Middle through hole movable throttling element flow meter capable of preventing blockage
A technology of throttling elements and flowmeters, which is applied in the direction of volume/mass flow generated by mechanical effects, fluid flow detection by measuring differential pressure, etc. It can solve the problems that it is not suitable for measuring dirty media and small pipe diameter flow measurement. , to achieve the effects of simple anti-clogging mechanism, long service life and high precision
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Embodiment 1
[0013] exist figure 1 In the embodiment of the above, a ring-shaped corrugated elastic diaphragm 7 with corrugated edges is respectively fitted at both ends of the moving Venturi tube 4, and the inner edges of the two elastic diaphragms 7 are connected to the inlet end of the moving Venturi tube 4 respectively. It is sealingly connected with the outlet end, and the outer edges of the two elastic diaphragms 7 are respectively in sealing connection with the front end pipe 3 and the rear end pipe 3 . The casing 5 is rigidly connected with the front end pipe 3 and the rear end pipe 3, thereby fixing the distance between the two end pipes 3 and having the function of installing other components on the casing 5. The force sensor 6 is usually composed of an elastic element and a displacement detection element. The elastic element converts the measured force into a corresponding displacement of the free end of the elastic element, and the displacement detection element converts the di...
Embodiment 2
[0048] exist figure 2 In the implementation scheme, it can be seen that this example and figure 1 Embodiment 1 is substantially the same in structure, except that the flexible filter medium 1 is not filled in the gap between the elastic diaphragm 7 and the end pipe 3, but two flexible filter media 1 are used to connect with the end pipe 3 and the moving Venturi tube 4, etc. The diameter of the cylindrical filter membrane 2, the two ends of each filter membrane 2 are respectively connected to one end of the moving Venturi tube 4 and the end tube 3 near the end, the filter membrane 2 can follow the axis of the moving Venturi tube 4 Do the same axial expansion and contraction to move to ensure that the fluid can only enter and exit the above two gaps through the filter membrane 2. The cylindrical filter membrane 2 can be made of ordinary fiber fabric, or an inorganic microfiltration membrane or an organic microfiltration membrane using membrane separation technology. When usin...
Embodiment 3
[0050] exist image 3 In the embodiment of the present invention, a U-shaped bellows 8 is respectively fitted at both ends of the moving Venturi tube 4, the rear end of the front bellows 8 is in sealing connection with the front end of the moving Venturi tube 4, and the front end of the front bellows 8 It is sealingly connected with the front end pipe 3; the front end of the rear bellows 8 is sealingly connected with the rear end of the moving Venturi tube 4, and the rear end of the rear bellows 8 is sealingly connected with the rear end pipe 3. In the gaps of the single waves within the two bellows 8 that are larger than the inner diameter of the bellows, the flexible filter medium 1 is filled to form a ring-shaped filter layer in each single wave. The wave filter layer can follow the front and rear expansion and contraction of the bellows 8 to perform corresponding axial expansion and contraction, so as to ensure that the fluid can only enter and exit the above-mentioned sin...
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