IP Library Granted Patent US 12680618
Granted Patent B2
US 12680618 · App. 18/792,302 · Granted Jul 14, 2026

Piston-diaphragm assembly for a valve and a manufacturing method

Inventor: Denis Vanzetto (Epernay, FR)
Assignee: Exel Industries
F16K15/063F16K41/10
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Quick Facts
Patent No.
US 12680618
App. No.
18/792,302
Granted
Jul 14, 2026
Kind
B2
Abstract

A piston-diaphragm assembly for a valve with a piston comprising a stem and a needle. The stem comprises a piston groove with a groove proximal rim. The needle is attached to a stem distal end. The assembly comprises a diaphragm with a peripheral annular ring, an internal annular ring received in the piston groove for attaching the diaphragm thereto, and an annular membrane connecting the annular rings. The needle comprises a crown, which surrounds the stem and externally covers the internal annular ring and which comprises a crown rim, which ends the crown at the groove proximal rim. The diaphragm is radially interposed between the groove proximal rim and the crown rim, being in contact with the crown rim.

Claims (39)

1 . A piston-diaphragm assembly for a valve, the assembly comprising:

a piston that comprises:

a stem, which extends parallel to a distal direction, the stem being intended to be received in a central conduit of a body of the valve, in a sliding manner relative to the body parallel to the distal direction, the stem comprising a piston groove surrounding the stem and being radially outwardly open, the piston groove comprising a groove proximal rim and a groove distal rim between which the piston groove is delimited, the groove distal rim being offset from the groove proximal rim in the distal direction; and

a needle, which is fastened to a stem distal end, belonging to the stem, and which is configured to abut against a shut-off seat along the distal direction to shut off a pressurized fluid conduit; and

a diaphragm that comprises:

a peripheral annular ring for fastening the diaphragm to the body of the valve, the peripheral annular ring surrounding the piston;

an internal annular ring, which surrounds the piston and is received in the piston groove to thereby attach the diaphragm to the piston; and

an annular membrane, which connects the peripheral annular ring to the internal annular ring;

wherein the needle comprises:

a crown which surrounds the stem and externally covers the internal annular ring; and

a crown rim which ends the crown in a direction opposite to the distal direction, the crown rim being arranged at the height of the groove proximal rim, the diaphragm being radially interposed between the groove proximal rim and the crown rim and being in contact with the crown rim.

2 . The piston-diaphragm assembly according to claim 1 , wherein the crown further comprises a base adjacent the groove distal rim.

3 . The piston-diaphragm assembly according to claim 2 , wherein the crown further comprises an internal conical surface which connects the base to the crown rim which converges along the distal direction, the crown being in slant abutment in the direction opposite to the distal direction against the diaphragm via the internal conical surface.

4 . The piston-diaphragm assembly according to claim 2 , wherein the crown further comprises an internal concave curved surface which connects the base to the crown rim which converges along the distal direction, the crown being in slant abutment in the direction opposite to the distal direction against the internal annular ring via the internal concave curved surface.

5 . The piston-diaphragm assembly according to claim 2 , wherein the crown further comprises an internal chamfer which converges along the distal direction and which is adjacent to the groove distal rim.

6 . The piston-diaphragm assembly according to claim 1 , wherein the needle further comprises a proximal attachment interface forming an internal conduit through which the needle is fastened to the stem, the crown extending from the proximal attachment interface, in the direction opposite to the distal direction.

7 . The piston-diaphragm assembly according to claim 6 , wherein the needle is fastened to the stem by fitting the stem distal end into the proximal attachment interface along the distal direction.

8 . The piston-diaphragm assembly according to claim 1 , wherein the groove proximal rim is radially wider than the groove distal rim.

9 . The piston-diaphragm assembly according to claim 1 , wherein the piston groove has a radial section in the form of a portion of a circle, from the groove distal rim to the groove proximal rim.

10 . The valve comprising:

the piston-diaphragm assembly according to claim 1 ; and

the body, having a central conduit coaxial with a central axis and opening out at a body distal end belonging to the body;

wherein:

the piston is slidable relative to the body along the central axis between a distal position and a proximal position, the distal direction of the piston being parallel to the central axis;

the stem is received in the central conduit, protruding from the central conduit from the body distal end when the piston is in the distal position;

the needle is arranged outside the central conduit, being offset in the distal direction from the body distal end, regardless of whether the piston is in the proximal position or in the distal position;

the peripheral annular ring attaches the diaphragm to the body distal end;

the diaphragm separates the central conduit from a pressurized fluid chamber delimited beyond the diaphragm in the distal direction, and is configured to be elastically deformed between:

an initial shape, when the piston is in the distal position and no overpressure occurs in the pressurized fluid chamber relative to the central conduit, and

stretched shapes, under the effect of an overpressure occurring in the pressurized fluid chamber relative to the central conduit; and

the crown rim is in contact with the diaphragm, whether the diaphragm is in the initial shape or in one of the stretched shapes and whether the piston is the distal position or in the proximal position.

11 . A method for manufacturing the piston-diaphragm assembly according to claim 1 , the method comprising:

fitting of the internal annular snap ring onto the stem, while the needle is not yet fastened onto the stem, the internal annular ring being fitted via the stem distal end and until the internal annular ring is received in the piston groove to attach the diaphragm to the stem; and

while the internal annular ring is received in the piston groove, fastening the needle to the stem distal end so that:

the crown surrounds the stem by externally covering the internal annular ring; and

the diaphragm is radially interposed between the groove proximal rim and the crown rim, by being in contact with the crown rim.

12 . The method according to claim 11 further comprising:

the positioning of a temporary cap on the stem distal end, while the needle is not yet fastened to the stem and the internal annular ring is not yet fitted onto the stem, the temporary cap covering the stem distal end, the internal annular ring being fitted onto the stem via the temporary cap, with sliding of the internal annular ring along an outer tapered surface of the temporary cap, the outer tapered surface being convergent along the distal direction; and

the removal of the temporary cap, while the internal annular ring is accommodated in the groove piston, and before the fastening of the needle to the stem distal end.