Switching valve for the regulation of a mass flow
10041608 ยท 2018-08-07
Assignee
Inventors
- Joan Aguilar (Fellbach, DE)
- Rainer MAURER (Backnang, DE)
- Markus Nagel (Remseck, DE)
- Jean-Jacques Robin (Berglein, DE)
- Kai SCHAUWECKER (Fellbach, DE)
Cpc classification
F16K31/408
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B2341/067
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60H1/00485
PERFORMING OPERATIONS; TRANSPORTING
F25B41/325
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G05D7/005
PHYSICS
F25B41/345
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B41/34
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02B30/70
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
International classification
F16K31/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60H1/00
PERFORMING OPERATIONS; TRANSPORTING
F16K31/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Switching valve for controlling a mass flow in a cold or hot circuit. The valve includes a valve housing having a feed opening and a discharge opening; a valve piston which has a valve-closure member directed towards the discharge opening and which, in a closed position, abuts a valve seat of a through-bore between the feed opening and the discharge opening; a pilot valve having a pilot bore in the valve piston, which bore opens into the through-bore and traverses the valve piston; a path-generating device having an actuatable ram accommodating a closure member which closes the pilot bore and, with the closure member, can be moved into an opening position which opens the pilot bore; and a bypass duct formed between the feed opening and the pilot bore. At least one connection element forcibly transfers at least some of the stroke movement of the ram onto the valve piston.
Claims
1. Switching valve for the regulation of a mass flow in an air conditioning or heating circuit, having a valve housing which has a supply opening and a discharge opening, having a valve piston which has a valve closing member pointing towards the discharge opening and, in a closing position, adjoins a valve seat arranged on a through bore between the supply opening and the discharge opening, having a pilot valve opposite the valve closing member, said pilot valve having a pilot hole in the valve piston, said pilot hole flowing into the through bore and passing through the valve piston, having a path generation device which has an actuatable ram which receives a closing body that closes the pilot hole and is able to be transferred with the closing body into an opening position that releases the pilot hole, and having a bypass channel formed between the supply opening and the pilot hole, wherein at least one connection element is provided between the ram and the valve piston, said connection element transferring at least one part of a lifting movement of the ram forcibly onto the valve piston, and wherein said connection element is formed as a tie rod which is fastened onto the ram or the closing body and extends through the pilot hole.
2. Switching valve according to claim 1, wherein the connection element is formed as a member that only transfers a tensile force.
3. Switching valve according to claim 1, wherein the connection element controls a lifting of the valve piston out of the valve seat of the through bore with temporal offset after the lifting of the closing body from the pilot hole.
4. Switching valve according to claim 1, wherein the connection element has a bar element on whose end being guided through the pilot hole a star-shaped or cross-shaped profile or a connection is provided.
5. Switching valve according to claim 1, wherein the path generation device is formed as a monostable or bistable solenoid actuator.
6. Switching valve according to claim 1, wherein the valve piston comprises a first guide section in the region of the pilot hole and a second guide section opposite and spaced apart from the first guide section.
7. Switching valve according to claim 6, wherein the second guide section is formed by an end region of the pilot hole in the valve piston, said end region leading into the discharge opening.
8. Switching valve according to claim 6, wherein the first guide section receives a wiper element which adjoins a wall section of a chamber or of an anchor tube between the supply opening and the discharge opening.
9. Switching valve according to claim 6, wherein the bypass or bypass channel is formed between the first guide section and a wall section of a chamber or an anchor tube.
10. Switching valve according to claim 6, wherein the closing body is arranged immersibly or in a spring-mounted manner opposite the ram or immersibly and in a spring-mounted manner opposite the ram.
Description
(1) The invention and further advantageous embodiments and developments of the same are described and illustrated below with the aid of the examples depicted in the drawings. The features to be gleaned from the description and drawings may be applied individually in of themselves or as a multiplicity in any combination according to the invention. Shown are:
(2)
(3)
(4)
(5)
(6)
(7)
(8) A schematic sectional view of a first embodiment of a switching valve 11 according to the invention is depicted in
(9) The chamber 17 in the valve housing 12 is designed to open out towards a housing side 18, on which a path generation device 21 is releasably fastened. According to the exemplary embodiment in
(10) The valve piston 27 has, on its end opposite the valve closing member 26, a pilot hole 32 which is able to be closed with a closing body 33. The pilot hole 32 and the closing body 33 form a pilot valve 31. This closing body 33 is arranged fixedly on a ram 35, said ram being able to be moved up and down and back and forth by the path generation device 21. Alternatively, the closing body 33 may also be provided on the ram 35 according to the embodiment in
(11) The path generation device 21 comprises, according to this exemplary embodiment, an anchor tube 36, to which a core 37 is allocated. A coil 38 encloses the anchor tube 36, which is in turn integrated into a yoke 39. The path generation device is able to be controlled and held by electrical connection lines 41.
(12) The ram 35 is mounted moveably relative to the anchor tube 36 with interconnection of a return spring 43 to the core 37, i.e., during the current feeding of the coil 38, the ram 35 is drawn into the anchor tube 36 contrary to the elastic force of the return spring 43 and, when the coil 38 is switched off, the return spring 34 transfers the ram 35 in a closing movement and arranges the ram 35 in a closing position, as is depicted in
(13) The valve 11 depicted in
(14) The valve 11 depicted in
(15) A connection element 51 is provided between the ram 35 and the valve piston 27. This connection element 51 is, for example, formed as a cable, wire, tension rod or similar and then transfers a tensile force onto the valve piston 27 as soon as the ram 35 has been lifted from the valve piston 27so the pilot hole 32by the path generation device 21. Provision is therefore made for the first lifting movement of the closing body 33 to take place from a closing position to the pilot hole 32, without influence by the connection element 51, or for a tensile force not to be exerted by the connection element 51 from the ram 35 onto the valve piston 27. It is only after a predetermined lift, for example the complete lifting of the closing body 33 from the pilot hole 32, or later, that a forcible lifting movement of the valve piston 27 is initiated by the connection element 51. The lifting movement of the ram 35 is transferred by the connection element 51 onto the valve piston 27, such that this is forcibly lifted from the valve seat 24 of the through bore 23, as long as this is itself not lifted by the ram 35 after the opening of the pilot hole 32. It can thus be ensured that the valve 11 is opened securely after its activation by the path generation device 21.
(16) The opening movement of the valve piston 27 from the valve seat 24 may be supported by a spring element 54 as an opening spring. This spring element 54 engages between the panel 22 or a base 30 of the chamber 17 and a collar formed on the valve piston 27.
(17) An alternative embodiment of a switching valve 11 to
(18) This embodiment according to
(19) The second guide section 62 is provided opposite the first guide section 61, as emerges from
(20) Due to the supply and discharge openings 14, 15 that are designed with a greater diameter compared to the switching valve 11 according to
(21) In this embodiment, one potential use of a screen 76 is furthermore depicted, which is able to be inserted into the chamber 17 and, for example, is positioned and fixed by means of the anchor tube 36 of the path generation element 21. In the exemplary embodiment according to
(22) The connection element 51 arranged between the ram 35 and the valve piston 27 is depicted in
(23) In the embodiment according to
(24) It is furthermore depicted with enlargement in
(25) The pilot hole 32 is, for example, provided in an insertable valve seat element 93, on which a valve seat 94 is formed. Alternatively, the closing body 33 may also directly adjoin a valve seat 94 formed on the valve piston 27. The use of an insert for the formation of the valve seat 94 as a sealing piece has the advantage that both an increased level of impermeability and a noise reduction are provided during a switching process.
(26) An alternative embodiment of the detail X according to
(27)
(28) All aforementioned features are each essential to the invention in of themselves and may be combined with one another in any manner.