Self-Aligning Jamb Jack Screw with Partial Sphere
20250116152 ยท 2025-04-10
Inventors
Cpc classification
International classification
Abstract
A self-aligning jamb jack apparatus with a cylindrical threaded adjustment component that has adjustment component threads on the exterior wall and smooth surface on the interior walls, the cylindrical threaded adjustment component extending through a cylinder with a smooth exterior to a ball (or cut-off sphere), the smooth surface extending through the cylinder and the ball (or cut-off sphere). The jamb jack apparatus also has a platform base with a socket configured to encompass the ball (or cut-off sphere) such that the platform base pivots around the ball (or cut-off sphere). The self-aligning jamb jack apparatus is installed in a door or window jamb (or any other appliance) to connect and regulate the space between the jamb and the rough framing.
Claims
1. An apparatus comprising: a cylindrical threaded adjustment component with a cylindrical surface on an interior wall and an adjustment component threads on an exterior wall, the cylindrical threaded adjustment component extending through a cylinder with an exterior surface to a cut-off sphere, the cylindrical surface extending through the cylinder and the cut-off sphere; and a platform base with a socket configured to encompass the cut-off sphere such that the platform base pivots around the cut-off sphere.
2. The apparatus of claim 1 further comprising a cylindrical threaded base component with guide threads on base component interior walls, the guide threads aligned to accept the adjustment component threads.
3. The apparatus of claim 2 wherein a flange is mechanically attached to the cylindrical threaded base component at one end of the cylindrical threaded base component, the flange extending outward, the flange including a flat surface perpendicular to the cylindrical threaded base component.
4. The apparatus of claim 3 wherein the flange has a hole in the flat surface of the flange.
5. The apparatus of claim 2 wherein the cylindrical threaded base component has exterior threads.
6. The apparatus of claim 1 wherein the cylindrical threaded adjustment component, the cylinder, and the cut-off sphere are a single piece of steel.
7. The apparatus of claim 1 wherein the platform base, the cylindrical threaded adjustment component, the cylinder, and the cut-off sphere are 3-D printed plastic.
8. The apparatus of claim 1 wherein the platform base is nylon.
9. The apparatus of claim 2 further comprising a door jamb, the cylindrical threaded base component mechanically connected to the door jamb.
10. The apparatus of claim 1 further comprising a window jamb, the cylindrical threaded adjustment component mechanically connected to the window jamb.
11. An apparatus comprising: a cylindrical threaded base component with guide threads on a guide interior wall, the guide threads aligned to accept adjustment component threads; an adjustment component assembly, the adjustment component assembly comprising: a cylindrical threaded adjustment component with the adjustment component threads on an adjustment component exterior wall and a cylindrical surface on an adjustment component interior wall, a cylinder mechanically connected to the cylindrical threaded adjustment component on one end of the cylindrical threaded adjustment component, and a cut-off sphere, mechanically connected to the cylinder, the cylindrical surface extending through the cut-off sphere; and a platform base with a socket configured to encompass the cut-off sphere such that the platform base pivots around the cut-off sphere.
12. The apparatus of claim 11 wherein the platform base is a rectangular box shape.
13. The apparatus of claim 11 wherein a flange is mechanically attached to the cylindrical threaded base component at one end of the cylindrical threaded base component, the flange extending outward, the flange including a flat surface perpendicular to the cylindrical threaded base component.
14. The apparatus of claim 11 wherein the cylindrical threaded base component has exterior threads.
15. The apparatus of claim 11 wherein the cylindrical threaded adjustment component, the cylinder, and the cut-off sphere are a single piece of brass.
16. The apparatus of claim 11 wherein the platform base, the cylindrical threaded adjustment component, the cylinder, and the cut-off sphere are 3-D printed steel.
17. The apparatus of claim 11 wherein the platform base is iron.
18. The apparatus of claim 11 further comprising a door jamb, the cylindrical threaded base component mechanically connected to the door jamb.
19. The apparatus of claim 11 further comprising a window jamb, the cylindrical threaded base component mechanically connected to the window jamb.
20. The apparatus of claim 11 further comprising an appliance jamb, the cylindrical threaded base component mechanically connected to the appliance jamb.
Description
BRIEF DESCRIPTION OF FIGURES
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DETAILED DESCRIPTION OF THE INVENTIONS
The Jamb Jack Device
[0045]
[0046] The base component 108 is placed in a window or door jamb 101, as seen in
[0047] The adjustment component 106 and ball 105 assembly screws into the base component 108. The adjustment component 106 and ball 105 assembly is hollow 107 as seen in
[0048] In some embodiments, the hollow 107 is threaded. The threads in the hollow 107 could be through the entire adjustment component 106 and ball 105 assembly in some embodiments or could be partially threaded.
[0049] In some embodiments, the top of the adjustment component 106 is countersunk so that the fastener 103 is flush with the top of the adjustment component 106 as it passes through the hollow 107.
[0050] In some embodiments, the adjustment component 106 is screwed directly into the window or door jamb 101, without the base component 108.
[0051] The fastener 103 could be a machine screw, a bolt, or any other type of screw type device. The fastener could be made of steel, iron, brass, bronze, plastic, or similar material. The top of the fastener could be a Phillips head, straight head, hex head, socket head, etc. The threading for the fastener 103 could be the entire length of the shaft in one embodiment, or the fastener 103 could be only partially threaded with the threading at the end to fasten to the rough framing 102.
[0052] As seen in
[0053] In some embodiments, the adjustment component 106 could include grooves 201a,201b,201c,201d to accept a Philips head screwdriver so that the adjustment component 106 can be screwed into the door jamb 101.
[0054] The platform base 104 is seen in
[0055] The platform base 104 could be a rectangular box shape in some embodiments. In other embodiments, the platform base 104 could be round with a flat, concave, or convex surface contacting the rough framing 102.
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[0060] The cut-off sphere 605 attaches to the adjustable component 606 through a neck 613. A hollow fastener chase 607 extends through the adjustable component 606, the neck 613, and the cut-off sphere 605, allowing a fastener 103 to extend through the adjustable component 606, the neck 613, the cut-off sphere 605, and into the rough framing 102. The adjustment component 606 and cut-off sphere 605 assembly screws into the base component 108, as seen in
[0061] The adjustment component 106 is threaded on the outside. The adjustment component 606 is attached to the cut-off sphere 605. The attachment could be made by being molded together, machined out of a single piece, glued together with an adhesive, welded together, 3-D printed as a single part, or through other attachment means. The cut-off sphere 605 is a sphere attached to the adjustment component 606, either directly or via a cylinder or neck 613, as shown in
[0062] In some embodiments, the hollow fastener chase 607 is threaded. The threads in the fastener chase 607 could be through the entire adjustment component 606 and cut-off sphere 605 assembly in some embodiments, or could be partially threaded.
[0063] In some embodiments, the top of the adjustment component 606 is countersunk so that the fastener 103 is flush with the top of the adjustment component 606 as it passes through the fastener chase 607.
[0064] In some embodiments, the adjustment component 606 is screwed directly into the window or doorjamb 101, without the base component 108. In other embodiments, the adjustable component 606 is screwed into the base component 108.
[0065] The platform base 604A and 604B could be one or two pieces. The platform base 604A and 604B has a socket that envelopes the cut-off sphere 605 in such a manner that the platform base 604A, 604B can be rotated around the cut-off sphere 605. In some embodiments, the platform base 604A, 604B can be stiffly manipulated to move around the cut-off sphere 605, but not so loose that gravity will move the platform base 604A, 604B. The platform base 604A, 604B could be 3D printed (in plastic, nylon, steel, etc) around the cut-off sphere 605, the platform base 604A, 604B could be molded around the cut-off sphere 605, or the platform base 604A, 604B could be adhered together from a plurality of parts. For instance, platform base 604A top could slide over the cut-off sphere 605 and the platform base 604B bottom, and the two parts could be adhered together. The adhesion could be with an adhesive, with screws (or bolts), welded (metal or plastic), with a band around the pieces, or with similar attachment mechanisms. The platform base 604A, 604B could be made of steel, iron, brass, bronze, plastic, white metal, nylon, or similar material. In some embodiments, the platform base 604A could be 5 mm thick, and the platform base 604B could be 5 mm thick.
[0066] In other embodiments, the cut-off sphere 605 could have a plurality of slots 610, 611, 612 that permit the cut-off sphere 605 to compress as it is forced to snap into the platform base 604A, 604B.
[0067] The platform base 604A, 604B could be a rectangular box shape in some embodiments. In other embodiments, the platform base 604A, 604B could be round with a flat or concave or convex surface contacting the rough framing 102.
The Method of Installing the Jamb Jack Device
[0068] For one embodiment, in order to install the jamb jack device 100, a hole is placed in the window or door jamb 101. The base component 108 is inserted in the hole, and two screws are driven into the window or door jamb 101 through the screw holes 403a, 403b in the flanges 402a, 402b.
[0069] Next, the adjustment component 106 is screwed into the base component 108, providing the space difference required between the window or door jamb 101 and the rough framing 102. The platform base 104 is placed against the rough framing 102, and the adjustment component 106 is adjusted so that the platform base 104 rests firmly against the rough framing 102.
[0070] The fastener 103 is driven into the hollow 107 of the adjustment component 106 and the ball 105. The fastener 103 may continue through the ball 105 and into the rough framing 102.
[0071] While the present disclosure has been presented above with respect to the described and illustrated embodiments of the jamb jack device 100, it is to be understood that the disclosure is not to be limited to those alternatives and described embodiments. Accordingly, reference should be made primarily to the following claims rather than the foregoing description to determine the scope of the disclosure. All dimensions are by way of an example and could have a 20% tolerance.
[0072] The foregoing devices and operations, including their implementation, will be familiar to, and understood by, those having ordinary skill in the art.
[0073] The above description of the embodiments, alternative embodiments, and specific examples, are given by way of illustration and should not be viewed as limiting. Further, many changes and modifications within the scope of the present embodiments may be made without departing from the spirit thereof, and the present inventions include such changes and modifications.