Framing tool adaptable for use with a framing square
10300735 ยท 2019-05-28
Inventors
Cpc classification
B43L7/14
PERFORMING OPERATIONS; TRANSPORTING
E04G21/1891
FIXED CONSTRUCTIONS
International classification
B43L7/14
PERFORMING OPERATIONS; TRANSPORTING
B43L7/027
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A framing tool includes a pair of slotted beams that are affixed together at each end using an end spacer of a thickness selected to maintain the two slotted beams at a separation that allows a framing square to slide easily but snugly therebetween. Then, a user can cause the slotted beams to clamp down on the framing square using two sliding clamps so as to trap the framing square between the two slotted beams. The first sliding clamp is slidable along a slot of the pair of slotted beams, and the second sliding clamp is slidable along a slot of the pair of slotted beams. The framing tool also includes: a pair of end-fixed spacer assemblies, a first end-fixed spacer assembly configured to squeeze together the first ends against an end spacer, and a second end-fixed spacer assembly configured to squeeze together the second ends against an end spacer.
Claims
1. A framing tool comprising: a pair of slotted beams each having a first end and a second end, each slotted beam having one or more slots; a pair of end spacers, one end spacer being sandwiched between the pair of slotted beams at each end, each end spacer being of a thickness configured to maintain a separation distance at each end of the pair of slotted beams substantially similar to a thickness of a framing square; and two sliding clamps, a first sliding clamp being slidable along a slot of the pair of slotted beams, a second sliding clamp being slidable along a slot of the pair of slotted beams, each sliding clamp being configured to be able to squeeze the two slotted beams together so as to trap the framing square between the two slotted beams.
2. The framing tool of claim 1, wherein each end spacer of the pair of end spacers includes a bolt hole, and each slotted beam includes a bolt hole at each of the first and second ends thereof, the framing tool further comprising: a first bolt extending through the bolt hole of a first end spacer, and through a bolt hole in a first end of each slotted beam of the pair of slotted beams; a first nut cooperative with the first bolt, the first nut being configured to press each of the first ends against the first end spacer; a second bolt extending through the bolt hole of a second end spacer, and through a bolt hole in a second end of each slotted beam of the pair of slotted beams; and a second nut cooperative with the second bolt, the second nut being configured to press each of the second ends against the second end spacer.
3. The framing tool of claim 2, the framing tool further comprising: a washer cooperative with each of the first and second nuts.
4. The framing tool of claim 1, wherein each sliding clamp of the two sliding clamps includes a nut and a bolt.
5. The framing tool of claim 1, wherein each end spacer is an annular end spacer.
6. The framing tool of claim 1, wherein each sliding clamp of the two sliding clamps includes a nut, a bolt, and two block sliders each having a bolt hole.
7. The framing tool of claim 6, wherein the nut is a wing nut.
8. The framing tool of claim 6, wherein the nut is cooperative with a bolt of the sliding clamp such that when the nut is tightened so as to prevent the block slider from sliding along the slotted beams, the slotted beams are also pulled together, thereby trapping the framing square between the two slotted beams, which serves to secure the framing square in a desired position and orientation.
9. The framing tool of claim 6, wherein each slotted beam of the pair of slotted beams is shaped as a structural channel, and each block slider moves inside and along the structural channel.
10. The framing tool of claim 1, wherein each slotted beam of the pair of slotted beams is shaped as a structural channel, each structural channel having a back side, the back sides of the structural channels being pressed together by at least one sliding clamp so as to trap the framing square between the back sides of the two slotted beams, thereby securing the framing square in a desired position and orientation.
11. The framing tool of claim 10, wherein each block slider of the two sliding clamps includes one of: an alignment peg and an alignment peg hole, the alignment peg being cooperative with the alignment peg hole so as to maintain the block slider in substantial parallel alignment with the inside of the structural channel of each slotted beam.
12. A framing tool comprising: a pair of slotted beams each having a first end and a second end, each slotted beam having one or more slots; a pair of end spacers, one end spacer being sandwiched between the pair of slotted beams at each end, each end spacer being of a thickness configured to maintain a separation distance at each end of the pair of slotted beams substantially similar to a thickness of a framing square; a pair of end-fixed spacer assemblies, a first end-fixed spacer assembly being configured to squeeze together the first ends against an end spacer of the pair of end spacers, and a second end-fixed spacer assembly being configured to squeeze together the second ends against an end spacer of the pair of end spacers; and two sliding clamps, a first sliding clamp being slidable along a slot of the pair of slotted beams, a second sliding clamp being slidable along a slot of the pair of slotted beams, each sliding clamp being configured to be able to squeeze the two slotted beams together so as to trap the framing square between the two slotted beams.
13. The framing tool of claim 12, wherein each slotted beam of the pair of slotted beams is shaped as a structural channel, each structural channel having a back side, the back sides of the structural channels being pressed together by at least one sliding clamp so as to trap the framing square between the back sides of the two slotted beams, thereby securing the framing square in a desired position and orientation.
14. The framing tool of claim 12, wherein each end spacer of the pair of end spacers includes a bolt hole, and each slotted beam includes a bolt hole at each of the first and second ends thereof.
15. The framing tool of claim 14, the framing tool further comprising: a first bolt extending through the bolt hole of a first end spacer, and through a bolt hole in a first end of each slotted beam of the pair of slotted beams; a first nut cooperative with the first bolt, the first nut being configured to press each of the first ends against the first end spacer; a second bolt extending through the bolt hole of a second end spacer, and through a bolt hole in a second end of each slotted beam of the pair of slotted beams; and a second nut cooperative with the second bolt, the second nut being configured to press each of the second ends against the second end spacer.
16. The framing tool of claim 12, wherein each sliding clamp of the two sliding clamps includes a wing nut, and a bolt.
17. The framing tool of claim 12, wherein each sliding clamp of the two sliding clamps includes a wing nut, a bolt, and two block sliders each having a bolt hole.
18. The framing tool of claim 17, wherein the wing nut is cooperative with a bolt of the sliding clamp, such that when the wing nut is tightened so as to prevent the block slider from sliding along the slotted beams, the slotted beams are also pulled together, thereby trapping the framing square between the two slotted beams, which serves to secure the framing square in a desired position and orientation.
19. The framing tool of claim 17, wherein each slotted beam of the pair of slotted beams is shaped as a structural channel, and each block slider moves inside and along the structural channel.
20. The framing tool of claim 17, wherein each block slider of the two sliding clamps includes one of: an alignment peg and an alignment peg hole, the alignment peg being cooperative with the alignment peg hole so as to maintain the block slider in substantial parallel alignment with the inside of the structural channel of each slotted beam.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(7) With reference to
(8) To firmly hold the framing square 11 between the slotted beams 12 at a selected position and angle, two sliding clamps are shown, i.e., a first sliding clamp 17 and a second sliding clamp 18. The first sliding clamp 17 is slidable along the first slot 15, and the second sliding clamp 18 is slidable along the second slot 16, with each sliding clamp 17 and 18 being configured to be able to squeeze the two slotted beams 12 together so as to trap the framing square 11 between the two slotted beams 12.
(9) The slotted beams 12 can be made from extruded aluminum, wood, steel, or plastic, for example.
(10) Referring to
(11) The first sliding clamp assembly 17 and the second sliding clamp assembly 18 are shown with their component parts. This embodiment of the sliding clamps includes first wing nut 25, first block slider 26, and first (opposing) block slider 27. The exploded view of
(12) Referring to
(13) One of two slotted sliding clamps 17 is shown configured along the two slotted beams 12. The sliding clamp wing nut 25 and bolt 30 are shown inserted through the block sliders 26 and 27. In preferred embodiments, the block sliders include an alignment peg hole 32 and an alignment peg 34, with the alignment peg 34 being cooperative with the alignment peg hole so as to maintain the block slider in substantial parallel alignment with the inside of the structural channel of each slotted beam 12.
(14) Referring to
(15) Referring to
(16) Referring to
(17) Other modifications and implementations will occur to those skilled in the art without departing from the spirit and the scope of the invention as claimed. Accordingly, the above description is not intended to limit the invention, except as indicated in the following claims.