The present invention concerns a seal, lead-through or transit for cables, pipes or wires. The invention especially concerns a compressible part or parts of the seal or transition, which part or parts is to surround a cable or pipe.
In the prior art there are cable transitions or the like having a frame, inside which a number of modules to receive cables, wires or pipes are placed. The modules are made of an elastic material e.g. rubber or plastics and are thus compressible. Inside the frame normally a number of modules are received side by side in one or more rows together with some kind of compression unit. The compression unit is placed between the frame and the modules in such a way that when the compression unit is expanded the compressible modules will be compressed around the cables, wires or pipes. For ease of description the expression “cable” is mainly used in this description, but it should be construed broadly and a person skilled in the art realises that it normally also covers pipes or wires.
Another type of seal, cable transition, pipe penetration etc. has a general cylindrical form and is to be received in a sleeve in a wall or an opening in a wall. To function in the desired way the seal should fit snugly into the sleeve or the opening of the wall in which it is received and the seal should be adaptable to the actual mounting dimension. The mounting dimension is dictated by the inner diameter of the sleeve or the opening. The seal has a cylindrical compressible body, which is compressed axially between fittings at the opposite ends of the compressible body. By the axial compression the cylindrical body will expand radially both inwards and outwards. Furthermore, the pipes or cables received may have different outer diameters, and, thus, the module should be adaptable to cables or pipes having different outer diameters.
Seals or transitions of both the above kinds are used for sealing in many different environments, such as for cabinets, technical shelters, junction boxes and machines. They are used in different industrial environments, such as automotive, telecom, power generation and distribution, as well as marine and offshore. The seals or transitions may have to seal against fluid, gas, fire, rodents, termites, dust, moisture etc., and may receive cables or wires for electricity, communication, computers etc., pipes for different gases or liquids such as water, compressed air, hydraulic fluid and cooking gas or wires for load retention.
The parts receiving a single cable etc. of both the types discussed above often have a pack of peelable layers or sheets on the inside. The layers or sheets are peeled off one-by-one until the inner diameter of the part is adapted to the outer diameter of the cable received in said part. The sheets adhere strong enough to each other to stay together and at the same time loose enough to enable the sheets to be peeled off from the stack, either one-by-one or a number of sheets together. In some embodiments there are also peelable layers or sheets on the outside, making it possible to adapt the outer dimensions of for instance a circular seal to a specific opening or sleeve.
A person skilled in the art realises that the exact shape and form of the different parts, including the layers, may vary without departing from the gist of the present invention. For example the pack of layers may have another cross sectional form than circular.
The cables etc. are normally forced to go through the middle or centre of a compressible part of the seal or transition. However, in many installations the cables are displaced from the middle of the compressible part, due to available space, the position of the cable before and after the frame etc. Depending on the type of cable used and the dimensions of it, forcing a cable, wire or pipe through the middle of a compressible part may give relatively high forces on a module, cable, wire and/or pipe. Such forces may impair the sealing effect of the seal or transition. Furthermore, if the cables or the like are forced to go through the centre of the compressible parts such as modules or seals, the risk of rupture increases.
In view of the above the seals or transitions are provided with means to receive cables or pipes that are placed offset in relation to a module or seal to receive one of said cables or pipes. Thus, in many instances there is a need of being able to adapt the seal or transition to the exact position of a cable or a pipe to be received. According to one aspect of the present invention this is accomplished in that an opening of a compressible part of the seal or transition is placed eccentrically in said compressible part.
This invention may be useful when a seal is to be mounted around existing, already mounted pipes and/or cables.
Further objects and advantages of the present invention will be obvious to a person skilled in the art when reading the detailed description below of at present preferred embodiments.
The invention will be described more closely below by way of an example and with reference to the enclosed drawings. In the drawings:
A common type of seals or transitions for cables and/or pipes is indicated in
An alternative system including a frame is described in the simultaneously filed application entitled “Sealing System”, filed by the applicant of the present application. This application is hereby incorporated by reference.
In
The module 19 of
Alternative embodiments of the modules are given in the simultaneously filed applications entitled “A Pipe or Cable Lead-Through having a Part Indicating Compression”, “A Module of a Pipe or Cable Lead-Through having Grooves on Opposite Sides”, “Pipe or Cable Lead-Through Blocks”, “Modules of a Pipe or Cable Lead-Through having Alternating Geometry”, “A Pipe or Cable Lead-Through having Modularized Modules”, “A Pipe or Cable Lead-Through having Penetrateable Modules” and “A Pipe or Cable Lead-Through having Modules with a Dimensioning Function”, filed by the applicant of the present application. In one embodiment the modules are separated from a stack of module halves sticking together, as described in the simultaneously filed application named “Modules of Pipe or Cable Lead-Through Sticking Together”, filed by the applicant of the present application. These applications are hereby incorporated by reference.
In order to be able to receive a cable or pipe being displaced from the middle of a module 19 to receive the cable or pipe a number of different modules 19 are arranged. The modules may have partition lines 21 between a first and second module part 7, 8 placed at different heights. Also the openings 20 to receive the cables or pipes may be placed in different positions along the partition line 21. If in use a cable or pipe is displaced in relation to a module 19, which is to receive the cable or pipe, a module 19 having suitable positions for the partition line 21 and the opening 20 along the partition line 21 is chosen. A person skilled in the art realises that if a module 19 having an eccentrically placed opening 20 is turned 90° in either direction or 180°, it may be used for cables or pipes placed in four different cross section areas in view of the module 19. Thus, the position of the opening 20 receiving a cable or pipe is adjustable.
In
In
In other embodiments (not shown) there may be one or more through openings, for receiving a cable or pipe each, in the fitting 13 and the outer compressible body 14. Also such openings will normally have peelable sheets, in the opening of the outer compressible body 14. As stated above the fitting 13 and the outer compressible body 14 will always have the same mutual positions.
The shown cylindrical seal can be used when sealing existing cables or pipes, thus, as a retrofit. The inner and/or outer compressible bodies 14, 17 are turned to place the opening 16 of the inner compressible body 17 in position to receive the cable or pipe. The seal is relatively easy to place around a cable or pipe, as all parts of the seal are made of two separate parts brought together to form said part.
In use the inner diameter of the opening of the inner compressible body 17 is adapted to the outer diameter of a cable or pipe to be received inside the seal. Often the inner diameter of the opening of the inner compressible body 17 is adapted by peeling off an appropriate number of sheets.
In
Even though the partition line between the module parts 22 of
The sheets may be arranged in many different ways and with different features as reflected in the simultaneously filed applications entitled “A Pipe or Cable Lead-Through having Interconnected Layers”, “A Pipe or Cable Lead-Through having Layers of Different Thickness”, “Cohering Between Layers of a Pipe or Cable Lead-Through”, “Identification of Layers of a Pipe or Cable Lead-Through” and “A Pipe or Cable Lead-Through having Layers of Alternating Geometry”, filed by the applicant of the present application. These applications are hereby incorporated by reference.
In further alternative embodiments the seal, lead-through or transit of the present invention is furnished with means for lubrication as shown in the simultaneously filed application entitled “Lubrication of a Pipe or Cable Lead-Through”, filed by the applicant of the present application. This application is hereby incorporated by reference.
The seal, lead-through or transit of the present invention may also have means having openings, the direction of which may be altered in order to receive cables, pipes or wires that are inclined in relation to the seal, lead-through or transit. The flexibility regarding inclined cables, pipes or wires may be accomplished in that an inner part receiving the cable etc. is received turnable inside an outer fixed part. Such an arrangement is described in the applicant's international patent application PCT/SE2008/050940.
In further embodiments the modules and/or the frame has means to give improved EMC (electromagnetic compatibility) properties. In still further embodiments the modules and/or the frame have intumescent material to increase fire resistance.
Number | Date | Country | Kind |
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0950044 | Feb 2009 | SE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/SE2010/050122 | 2/2/2010 | WO | 00 | 9/30/2011 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2010/090586 | 8/12/2010 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
649469 | McConnell | May 1900 | A |
651425 | McConnell | Jun 1900 | A |
2172429 | Yates | Sep 1939 | A |
2790464 | Stephens et al. | Apr 1957 | A |
3563825 | Segura | Feb 1971 | A |
3798349 | Thompson | Mar 1974 | A |
4031312 | Coleman et al. | Jun 1977 | A |
4259542 | Tehan et al. | Mar 1981 | A |
4538021 | Williamson, Jr. | Aug 1985 | A |
4733016 | Twist et al. | Mar 1988 | A |
5123453 | Robbins | Jun 1992 | A |
5276280 | Ball | Jan 1994 | A |
5286040 | Gavin | Feb 1994 | A |
5416271 | Birmingham | May 1995 | A |
5690147 | Cridland et al. | Nov 1997 | A |
5697194 | Gignac et al. | Dec 1997 | A |
5711536 | Meyers | Jan 1998 | A |
5738147 | Mestres | Apr 1998 | A |
5783776 | Birmingham et al. | Jul 1998 | A |
5882014 | Gavin | Mar 1999 | A |
6376777 | Ito et al. | Apr 2002 | B1 |
6390135 | Shimizu | May 2002 | B1 |
6462275 | Daoud | Oct 2002 | B1 |
6521840 | Kreutz | Feb 2003 | B1 |
6555750 | Kiely | Apr 2003 | B2 |
6668864 | Shimizu | Dec 2003 | B2 |
6817631 | Gavin | Nov 2004 | B1 |
6994355 | Brochu et al. | Feb 2006 | B2 |
7002077 | Pyron | Feb 2006 | B2 |
7015394 | Desard et al. | Mar 2006 | B2 |
7371969 | Hedstrom | May 2008 | B2 |
7442884 | Ball et al. | Oct 2008 | B2 |
8609990 | Levi | Dec 2013 | B2 |
20030052459 | Shorey et al. | Mar 2003 | A1 |
20030070829 | Koessler | Apr 2003 | A1 |
20030213525 | Patel et al. | Nov 2003 | A1 |
20040089359 | Koerner | May 2004 | A1 |
20040169341 | Hellkvist | Sep 2004 | A1 |
20050087934 | Richter | Apr 2005 | A1 |
20070199728 | Hedstrom | Aug 2007 | A1 |
20090130891 | Milton | May 2009 | A1 |
20090194644 | Lundborg | Aug 2009 | A1 |
20110033165 | Guest | Feb 2011 | A1 |
Number | Date | Country |
---|---|---|
1378715 | Nov 2002 | CN |
4405328 | Aug 1995 | DE |
10313306 | Jul 2004 | DE |
2167149 | May 2002 | ES |
2186443 | Aug 1987 | GB |
2005-282763 | Oct 2005 | JP |
2006-0110320 | Oct 2006 | KR |
WO 2008140399 | Nov 2008 | SE |
Entry |
---|
Office Action for Korean Patent Application No. 10-2011-7019727 issued on May 12, 2016 and English translation thereof. |
Number | Date | Country | |
---|---|---|---|
20120018959 A1 | Jan 2012 | US |