High-precision magnetic flap liquid level meter with built-in magnetostriction liquid level transmitter
A technology of magnetostrictive liquid level and magnetic flap liquid level, which is applied in the direction of buoy liquid level indicator, etc., which can solve the problem that the magnetic flap liquid level gauge cannot transmit the liquid level change signal over a long distance, and cannot protect the magnetic flap, etc. problems, to prevent damage caused by collision, improve the use effect, and improve the use accuracy.
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Embodiment 1
[0025] Example 1 as Figure 1-2 As shown, the high-precision magnetic flap liquid level gauge with a built-in magnetostrictive liquid level transmitter includes a buoy 1 and a magnetostrictive liquid level transmitter 2, and the magnetostrictive liquid level transmitter 2 is located in the buoy 1, and the lower end extends to the inside of the buoy 1, the inside of the buoy 1 is connected with a magnetic float 3, the two ends on the left side of the buoy 1 are connected with a connecting pipe 4, and the other end of the connecting pipe 4 is fixed with a mounting flange 5 , the liquid level gauge can be connected with the external container through the installation flange 5, the right side of the buoy 1 is fixed with a magnetic flap 6, the bottom of the buoy 1 is fixed with a blowdown valve flange 7, and the bottom of the blowdown valve flange 7 is set Sewage valve 8, the two ends on the right side of the buoy 1 are connected with a horizontal plate 9, and the two horizontal pl...
Embodiment 2
[0026] Embodiment 2 is on the basis of embodiment 1 such as Figure 1-3 As shown, its clamping mechanism includes two symmetrically arranged arc-shaped splints 11, the inner surfaces of the two arc-shaped splints 11 are in contact with the outer wall of the buoy 1, and the right ends of the two arc-shaped splints 11 are close to one side Both are fixedly provided with a rotating plate 12, and the two rotating plates 12 are rotatably connected with the rod wall of the vertical rod 10 through a rotating bearing. Both ends are sleeved with torsion springs 14, and the two ends of the torsion springs 14 are respectively fixedly connected with the rotating plate 12 and the supporting plate 13, and the supporting plate 13 is set to rotate and support the torsion springs 14.
Embodiment 3
[0027] Embodiment 3 is such as on the basis of embodiment 1 Figure 1-2 and Figure 4 As shown, its protective mechanism includes a protective plate 15, and the two ends of the protective plate 15 are connected with the groove walls of the two chutes respectively. The protective plate 15 is slidingly socketed, the rod wall of the sliding rod 16 is socketed with a spring 17, and the two ends of the spring 17 are respectively fixedly connected with the groove wall of the chute and the protective plate 15, and the protective plate 15 is slid horizontally through the sliding rod 16 support.
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