The present invention relates generally to pipe coupling assemblies, such as those used to sealingly connect pipes together or to repair breaks or leaks in pipes, and particularly for a pipe coupling with structure that prevents shearing of fasteners, such as rivets or screws.
Many kinds of removable band-type couplings for pipes exist in the art. It is noted that throughout the specification and claims, the term “pipe” encompasses any kind of generally cylindrical object, and the terms “clamp” and “coupling” are used interchangeably.
It is known to use a spanning element, known as a bridge or clamp bridge 6, in such couplings. The bridge 6 spans the abovementioned gap located at the tightening mechanism. The bridge helps keep the sealing ring or rings 3 in place when tightening the clamp. Bridge 6 is fastened to band 2 by means of one or more mechanical fasteners 7, such as screws or rivets.
A problem can occur upon tightening the tightening fasteners 5. The tightening action applies a radially-inward clamping force on the sealing ring or rings 3. Once the ring 3 is fully compressed on the pipe, further tightening force is applied to the tightening fasteners 5 to continue to bring the two clamping members 4 towards each other. This additional clamping force must be borne by the mechanical fasteners 7 that attach the bridge 6 to band 2. Sometimes the force is so great that mechanical fasteners 7 deform or even shear.
The present invention seeks to provide an improved pipe coupling assembly, as is described more in detail further below. In the present invention, the pipe coupling includes structure that prevents shearing of fasteners, such as rivets or screws, such as those used to secure a bridge to the band of the coupling.
There is provided in accordance with an embodiment of the present invention a pipe coupling assembly including a band having an inner annular seal element wrappable around a pipe, opposing clamp members that extend from the band, at least one tightening element for clamping together the clamp members, a bridge secured to the band with one or more bridge securing fasteners, the bridge spanning a gap between the opposing clamp members, and anti-shearing structure coupled to the bridge and the band, configured to prevent shearing or deformation of the bridge securing fasteners.
In accordance with an embodiment of the present invention, the anti-shearing structure includes a male and female connection between the bridge and the band.
In accordance with an embodiment of the present invention, the anti-shearing structure includes a protrusion that protrudes from the bridge and is received in an aperture formed in the band.
In accordance with an embodiment of the present invention, the anti-shearing structure includes an extension that is arranged to bear against a surface of the bridge.
In accordance with an embodiment of the present invention, an opening is formed in the bridge adjacent the anti-shearing structure.
The present invention will be understood and appreciated more fully from the following detailed description, taken in conjunction with the drawings in which:
Reference is now made to
Assembly 10 includes a band 12 having an inner annular seal element 14 wrappable around a pipe (not shown). Band 12 is typically, but not necessarily, made of metal and annular seal element 14 is typically, but not necessarily, made of an elastomer, such as natural or synthetic rubber, e.g., EPDM (ethylene propylene diene monomer) or neoprene. In the illustrated embodiment, two annular seal elements 14 are provided, each one at opposite ends of the band 12. The annular seal element 14 may include a foldable seal, a multi-layer seal (whose layers may be separated and removed from each other to accommodate different diameter pipes), or other kinds of seals.
Opposing clamp members 18 extend radially outwards from ends of band 12 and are formed with mounting apertures 19. Clamp members 18 are clamped and tightened together with one or more tightening elements 20, such as but not limited to, bolts which are tightened by nuts.
In the illustrated embodiment, band 12 and annular seal element 14 are split. However, the invention can alternatively be carried out with a configuration in which band 12 and annular seal element 14 are constructed of two opposing halves.
In the illustrated embodiment, the pipe coupling assembly 10 includes a seal pressing device 22, disclosed in U.S. Pat. No. 9,151,419. However, the invention can be carried out without a seal pressing device.
A bridge 26 may span the gap located between the opposing clamp members 18. Bridge 26 helps keep annular seal element 14 in place when tightening the tightening elements 20. Bridge 26 may be fastened to band 12 by means of one or more bridge securing fasteners 28, such as screws or rivets. Bridge 26 may be made of a suitably strong, yet bendable material, such as but not limited to, stainless steel (e.g., AISI 304).
Reference is made additionally to
As seen in
As seen in
Number | Name | Date | Kind |
---|---|---|---|
3700008 | Hackman | Oct 1972 | A |
4360227 | Bridges | Nov 1982 | A |
5286064 | Bridges | Feb 1994 | A |
5362107 | Bridges | Nov 1994 | A |
5765876 | Bridges | Jun 1998 | A |
5769467 | Bridges | Jun 1998 | A |
20110095520 | Krausz | Apr 2011 | A1 |
20130154259 | Chiproot | Jun 2013 | A1 |
20140306449 | Prevot | Oct 2014 | A1 |
Number | Date | Country |
---|---|---|
3017667 | Nov 1980 | DE |
8432519 | Jul 1985 | DE |
2932145 | Oct 2015 | EP |
Entry |
---|
European Search Report, EP 20159076, dated Jul. 13, 2020. |
Number | Date | Country | |
---|---|---|---|
20200271255 A1 | Aug 2020 | US |