Self-tensioning magnetic tracks and track assemblies
11530573 · 2022-12-20
Assignee
Inventors
Cpc classification
International classification
E06B9/06
FIXED CONSTRUCTIONS
Abstract
A magnetic track assembly including an elongate channel having an open side, an end wall, and two parallel side walls; a first magnet disposed within the elongate channel near an interior side of the end wall; a compartment defined within the elongate channel spaced from the first magnet; and a screen receiver disposed within the compartment and including a second magnet arranged facing the first magnet. In the magnetic track assembly, the first and second magnets are of opposite polarity and the screen receiver is loosely disposed within the compartment such that a magnetic bond is intact between the first and second magnets when the first and second magnets are close together and the magnetic bond is broken when the first and second magnets are pulled apart.
Claims
1. A motorized retractable screen system, comprising: a screen; the screen extending a width between a first side and a second side; the screen extending a length between an upper end and a lower end; wherein the screen is deployed and retracted between an open position and a closed position; an interlock connected to the first side of the screen; a first magnetic track assembly positioned adjacent the first side of the screen; the first magnetic track assembly having a first elongate channel; the first elongate channel having an end wall and a pair of opposing sidewalls and an open side; the first elongate channel having a first magnetic component; the first magnetic track assembly having a first screen receiver; the first screen receiver having a second magnetic component; the first screen receiver having a first channel; wherein the first magnetic component of the first elongate channel and the second magnetic component of the first screen receiver form a magnetic bond; wherein when the screen is deployed and retracted, the interlock of the first side of the screen slides within the first channel of the first screen receiver; wherein the magnetic bond between the first magnetic component of the first elongate channel and second magnetic component of the first screen receiver pulls the first screen receiver toward the end wall of the first elongate channel; wherein when a force is applied to the screen attached to the first screen receiver the first magnetic component of the first elongate channel and second magnetic component of the first screen receiver allows the first screen receiver to move away from the end wall of the first elongate channel; wherein a magnetic attraction between the first magnetic component of the first elongate channel and the second magnetic component of the first screen receiver forms a self-tensioning screen system; and wherein the screen receiver is capable of being rotated within the first elongate channel relative to the pair of opposing sidewalls.
2. The system of claim 1, wherein a width of the first screen receiver allows the first screen receiver to be inserted at an angle through the open side of the first elongate channel.
3. The system of claim 1, wherein one of the first magnetic component and the second magnetic component is a magnet.
4. The system of claim 1, wherein the first screen receiver is free floating within the first elongate channel such that the first screen receiver is movable in a direction toward the end wall, is movable in a direction away from the end wall, and is capable of pivoting within the first elongate channel relative to one of the opposing sidewalls.
5. The system of claim 1, wherein the first magnetic component and second magnetic component are magnets and are aligned with opposing polarities such that the first magnetic component and second magnetic component attract toward one another.
6. The system of claim 1, wherein the interlock of the first side of the screen is a keder interlock.
7. The system of claim 1, wherein the interlock of the first side of the screen is a zipper interlock.
8. The system of claim 1, wherein the interlock of the first side of the screen is a rope.
9. The system of claim 1, wherein the interlock of the first side of the screen is a beaded chain.
10. The system of claim 1, wherein the interlock of the first side of the screen, when viewed from above is generally cylindrical in shape.
11. The system of claim 1, wherein when the force is removed from the screen the first magnetic component of the first elongate channel and second magnetic component of the first screen receiver pulls the first screen receiver toward the end wall of the first elongate channel thereby self-tensioning the screen.
12. The system of claim 1, wherein the first screen receiver is positioned within a compartment of the first elongate channel, wherein the compartment includes at least one stop feature, wherein the at least one stop feature is configured to stop the first screen receiver from coming out of the compartment when a force is applied to the screen.
13. The system of claim 1, wherein the first screen receiver is positioned within a compartment of the first elongate channel, wherein the compartment is defined by interior partition walls that extend inward from their respective one of the pair of opposing sidewalls, and wherein each of the partition walls extend inward a distance.
14. The system, of claim 1, further comprising: an interlock connected to the second side of the screen; a second magnetic track assembly positioned adjacent the second side of the screen; the second magnetic track assembly having a second elongate channel; the second elongate channel having an end wall and a pair of opposing sidewalls and an open side; the second elongate channel having a third magnetic component; the second magnetic track assembly having a second screen receiver; the second screen receiver having a fourth magnetic component; the second screen receiver having a second channel; wherein the third magnetic component of the second elongate channel and the fourth magnetic component of the second screen receiver form a magnetic bond; wherein when the screen is deployed and retracted, the interlock of the second side of the screen slides within the channel of the second screen receiver; wherein the magnetic bond between the third magnetic component of the second elongate channel and fourth magnetic component of the second screen receiver pulls the second screen receiver toward the end wall of the second elongate channel; wherein when the force is applied to the screen attached to the second screen receiver the third magnetic component of the second elongate channel and fourth magnetic component of the second screen receiver allows the second screen receiver to move away from the end wall of the second elongate channel; wherein the magnetic attraction of the third magnetic component of the second elongate channel and the fourth magnetic component of the second screen receiver forms a self-tensioning screen system.
15. A magnetic track assembly system, comprising: an elongate channel; the elongate channel having an open side, an end wall, and a pair of sidewalls; a first magnetic component disposed within the elongate channel near an interior side of the end wall; a compartment defined within the elongate channel spaced from the first magnetic component; a screen receiver; the screen receiver disposed within the compartment; the screen receiver including a second magnetic component aligned with the first magnetic component; wherein when the screen receiver is disposed within the compartment a magnetic bond is formed between the first magnetic component and the second magnetic component; wherein the magnetic bond between the first magnetic component and the second magnetic component pulls the screen receiver toward the end wall of the elongate channel; wherein when a force is applied to a screen attached to the screen receiver the magnetic bond between the first magnetic component and second magnetic component allows the screen receiver to move away from the end wall of the elongate channel; wherein a magnetic attraction between the first magnetic component of the elongate channel and the second magnetic component of the screen receiver forms a self-tensioning screen system; and wherein the screen receiver is capable of being rotated within the elongate channel relative to one of the pair of sidewalls.
16. The system of claim 15, wherein a width of the first screen receiver allows the first screen receiver to be inserted at an angle through the open side of the first elongate channel.
17. The system of claim 15, wherein one of the first magnetic component and the second magnetic component is a magnet.
18. The system of claim 15, wherein the screen receiver is free floating within the elongate channel.
19. The system of claim 15, wherein the first magnetic component and second magnetic component are magnets and are aligned with opposing polarities such that the first magnetic component and second magnetic component attract toward one another.
20. The system of claim 15, wherein the compartment includes at least one stop feature, wherein the at least one stop feature is configured to stop the screen receiver from coming out of the compartment when a force is applied to the screen.
21. The system of claim 15, wherein the compartment is defined by interior partition walls that extend inward from their respective one of the pair of sidewalls.
22. A magnetic track assembly system, comprising: an elongate channel; the elongate channel having an open side, an end wall, and a pair of sidewalls; a compartment defined within the elongate channel; wherein the compartment includes at least one stop feature; a first magnetic component positioned within the elongate channel; a screen receiver; wherein the screen receiver includes a main body; wherein the main body has a channel configured to connect to an interlock of a screen; wherein the screen receiver has a second magnetic component operably connected to the main body; wherein the screen receiver has a pair of arms; wherein the pair of arms extend outward from opposing sides of the main body toward the pair of sidewalls of the elongate channel; wherein the pair of arms of the screen receiver are configured to engage the at least one stop feature to prevent the screen receiver from coming out of the compartment when a force is applied to the screen, wherein when the screen receiver is disposed within the compartment a magnetic bond is formed between the first magnetic component and the second magnetic component; and wherein the screen receiver is capable of being rotated within the elongate channel relative to one of the pair of sidewalls.
23. The system of claim 22, wherein the screen receiver is capable of being inserted at an angle through the open side of the elongate channel.
24. The system of claim 22, wherein one of the first magnetic component and the second magnetic component is a magnet.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) These and other features, aspects and advantages of the present invention are better understood when the following detailed description of the invention is read with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION
(11) The present invention will now be described more fully hereinafter with reference to the accompanying drawings in which exemplary embodiments of the invention are shown. However, the invention may be embodied in many different forms and should not be construed as limited to the representative embodiments set forth herein, The exemplary embodiments are provided so that this disclosure will be both thorough and complete, and will fully convey the scope of the invention and enable one of ordinary skill in the art to make, use and practice the invention. Like reference numbers refer to like elements throughout the various drawings.
(12) Disclosed are magnetic tracks and track assemblies that utilize a novel magnet arrangement in the track assemblies that allow magnets to separate thereby allowing an attached screen to expand while under high wind pressure, and after the high wind pressure subsides, magnetic attraction of these separated magnets pulls the separated magnets into close proximity relative to one another thereby tensioning the attached screen to provide an aesthetically pleasing, tight screen. Thus, the novel magnet arrangement of the disclosed magnetic tracks/track assemblies provide a “self-tensioning” system that operates effectively while accounting for fluctuations in weather conditions that advantageously ensures increased screen and track assembly lifespan while currently reducing frequent maintenance (and/or replacement) associated with currently marketed screens, track/track assemblies, or a combination thereof.
(13) Exemplary magnetic tracks/track assemblies 100 are depicted, for example, in
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(15) As further shown in
(16) For example and as shown in
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(18) As shown in
(19) Next and as further shown in
(20) As further shown in
(21) However, as shown in
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(24) The screen receiver 110, the elongate channel 140, elongate cover 170, and/or top cover 181 (and bottom cover) may be formed of metal, a thermoplastic resin, or a combination thereof. For example, in certain aspects, the screen receiver 110, the elongate channel 140, elongate cover 170, and/or top cover 181 (and bottom cover) may be formed of a molded thermoplastic/thermoplastic resin sufficient to withstand harsh weather conditions and the movements disclosed herein.
(25) It should be further noted that the screen receiver 110 disclosed herein may be adapted to receive a screen keder through, for example, a C-shaped channel 111. However, the screen receiver 110 may have any desired predetermined shape (e.g., triangular, square, rectangular shape) that can receive screen 200 there through. As alluded to above, the screen receiver 110 may be adapted to receive a zipper interlock, a rope, a beaded chain, or any similar interlock known in the art associated with the disclosed retractable screens.
(26) The foregoing description provides embodiments of the invention by way of example only. It is envisioned that other embodiments may perform similar functions and/or achieve similar results. Any and all such equivalent embodiments and examples are within the scope of the present invention and are intended to be covered by the appended claims.