Float type level gauge for high-temperature high-pressure or high-temperature low-density medium
A liquid level gauge and float type technology, applied in the field of liquid level measurement, can solve the problems of increasing the diameter of the float chamber, increasing the manufacturing cost, and many parts in the float chamber, so as to improve the measurement accuracy and sensitivity, reduce the procurement cost, and reduce the manufacturing cost. cost effect
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Embodiment 1
[0079] like figure 1 , The float type liquid level gauge shown in 2, 3, and 4 includes a float chamber 7 of non-ferromagnetic material, a float 1 of non-ferromagnetic material, a scale 6 outside the float, a magnetic coupling 5 and two guide rails 4; The two guide rails 4 are installed outside the float chamber 7 and equidistant from the float chamber 7;
[0080] The float 1 is a hollow spherical shape, and a sphere 100 of ferromagnetic material is housed inside it, such as figure 1 shown; the sphere 100 can be hollow, and its outer diameter is the same as the inner diameter of the float 1, as image 3 shown;
[0081] The magnetic coupling 5 is located between two guide rails 4, including a magnetic steel 5-1 and a metal shaft 5-3; the magnetic steel 5-1 is located on the side of the magnetic coupling 5 close to the float 1, and its magnetic pole is positive For the float 1; the metal shaft 5-3 and the guide rail 4 are perpendicular to the two side walls of the magnetic cou...
Embodiment 2
[0088] like Figure 5 , the float type liquid level gauge shown in 6 includes a float chamber 7 of non-ferromagnetic material, a float 1 of non-ferromagnetic material, a magnetic coupling 5 and two guide rails 4; the two guide rails 4 are installed in the float chamber 7 outside and equidistant from the float chamber 7;
[0089] The float 1 is a hollow spherical type, which contains more than one disc-shaped magnetic steel A10 with the same inner diameter as the float;
[0090] The magnetic coupling 5 is located between the two guide rails 4, and includes a circular magnetic steel B5-5 and a metal shaft 5-3; the magnetic steel B5-5 is fixed at the center of the insulating box 5-4, and The metal shaft 5-3 in the magnetic coupling 5 is coaxial, the axes of the magnetic steel A10 and the magnetic steel B5-5 are parallel to each other and parallel to the ground, the magnetic poles of the two are respectively located on their circular end faces and the two are N, The S poles are ...
Embodiment 3
[0094] like Figure 7 , 8 and Figure 9 , 10 The float type liquid level gauge shown differs from Embodiment 1 in that a pulley 3 is erected outside and above the float chamber 1, and the two ends of the connecting rope or connecting belt 2 are respectively connected with a magnetic coupling 5 and a counterweight 11. The root guide rail 4 is between the connecting ropes or connecting belts 2 .
[0095] When the float 1 is half immersed in the liquid to be tested, the gravity of the counterweight 11 minus the gravity of the magnetic coupling 5 is equal to the gravity of the float 1 minus the buoyancy force on the float 1 when it is half immersed in the liquid to be tested. Thus, the counterweight 11 drives the magnetic coupling 5 to give the buoy 1 an upward lifting force and realize force balance.
[0096] When the liquid level rises and falls, the balance of this force is broken, and the magnetic coupling 5 and the counterweight 11 move up and down along with it. The shaf...
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