BALL VALVE
20240003435 ยท 2024-01-04
Inventors
- Paolo BONSI (Pezzaze (BS), IT)
- Claudio GATTAVARI (Bagnacavallo (RA), IT)
- Marco TASSOTTO (Borgosatollo (BS), IT)
Cpc classification
F16K5/0605
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K47/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/067
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K5/0647
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K5/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K47/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A ball valve (10) is described comprising a valve body (12) in which an axial channel (14) for the unidirectional flow of a fluid is obtained. The axial channel (14) extends between an inlet port (11) and an outlet port (13) for the fluid, wherein the ports are axially aligned with the axis of the axial channel (14). The valve is provided with a motorized actuator (20) for adjusting the position of the fluid adjusting ball (15) and comprises a head block (17) for installing the motorized actuator (20) on the valve body (12). The head block (17) includes at least one stem (21) for rotating the ball (15). The valve body (12) has a first window (26) whose axis is coincident with the axis of rotation of the ball (15) and at least one second window (27) whose axis is coincident with the axis of rotation of the ball (15). The first and second windows (26, 27) are symmetrically made in opposite parts of the valve body (12) with respect to the axis of the axial channel (14) and have the same shape and size to receive, on one side, the head block (17) on the valve body (12) and, on the opposite side of the valve body (12), a covering element (18). The head block (17) has an engaging portion (71) having shape and size adapted to allow it to be inserted into the first window (26) or into the second window (27).
Claims
1. A ball valve (10) comprising a valve body (12) in which an axial channel (14) for the unidirectional flow of a fluid is obtained, an inlet port (11) for said fluid and an outlet port (13) for said fluid, said ports (11, 13) having a common axis aligned with the axis (C) of said axial channel (14), a ball (15) for adjusting the fluid flow through said axial channel (14), said ball (15) having an axial cavity (16) therein in which pressure reducing elements (39, 42) are arranged, said ball (15) being rotatable by an actuator (20) around an axis (S) perpendicular to the axis (C) of said axial channel (14), a head block (17) for installing said actuator (20) on said valve body (12), wherein said head block (17) includes at least one stem (21) to rotate said ball (15), characterized in that said valve body (12) has a first window (26) which axis is coincident with the axis of rotation (S) of said ball (15) and at least one second window (27) which axis is coincident with the axis of rotation (S) of said ball (15), said first and second windows (26, 27) being symmetrically made in opposite parts of said valve body (12) with respect to the axis (C) of said axial channel (14), wherein said first and second windows (26, 27) have the same shape and size to receive, on one side, said head block (17) on said valve body (12) and, on the opposite side of the valve body (12), a covering element (18), and in that said head block (17) has an engaging portion (71) having shape and size adapted to allow it to be inserted in said first window (26) or in said second window (27).
2. The ball valve (10) according to claim 1, wherein said covering element (18) has an engaging portion (81) having shape and size adapted to allow it to be inserted into said first window (26) or into said second window (27).
3. The ball valve (10) according to claim 1, wherein said ball (15) comprises a first hub (30) having an inner grooved portion (35) adapted to receive a correspondingly shaped end of said stem (21) in order to be rotationally driven by said actuator (20) and, in a diametrically opposite position, a second hub (31) having a grooved portion (35) having the same shape and size of the grooved portion (35) of the first hub (30).
4. The ball valve (10) according to claim 1, wherein a flange (22) for mounting said actuator (20) is installed on said head block (17) and integral therewith, and wherein said actuator (20) is mechanically connected to said stem (21) with a key (23) for imparting the rotation to said ball (15).
5. The ball valve (10) according to claim 4, wherein said flange (22) includes a semicircular recess (24) around said stem (21) to allow said key (23) to be rotated through an angle of 180.
6. The ball valve (10) according to claim 5, wherein at least one stop element (25) for said key (23) is positioned in said semicircular recess (24) to limit the rotation of said stem (21) between a position of 0 corresponding to the maximum opening of the valve (10), and a position of 90 corresponding to the closed position of the valve (10) when said actuator (20) is mounted on the left side of the valve (10).
7. The ball valve (10) according to claim 5, wherein at least one stop element (25) for said key (23) is positioned in said semicircular recess (24) to limit the rotation of said stem (21) between a position of 0 corresponding to the maximum opening of the valve (10), and a position of +90 corresponding to the closed position of the valve (10) when said actuator (20) is mounted on the right side of the valve (10).
8. The ball valve (10) according to claim 1, wherein said pressure reducing elements comprise perforated plates (39) that are inserted into the axial cavity (16) of said ball (15) to divide into several stages the pressure drop of said fluid as it passes through the axial cavity (16) of said ball (15).
9. The ball valve (10) according to claim 1, wherein said pressure reducing elements in the ball (15) comprise a perforated sheet (42) which faces the inlet port (11).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Further characteristics and advantages of the present invention will be more evident from the following description, made for illustration purposes only and without limitation, referring to the accompanying schematic drawings, in which:
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MODE FOR CARRYING OUT THE INVENTION
[0035] A valve 10 having a valve body 12 is shown in
[0036]
[0037] The valve body 12 comprises an inlet port 11 and an outlet port 13 which are aligned with the axis C of the axial channel 14. The ball 15 is installed along the axial channel 14 to adjust the fluid flow through the same axial channel 14. The ball 15 has an inner axial cavity 16 (
[0038] The valve 10 has a head block 17 which is mounted on a first window 26 of the valve body 12 and, on the opposite side, a covering element 18 mounted on a second window 27 of the valve body 12. The head block 17 has an engaging portion 71 having shape and size adapted to allow it to be inserted indifferently into the first window 26 or into the second window 27. Similarly, the covering element 18 has an engaging portion 81 having shape and size adapted to allow it to be inserted indifferently into the first window 26 or the second window 27.
[0039] Both the first window 26 and the second window 27, clearly visible in
[0040] The head block 17 includes a stem 21 rotatable around the axis S with respect to the head block 17 for rotating the ball 15 and a flange 22 integral with the head block 17, for installing the actuator 20 on the valve 10. The mechanical connection between the actuator 20 and the stem 21 is made by means of a key 23.
[0041]
[0042] Thus, the inner cavity 16 of the ball 15 appears to move upwards, as indicated by the arrow R also in
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[0045]
[0046] In
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[0048] The sectional view of
[0049] The first window 26 and the second window 27 have the same shape and size in order to receive, on one side, the engaging portion 71 of the head block 17 on the valve body 12 and, on the opposite side of the valve body 12, the engaging portion 81 of the covering element 18. Thus, the engaging portions 71 and 81 have the same shape and size in order to be inserted into the windows 26 and 27, or vice versa.
[0050] This allows the arrangement of the head block 17 and the covering element 18 to be easily reversed according to the need to have the actuator 20 mounted on the left side (
[0051]
[0052] Perforated plates 39 are inserted into the inner axial cavity 16 of the ball 15 to divide into several stages the pressure drop of the fluid as it passes through the inner axial cavity 16 of the ball 15.
[0053] The view of
[0054] Various modifications can be made to the embodiments depicted so far by way of example without departing from the scope of the present invention as it becomes apparent from the appended claims.