Flag anti-wrapping device
11587476 ยท 2023-02-21
Inventors
Cpc classification
International classification
Abstract
A flag anti-wrapping device for reducing friction and side loading, which are common causes of flag wrapping. The flag anti-wrapping device includes an inner race, an outer race, a plurality of roller bearings, and a cap. Roller bearings are placed in an annular cavity, which is defined by the outer race having an inner circumference with a diameter larger than an outer diameter of the inner race. Thus, a flag may rotate about a flagpole with reduced friction and side-loading. Thereby, eliminating side load binding and reducing wrapping of the flag about the flagpole.
Claims
1. A flag anti-wrapping device, comprising: an inner race defining an inner diameter and an outer diameter, the inner diameter configured to receive a flagpole; an annular outer race adapted to be received on the inner race, the outer race defining an inner circumference having a diameter larger than the outer diameter of the inner race, so as to define an annular cavity between the inner race and outer race, wherein the outer race has means for attaching the device to a flag; a plurality of roller bearings residing in the annular cavity; and a cap attached to the inner race to hold the outer race and inner race together.
2. The flag anti-wrapping device of claim 1, wherein a bottom of the inner race has a first radially extending circumferential lip and wherein a bottom of the cap has a second radially extending circumferential lip to retain the bearings in the races.
3. The flag anti-wrapping device of claim 2, wherein the roller bearings have a proximal end closely spaced with respect to the second radially extending circumferential lip and a distal end closely spaced with respect to the first radially extending circumferential lip, whereby the roller bearings are held in place between the first lip and the second lip.
4. The flag anti-wrapping device of claim 1, wherein the inner race has a first annulus extending from a top of the inner race and wherein the cap has a second annulus extending from a top of the cap, and wherein the first annulus and the second annulus have means for attaching to each other, whereby the device is unitary.
5. The flag anti-wrapping device of claim 4, wherein the means for attaching include a first hole on the inner race and a second hole on the cap, whereby the first and second holes can be aligned to receive a fastener to hold the inner and outer race together.
6. The flag anti-wrapping device of claim 4, wherein the means for attaching include a plurality of inner threads in the cap, and a plurality of outer threads in the inner race configured to receive the inner threads, whereby the inner threads and outer threads can be twisted to hold the inner and outer race together.
7. The flag anti-wrapping device of claim 4, wherein the means for attaching include an adhesive.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(8) A flag anti-wrapping device in accordance with the principles of the invention is generally indicated at bracketed numeral 10 in the various Figures of the attached drawings wherein numbered elements in the figures correspond to like numbered elements herein.
(9) Referring now to the drawings and initially to
(10) Referring now to
(11) Referring now to
(12) The annular cavity is configured for the roller bearings 16 to sit inside. In the preferred embodiment, the annular cavity is greater than the size of the bearings 16. The bearings 16 are each have a diameter of 0.20 inches and 0.59 inches high. The annular cavity being larger than the bearings 16 allows for some space between the bearings 16 and the walls of the annular cavity. The bearings 16 can rotate freely within the cavity, encouraging the rotation of a flag 11 about a flagpole 13.
(13) Referring now to
(14) When assembled, the first radially extending circumferential lip 24 and the second radially extending circumferential lip 32 retain the bearings in the races 12, 14. The plurality of roller bearings 16 reside within the annular cavity between the races 12, 14. A proximal end of the bearings 16 is closely spaced with respect to the second radially extending circumferential lip 32 and a distal end is closely spaced with respect to the first radially extending circumferential lip 24. Therefore, the roller bearings 16 are held in place between the first lip 24 and the second lip 32.
(15) Referring to
(16) Additionally, the first and second holes 36, 38 are used for attaching the flag anti-wrapping device 10 to a flagpole 13. To attach the device 10 to a flagpole 13, first, the holes 36, 38 are aligned. Then, the inner race 12 and cap 18 are attached through a friction fit or an adhesive. Finally, a set screw, not shown, is threaded through the holes 36, 38 and holds the device 10 to the flagpole 13. One or both of the holes 36, 38 can be threaded to hold the set screw in place. Therefore, the first and second holes 36, 38 attach the inner race 12 and cap 18 together to make the device 10 unitary, as well, as attach the device 10 to a flagpole 13, as shown in
(17) The device 10 can be made of any suitable material, such as metal or plastic. A preferred method for making the features of the flag anti-wrapping device 10 is through injection molding and 3D-printing. Each feature can be 3D-printed separately and then assembled and attached as described above. For example, 3D printing or injection molding would allow for the outer race 14 and the means for attaching 27 to be a single, unitary structure. However, other methods for manufacturing, including, but not limited to, casting and blow molding can also be used. Welding, adhesives, or fasteners may also be for attaching features together.
(18) Referring to
(19) Those of ordinary skill in the art will conceive of other alternate embodiments of the invention upon reviewing this disclosure. Thus, the invention is not to be limited to the above description but is to be determined in scope by the claims which follow.