The invention relates to a slide valve, preferably for closing off a media-conveying line.
Such generic slide valves are used for, among other things, opening and closing lines for the conveyance of media, such as for example in purification plants with raw sewage or sludge, in chemistry involving granulated material, chemical liquids etc., in the food industry involving drinking liquids, cereals or rinsing fluids or similar.
With one such slide valve according to publication EP-A-2 216 572, a two-part housing and a slide plate that can be moved relative to the latter in order to open or close a through-opening is provided. With this slide valve, longitudinal seals are contained in the housing above the through-opening, which longitudinal seals are aligned transversely to the direction of shifting the slide plate and form a flexible seal between the housing and the slide plate on the upper side.
In addition, for the lateral and lower sealing between the slide plate and the housing, a sealing cord or the like and an end seal are provided which together form an all-round seal between the slide plate and the housing in the closed state. A permanent and secure seal is thus formed when the slide valve is closed. However, when there is a high degree of media pressure leaks may occur between the individual seals.
However, such slide valves are also used in lines for the conveyance of media with abrasive properties, such as oil sand, wherein the lines have flow-through openings with dimensions of up to 1,000 mm and are operated at high pressures. For example, when oil sand is to be conveyed, the latter contains mixtures of minerals which are the size of grains of sand, the size of a fist or clump-sized. Since these lines are generally laid outdoors, they are also subjected to large temperature differences. Additional demands are therefore made of the slide valve so that it always performs the required sealing function and thereby has a long service life.
The object underlying the present invention was to improve a slide valve such that it is easy to produce and to assemble and thereby guarantees a reliable and permanent seal.
According to the invention, this object is achieved by a slide valve including a housing defining a through-opening, a slide plate movable in the housing between a closed position closing the through-opening and an open position in which the through-opening is open to enable conveyance of media through the slide valve, and a single-piece sealing arrangement for providing sealing for the slide valve. The sealing arrangement includes a profile that partially surrounds the through-opening, has first and second lateral faces on opposite sides of the profile, and includes first and second legs, at least one first transverse longitudinal seal on a first side of the through-opening having first and second ends connected to the first lateral face of the profile with the first end being connected to the first leg and the second end being connected to the second leg, and at least one second transverse longitudinal seal on the first side of the through-opening having first and second ends connected to the second lateral face of the profile with the first end being connected to the first leg and the second end being connected to the second leg.
The slide valve according to the invention makes provision to form the sealing arrangement as a single piece from a profile that partially surrounds the through-opening as well as from the transverse longitudinal seals connected thereto.
With this design of the sealing arrangement it is possible to produce the slide valve in a compact construction.
Moreover, when conveying, for example, oil sand, great demands are made upon the slide valve due to the abrasion that occurs and the clogging with thickened material. With the single-piece sealing arrangement according to the invention made of an appropriate plastic, the best requirements in this regard for a long service life are also fulfilled.
With this single-piece design of the sealing arrangement, another considerable advantage is offered by it first of all being inserted as a single piece into one housing part, and the other housing part then being able to be correspondingly attached so that simple assembly is thus made possible.
Further advantageous details of the slide valve within the framework of the invention are defined in the dependent claims.
This slide valve 10 is designed, for example, for closing off lines conveying oil sand. However, it could needless to say also be used for closing off the conveyance of other media.
A sealing arrangement 20 is provided for totally sealing off the slide valve to the outside and between the slide plate 15 and the housing 11 in the closed state. For this purpose, above the through-opening 14 on both sides of the slide plate 15, in each case two transverse, lower longitudinal seals 21 or upper longitudinal seals 22 as well as a seal acting on the outside of the slide plate both laterally and on the lower rounding are contained in the housing parts 12, 13.
As is evident in particular from
This single-piece sealing arrangement 20 is advantageously produced from a plastic for which polyurethane, which is very wear-resistant, is preferably used. In this connection, it can be cast, be produced by a 3D printer and/or also be produced from one piece by machining. Theoretically, the profile 23 could, for example, be connected to the longitudinal seals 21, 22 by welding, vulcanizing or the like to form this single-piece sealing arrangement 20.
This profile 23 formed in a U shape consists of an arched part 23′ and legs 23″ passing from the latter. At the ends of these legs 23″, on both sides, two longitudinal seals 21, 22, spaced apart from one another, are each connected to the profile 23, these longitudinal seals each bordering on the lateral face of the profile.
In its arched part 23′, the profile 23 is provided with a rounding corresponding to the through-opening 14 and is fitted in the housing 11 such that with its inside, at this rounding it runs almost flush with this bore hole 16 of the housing that forms the through-opening 14.
Furthermore, in these housing parts 12, 13 annular bodies 12′, 13′ are used with the bore hole 16 which advantageously engage behind the graduated profile 23 in order to hold the latter.
These longitudinal seals 21, 22 that run spaced apart from one another can each be introduced into a longitudinal groove 17, 18 in the respective housing part 12, 13 which extends transversely to the direction A of moving the slide plate 15 and are mounted therein such as to be able to move in the transverse direction.
Moreover, according to
With these adjusting means 19, in the middle or also in the end region of the upper longitudinal seals 22 or in the end region of the lower longitudinal seals 21, as well as with the adjusting means 19′ pressing transversely onto the legs 23″ of the profile, it is intended to be able to press the longitudinal seals 21, 22 or these legs 23″ against the slide plate 15 in order to ensure the tightness in this region of the slide valve 10, this only being required after a certain operating time if leaks occur.
Accordingly, reinforcement plates or reinforcement strips 26, 26′ corresponding to the adjusting means 19, 19′ are respectively integrated into the longitudinal seals 21, 22 or the legs 23″, which reinforcement plates or strips are advantageously produced from a metal sheet and absorb and distribute the adjusting forces over the longitudinal seals.
According to
The longitudinal seals 21, 22 and the profile 23 have a rectangular cross-section at the rear, are each provided on both sides with a recess 32, 33, and on the inside are provided with a level bearing surface 31, 35 interacting with the outside of the slide plate 15, on the profile 23, this inside bearing surface 35 having a width that corresponds approximately to the thickness or the slide plate 15.
A reinforcement element 24, that is preferably integrated over the entire length, is embedded in the profile 23. On the legs 23″ of the profile 23, the reinforcement element 24 runs approximately in the center of the profile 23, while in the arched part 23′ of the profile 23, the reinforcement element is disposed in the outer region of the profile 23, as is evident in
Advantageously, this reinforcement element 24 projects with both ends out of the profile 23 and the housing 11 and is braced against the housing by screws 24′ or the like, as indicated in
According to the invention, the sealing arrangement 50 is formed as a single piece from a profile 53 that partially surrounds the through-opening 44 and from the transverse longitudinal seals 51, 52 connected to the profile.
This U-shaped profile 53 extends almost to the upper end of the housing 41 and is connected here to the longitudinal seals 51, 52 disposed on both sides of the latter so that the through-opening 44 is sealed all round. This profile 53 is composed of a channel-shaped lower part 53′ which runs flush to this rounding formed by the through-opening 44 and legs 53″ passing from this part 53′ on both sides.
Both the slide plate 45 and the single-piece sealing arrangement 50 according to the invention can be pushed into the housing 45 from above, and this results in simple fitting of the slide valve 40. Advantageously, a cover (not detailed) can be fastened onto the housing 41.
Moreover, a recess 46 is formed on the upper side of the housing 41, which recess has dimensions such that the longitudinal seals 51, 52 can be placed therein with almost no play. On their inner surfaces 51′, 52′ touching the slide plate 45 the longitudinal seals 51, 52 preferably have an undulating surface, as seen in the direction of pushing, so that lip-like overlays are formed which extend along the closing plate surfaces over the entire width and form an optimal seal.
In the fitted state, these longitudinal seals 51, 52 and the legs 53″ of the profile 53 have dimensions on the inside, on the contact surfaces with the slide plate 45, such that between the slide plate 45 in the closed position and the sealing arrangement there is a contact pressure which allows one to obtain a sufficient seal.
Moreover, embedded in the profile 53 is a reinforcement element 54 preferably made of a metal and which has a rectangular cross-section.
The two longitudinal seals 56, 57 at the upper end of the profile 58 of the sealing arrangement 55 are provided in cross-section with undulating surfaces both on the outside and on the inside as seen in the direction of pushing so that in each case two elongate lip overlays 56″, 57″ and one central longitudinal groove 56′, 57′ are formed.
In addition, the two legs of the profile 58 taper or are formed conically on their outsides 58′ which are turned away from one another and/or on their lateral faces 58″ in the closing direction. Therefore, this sealing arrangement 55 can be easily inserted into the housing, and when it is worn, it can also be removed again easily. Advantageously, the corresponding surfaces of the corresponding longitudinal slot 42 are likewise formed in the housing 41 with the same conicity as the outsides 58′ and the lateral faces 58″ of the sealing arrangement 55.
Furthermore, a reinforcement element 59 which is embedded in the profile 58 is likewise included which extends downwards and on both sides almost to the upper profile end; and in addition, longitudinal ribs 61 projecting outwards to the side and running over almost its entire length are assigned to the channel-shaped lower part of the profile 58, the purpose of which is to provide a better hold of the profile in the longitudinal slot 42 within the housing 41.
The invention is sufficiently displayed by the exemplary embodiments explained above. However, it may also be illustrated by other versions. Thus, in principle, just one instead of two longitudinal seals per side could also be provided. Also, no reinforcement element or a number of reinforcement elements could also be embedded in the profile.
In principle, this profile in the arched part 23′ could also be formed with a lower side that is only slightly rounded or that is almost in a straight line instead of circularly, depending on the type of valve.
Needless to say, the longitudinal seals could also be formed in an arch or the like instead of being elongate.
Number | Date | Country | Kind |
---|---|---|---|
1361/15 | Sep 2015 | CH | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/EP2016/070509 | 8/31/2016 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2017/045923 | 3/23/2017 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
2774371 | Grannenfelt | Dec 1956 | A |
4206905 | Dobler | Jun 1980 | A |
4279402 | Wey et al. | Jul 1981 | A |
4429710 | Grieves | Feb 1984 | A |
4522224 | Stadler et al. | Jun 1985 | A |
4546788 | Stadler et al. | Oct 1985 | A |
4646777 | Stadler et al. | Mar 1987 | A |
4742990 | Stadler et al. | May 1988 | A |
5271426 | Clarkson et al. | Dec 1993 | A |
5549278 | Sidler | Aug 1996 | A |
5653423 | Young | Aug 1997 | A |
6010112 | Sidler | Jan 2000 | A |
7014164 | Sidler | Mar 2006 | B2 |
7946556 | Trott | May 2011 | B1 |
8091194 | Clatot | Jan 2012 | B2 |
8235355 | Sidler | Aug 2012 | B2 |
8327870 | Sidler | Dec 2012 | B2 |
8365760 | Sidler | Feb 2013 | B2 |
20050218368 | Vanderberg et al. | Oct 2005 | A1 |
20060255305 | Comstock et al. | Nov 2006 | A1 |
20080199291 | Clatot | Aug 2008 | A1 |
20090121173 | Devine, Jr. | May 2009 | A1 |
20140021397 | Painter | Jan 2014 | A1 |
Number | Date | Country |
---|---|---|
523453 | May 1972 | CH |
2658809 | Jun 1978 | DE |
102005004711 | Mar 2006 | DE |
202007001562 | Mar 2007 | DE |
102009011363 | Jan 2010 | DE |
2216572 | Aug 2010 | EP |
1886322 | Mar 2013 | EP |
2005098288 | Oct 2005 | WO |
2006124522 | Nov 2006 | WO |
2012024195 | Feb 2012 | WO |
2012100287 | Aug 2012 | WO |
2017045923 | Mar 2017 | WO |
Entry |
---|
Abstract of DE 202007001562 U1. |
Abstract of DE 2658809 A1. |
Abstract of DE 102009011363 B3. |
Number | Date | Country | |
---|---|---|---|
20180252322 A1 | Sep 2018 | US |