Fasteners for use in display structures
09955600 ยท 2018-04-24
Assignee
Inventors
Cpc classification
F16B2/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16B21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fastener is disclosed for use in a display structure that includes a bracket defining a detent, a pin that is rotatably received by the bracket, and a latch, e.g., a helical spring, that is in engagement with the pin such that rotation of the pin causes corresponding rotation of the latch. The latch is configured, dimensioned, and positioned for engagement with the detent during movement of the fastener between first (unlocked) and second (locked) positions. During movement of the fastener between the first and second positions, the latch traverses the detent to provide a perceptible indication, e.g., an audible and/or tactile indication, that the fastener has been moved between the first and second positions.
Claims
1. A fastener for use in a display structure, the fastener comprising: a bracket including a first mounting surface, a second mounting surface, and a bridge, wherein the bridge connects the first mounting surface and the second mounting surface, wherein the first mounting surface opposes the second mounting surface, wherein the bridge and the second mounting surface define an L-shape, wherein the second mounting surface defining a detent projecting from the second mounting surface in a direction away from the first mounting surface; a pin having a longitudinal axis and rotatably received by the bracket such that the pin is rotatably mounted on the bracket and such that the longitudinal axis is perpendicular to the second mounting surface and such that the direction and the longitudinal axis are parallel; and a latch in engagement with the pin such that a rotation of the pin causes a corresponding rotation of the latch, wherein the latch is configured, dimensioned, and positioned for engagement with the detent during a movement of the latch between first and second positions, wherein the latch traversing the detent during the movement of the latch between the first and second positions to provide a perceptible indication that the latch has been moved between the first and second positions.
2. The fastener of claim 1, wherein the latch and the detent are configured and dimensioned to provide an audible indication of the movement of the latch between the first and second positions.
3. The fastener of claim 1, wherein the latch and the detent are configured and dimensioned to provide a tactile indication of the movement of the latch between the first and second positions.
4. The fastener of claim 1, wherein the pin is rotatable within the bracket about an axis of rotation, wherein the pin including a hole extending transversely in relation to the axis of rotation, wherein the hole is configured and dimensioned to receive a portion of the latch.
5. The fastener of claim 4, wherein the latch includes a first end portion, a second end portion, and an intermediate portion connecting the first and second end portions, wherein the intermediate portion is helical in configuration, wherein the first end portion is opposite the second end portion.
6. The fastener of claim 5, wherein the hole in the pin is configured and dimensioned to receive the first end portion of the latch.
7. The fastener of claim 6, wherein the first end portion of the latch is linear in configuration.
8. The fastener of claim 1, wherein the pin includes a rotation means configured and dimensioned to facilitate the rotation of the pin in relation to the bracket.
9. The fastener of claim 8, wherein the rotation means includes a head configured and dimensioned for engagement with a rotation tool.
10. The fastener of claim 9, wherein the head defines a shoulder configured and dimensioned for engagement with the bracket.
11. The fastener of claim 9, wherein the head includes a structure facilitating an engagement with the rotation tool, wherein the structure is selected from a group consisting of: a slot, a pair of intersecting slots, and a polygonal recess.
12. The fastener of claim 11, wherein the structure is the slot, wherein the slot is linear in configuration.
13. The fastener of claim 11, wherein the structure is the pair of intersecting slots, wherein the pair of intersecting slots are each linear in configuration.
14. The fastener of claim 11, wherein the pin further includes a shaft extending from the head, the shaft defining a transverse cross-sectional dimension less than that defined by the head.
15. The fastener of claim 14, wherein the structure is a first structure, wherein the rotation means includes a second structure formed in the shaft, wherein the second structure is selected from a group consisting of: a slot, a pair of intersecting slots, and a polygonal recess.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(13) In the following detailed description, reference is made to the accompanying drawings, which depict non-limiting, illustrative examples of various embodiments of the present disclosure. Other embodiments may be derived, and logical structural and mechanical changes may be made without departing from the scope of the present disclosure. To avoid unnecessary detail, the following description may omit certain information, items, or details known to those skilled in the art.
(14) Throughout the present disclosure, the terms front, rear, clockwise, and counterclockwise are used herein in a relative capacity, and are intended to be interpreted in accordance with the perspective shown in the corresponding figure(s).
(15) The present disclosure relates to fasteners, supporting structures, and methodologies for connecting together the components of a display structure, and provides a number of benefits over those which are known in the art. For example, the fasteners, supporting structures, and methodologies described herein are not only inexpensive to manufacture, but simple to use, and provide feedback to the technician, e.g., tactile and/or audible feedback, indicating the position of the fasteners.
(16) With reference to
(17) The cabinet 100 is braced by one or more vertical supports V (
(18) In the embodiment of the disclosure illustrated in
(19) The module panel 104 includes a plurality of receptacles 106 that are defined by a series of horizontal and vertical struts 108, each of which is configured and dimensioned to accommodate a module 200. For example, the number of modules 200 supported by the cabinet 100 may be upwards of one thousand, or more.
(20) In one embodiment of the disclosure, each module 200 includes a printed circuit board having a plurality of LEDs, arranged in a particular configuration, that are physically and electrically secured thereto such that the LEDs extend outwardly from a front surface F of the module 200 to create a display, e.g., an alphanumeric display or other graphic image. Although described in connection with LEDs through the present disclosure, the modules 200 may be utilized in connection with various technologies, e.g., liquid crystal displays (LCD), incandescent displays, etc.
(21) With reference now to
(22) The fasteners 300 are secured to rear surfaces R (
(23) The fasteners 300 releasably connect the modules 200 to the cabinet 100 via the module panel 104, and each include a bracket 302, a pin 304 that is received by the bracket 302, and a latch 306.
(24) Each bracket 302 includes a first (front) mounting surface 310, a second (rear) mounting surface 312, and a bridge 314 that connects the mounting surfaces 310, 312. The first mounting surface 310 includes one or more through holes 316 that are configured and dimensioned to receive the attachment member(s) 308 (
(25) The second mounting surface 312 includes a bore 320 in axial alignment with the bore 318 formed in the first mounting surface 310 that is also configured and dimensioned to receive the pin 304 such that, upon assembly of the fasteners 300, the pin 304 is received by each of the bores 318, 320. The bores 318, 320 are machined so as to permit rotation of the pin 304 within the bores 318, 320 about an axis of rotation X (
(26) The pin 304 connects the bracket 302 and the latch 306, and includes a base 324, and a shaft 326 that extends from the base 324.
(27) The base 324 defines an outer transverse cross-sectional dimension, e.g., a diameter, D1 (
(28) The shaft 326 of the pin 304 defines a through bore 334 (
(29) The shaft 326 further includes structure 336 (
(30) With continued reference to
(31) The second end portion 348 of the latch 306 is also configured and dimensioned for engagement with the shaft 326 of the pin 304. For example, as illustrated in
(32) The intermediate portion of the latch 306 extends between the end portions 346, 348 of the latch 306, and is generally arcuate. For example, as seen in
(33) The latch 306 may define a transverse cross-sectional dimension, e.g., a diameter, that is either constant along the length of the latch 306, as seen in
(34) With reference now to
(35) After positioning of the module 200 in relation to the module panel 104, the tool T (
(36) During movement from the initial (unlocked) position to the subsequent (locked) position, the latch 306 rotates concomitantly with the pin 304, whereby the latch 306 is caused to pass behind the module panel 104. As rotation of the latch 306 continues, due to the helical configuration of the latch 306, the distance between the latch 306 and the module panel 104 is decreased until the latch 306 ultimately engages the module panel 104. Thereafter, continued rotation of the latch 306 urges the module panel 104 inwardly, i.e., towards the module 200, and causes the latch 306 to engage the detent 322 (
(37) As the latch 306 passes the detent 322, the biasing forces created in the latch 306 and the second (rear) mounting surface 312 return the latch 306 and the second (rear) mounting surface 312 to their normal, undeflected positions, and the force required to continue rotation of the latch 306 is reduced, providing the technician with not only a perceptible, tactile indication that the latch 306 has traversed the detent 322, but an audible indication as well in the form of a click.
(38) After traversal of the detent 322 by the latch 306, the latch 306 acts to resist unintended counterclockwise rotation (unlocking) of the latch 306 such that the module panel 104 remains locked and secured in place between the module panel 200 and the latch 306, as seen in
(39) To disengage the fasteners 300 from the module panel 104, and thus permit removal of the module 200 from the cabinet 100, the fasteners 300 are moved from the subsequent (locked) position to the initial (unlocked) position by reversing the process. Specifically, the tool T (
(40) In addition to being manipulable from the front surface F (
(41) While the present disclosure has been described in connection with specific, illustrative embodiments, it should be understood that the subject matter of the present disclosure is capable of further modifications. For example, persons skilled in the art will understand that additional components and features may be added to any of the embodiments discussed herein above, and that those elements and features described in connection with any one embodiment may also be applicable to, or combined with, those of any other embodiment without departing from the scope of the present disclosure.
(42) The scope of the present disclosure is intended to cover any variations, uses, and/or adaptations of the presently disclosed subject matter in accordance with the principles of the present disclosure, including such departures that may be customary practice within the art to which the present disclosure pertains.