Anodized light emitting wheel hub
20210268367 · 2021-09-02
Inventors
Cpc classification
A63C17/26
HUMAN NECESSITIES
F21V33/0004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V33/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2121/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62B9/005
PERFORMING OPERATIONS; TRANSPORTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A63C17/226
HUMAN NECESSITIES
F21V23/001
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62B2301/25
PERFORMING OPERATIONS; TRANSPORTING
B62B9/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
A63C17/26
HUMAN NECESSITIES
B62B9/00
PERFORMING OPERATIONS; TRANSPORTING
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An aluminum or aluminum alloy wheel hub having at least one display opening for electrically operated display device and at least one interior channel anodized to a sufficient electrically insulative thickness, the channel is dimensioned to receive at least one electrically conductive element of a compact generator. The display device can be a LED device. The wheel hub is especially suited for roller skate, in-line skate, and skate board wheels.
Claims
1. An aluminum or aluminum alloy wheel hub having at least one display opening for electrically operated display device and at least one interior channel anodized to a sufficient electrically insulative thickness, said channel dimensioned to receive at least one electrically conductive element, said channel extends into said opening from an interior space in said hub.
2. The wheel hub of claim 1, wherein said interior space comprises a space dimensioned to receive a compact generator for generating electricity positioned in said wheel hub.
3. The wheel hub of claim 1, wherein said interior space comprises a space dimensioned by an annular shoulder means dimensioned to receive and retain a compact generator for generating electricity positioned in said wheel hub.
4. The wheel hub of claim 1, wherein said interior space comprises a space defined by an annular shoulder dimensioned to receive and retain an armature assembly of a compact generator.
5. The wheel hub of claim 1, further comprising means for holding and retaining said electrically operated display device positioned in said at least one display opening.
6. The wheel of claim 5, wherein means for holding and retaining said electrically operated display device comprises shoulder means for holding and retaining said electrically operated device.
7. The wheel hub of claim 1, wherein said at least one interior channel comprises at least a first and a second interior anodized electrically channels anodized to sufficiently electrically insulative thickness extending into said display opening.
8. The wheel hub of claim 7, wherein said interior channels are offset from one another.
9. The wheel hub of claims 1, 7 and 8, wherein the wheel hub comprises two mating panels.
10. The wheel hub of claim 9, wherein one of said first and second channels is positioned on an interior surface of one of said mating panel and another one of said first and second channels is positioned in an interior surface of the other mating panel.
11. An aluminum or aluminum alloy wheel hub comprising a front panel having an exterior surface and an interior surface and rear panel having an exterior and an interior surfaces, said hub having at least one display opening for electrically operated display device, at least one interior channel in at least one of said front panel or rear interior surfaces anodized to a sufficient electrically insulative thickness, said channel dimensioned to receive at least one electrically conductive element, said channel extends into said opening from an interior space in said hub.
12. The wheel hub of claim 11, wherein said interior space comprises a space dimensioned by an annular shoulder means dimensioned to receive and retain a compact electric generator for generating electricity positioned in said wheel hub.
13. The wheel hub of claim 11, wherein said interior space comprises a space defined by an annular shoulder dimensioned to receive and retain an armature assembly of a compact generator.
14. The wheel hub of claim 11, further comprising means for holding and retaining said electrically operated display device positioned in said at least one display opening.
15. The wheel of claim 14, wherein means for holding and retaining said electrically operated display device comprises shoulder means for holding and retaining said electrically operated device.
16. The wheel hub of claim 11, wherein said at least one interior channel comprises at least a first and a second interior anodized channels anodized to sufficiently electrically insulative thickness extending into said display opening.
17. The wheel hub of claim 16 wherein said channels are offset from one another.
18. The wheel hub of claims 16, and 17, wherein one channel of said at least first and second interior anodized channels is positioned in one of said front panel and other interior anodized channel is positioned in the rear panel.
19. The wheel hub of claim 11, wherein said display opening is positioned in an outer rim of said hub.
20. A light emitting aluminum or aluminum alloy wheel hub and armature assembly for generating electricity having at least one display opening containing an electrically operated light emitting device, electrically conductive element means for electrically connecting said device to said armature assembly positioned in said wheel hub through at least one interior channel anodized to a sufficient electrically insulative thickness and dimensioned to receive said at least one electrically conductive element means, said channel extends into said opening from an interior space holding said armature in said hub.
21. The wheel hub of claim 20, wherein said wheel hub comprises 2 panels having said least interior channel anodized to a sufficient electrically insulative.
22. The wheel hub of claim 21, wherein said light emitting device is a LED.
23. The wheel hub of claim 20, wherein said display device is positioned in an outer rim of said wheel hub.
24. The wheel hub of claim 20, wherein said electrically conductive element comprises bare electrically conductive arms of said armature.
25. The wheel hub of claim 20, wherein said at least one interior channel comprises at least a first and a second interior anodized channels anodized to sufficiently electrically insulative thickness extending into said display opening.
26. The wheel hub of claim 25, wherein said interior channels are offset from one another.
27. The wheel hub of claims 20, and 26, wherein said wheel hub comprises two separate individual mating panels.
28. The wheel hub of claim 20, wherein said wheel hub has a rotatable permanent magnet assembly positioned in said wheel hub to generate electricity.
29. The wheel hub of claim 28, wherein wheel bearings are positioned in said hub to receive a wheel axle,
30. The wheel hub of claim 1, 11 or 20, wherein said wheel hub is positioned in at least one wheel of an apparatus selected from the group consisting of stroller, roller skate, in-line skate, aggressive skate, skate board, or wheel chair wheel.
31. A process of making the wheel hub of claim 1, 11 or 20, comprising, casting or machining aluminum or aluminum alloy to form said wheel hub; anodizing said wheel hub to a thickness sufficient to make said wheel hub electrically insulative.
32. The process of claim 31, further comprising inserting a compact electrical generator into operative position in said wheel hub.
33. The process of claim 32, further comprising positioning a light emitting device in a rim of said wheel hub in electrical contact with said compact generator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0024] The present invention utilizes wheel hub 10 of aluminum or aluminum alloy that has been anodized to sufficient thickness, up to 2 to 2.5 mils (see for example Mil-A-8625 Type III hard anodic coating) to make it electrically insulative to prevent short circuiting electric devices contained in the wheel hub. The wheel hub comprises 2 panels, 22 and 23, each of which are anodized. The panels are secured together for example by using screws passing through or threaded through screw holes 1,2, and 38-43, 45, 47-51. Diameters of screw holes 38 and 39 in front panel and screw holes 45 and 47 in rear panel 23 are shown prior to assembling and are a smaller diameter than screw holes 2 in rear panel 23 and front panel 22, respectively because screws passing through the smaller diameter holes will screw in tighter. Other known means can be used to secure the two panels together. The wheel hubs panels have annular shoulders 26 and 27 for retaining ring type armature assembly 3 and channels 28 and 29 extending from the inner space holding the armature assembly.
[0025] In one preferred embodiment, channels 28 and 29 of panel 22 are offset from and do not mate with channels 34 and 35 of rear panel 23. The offset can be seen in the position of armature arms 6 and 7 in
[0026] The display opening or recess in the outer rim of the wheel hub is covered by transparent or translucent caps 53 and 54 that seals the light emitting devices in the display opening as shown for example in
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[0028] The present wheel hub can be used for small diameter wheels, e.g., 40 mm and larger diameter wheels to 145 mm or more. The inventive wheel hub can be used in strollers, roller skates, in-line roller skates, skate boards and aggressive skate wheels. It can also be used in large diameter wheels for wheel chairs. It is understood various modifications and variations of the present invention such as material of construction, arrangement of light emitting devices, electrical and magnetic materials and elements are within the purview of the present invention.