Beam clamp for strut channel

Information

  • Patent Grant
  • 10100861
  • Patent Number
    10,100,861
  • Date Filed
    Thursday, November 12, 2015
    9 years ago
  • Date Issued
    Tuesday, October 16, 2018
    6 years ago
Abstract
A beam clamp for securing strut to a beam includes a clamp body having a first strut engagement portion configured for engaging a first attachment structure of a strut, and a second strut engagement portion separate from the first strut engagement portion and configured for engaging a second attachment structure of a strut.
Description
FIELD OF THE DISCLOSURE

The present disclosure generally relates to a beam clamp for use with strut channel.


BACKGROUND

Strut channel or channel framing, also referred to as simply “strut,” is used in the construction and electrical industries for structural support, often for supporting wiring, plumbing, or mechanical components such as air conditioning or ventilation systems. Strut is usually formed from metal sheet, folded over into an open channel shape with inturned lips to provide additional stiffness and as a location to mount fittings for securing one or more components to the strut. In some applications, it is desirable to mount pieces of strut from a supporting structure, such as a beam.


A new design of channel framing suitable for use as strut is disclosed in co-pending U.S. application Ser. No. 13/966,897 filed Aug. 14, 2013. The strut disclosed in the '897 application includes the open channel and the inturned lips for mounting conventional fitting(s) thereto and also offers additional sides that are functional for mounting additional fitting(s) to secure one or more components to other sides of the strut.


SUMMARY

In one aspect, a beam clamp for securing strut to a beam comprises a clamp body including a first strut engagement portion configured for engaging a first attachment structure of a strut, and a second strut engagement portion separate from the first strut engagement portion and configured for engaging a second attachment structure of a strut.


In another aspect, a beam clamp for mounting a strut on a beam comprises a clamp body including a base having a first side, a second side opposite the first side, a first end extending between the first and second sides, and a second end opposite the first end and extending between the first and second sides. The base defines a first slot extending inward from the first end in a direction toward the second end and a second slot extending inward from the second side in a direction toward the first side. A first leg extends from the first side of the base in a first direction. The first leg includes a first strut engagement portion configured for engaging a first attachment structure of a strut. A second leg extends from the second side of the base in a second direction opposite the first direction. The second leg includes a second strut engagement portion configured for engaging a second attachment structure of a strut. A U-bolt has a first shank configured to be received in the first slot and a second shank configured to be received in the second slot, wherein the U-bolt is configured for securing the clamp body and a strut to a beam.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a perspective of a beam clamp for use in mounting a strut to a beam, with a clamp body of the beam clamp in a first orientation;



FIG. 2 is a perspective of the beam clamp, with the clamp body in a second orientation;



FIG. 3 is a perspective of the clamp body;



FIG. 4 is a front elevation of FIG. 3;



FIG. 5 is a rear elevation of FIG. 3;



FIG. 6 is a right side elevation of FIG. 3;



FIG. 7 is a left side elevation of FIG. 3;



FIG. 8 is a top plan view of FIG. 3;



FIG. 9 is a bottom plan view of FIG. 3;



FIG. 10 is a perspective of the beam clamp secured to a beam and mounting a first embodiment of conventional strut on the beam, with the clamp body in the first orientation;



FIG. 11 is a front elevation of FIG. 10;



FIG. 12 is an enlarged fragmentary front elevation of FIG. 10;



FIG. 13 is a perspective of the beam clamp secured to the beam and mounting a first embodiment of new strut on the beam, with the clamp body in the second orientation;



FIG. 14 is a front elevation of FIG. 13;



FIG. 15 is an enlarged fragmentary front elevation of FIG. 13;



FIG. 16 is a perspective of the beam clamp secured to the beam and mounting a second embodiment of conventional strut on the beam, with the clamp body in the first orientation;



FIG. 17 is a perspective of the beam clamp secured to the beam and mounting a second embodiment of new strut on the beam, with the clamp body in the second orientation;



FIG. 18 is a perspective showing multiple beam clamps securing strut to the beam;



FIG. 19 is a perspective showing the beam clamp securing multiple new struts to the beam; and



FIG. 20 is a perspective showing the beam clamp securing multiple conventional struts to the beam.





Corresponding reference characters indicate corresponding parts throughout the drawings.


DETAILED DESCRIPTION

Referring to FIGS. 1 and 2, a beam clamp for mounting strut channel (also referred to in the below disclosure as simply “strut”) on a support member (e.g., beam B) is generally indicated at 10. The beam clamp 10 is configured for use with multiple strut configurations. Specifically, the beam clamp 10 includes separate first and second strut engagement portions 12, 14 (indicated generally) for use with strut types having different fitting attachment structures, as described in detail below.


The beam clamp 10 includes a clamp body, generally indicated at 16, and a fastener (e.g., bolt assembly 18) configured to attach the clamp body to the beam B. The bolt assembly 18 includes U-bolt 20, washers 22, and nuts 24 for securing the clamp body 16 (and strut) to the beam B.


Referring to FIGS. 3-9, the clamp body 16 includes a base 30 and first and second legs 32, 34 extending from opposite ends of the base. The first leg 32 extends from a first end 36 of the base 30 in a first direction generally perpendicular to the base (e.g., upward in FIG. 3). The second leg 34 extends from a second end 38 of the base 30 in a second direction generally perpendicular to the base and opposite the first direction (e.g., downward in FIG. 3). As illustrated, the base 30, first leg 32, and second leg 34 are generally planar. In the illustrated embodiment, the clamp body 16 is formed as a unitary structure. The clamp body 16 may be formed from rigid metal, such as low carbon steel, stainless steel, aluminum, or other metals, or from other material.


The base 30 includes first and second slots 40, 42 configured to receive the U-bolt 20 therethrough. The first slot 40 extends inward from a first side 44 of the base 30 in a direction toward a second side 46 of the base. The second slot 42 extends inward from the second end 38 of the base 30 in a direction toward the first end 36 of the base. As illustrated, the first and second slots 40, 42 extend generally perpendicular to each other. The first and second slots 40, 42 are located closer to the second end 38 than the first end 36, although other configurations are within the scope of the present invention. As seen in FIGS. 3-5, the second leg 34 does not extend all the way from the first side 44 of the base 30 to the second side 46 of the base due to the slot 42. Thus, the second leg 34 has a shorter length than the first leg 32. As illustrated in FIG. 8, the second slot 42 is partially defined by a curved wall 48. The slots 40, 42 permit the U-bolt 20 to be quickly and easily swung or pivoted into position for connecting the clamp body 16 to the beam B. For example, once a first shank 104 of the U-bolt 20 is inserted into the first slot 40, the second shank of the U-bolt can be swung or pivoted about the first shank into the second slot 42 along the curved wall 48. Alternatively, once a first shank of the U-bolt 20 is inserted into the first slot 40, the clamp body 16 can be swung or pivoted about the first shank toward the second shank so that the second shank enters the second slot 42 along the curved wall 48.


The first leg 32 includes the first strut engagement portion 12 configured for attachment to strut having a first attachment structure, and the second leg 34 includes the second strut engagement portion 14 configured for attachment to strut having a second attachment structure different from the first attachment structure. In the illustrated embodiment, the first strut engagement portion 12 includes a tab 52, and the second strut engagement portion 14 includes a notch 54. It is understood the first and second strut engagement portions 12, 14 can have different configurations within the scope of the present invention. Because the clamp body 16 includes two different strut engagement portions 12, 14, the beam clamp 10 can be used with strut including different attachment structures. The clamp body 16 can be attached to strut in the appropriate orientation depending on the attachment structure of the strut and which strut engagement portion 12, 14 is used to engage the strut attachment structure.


Referring still to FIGS. 3-9, the tab 52 extends outward from a free end 56 of the first leg 32. As illustrated, the tab 52 is generally centered along a length of the first leg 32, although other configurations are within the scope of the present invention. The tab 52 includes sides 58, 60 and a free end 62 extending between the side walls. The side walls 58, 60 of the tab 52 flare away from each other as they extend from the free end 62 of the tab to the free end 56 of the first leg 32. Accordingly, the tab 52 has a first relatively narrower width (e.g., a minimum width) adjacent the free end 62 and a second relatively wider width (e.g., a maximum width) adjacent the free end 56 of the first leg 32. The tab 52 is configured for engaging strut, as described below.


Referring to FIGS. 3-9, the second leg 34 includes a notch 54 extending inward from a free end 66 of the second leg. The notch 54 is defined by opposing side walls 68, 70 and an inner wall 72 extending between the side walls. The side walls 68, 70 flare away from each other as they extend from the inner wall 72 to the free end 66 of the second leg 34. Accordingly, the notch 54 has a first relatively narrower width (e.g., a minimum width) adjacent the inner wall 72 and a second relatively wider width (e.g., a maximum width) at its entrance adjacent the free end 66 of the second leg 34.


The beam clamp 10 is configured for attachment to multiple types of strut 76. In general, referring to FIGS. 10-20, the strut 76 is of a first type having an elongate body 78 with a generally square or rectangular cross-sectional shape having an upper side 80, a planar lower side 82, a planar right side 84, and a planar left side 86 (each indicated generally). The upper side 80 defines a continuous slot 88 (i.e., the upper side is open). The upper side 80 has outside surfaces 90 on either side of the slot 88, and inwardly (or downwardly) depending lips 92 leading to an open interior 94 of the strut 76. In some embodiments, the slot 88 is the only attachment structure of the strut 76 (see, e.g., FIGS. 10-12, 16, and 20). In other embodiments, the strut 76 can be of a second type including one or more fitting grooves 98 extending lengthwise of the body 78 (see, e.g., FIGS. 13-15, 17, and 19). For example, the strut can be strut as described in co-pending U.S. application Ser. No. 13/966,897 filed Aug. 14, 2013, the entirety of which is hereby incorporated by reference. At least one of the lower, right, and left sides 82, 84, 86, respectively, can define a fitting groove 98 (see, e.g., FIG. 17). Alternatively, at least the side (e.g., lower side 82) opposite the slotted side (e.g., upper side 80) defines a fitting groove 98, while the other two sides (e.g., the right and left sides 84, 86) may or may not define fitting grooves (see, e.g., FIGS. 13-15). Alternatively, the strut may include at least one fitting groove 98 and no continuous slot (i.e., the upper side is closed).


With reference to the embodiments of strut 76 shown in FIGS. 13-15, 17, and 19, each fitting groove 98 is defined by opposing side walls 100 extending inwardly from generally planar outer surfaces of the corresponding side 82, 84, 86 and toward the interior 94 of the body 78 (FIG. 15). The side walls 100 extend to a bottom wall 102 that spans between and interconnects the side walls. The side walls 100 flare away from one another as they extend inward from the outer surfaces toward the bottom 102 of the fitting groove 98 so that each fitting groove has a generally dovetail cross-sectional shape. Accordingly, each fitting groove 98 has a first relatively narrower width (e.g., a minimum width) at its entrance and a second relatively wider width (e.g., a maximum width) adjacent the bottom wall 102. In general, the fitting grooves 98 are configured for receiving a coupling component of a fitting for use in attaching or securing the fitting to any one of the sides 82, 84, 86 of the strut channel 76.


Referring to FIGS. 10-12, in one embodiment, the beam clamp 10 is in a first orientation wherein the second strut engagement portion 14 is positioned for engagement with the strut 76. At least a portion of the base 30 of the clamp body 16 rests upon and is supported by a flange F of the beam B such that the first leg 32 extends generally upward from the base and the second leg 34 extends generally downward from the base. The second strut engagement portion 14 engages the strut 76 supported on the beam. Specifically, as seen in FIGS. 10-12, a portion of the strut 76 is received in the notch 54 such that the outside surfaces 90 of the upper side 80 engage the inner wall 72 of the notch. Moreover, the side walls 68, 70 of the notch 54 may engage the side walls 84, 86 of the strut 76 or may be slightly spaced from the side walls to define small gaps therebetween. Alternatively, the strut 76 can be received in the notch 54 in a different orientation, such that the inner wall 72 of the notch engages one of the lower, left, and right sides 82, 84, 86 of the strut 76 (not shown). Engagement between the strut 76 and the second strut engagement portion 14 maintains alignment of the strut on the beam B and prevents rotation of the strut relative to the beam. The U-bolt 20 is connected to the clamp body 16 such that shanks 104 of the U-bolt extend through the slots 40, 42, and the bottom 106 of the U-bolt extends below and supports the strut 76. Washers 22 are positioned on the shanks 104 of the U-bolt 20 adjacent the base 30, and nuts 24 are threaded onto the shanks and tightened to attach the beam clamp 10, and therefore the strut 76, to the beam B.


Referring to FIGS. 13-15, in another embodiment, the beam clamp 10 is in a second orientation wherein the first strut engagement portion 12 is positioned for engagement with the strut 76. At least a portion of the base 30 of the clamp body 16 rests upon and is supported by the flange F of the beam B such that the second leg 34 extends generally upward from the base and the first leg 32 extends generally downward from the base. The first strut engagement portion 12 engages the strut 76 supported on the beam B. Specifically, as seen in FIGS. 13-15, the tab 52 is inserted into the open slot 88 of the strut 76. The side walls 58, 60 may engage the lips 92 on either side of the open slot (or be slightly spaced from the lips) and the free end 56 of the first leg 32 may engage the outside surfaces 90 of the upper side 80. Alternatively, the tab 52 can be inserted into the dovetail fitting groove 98 of the strut 76. The side walls 58, 60 of the tab may engage the side walls 100 of the fitting groove (or be slightly spaced from the side walls of the fitting groove) and the free end 56 of the first leg 32 engages the lower side 82 (not shown). Engagement between the strut 76 and the first strut engagement portion 12 maintains alignment of the strut on the beam B and prevents rotation of the strut relative to the beam. The U-bolt 20 is connected to the clamp body 16 such that the shanks 104 of the U-bolt extend through the slots 40, 42, and the bottom 106 of the U-bolt extends below and supports the strut 76. Washers 22 are positioned on the shanks 104 of the U-bolt adjacent the base 30, and nuts 24 are threaded onto the legs and tightened to attach the beam clamp 10, and therefore the strut 76, to the beam B.


As seen in FIG. 18, preferably a pair of beam clamps 10 is used to attach strut 76 to the beam B, one beam clamp on each side of a web W of the beam. As illustrated in FIGS. 19 and 20, more than one strut 76 can be attached to the beam B by the beam clamp 10. The shanks 104 of the U-bolt 20 can have any desired length to accommodate supporting one or more strut 76 on the beam B. In the illustrated embodiment, the first strut engagement portion 12 is configured for engagement with a new strut, such as the new strut described in the '897 application, and the second strut engagement portion 14 is configured for engagement with a standard or conventional strut. However, other configurations are within the scope of the present invention. For example, the tab 52 can be configured for insertion into the open slot 88 of a standard strut. The notch 54 can be configured for receiving a portion of a new strut. Both of the first and second engagement portions 12, 14 can be tabs configured for engagement with different types of strut. Alternatively, both of the first and second engagement portions 12, 14 can be notches configured for engagement with different types of strut. Either and/or both of the first and second engagement portions 12, 14 can be configured for engagement with one or more types of strut.


The beam clamp 10 is suitable for mounting known strut configurations, such as, for example, the following channel product numbers sold by Cooper B-Line: B22 (see, e.g., FIG. 16), B54 (see, e.g., FIG. 10), Z22 (see, e.g., FIG. 17), Z52 (see, e.g., FIG. 13), and any other known strut. The beam clamp 10 is also suitable for attachment to strut having a different attachment structure than conventional strut, such as the strut having additional functional sides as described in U.S. application Ser. No. 13/966,897. Thus, workers at the job site have the flexibility to mount the strut in any orientation, according to the needs at the job site. Furthermore, the workers need only have one type of beam clamp, rather than requiring different clamp structures for mounting different struts.


When introducing elements of the present invention or the preferred embodiment(s) thereof, the articles “a”, “an”, “the” and “said” are intended to mean that there are one or more of the elements. The terms “comprising”, “including” and “having” are intended to be inclusive and mean that there may be additional elements other than the listed elements.


As various changes could be made in the above constructions, products, and methods without departing from the scope of the invention, it is intended that all matter contained in the above description and shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense.

Claims
  • 1. A beam clamp for securing strut to a beam, the beam clamp comprising: a U-bolt including threaded first and second shanks; anda clamp body including a base having a first end, a second end opposite the first end, a first side, and a second side opposite the first side, wherein the base defines first and second openings, adjacent the respective first and second sides, sized and shaped to receive the respective first and second shanks of the U-bolt,a first leg extending from the first end of the base, the first leg including a first strut engagement portion configured for engaging a first type of strut having a first strut profile for use in securing the first type of strut to the beam, wherein the first strut engagement portion comprises a tab extending outward from a free end of the first leg, wherein the tab is configured to be received in a selected one of a slot and a groove of the first type of strut, anda second leg extending from the second end of the base, the second leg including a second strut engagement portion configured for engaging a second type of strut having a second strut profile for use in securing the second type of strut to the beam, wherein the second strut engagement portion comprises a notch extending inward from a free end of the second leg, wherein the notch is sized and shaped to receive a side of the second type of strut,wherein the first strut engagement portion extends from the base in a first direction generally perpendicular to the base, and the second strut engagement portion extends from the base in a second direction opposite the first direction and generally perpendicular to the base.
  • 2. The beam clamp set forth in claim 1, wherein the first opening comprises a first slot extending inward from adjacent the second end of the base toward the first end of the base.
  • 3. The beam clamp set forth in claim 2, wherein the second opening comprises a second slot extending inward from the first side of the base toward the second side of the base.
  • 4. The beam claim set forth in claim 3, wherein the second slot extends generally perpendicular to the first slot.
  • 5. A strut and beam clamp system comprising: a first strut having a first profile and including upper, lower, left, and right sides, a longitudinal groove defined by the lower side, and a continuous slot extending along the upper side; anda beam clamp secured to the first strut and comprising a U-bolt including threaded first and second shanks, and a clamp body including a base having a first end, a second end opposite the first end, a first side, and a second side opposite the first side, wherein the base defines first and second openings adjacent the respective first and second sides, wherein the first and second shanks of the U-bolt are secured in the first and second openings, respectively,a first leg extending from the first end of the base, the first leg including a tab extending outward from a free end of the second leg, wherein the tab is configured to be received in the continuous slot and the groove of the first strut, anda second leg extending from the second end of the base, the second leg including a notch extending inward from a free end of the first leg, wherein the notch is sized and shaped to receive a side of a second type of strut having a second profile different from the first profile,wherein the tab is received in one of the slot and the groove of the first strut.
  • 6. The strut and beam clamp system set forth in claim 5, wherein the first opening comprises a first slot extending inward from adjacent the second end of the base toward the first end of the base.
  • 7. The strut and beam clamp system set forth in claim 6, wherein the second opening comprises a second slot extending inward from the first side of the base toward the second side of the base.
  • 8. The strut and beam clamp system set forth in claim 7, wherein the second slot extends generally perpendicular to the first slot.
  • 9. A strut and beam clamp system comprising: a first strut having a first profile and including upper, lower, left, and right sides, and a continuous slot extending along the upper side; anda beam clamp secured to the first strut and comprising a U-bolt including threaded first and second shanks, and a clamp body including a base having a first end, a second end opposite the first end, a first side, and a second side opposite the first side, wherein the base defines first and second openings adjacent the respective first and second sides, wherein the first and second shanks of the U-bolt are secured in the first and second openings, respectively,a first leg extending from the first end of the base in a first direction generally perpendicular to the base, the first leg including a tab extending outward from a free end of the second leg, wherein the tab is configured to be selectively received in one of a continuous slot and a groove of a second type of strut having a second profile different from the first profile, anda second leg extending from the second end of the base in a second direction opposite the first direction and generally perpendicular to the base, the second leg including a notch extending inward from a free end of the first leg, wherein the notch is sized and shaped to selectively receive one of the upper, lower, left, and right sides of the first strutwherein one of the upper, lower, left, and right sides of the first strut is received in the notch of the first leg.
  • 10. The strut and beam clamp system set forth in claim 9, wherein the first opening comprises a first slot extending inward from adjacent the second end of the base toward the first end of the base.
  • 11. The strut and beam clamp system set forth in claim 10, wherein the second opening comprises a second slot extending inward from the first side of the base toward the second side of the base.
  • 12. The strut and beam clamp system set forth in claim 11, wherein the second slot extends generally perpendicular to the first slot.
US Referenced Citations (239)
Number Name Date Kind
1319652 Korns Oct 1919 A
1813545 Reinhold Jul 1931 A
1934760 Awbrey Nov 1933 A
1963908 Manasek Jun 1934 A
2307653 Wright Jan 1943 A
2375513 Bach May 1945 A
2420826 Irrgang May 1947 A
2470991 Kindorf et al. May 1949 A
2567463 Atkinson Sep 1951 A
2676680 Kindort Apr 1954 A
2767609 Cousino Oct 1956 A
2767951 Cousino Oct 1956 A
2804180 Richardson Aug 1957 A
2846169 Sullivan Aug 1958 A
2944642 Evans Jul 1960 A
3005292 Reiland Oct 1961 A
3226069 Clarke Dec 1965 A
3266761 Walton Aug 1966 A
3310264 Appleton Mar 1967 A
3312034 Steinmann Apr 1967 A
3396499 Biffani Aug 1968 A
3417951 Rebentisch, Jr. Dec 1968 A
3451183 Lespagnol et al. Jun 1969 A
3463428 Kindorf et al. Aug 1969 A
3486726 Kindorf et al. Dec 1969 A
3513606 Jones May 1970 A
3527432 Lytle Sep 1970 A
3547385 Kindorf et al. Dec 1970 A
3566561 Tozer Mar 1971 A
3592493 Goose Jul 1971 A
3601347 Attwood et al. Aug 1971 A
3612461 Brown Oct 1971 A
3650499 Biggane Mar 1972 A
3748808 Sheppard et al. Jul 1973 A
3752198 Fiorentino et al. Aug 1973 A
3757485 Vincens Sep 1973 A
3836936 Clement Sep 1974 A
3863300 Becker Feb 1975 A
3944308 Persson Mar 1976 A
3986314 Moeller Oct 1976 A
3998419 Semmerling Dec 1976 A
4044428 Kowalski Aug 1977 A
4185802 Myles et al. Jan 1980 A
4211381 Heard Jul 1980 A
4216930 Rossler, Jr. et al. Aug 1980 A
4227355 Wendt Oct 1980 A
4358216 Pleickhardt et al. Nov 1982 A
4379651 Nagashima Apr 1983 A
4397437 Madej Aug 1983 A
4417711 Madej Nov 1983 A
4479341 Schuplin Oct 1984 A
4490064 Ducharme Dec 1984 A
4506418 Viola Mar 1985 A
4516296 Sherman May 1985 A
4556148 Koller Dec 1985 A
4610562 Dunn Sep 1986 A
4637748 Beavers Jan 1987 A
4652170 Lew Mar 1987 A
4657458 Woller et al. Apr 1987 A
4666355 Stover May 1987 A
4708554 Howard Nov 1987 A
4726165 Brinsa Feb 1988 A
4729532 Moss Mar 1988 A
4784552 Rebentisch Nov 1988 A
4830531 Condit et al. May 1989 A
4895412 Deley et al. Jan 1990 A
4934886 Aikens Jun 1990 A
4948313 Zankovich Aug 1990 A
4950099 Roellin Aug 1990 A
4961553 Todd Oct 1990 A
4962914 Taylor Oct 1990 A
4993670 Tesar Feb 1991 A
5003741 Yeh Apr 1991 A
5014940 Sherman May 1991 A
5022614 Rinderer Jun 1991 A
D322929 Abbestam et al. Jan 1992 S
5078537 Nomura Jan 1992 A
5102074 Okada Apr 1992 A
5116161 Faisst May 1992 A
5118233 Mitchell Jun 1992 A
5127758 Kreusel Jul 1992 A
5141186 Cusic Aug 1992 A
5146724 Angelo Sep 1992 A
5163644 Kowalski Nov 1992 A
5175971 McCombs Jan 1993 A
5205022 Norton Apr 1993 A
5215281 Sherman Jun 1993 A
5228263 Vaughn Jul 1993 A
5271586 Schmidt Dec 1993 A
5274888 Payne Jan 1994 A
5292013 Earl Mar 1994 A
5335890 Pryor et al. Aug 1994 A
5351926 Moses Oct 1994 A
5356234 Vangool Oct 1994 A
5375798 Hungerford, Jr. Dec 1994 A
5489173 Hofle Feb 1996 A
5503511 Flamme Apr 1996 A
5531539 Crawford Jul 1996 A
5566916 Bailey Oct 1996 A
5595363 De Leebeeck Jan 1997 A
5628508 Koole May 1997 A
5628598 Höfle May 1997 A
5655816 Magnuson et al. Aug 1997 A
5655865 Plank et al. Aug 1997 A
5718403 Ott Feb 1998 A
5729948 Levy et al. Mar 1998 A
5746535 Kohler May 1998 A
5779412 Nagai et al. Jul 1998 A
5799452 Moore Sep 1998 A
5799907 Andronica Sep 1998 A
5806268 Koller Sep 1998 A
5806897 Nagai et al. Sep 1998 A
5820322 Hermann et al. Oct 1998 A
5833417 Sargent et al. Nov 1998 A
5855342 Hawkins et al. Jan 1999 A
5864997 Kelly Feb 1999 A
5915803 Daugherty et al. Jun 1999 A
5918999 Lamarca Jul 1999 A
5924650 Richichi Jul 1999 A
5927041 Sedlmeier Jul 1999 A
5934818 Schmitt et al. Aug 1999 A
5970679 Amore Oct 1999 A
5984243 Pfaller et al. Nov 1999 A
5988930 Liebetrau et al. Nov 1999 A
D421655 Daugherty et al. Mar 2000 S
6061984 Rose May 2000 A
6062764 Rixen et al. May 2000 A
6106189 Seale Aug 2000 A
6195953 Gitter et al. Mar 2001 B1
6322030 Marra Nov 2001 B1
6347904 Knighton Feb 2002 B1
6454232 Roth Sep 2002 B1
6484358 Duong et al. Nov 2002 B1
6494415 Roth Dec 2002 B1
6554235 Fortier Apr 2003 B1
6561473 Ianello May 2003 B1
6572057 Roth Jun 2003 B1
6588713 Kilkenny Jul 2003 B2
6655099 Trenoweth Dec 2003 B1
6660938 Herb et al. Dec 2003 B2
6679461 Hawkins Jan 2004 B1
6682253 Binna et al. Jan 2004 B2
6712543 Schmalzhofer Mar 2004 B1
6726117 Herb et al. Apr 2004 B2
6751914 Zeh et al. Jun 2004 B2
6766992 Parker Jul 2004 B1
6802171 McKinnon Oct 2004 B2
6899511 Gurevich et al. May 2005 B2
6991198 Roth Jan 2006 B1
7014213 Kaiser Mar 2006 B1
7044701 Herb May 2006 B2
7070374 Womack et al. Jul 2006 B2
7096641 Birnbaum et al. Aug 2006 B2
7165361 Vanagan Jan 2007 B2
7179010 Weger et al. Feb 2007 B2
7240884 Shim Jul 2007 B2
7287733 Bongio et al. Oct 2007 B2
7389621 Hawes Jun 2008 B2
7448822 Nebeker et al. Nov 2008 B2
7478787 Bankston et al. Jan 2009 B2
7484697 Nelson Feb 2009 B1
7600724 Nelson et al. Oct 2009 B2
7604444 Wu Oct 2009 B2
7661915 Whipple Feb 2010 B2
7818925 Benedict Oct 2010 B2
7922130 Hawkins Apr 2011 B2
7922417 Jimenez Apr 2011 B2
7934896 Schnier May 2011 B2
7984601 Bimbaum et al. Jul 2011 B2
8020328 Lavi et al. Sep 2011 B2
8100600 Blum Jan 2012 B2
D654064 Sergi Feb 2012 S
8225581 Strickland et al. Jul 2012 B2
8277158 Csik et al. Oct 2012 B2
8303223 Rass et al. Nov 2012 B2
8341913 Meres et al. Jan 2013 B2
8366340 Munakata et al. Feb 2013 B2
8454259 Oetlinger Jun 2013 B2
8465242 Arendt et al. Jun 2013 B2
8511929 Raye et al. Aug 2013 B2
8523923 Thomke et al. Sep 2013 B2
8567030 Koch et al. Oct 2013 B2
8596009 Baxter et al. Dec 2013 B2
8661765 Schaefer et al. Mar 2014 B2
8662455 Hernandez et al. Mar 2014 B2
8695296 Bergman Apr 2014 B2
D728753 Hikoyama May 2015 S
9187898 Underkofler et al. Nov 2015 B1
9194418 Parthibhan et al. Nov 2015 B2
9249994 Zuritis Feb 2016 B2
9651171 Zhang et al. May 2017 B2
9746105 Zhang et al. Aug 2017 B2
20020000498 Workman Jan 2002 A1
20020060280 Yaphe et al. May 2002 A1
20020110435 Herb et al. Aug 2002 A1
20020122691 Wood Sep 2002 A1
20030042033 Herb et al. Mar 2003 A1
20030043033 Lee Mar 2003 A1
20030063961 Lay Apr 2003 A1
20030122044 Unverzagt et al. Jul 2003 A1
20030159397 Birnbaum Aug 2003 A1
20030185643 Thompson Oct 2003 A1
20040165943 Herb Aug 2004 A1
20040165947 Herb Aug 2004 A1
20040165965 Unverzagt et al. Aug 2004 A1
20040228681 Herb Nov 2004 A1
20050116123 Bailey et al. Jun 2005 A1
20050129458 Hoffmann Jun 2005 A1
20060027715 Dinh et al. Feb 2006 A1
20060038398 Whipple et al. Feb 2006 A1
20070040075 Moretto Feb 2007 A1
20070075213 Foser et al. Apr 2007 A1
20070101670 Ahren et al. May 2007 A1
20070120036 Olle et al. May 2007 A1
20070145222 Rausch Jun 2007 A1
20070248793 Herb et al. Oct 2007 A1
20080217490 Bucciferro Sep 2008 A1
20080229699 Nehls Sep 2008 A1
20100102011 Blum Apr 2010 A1
20100193645 Merhar et al. Aug 2010 A1
20120110788 Chen May 2012 A1
20120119037 Azuma et al. May 2012 A1
20120286110 Hill Nov 2012 A1
20120297723 Siddiqui et al. Nov 2012 A1
20120315106 Amedt et al. Dec 2012 A1
20130047541 Mayer Feb 2013 A1
20140042286 Jaffari Feb 2014 A1
20140091050 Zhang Apr 2014 A1
20140093307 Zhang Apr 2014 A1
20140097304 Mastro Apr 2014 A1
20140197284 Hikoyama Jul 2014 A1
20140260083 Zhang et al. Sep 2014 A1
20140283475 Zhang et al. Sep 2014 A1
20150176631 McCarthy et al. Jun 2015 A1
20150276092 Oliver et al. Oct 2015 A1
20150316178 Patil et al. Nov 2015 A1
20150316203 Zhang et al. Nov 2015 A1
20150322669 Shih Nov 2015 A1
20160138633 Zhang et al. May 2016 A1
Foreign Referenced Citations (20)
Number Date Country
202416847 Sep 2012 CN
7701100 May 1977 DE
8232700 Jun 1983 DE
3513382 Oct 1986 DE
8704502 Jul 1987 DE
102006035405 May 2008 DE
202010004406 Aug 2010 DE
102009000603 Sep 2010 DE
20 2012 102 394 Sep 2012 DE
0 592 743 Oct 1992 EP
2 838 170 Mar 2016 EP
569377 May 1945 GB
687403 Feb 1953 GB
1157545 Jul 1969 GB
1370645 Oct 1974 GB
2000-139583 May 2000 JP
9837349 Aug 1998 WO
2006085185 Aug 2006 WO
2013125821 Aug 2013 WO
2014159372 Oct 2014 WO
Non-Patent Literature Citations (14)
Entry
Unistrut—General Engineering Catalog. North American Edition No. 12.
Drawing of MQM Wing Nut, 1 page.
4.2 MQ Systems Components Page (2015), 1 page.
B-Line by Eaton—Channel Nuts Hardware, Strut Systems, 9 pages.
Power Strut Engineering Catalog—Pictorial Table of Contents, pp. 11-14, www.alliedeg.com, 4 pages.
Unistrut, Channels Nuts, Top Retainer Nut, 1 page.
Unistrut, P1000® P1001 Channels, 1 page.
Unistrut, P1100® P1101 Channels, 1 page.
Unistrut, P2000® P2001 Channels, 1 page.
Unistrut General Engineering Catalog, Unistrut Corporation, Mar. 1, 1998; pp. 117, 118.
“Power-Strut®Engineering Catalog, Tyco International, 2008, pp. 63, 65”.
International Search Report and Written Opinion for PCT/US2015/060601, dated Jan. 29, 2016, 12 pages.
A guide to threadlocking adhesives, Reliable Plant, May 28, 2013, (online), retrieved on Apr. 27, 2017, retrieved from the internet, https://web.archive.org/web/20130528020650/http://www.reliableplant.com/Read/27159/Guide-to-threadlocking-adhesives.
“Dovetail” Google.com, retrieved online on Sep. 18, 2017 from URL:https://www.google.com/search?q+define%A+dovetail.
Related Publications (1)
Number Date Country
20160138634 A1 May 2016 US
Provisional Applications (1)
Number Date Country
62079984 Nov 2014 US