Deaerator with integrated shut-off valve
12410871 ยท 2025-09-09
Assignee
Inventors
Cpc classification
F16K24/048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K24/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A deaerator with integrated shut-off valve comprising a detachable hollow body having a lower part of a cup-shaped body having an inlet connectable to a hydraulic manifold, and an upper part of the cup-shaped body having a vent opening. The upper part is configured to be stabilized the lower part to define a deaeration chamber. The deaerator may include a float assembly having a float element and a drive mechanism. The deaerator may further include a shutter slidingly arranged through said inlet opening of said lower portion, and a head arranged on the inner end of the body. The shutter may include a collar to block the passage of liquid through the opening when the upper part is detached from the lower part of the same body.
Claims
1. A deaerator comprising: a detachable hollow body comprising: a lower part of a cup-shaped body with an inlet opening suitable for connection to a hydraulic manifold; an upper part of a cup-shaped body provided with a vent opening, said upper part being configured to be stabilized on said lower part with means of fixing, so as to define a deaeration chamber inside said hollow body; a float assembly comprising a float element sliding in said deaeration chamber, said float assembly further comprising a drive mechanism; and a vent valve stabilized on said upper part, said valve being configured to be operated by said drive mechanism; and a shutter extending through said inlet opening of the lower part; and an elastic element to hold the shutter in a raised position from a bottom of the lower part of the hollow body; wherein said shutter comprises a shaped rod and a head, the shaped rod configured to allow the passage of liquid through the inlet opening, and the head being arranged between an inner end of the lower part of said hollow body; wherein the elastic element pushes between the head of the shutter and the bottom of the lower part of said hollow body; and wherein said shutter includes a collar formed on said shaped rod, the collar configured to block the passage of liquid through the inlet opening when the upper part is in the raised position and detached from the lower part of the hollow body.
2. The deaerator according to claim 1, wherein said shaped rod of said shutter has a flat shape that extends from a connecting end of the shaped rod and connected with the head to a free end of the shaped rod so as to allow the passage of liquid longitudinally to it when said shutter is inserted through the same inlet opening.
3. The deaerator according to claim 1, wherein said collar is formed or placed on the shaped rod and comprises a substantially circular cross-section such as to allow the passage of liquid through the inlet opening.
4. The deaerator according to claim 1, wherein said shutter comprises at least one of a seal ring and O-ring, said seal ring and said O-ring having an external diametrical dimension greater than the maximum dimension of the inlet opening so as to provide fluidic sealing.
5. The deaerator according to claim 4, wherein said seal ring is housed in a circular seat formed in correspondence of said collar.
6. The deaerator according to claim 1, wherein the head of said shutter has a flange shape, with a central hub joining said head with the shaped rod and provided with openings through which the liquid can pass.
7. The deaerator according to claim 6, wherein said flange-shaped head comprises at least a second opening suitable for passage of liquid.
8. The deaerator according to claim 1, wherein said elastic element comprises a spiral spring, gas spring or other equivalent device.
9. The deaerator according to claim 8, wherein said elastic element comprises a spiral spring housed in the inlet opening of the lower part and placed coaxially on the shaped rod, said spiral spring being configured to operate between a supporting shoulder and a lower face of the head.
10. The deaerator according to claim 1, further comprising a filter element placed inside the deaeration chamber.
11. The deaerator according to claim 10, wherein said filter element is placed in contact with a surface or upper face of the head of the shutter facing the deaeration chamber, and wherein said filter element being configured to move vertically together with said shutter.
12. The deaerator according to claim 10, wherein said filter element is integrated or formed directly in the flange head of the shutter.
13. The deaerator according to claim 10, wherein said filter element has at least one of a flat shape and a cup shape.
14. The deaerator according to claim 1, wherein said means of fastening the upper part on the lower part comprising a fork having a flat semi-circular shape, the fork being configured to fit into at least one fork opening extending into at least one of the lower and the upper parts of said hollow body.
Description
BRIEF DESCRIPTION OF THE FIGURES
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DETAILED DESCRIPTION OF THE INVENTION
(10) With initial reference to
(11) In the following description, the terms upper and lower, high and low, vertical or horizontal are understood as referred according to the direction of application of the force of gravity.
(12) With particular reference also to
(13) With reference to the same figures, said deaerator 10 comprises the innovative features of a shutter 70 slidingly arranged through the inlet opening 14 of the lower part 13 of the body 12 and comprising a shaped rod 71 apt to allow the passage of liquid through said opening 14, said shutter 70 further comprising a head 72 arranged between the inner end of the lower part 13 of said body 12 and said shutter 70, the shutter 70 being provided with a collar 74 formed on the shaped rod 71 and suitable to block the passage of liquid through said opening 14 when the upper part 20 is detached from the lower part 13 of said body 12.
(14) Said shaped rod 71 of said shutter 70 preferably has a flat shape extending from the connecting end 71 of said rod 71 with head 72 to the free end 71 of the same shaped rod 71, but it may be shaped in any form which makes it suitable for having a portion of cross-sectional area having dimensions smaller than the minimum dimensions of inlet opening 14, so as to allow the passage of liquid longitudinally thereto when said shutter 70 is inserted through said inlet opening 14.
(15) Said collar 74 is preferably formed or set back on the shaped rod 71 and comprises a substantially circular cross-sectional area and such as to allow it to move through the inlet opening 14 preventing the passage of liquid when said collar 74 is inserted within said inlet opening 14.
(16) With particular reference to
(17) With particular reference now to
(18) With reference again to
(19) In a preferred embodiment, with reference particularly to
(20) The deaerator 10 object of the present invention, with reference again to
(21) In an alternative embodiment, not shown, said filter element 90 may be integrated or formed directly into the flanged head 72 of said shutter 70, wherein passage apertures 73 and second openings 77, sized accordingly, may be suitable for suitable for function as filter apertures.
(22) With reference again to the same figures, when the upper part 20 is closed and secured on the lower part 13 of the body 12, to close the deaeration chamber 24, the same upper part 20 holds down the head 72 of the shutter 70, through the filter element 90 which may function as a spacer, pushing the same shutter 70 toward the bottom portion of the lower part 13 of the body 12 together with the shaped rod 71 and collar 74 with the sealing ring 76 which disengages the inlet opening 14.
(23) In an alternative not shown variant embodiment, said upper part 20 is suitable for press directly onto the head 72 on the shutter 70 without make contact with the filter element 90.
(24) With particular reference also to
(25) In the example embodiments shown in the figures, said means for fixing the upper part 20 on the lower part 13 of the body 12 may advantageously comprise a fork 50 or elastic cotter pin, preferably having a flat semi-circular shape, said fork 50 being suitable for inserting into at least one fork opening 16 formed in one of the lower or upper parts 13, 20 of said body 12.
(26) With particular reference to
(27) Said fastening means 50 may also be conventional removable fastening means such as threads, quick couplings, press fittings or equivalents.
(28) With reference to the illustrative embodiments of the figures, the inlet opening 14 of the lower part 13 of the body 12 and the vent opening 22 of the upper part 20 may advantageously be provided with further second fastening means to an external manifold or hydraulic circuit or to the vent valve, respectively, said fastening means preferably comprising threads (as in the figures), but may also comprise other traditional alternative fastening means such as quick couplings, press fittings or equivalents.
(29) With particular reference again to
(30) With particular reference to
(31) From the description of the deaerator 10 of the present invention, the operation described below is showed.
(32) The deaerator 10 of the present invention described above, is suitable for advantageously functioning as a fluid shutoff valve, preventing the inflow of fluid from the deaeration chamber when the body 12 is open or disassembled and the consequent leakage of fluid from the hydraulic circuit.
(33) With reference to the preferred embodiment of the figures, particularly to
(34) Still with reference to
(35) When it is necessary to carry out maintenance or cleaning operations of the deaerator 10, it is possible to disassemble the body 12 by separating the upper part 20 from the lower part 13 in the direction of the arrows shown in
(36) The shutter 70, together with the filter element, is then no longer pressed by the upper part 20 and is free to translate upwards, in the direction of the arrows of
(37) The sealing ring 76 having a size larger than the inlet opening 14 blocks further upward translation of the shutter 70 by preventing it from being projected out of the lower part 13 by the liquid pressure of the hydraulic system or circuit.
(38) In a variant form not shown, the deaerator 10 of the present invention can also operate without the spring element 90, the liquid pressure at the collar 74 in fact pushing the shutter 70 upward, bringing it into the closed position with the sealing ring 76 in closing contact with the opening 14, as in the configuration of
(39) The upward translation of the shutter 70 advantageously moves upwardly the head 70 thereof and the filter element toward the upper opening 13 of the open lower part 13 in a manner that facilitates cleaning or pull out of the same through said upper opening 13, as again shown in
(40) The shutter 70 can also advantageously be pulled out, without disassembling the lower part 13 of the body 12 from its position, by simply translating the same shutter 70 toward the upper opening 13 and forcing the sealing ring 76 to compress itself by passing through the inlet opening 14.
(41) The use of means for quickly securing the upper part 20 on the lower part 13, such as, for example, the clevis 50 inserted into the fork openings 16 and defining an undercut at the shoulder 26 such that the same upper part 20 is prevented from translating, contributes to easier and faster cleaning and maintenance operations of the deaerator 10 of the present invention.
(42) When the deaerator 10 is assembled with the upper part 20 and closed and secured on the lower part 13, the shutter 70 is kept pressed with the lower face of the head 72 on the bottom portion of the same lower part 13, also winning the force of the elastic element 80, if any, which is compressed between the head 72 of the shutter and the supporting shoulder 15 of the inlet opening 14.
(43) As can be seen from the foregoing, there advantages that the deaerator 10 with integrated shut-off valve object of the present invention achieves are obvious.
(44) The deaerator 10 with integrated shut-off valve object of the present invention is particularly advantageous because it allows rapid and easy disassembly of the body 12 during maintenance and cleaning operations, without leakage of liquid, without the use of special tools or implements and without having to stop the system or close valves or taps to hydraulically isolate the same deaerator.
(45) A further advantage of the deaerator 10 with integrated shut-off valve which is the subject of the present invention is that it is possible to pull out the shutter 70 without having to remove the lower part of the body 12 from the system or hydraulic circuit.
(46) A further advantage of the deaerator 10 with integrated shut-off valve object of the present invention is to make available to the user a device with a filter element comprised and integrated in the valve body.
(47) Not least advantage of the deaerator 10 with integrated shut-off valve object of the present invention is to make available to the user a device with a reduced number of components, due to the possibility of directly integrating the filter element into the shutter 70.
(48) A further advantage of the deaerator 10 with integrated shut-off valve object of the present invention is that it makes available to the user a single device combining the functions of a shut-off valve with those of a deaerator and having reduced overall dimensions compared to devices of known art and suitable for applications on recessed or wall-mounted hydraulic systems or circuits with extremely limited space and operating dimensions.
(49) Although the invention has been described above with particular reference to several preferred embodiments, given for illustrative and non-limiting purposes, numerous modifications and variations will be obvious to the person skilled in the art in the light of the above description. The present invention, therefore, is intended to include all modifications and variations falling with the scope of the following claims.