High load toggle bolt hollow wall anchor, load dispersing toggle member adaptor and method for implementing the same
12031561 ยท 2024-07-09
Inventors
Cpc classification
International classification
F16B21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A high load toggle bolt hollow wall anchor comprises a bolt and a two piece toggle member, wherein the first piece of the two piece toggle member is an elongated member with a threaded opening for receiving the bolt, and wherein a second piece of the two piece toggle member is a load plate having i) a planar wall engaging face, ii) a wall opening engaging ridge extending from the wall engaging face, and iii) a groove in a rear of the load plate configured to receive and to hold the elongated member therein. The load plate provides a load dispersing toggle member adaptor. A method of implementation is also disclosed.
Claims
1. A high load toggle bolt hollow wall anchor comprising: a bolt and a two piece toggle member, wherein the first piece of the two piece toggle member is an elongated channel member with a threaded opening for receiving the bolt, and wherein a second piece of the two piece toggle member is a one piece load plate having i) a planar wall engaging face on a front of the load plate, ii) an arcuate wall opening engaging ridge coupled to and extending forwardly from the wall engaging face, and iii) a groove in a rear of the load plate configured to receive and to hold the elongated channel member therein, wherein a pair of walls defining the groove on a rear of the one piece load plate with the planar wall engaging face spanning between the pair of walls and further including retaining clips on the one piece load plate to engage the elongated channel member; and further including a cap flange having a central opening therein with an extension on one side thereof.
2. The high load toggle bolt hollow wall anchor according to claim 1 further including cap selectively engagable with the cap flange.
3. The high load toggle bolt hollow wall anchor according to claim 1 further including a pair of application handles coupled to the elongated member.
4. The high load toggle bolt hollow wall anchor according to claim 1 wherein a leading end of the load plate is beveled.
5. The high load toggle bolt hollow wall anchor according to claim 1 wherein the load plate is plastic and the elongated member is a metal channel member.
6. The high load toggle bolt hollow wall anchor according to claim 1 wherein the planar wall engaging face is about 1? wide and about 3? long.
7. A load dispersing toggle member adaptor comprising a one piece load plate having i) a planar wall engaging face on a front of the load plate, ii) an arcuate wall opening engaging ridge coupled to and extending forwardly from the wall engaging face, and iii) a groove in a rear of the load plate configured to receive and to hold an elongated channel therein, wherein a pair of walls defining the groove on a rear of the one piece load plate with the planar wall engaging face spanning between the pair of walls and further including retaining clips on the one piece load plate to engage the elongated channel.
8. The load dispersing toggle member adaptor according to claim 7 wherein a leading end of the load plate is beveled.
9. The load dispersing toggle member adaptor according to claim 7 wherein the load plate is plastic and wherein the planar wall engaging face is about 1? wide and about 3? long.
10. A method of implementing a high load toggle bolt hollow wall anchor comprising the steps of A) Providing a bolt, a two piece toggle member, a cap flange and a cap, wherein the first piece of the two piece toggle member is an elongated member with a threaded opening for receiving the bolt, and wherein a second piece of the two piece toggle member is a one piece load plate having i) a planar wall engaging face on a front of the load plate, ii) a wall opening engaging ridge extending forwardly from the wall engaging face, and iii) a groove in a rear of the load plate configured to receive and to hold the elongated member therein; B) Placing the elongated member in the groove; C) Drilling a hole in the substrate or wall; D) Sliding the load plate through the hole; E) Orientating the load plate to rest flush behind the substrate or wall, including providing a pair of application handles coupled to the elongated member which are used for orientating the load plate to rest flush behind the substrate or wall; F) Orientating the cap flange flush with the substrate or wall; G) Placing the cap flush with the cap flange, and further including the step of snapping of portions of the application handles after placing the cap flush with the cap flange; and H) Threading the bolt to the threaded opening of the elongate member.
Description
BRIEF DESCRIPTION OF THE FIGURES
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BRIEF DESCRIPTION OF THE PREFERRED EMBODIMENTS
(13) The present invention provides a high load toggle bolt hollow wall anchor 100, a load dispersing toggle member adaptor comprising a load plate 30 and a cap flange 50 and method for implementing the same which yields a low cost, easy to install, high-load capacity toggle bolt hollow wall anchor 100 that provides maximum holding power in hollow walls 25 such as drywall and fiberglass enclosures. The term about will define+/?10% within the meaning of this application unless otherwise specified.
(14) As described below, one aspect of the present invention provides a high load toggle bolt hollow wall anchor 100 comprising a bolt 12 and a two piece toggle member, wherein the first piece of the two piece toggle member is an elongated member, namely a metal channel toggle member 16 with a threaded opening for receiving the bolt 12, and wherein a second piece of the two piece toggle member is a load plate 30 having i) a planar wall engaging face 32 on a front of the load plate, ii) a wall opening engaging ridge 34 extending forwardly from the wall engaging face, and iii) a groove 40 in a rear of the load plate 30 configured to receive and to hold the elongated member or channel 16 therein.
(15) The high load toggle bolt hollow wall anchor 100 according to the invention utilizes a commercially available fixed wing toggle bolt, such as SNAPTOGGLE? and STRAP-TOGGLE? brand fixed wing toggle bolt as shown in
(16) One embodiment of the load plate 30 and a cap flange 50 is shown in
(17) The cap flange 50 has a central opening therein with an extension 52 on one side thereof. In the assembly of the high load toggle bolt hollow wall anchor 100 according to the invention the channel toggle member 16 is slid thru the central opening in the cap flange 50. Next the channel toggle member 16 is inserted thru the T-shaped opening in the load plate 30. Finally, the channel toggle member 16 is seated in the channel receiving groove 40 and engaged by the clips 37 in the load plate 30 resulting in a complete high capacity hollow wall anchor. The channel toggle member 16 being fully seated in the channel receiving groove 40 and engaged by the clips 37 in the load plate 30 is shown in
(18) Following the assembly of the load plate 50 and channel toggle member 16 of the high load toggle bolt hollow wall anchor 100 according to the invention, the application to the wall 25 is generally similar to existing devices. First a wall opening 27 is formed of about 1? in diameter, or about the width of the load plate 30. The wall opening 27 will be larger than that typically used for a conventional toggle bolt having only the channel 16. Then, with the installation of the high load toggle bolt hollow wall anchor 100 according to the invention, the load plate 30 is inserted through the wall opening 27 as shown in
(19) Following insertion of the load plate 30 and channel toggle member 16 through the wall opening 27 in the wall 25, the application handles 60 are operated in a generally conventional fashion to position the load plate 30 against the wall 25 as shown in
(20) Following the deployment as shown in
(21) With the cap 70 and cap flange 50 in the deployed position the application arms 60 or straps are removed, generally snapped off to leave the load plate 30 in position ready to receive the bolt 12 as shown in
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(23) In summary following the assembly of the high load toggle bolt hollow wall anchor 100 of the present invention the process is a) Drill a 1? diameter hole 27 in the substrate or wall 25; b) Hold the load plate 30 flat alongside the plastic straps 60 and slide load plate 30 through the hole 27; c) Hold the ends of the straps 60 between thumb and forefinger and pull them toward the installer until the load plate 30 rests flush behind the wall 25; d) Slide the plastic cap flange 50 along the straps 60 with the installer's other hand until the cap flange 50 is flush with the wall 25; e) Slide the cap 70 along the straps 60 until it is flush with the cap flange 50; f) Snap the straps 60 at the wall 25 by pushing side to side, snapping off the straps 60 level with the cap flange 50 of the cap 70; g) Place the item to be mounted over the cap flange 50; and h) Insert the appropriate bolt 12 through the item and tighten until the item is flush against the wall 25.
(24) The present invention provides a low cost, easy to install, high-load capacity fastener device that provides maximum holding power in hollow walls such as drywall and fiberglass enclosures. The substrate 25 may be drywall as noted but may also be Cinder block, Concrete block, Gypsum board, Drywall, Tile over drywall, Plasterboard, Composite panels, Cement board, Greenboard, Plaster, Stucco, Fiberglass, Plywood, Steel plate, etc.
(25) The load plate 30 is a one piece molded structure and may be formed out of high strength plastic. The formation of the load plate 30 as separate from the channel toggle member 16 has several advantages. For example, the channel toggle member 16 may be conventionally made of metal for a secure bolt 12 to channel 16 attachment, while the load plate 30 may be effectively plastic. Further, as a two piece assembled structure, the load plate 30 need not always be used in all implementations, in other words, the channel toggle member 16 may be used in a conventional fashion where less holding strength is required, and a smaller wall hole is necessary.
(26) The present invention has been developed under the SUPERMOUNT? brand and
(27) The present invention allows the cap flange 50 to be sized to the substrate or wall thickness as shown in
(28) The above description is representative of the present invention but not restrictive thereof. The full scope of the present invention are set forth in the appended claims and equivalents thereto.