumatic ball valves are T-type and L-type. T-shape can make three orthogonal pipelines connect with each other and cut off the third channel, playing the role of diversion and confluence. The L three way pneumatic ball valve type can only connect two mutually orthogonal pipelines, and can not keep the third pipeline interconnected at the same time. It only plays the role of distribution. Technically, T-type pneumatic three-way pneumatic ball valve can replace L-type pneumatic three-way pneumatic ball valve, but L-type pneumatic ball valve cannot replace T-type pneumatic ball valve! During use, different structural forms shall be selected according to different working conditions, and T-type pneumatic ball valve can be DC, while L-type pneumatic ball valve cannot.
1. Pneumatic three-way pneumatic ball valve and three-way pneumatic ball valve adopt integrated structure in structure. The sealing type of four side valve seat has few flange connections and high reliability. The design realizes lightweight
2. Three way pneumatic ball valve has long service life, large flow capacity and low resistance
3. Three way pneumatic ball valve can be divided into single action and double action types according to the action type. The single action type is characterized by that once the power source fails, the pneumatic ball valve will be in the state required by the control system. The pneumatic three way pneumatic ball valve is a new type of three-way port switching pneumatic ball valve, which can be used to control the reversal, diversion or confluence of the three pipeline media. According to the different ball core structures, It can be divided into T-type or L-type. The difference between T-type pneumatic three-way pneumatic ball valve and L-type pneumatic three-way pneumatic ball valve is mainly due to the difference in internal structure, which cannot be seen from the appearance! The T-type pneumatic ball valve can make three orthogonal pipelines connect and cut off the third channel, and play the role of diversion and confluence. The L-type pneumatic ball valve can only connect two orthogonal pipelines, and can not keep the third pipeline connected at the same time, but only play the role of distribution. Flow Direction Diagram of Pneumatic Three way Pneumatic Ball Valve ① Flow Direction Diagram of T-type Pneumatic Three way Pneumatic Ball Valve From the above figure, we can see that T-type pneumatic ball valve is mainly used for the diversion or mixing of media, and L-type pneumatic ball valve is mainly used for reversing! L-type three-way pneumatic ball valve is used for distribution and switching without 3-way, which is more convenient to operate. There are only two valve positions, and it has positioning. It can be rotated 90 degrees without error; The T-type three way pneumatic ball valve has a wide range of channels and valve positions, and generally has no positioning. If it replaces the L-type, it will rotate 180 degrees. ② Flow Direction Diagram of L-type Pneumatic Three way Pneumatic Ball Valve Technically, T-type pneumatic three way pneumatic ball valve can replace L-type electric three way pneumatic ball valve, but L-type pneumatic ball valve cannot replace T-type pneumatic ball valve! During use, different structural forms shall be selected according to different working conditions, and T-type pneumatic ball valve can be DC, while L-type pneumatic ball valve cannot.
After 3000-5000 times of reciprocating movement, the copper serpentine tube will be tired and broken. Although the rubber tube has good flexibility, it can be used again in pressure resistance and law. The good comprehensive performance of pneumatic butterfly valve is fully demonstrated here. In the general industrial category, in addition to pressure and temperature, there are often some harsh conditions such as fatigue, corrosion, vibration, pressing, impact, etc. Under such conditions, it is most appropriate to use pneumatic butterfly valves to compensate for the displacement of pipeline positions.
3. Absorb the vibration of pipeline system