Diaphragm valve
09638339 ยท 2017-05-02
Assignee
Inventors
Cpc classification
F16K7/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T137/6065
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16K7/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A diaphragm valve comprises at least one valve body which has at least one inlet, at least one outlet, at least one flow channel and at least one shutoff web dividing the flow channel into channel portions. The diaphragm valve furthermore comprises a diaphragm which rests on a circumferential sealing seat of the valve body, and a drive having a drive housing, the drive being coupled to the diaphragm to press the diaphragm against the shutoff web for closing the valve. The diaphragm valve furthermore comprises a fastening unit for detachably locking the drive to the valve body, the fasting unit having a bayonet cap and an additional central retightening unit by means of which an axial tightening force is generated.
Claims
1. A diaphragm valve, comprising at least one valve body which has at least one inlet, at least one outlet, at least one flow channel and at least one shutoff web dividing the flow channel into channel portions, a diaphragm resting on a circumferential sealing seat of the valve body, a drive having a drive housing, the drive being coupled to the diaphragm to press the diaphragm against the shutoff web for closing the valve, and a fastening unit for detachably locking the drive to the valve body, wherein the fastening unit has a bayonet cap comprising a clamping ring and an additional central retightening unit in the form of a union nut screwed on the clamping ring, wherein the drive housing is formed in several parts and has an attachment housing part, wherein the retightening unit surrounds the attachment housing part in circumferential direction, the attachment housing part supporting the retightening unit such that the retightening unit is able to push the attachment housing part axially towards the diaphragm, an axial tightening force being generated by the retightening unit, wherein the fastening unit and the drive housing are configured such that the diaphragm is laterally visible at the circumference.
2. The diaphragm valve according to claim 1, wherein the clamping ring has projecting claws which engage behind valve-side projections.
3. The diaphragm valve according to claim 2, wherein the retightening unit engages the clamping ring and can shift the clamping ring in axial direction.
4. The diaphragm valve according to claim 1, wherein the attachment housing part presses the diaphragm against the sealing seat by means of a circumferential edge.
5. The diaphragm valve according to claim 4, wherein the retightening unit has a supporting face via which it is axially supported by the drive housing to press the drive housing axially towards the diaphragm and wherein the supporting face rests on a shoulder of the attachment housing part.
6. The diaphragm valve according to claim 1, wherein the attachment housing part is configured in a bell-shaped manner having a hollow interior and receives in its hollow interior the fastening of a drive spindle along with the diaphragm.
7. The diaphragm valve according to claim 1, wherein the clamping ring has wing tightening claws which axially engage around a radial flange portion on the valve body.
8. The diaphragm valve according to claim 1, wherein the clamping ring has radially projecting hooks which engage mushroom holders on the side of the valve seat.
9. A diaphragm valve, comprising at least one valve body which has at least one inlet, at least one outlet, at least one flow channel and at least one shutoff web dividing the flow channel into channel portions, a diaphragm resting on a circumferential sealing seat of the valve body, a drive having a drive housing, the drive being coupled to the diaphragm to press the diaphragm against the shutoff web for closing the valve, and a fastening unit for detachably locking the drive to the valve body, wherein the fastening unit has a bayonet cap comprising a clamping ring and an additional central retightening unit in the form of a union nut screwed on the clamping ring, wherein the drive housing is formed in several parts and has an attachment housing part, wherein the retightening unit surrounds the attachment housing part in circumferential direction, the attachment housing part supporting the retightening unit such that the retightening unit is able to push the attachment housing part axially towards the diaphragm, an axial tightening force being generated by the retightening unit, wherein the clamping ring has radially projecting hooks which engage mushroom holders on the side of the valve seat.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION
(7)
(8) The flow channel 16 has two channel portions which begin on both sides of a shutoff web 18.
(9) The shutoff web 18 is usually an edge of an overflow opening between the channel portions which can however optionally be closed by a diaphragm 20.
(10) The diaphragm 20 covers an opening above the shutoff web 18 in the valve body 10 which can be seen in
(11) A drive 24 for switching the diaphragm 20 and thus the valve is represented for an upward and downward movement of the diaphragm 20. The drive 24 is in particular a linear drive which can be operated manually, pneumatically, hydraulically or electrically.
(12) The drive 24 has an outer housing which has several parts, more specifically a main housing 26, among other things, which is preferably cylindrical, and an attachment housing part 28 which is mounted between the main housing 26 and the valve body 10 and which is in the present case substantially configured in a bell-shaped manner.
(13) The connection between the drive housing 24 and the valve body 10 is configured as a demountable connection, namely via a bayonet cap 30 on the one hand and a retightening unit 32 on the other hand, which form together a fastening unit.
(14) The bayonet cap 30 comprises a clamping ring 34 having projecting claws, according to
(15) The clamping ring 34 rests on the inside in a centered manner on a cylindrical surface 42 of the attachment housing part 28 (see
(16) A closed circumferential edge 48 on an end face of the attachment housing part 28, here on an outwardly projecting ring flange 80 tightly presses the diaphragm 20 at the circumferential edge thereof against the sealing seat 22 (see
(17) The diaphragm 20 is coupled to the attachment housing part 28 for joint rotation therewith by a form-fit, more specifically by projections visible in
(18) As is clearly visible in
(19) The retightening unit 32 with a union nut 62 serves to provide a fastening unit along with the bayonet cap 30 for a detachable arresting of the drive 24 to the valve body 10.
(20) The retightening unit 32 is configured as a union nut 62 having an inwardly projecting closed circumferential ring flange 64 which rests against a shoulder 66 of the attachment housing part 28 via a supporting face 67.
(21) The union nut 62 has an internal thread which receives an external thread of the clamping ring 34 (see
(22) In
(23) The lifting spindle 72 is axially displaced by the drive mechanism or manually.
(24) At the lower end, the lifting spindle 72 is coupled to the diaphragm 20 via a coupling part 74 and more specifically in a generally form-fitting manner as shown in
(25) The main housing 26 comprises a substantially cylindrical outer wall and a screwed-in end wall 76 which forms a guiding face for the housing attachment part 28, more specifically a pivot bearing surface. The main housing 26 can be rotated arbitrarily with respect to the attachment housing part 28 to position the energy and/or signaling terminals in an optimum manner, for example.
(26) As can be seen in particular from
(27) To fasten the drive 24, the union nut 62 is first rotated in a loose manner such that with reference to
(28) The clamping ring 34 creeps downwards until it abuts on the end face against the ring flange 80 of the attachment housing part 28 which projects outwards like a shoulder. In this position, the drive 24 is placed onto the valve body 10. By the engagement on the wing tightening claws 36 for example, the bayonet cap 30 is then closed, the claws 36 being easily inserted into the radial flange portions 38 by oblique surfaces which slide onto each other. The retightening unit 32 is then actuated by rotating the union nut 62. By the support by the shoulder 66, the union nut 62 pulls the axially guided clamping ring 34 upwards, i.e., towards the drive 24 so that the clamping force is increased uniformly and centrally by one single actuation or, in other terms, the attachment housing part 28 is pressed axially downwards.
(29) As is in particular visible in
(30) The embodiment according to
(31) In the embodiment of
(32) In this embodiment, the bayonet cap 30 is however configured in a different manner. Here, the clamping ring 34 has claws in the form of hooks 90 which project radially at one end and form forks 92 open on one side in the circumferential direction. Mushroom shaped holders 94 are present at the valve body 10 in one piece or by their own parts which can be molded screws, for example.
(33) In this case, the drive 24 is also placed onto the valve body 10 along with the fastening unit mounted thereon, and the clamping ring 34 is then rotated such that the holders 94 enter the forks 92 with their mushroom heads. The fastening unit is then further axially pretensioned by the retightening unit 32 to clamp the diaphragm 20 at the circumference.
(34) The diaphragm 20 is also visible on the circumferential side in this embodiment.
(35) It must be emphasized that the different valve bodies 10 and bayonet caps 30 may of course arbitrarily be combined with each other.