The disclosure relates to pipe clamping. More particularly, the disclosure relates to clamping for construction strut systems.
Construction struts or conduit struts are ubiquitous. Typically formed of steel, they have a generally rectangularized C-shaped cross section. Many have arrays of holes along the base and/or sidewalls.
U.S. Pat. No. 8,322,661 disclosed several pipe clamping systems for use with such struts.
One aspect of the disclosure involves a pipe clamp adaptor for securing a pipe. The pipe clamp adaptor comprises the unitarily molded combination of: a cradle having a concave surface for accommodating the pipe and a base surface; and a closure connected to the cradle by a living hinge for articulation between an open condition and a closed condition, first features on the cradle engageable to complementary second features of the closure to hold the closed condition.
In one or more embodiments of any of the foregoing embodiments, at opposite first and second longitudinal ends, a respective feature protrudes radially outward from an outer surface of the closure to create a channel for receiving and positioning a member that holds the adaptor.
In one or more embodiments of any of the foregoing embodiments: the first features comprise at least one first dovetail projection and at least one first dovetail compartment; and the second engagement features comprise at least one second dovetail projection and at least one second dovetail compartment.
In one or more embodiments of any of the foregoing embodiments: in the closed condition, the first dovetail projection is received in the second dovetail compartment; and the second dovetail projection is received in the first dovetail compartment.
In one or more embodiments of any of the foregoing embodiments, in the assembled condition a face of the first dovetail projection contacts a face of the second dovetail projection.
In one or more embodiments of any of the foregoing embodiments, a face of the first dovetail projection forms a base of the first dovetail compartment; and a face of the second dovetail projection forms a base of the second dovetail compartment.
In one or more embodiments of any of the foregoing embodiments, the living hinge is a twin hinge having a pair of webs separated by a thicker intermediate portion.
In one or more embodiments of any of the foregoing embodiments, the pipe clamp adaptor is molded from polyethylene in the open condition.
In one or more embodiments of any of the foregoing embodiments, a system comprises: the pipe clamp adaptor; and a metallic member securing the adaptor to environmental structure.
In one or more embodiments of any of the foregoing embodiments: the environmental structure comprises a construction strut, the strut comprising a channel having a pair of rims; and the base surface contacts the strut rims.
In one or more embodiments of any of the foregoing embodiments: the metallic member is a clevis hanger; the environmental structure suspends the clevis hanger from above; and the base surface faces or contacts a cross-bolt of the clevis hanger.
Another aspect of the disclosure involves a pipe clamp system for securing a pipe to a construction strut. The strut comprises a channel having a pair of rims. The system comprises an adaptor comprising the unitarily molded combination of: a base surface for contacting the strut rims; a cradle housing; a closure connected to the cradle by a living hinge, first features on the closure engaged to or engageable to complementary second features of the cradle to resist disengagement. The system further comprises a clamp having: a first member having a first end portion for capture by the channel; and a second member having a first end portion for capture by the channel.
In one or more embodiments of any of the foregoing embodiments: the first features comprise at least one first dovetail projection and at least one first dovetail compartment; and the second engagement features comprise at least one second dovetail projection and at least one second dovetail compartment.
In one or more embodiments of any of the foregoing embodiments: in the closed condition the first dovetail projection is received in the second dovetail compartment; and the second dovetail projection is received in the first dovetail compartment.
In one or more embodiments of any of the foregoing embodiments, in the assembled condition a face of the first dovetail projection contacts a face of the second dovetail projection.
In one or more embodiments of any of the foregoing embodiments: a face of the first dovetail projection forms a base of the first dovetail compartment; and a face of the second dovetail projection forms a base of the second dovetail compartment.
In one or more embodiments of any of the foregoing embodiments, a combination comprises the system and further comprises the construction strut and the pipe.
In one or more embodiments of any of the foregoing embodiments: the base surface contacts the strut rims; the first features on the closure are engaged to the complementary second features of the cradle; the adaptor encircles the pipe; and the first member first end portion and the second member first end portion are captured by the channel so that the clamp holds the adaptor to the strut.
In one or more embodiments of any of the foregoing embodiments, a method for using the system comprises: engaging the first features on the closure to the complementary second features of the cradle; and securing the adaptor to the strut via the clamp.
In one or more embodiments of any of the foregoing embodiments, the method further comprises inserting the pipe into the adaptor.
In one or more embodiments of any of the foregoing embodiments, the inserting of the pipe is an axially transverse inserting into the adaptor before the first features on the closure are engaged to the complementary second features of the cradle.
The details of one or more embodiments are set forth in the accompanying drawings and the description below. Other features, objects, and advantages will be apparent from the description and drawings, and from the claims.
Like reference numbers and designations in the various drawings indicate like elements.
The exemplary clamp system 20 comprises an adaptor 50 and a clamp 52. The adaptor 50 surrounds and accommodates the pipe 22. The clamp 52 clamps the adaptor to the strut 24. As is discussed further below, the exemplary adaptor is unitarily formed as a single molded piece (e.g., of a non-metallic material such as a plastic). Exemplary plastic is polyethylene. Exemplary polyethylene is PE100. Contrasted with certain high friction/stiction elastomers, the use of a relatively low friction material allows relative movement of pipe and clamp such as may be required due to differential thermal expansion.
As is discussed below, the exemplary adaptor has an open as-molded condition and has a closed condition when installed to the pipe and strut. The exemplary clamp 52 is formed as a strap (e.g., a metallic strap) partially surrounding the adaptor (e.g., extending from a first end feature 60 for securing to the strut to a second end feature 60 for securing to the strut). In an installed condition of the clamp, the clamp has a general U-shape extending between the features 60. The exemplary strap portion 62 is formed as two identical pieces 64 each extending from its associated end feature 60 to a feature 66 for drawing the two pieces together. An exemplary feature 66 for drawing two pieces together comprises an end flange 66 having an aperture 68. The combined apertures 68 pass a fastener 69 securing the two pieces together. An exemplary fastener 69 is a threaded fastener (e.g., screw or bolt) with a head against one flange 66, a shaft passing through the apertures 68, and a nut on the shaft engaging the other flange 66.
The adaptor has a base or cradle portion 70 having a base surface 72 for contacting the strut rims in the installed condition. Opposite the surface 72, the cradle includes an arcuate cradle surface 74 (e.g., approximately semi-cylindrical) for cradling the pipe and forming a portion of an aperture of the adaptor that receives the pipe). The adaptor further comprises a closure 76 connected to the cradle by a living hinge 78 (
The exemplary hinge 78 is a dual axis hinge or twin hinge (alternatively identified as two hinges) wherein a pair of thin webs of the plastic material 84 and 86 (
The exemplary strap features 60 (
A second illustrated adaptor embodiment 300 (
Yet further embodiments may involve artifacts of manufacture. It may be possible to scale the clamp system directly for each nominal pipe diameter. For example, the strap width and adaptor thickness (transverse to the strut) could still be based on the strut size. However, the adaptor width and radius of curvature of its inner diameter (ID) surfaces could be proportional to the change in pipe outer diameter. Closure thickness (between its inner diameter (pipe-engaging) surface and its outer surface) could vary with pipe diameter or could be less sensitive to pipe diameter).
However, one group of variations involves reusing mold cavities used to mold adaptors for larger pipe to also mold adaptors for smaller pipe. Rather than mere scaling, spacer features may be added to the molded adaptors for the smaller pipe. For example, the portion of the mold that forms the concave surface of the cradle may be multiple pieces with removable inserts. One insert may be sized to mold the concave surface for the largest anticipated size of pipe. Smaller inserts (or no insert at all) could provide for smaller diameter pipe by allowing the molding of a spacer radially inwardly beyond what would have been the cradle ID surface and closure ID surface associated with the largest anticipated pipe.
The adaptor and strap may be made using otherwise conventional or yet-developed materials and techniques.
The use of “first”, “second”, and the like in the description and following claims is for differentiation within the claim only and does not necessarily indicate relative or absolute importance or temporal order. Similarly, the identification in a claim of one element as “first” (or the like) does not preclude such “first” element from identifying an element that is referred to as “second” (or the like) in another claim or in the description.
Where a measure is given in English units followed by a parenthetical containing SI or other units, the parenthetical's units are a conversion and should not imply a degree of precision not found in the English units.
One or more embodiments have been described. Nevertheless, it will be understood that various modifications may be made. For example, when applied to an existing basic system, details of such configuration or its associated use may influence details of particular implementations. Accordingly, other embodiments are within the scope of the following claims.
Number | Name | Date | Kind |
---|---|---|---|
2469949 | Cantrell | May 1949 | A |
2963309 | Stilwell | Dec 1960 | A |
3229998 | Pennington | Jan 1966 | A |
3258822 | Schlesch | Jul 1966 | A |
3370815 | Opperthauser | Feb 1968 | A |
3526381 | Pepe | Sep 1970 | A |
4029276 | Zielie | Jun 1977 | A |
4061299 | Kurosaki | Dec 1977 | A |
4109944 | Curtin | Aug 1978 | A |
4457482 | Kitagawa | Jul 1984 | A |
4478381 | Pittion | Oct 1984 | A |
4516296 | Sherman | May 1985 | A |
4669688 | Itoh | Jun 1987 | A |
4934635 | Sherman | Jun 1990 | A |
4982920 | Hungerford, Jr. | Jan 1991 | A |
5014940 | Sherman | May 1991 | A |
5358283 | Silva | Oct 1994 | A |
5924655 | Rinderer | Jul 1999 | A |
5984243 | Pfaller | Nov 1999 | A |
D424922 | Sherman | May 2000 | S |
6105216 | Opperthauser | Aug 2000 | A |
6126119 | Giangrasso | Oct 2000 | A |
6357196 | McCombs | Mar 2002 | B1 |
7053311 | Santanda | May 2006 | B2 |
7784745 | Dodge | Aug 2010 | B2 |
7789351 | Auer | Sep 2010 | B2 |
7963487 | Saltenberger | Jun 2011 | B2 |
8322661 | Oh | Dec 2012 | B2 |
8714591 | Kobayashi | May 2014 | B1 |
8833706 | Elsmore | Sep 2014 | B2 |
8882072 | Hattori | Nov 2014 | B2 |
8910912 | Child | Dec 2014 | B2 |
8936161 | Kimura | Jan 2015 | B2 |
9074715 | Weger | Jul 2015 | B2 |
20040056158 | Stuart et al. | Mar 2004 | A1 |
20080149362 | Ruddick | Jun 2008 | A1 |
20100038506 | King, Jr. | Feb 2010 | A1 |
20100148015 | Matsuno | Jun 2010 | A1 |
20100155545 | Birli | Jun 2010 | A1 |
20110297797 | Yelverton | Dec 2011 | A1 |
20120292460 | Hsu | Nov 2012 | A1 |
20130206927 | Greenfield | Aug 2013 | A1 |
20140097304 | Mastro | Apr 2014 | A1 |
20150122957 | Michiels | May 2015 | A1 |
20150276092 | Oliver | Oct 2015 | A1 |
Number | Date | Country |
---|---|---|
1903281 | Mar 2008 | EP |
2013223377 | Oct 2013 | JP |
Entry |
---|
Applicant Admitted Prior Art: Caddy® Swift Clip Strut Clamp for Insulated Tube/Pipe—TSMI0100, Erico International Corporation, Solon, Ohio. Retrieved Mar. 16, 2015 http://www.erico.com/catalog/parts/TSM10100?pdf=1&language=en&country=US. |
Vibra Trol™, Pipe Hangers & Supports, B-Line by Eaton, Sep. 2013, pp. 269&270, Eaton Corporation, Highland, Illinois. Retrieved Mar. 16, 2015 http://www.cooperindustries.com/content/dam/public/bline/Resources/Library/catalogs/pipe—hangers/pipe—hangers—and—supports/vt-vibraclamps.pdf. |
Cush-A-Clamp, Cushioning & Clamping Products, May 2004, Tyco Electrical & Metal Products, Wayne, Michigan. Retrieved Sep. 24, 2015 https://www.kleen-ritecorp.com/files/Cush-A-Clamp%20Unistrut%20Manual.pdf Rev. May 2004. |
Fastenal Product Standard PH.C.SD.Z, “Clevis Pipe Hanger, Standard Duty, Zinc”, Dec. 2013, Fastenal Company, Winona, Minnesota. Retrieved Sep. 25, 2015 https://www.fastenal.com/content/product—specifications/PH.C.SD.Z.pdf. |
Number | Date | Country | |
---|---|---|---|
20160348811 A1 | Dec 2016 | US |