Double action nose mount quattro stanchion
11659929 · 2023-05-30
Assignee
Inventors
- James Paradis (West Newfield, ME, US)
- John Fisher (Yarmouth, ME, US)
- Paul-Jacob Michael Richmond (Biddeford, ME, US)
Cpc classification
International classification
E04H3/12
FIXED CONSTRUCTIONS
Abstract
A double action seating unit to be mounted to a nose of a platform is described. The double action seating unit includes a seat assembly, a back assembly and at least two stanchion. Each stanchion has a front bracket, a rear bracket, a stanchion tube and two pivot straps. The front bracket attaches the seat portion to the stanchion, the rear bracket attaches the stanchion to the nose of the platform and the stanchion tube attaches the back assembly to the stanchion. Each pivot strap connects an associated stanchion tube, the rear bracket and the front bracket. The double action seating unit can move between a use configuration and a storage configuration. The two pivot straps cause the seat assembly and the back assembly to simultaneously rotate when the double action seating unit moves between the use configuration and the storage configuration.
Claims
1. A stanchion assembly for use in a double action seating unit having a seat back assembly and a seat bottom assembly, the stanchion assembly comprising: a rear bracket; a stanchion tube, pivotably mounted to the rear bracket at a first pivot point, and configured to attach to the seat back assembly; a front bracket, pivotably mounted to the rear bracket at a second pivot point, and configured to attach to the seat bottom assembly; and first and second pivot straps, coupled to the stanchion tube and to the front bracket, whereby upon rotating the stanchion tube in a first direction about the first pivot point, the first and second pivot straps cause the front bracket to rotate around the second pivot point in a second direction that is opposite to the first direction.
2. The stanchion assembly of claim 1, wherein the first and second pivot straps are pivotally attached to the stanchion tube by a first pin passing through the first and second pivot straps and the stanchion tube, and wherein the first and second pivot straps are further pivotably attached to the front bracket by a second pin passing through the pivot strap and the front bracket.
3. The stanchion assembly of claim 2, wherein the rear bracket further includes first and second side plates, and wherein the stanchion tube further includes a stanchion tube center plate disposed between the first and second side plates of the rear bracket, and wherein the first pin passes through the first and second pivot straps and a hole in the stanchion tube center plate.
4. The stanchion assembly tube of claim 3 wherein the first and second side plates include first and second curved slots, respectively, and wherein the first pin also passes through said first and second curved slots.
5. The stanchion tube of claim 4 wherein the first and second curved slots are arcuate slots that arc around the first pivot point.
6. The stanchion tube of claim 2 wherein said first pin passes through said first and second pivot straps and the stanchion tube, and wherein the second pin passes through said first and second pivot straps and the front bracket.
7. A double action seating unit to be mounted to a nose of a platform, wherein the double action seating unit is configured to move between a use configuration and a storage configuration, the double action seating unit comprising: a seat bottom assembly; a seat back assembly; and at least two stanchions, each of said at least two stanchions including a front bracket, a rear bracket, a stanchion tube and two pivot straps, wherein each front bracket is pivotably attached to a respective rear bracket at a front bracket pivot point and is configured to attach to the seat bottom assembly, wherein the rear bracket of each of said at least two stanchions is configured to attach the respective stanchion to the nose of the platform, wherein each stanchion tube is pivotably attached to a respective rear bracket at a stanchion tube pivot point and is configured to attach to the seat back assembly, wherein each of the two pivot straps is configured to connect an associated stanchion tube coupled to an associated rear bracket with an associated front bracket coupled to the associated rear bracket, and wherein the two pivot straps of each of said at least two stanchions are further configured to simultaneously move the seat bottom assembly and the seat back assembly when the double action seating unit moves between the use configuration and the storage configuration, wherein the stanchion tube is configured to rotate about the stanchion tube pivot point in a first direction such that the seat back assembly is pivoted backwards and downwards towards a storage configuration while simultaneously the two pivot straps push the front bracket causing the front bracket to rotate about the front bracket pivot point in a second direction, opposite from said first direction, whereby rotating the stanchion tube in said first direction about the stanchion tube pivot point is configured to pivot the seat bottom assembly forwards and downwards towards a storage configuration, and wherein the stanchion tube is configured to rotate about the stanchion tube pivot point in a second direction such that the seat back assembly is pivoted forwards and upwards towards a use configuration while simultaneously the two pivot straps pull the front bracket causing the front bracket to rotate about the front bracket pivot point in the first direction, opposite from said second direction, whereby rotating the stanchion tube in said second direction about the stanchion tube pivot point is configured to pivot the seat bottom assembly backwards and upwards towards said use configuration.
8. A seating system comprising a plurality of the double action seating units of claim.
9. The seating system of claim 8, wherein the seating system includes a top row of seats and at least one lower row of seats.
10. The seating system of claim 9, wherein the top row of seats comprise the plurality of double action seating units.
11. The seating system of claim 10, wherein the at least one lower row of seats comprises a plurality of single action seating units.
12. The double action seating unit of claim 7, further comprising at least one armrest.
13. The double action seating unit of claim 12, wherein the stanchion tube of at least one of the at least two stanchions is further configured to attach the seat back assembly and the at least one armrest to the at least one of the at least two stanchions.
14. The double action seating unit of claim 7, wherein the rear bracket includes first and second side plates including curved slots.
15. The double action seating unit of claim 14, further comprising a pivot point for the stanchion tube, and wherein the curved slots of the first and second side plates are around the pivot point for the stanchion tube.
16. The double action seating unit of claim 15, further comprising a pin that goes through a hole in the two pivot straps, the curved slots and a hole in the stanchion tube.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) Aspects of the described embodiments are more evident in the following description, when read in conjunction with the attached Figures.
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DETAILED DESCRIPTION OF THE INVENTION
(14) This patent application claims priority from US Provisional Patent Application No. 62/896,667, filed Sep. 6, 2019, the disclosure of which is incorporated by reference herein in its entirety.
(15) Various embodiments of the present invention provide a “double action nose mounted stanchion” which serves to allow the seat 107 and mounting brackets 112 to fold forward and downwardly simultaneously with the standard operation of the chair back 106 being moved backwardly and downward, as will be explained below. This allows the entire telescopic platform 102 to slide underneath a balcony 101 or other tight spaces when installed on the top tier of seating. This ensures that the closed dimension of the unit is as small as possible. The design could be used on other tiers, however, the embodiments are discussed with respect to the top tier scenario.
(16) These embodiments can be used in all folding and telescopic seating structures 102 that recess under a balcony 101 or fit within a tight space that utilize a nose mounted chair 103 on the topmost row of the seating structure. These systems are typically installed in school gymnasiums, theaters, arenas or stadiums, but not limited to these venues. An example includes Hussey Seating Company's MXP product line. There are numerous other manufacturers of telescopic seating structures.
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(19) With a standard prior art nose mounted stanchion 108, only the stanchion tube 110 will rotate. This means that the seat 107 will stay fixed and this will cause it to be the highest component of the seating assembly on the platform 102 when installed on the last tier of the unit as shown in
(20) With the double action nose mount stanchion 113 according to the present invention, the operation of the stanchion, the back pitch, seat height, and installation method are all held constant. However, with this design the seat assembly 107 rotates forward and downward while the back assembly 106 is being rotated backward and downward to the stored position. To achieve this, the nose mount stanchion 108 is separated into four components: the front bracket 114,
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(22) With these three components (front bracket 114, rear bracket 115 and stanchion tube 110) of the double action stanchion 113 linked together by the fourth component (a set of two pivot straps 116), the double action stanchion 113 causes both the stanchion tube 110 and front bracket 114 to rotate together simultaneously as seen in
(23) To bring the chairs back to the used position, the back assemblies 106 must be rotated forward and upward as is standard with a nose mounted chair. As the pin 118 travels back through the arcuate slot 121 in the rear bracket 115, it pulls on the pivot straps 116 thus pulling the front bracket 114 and seat bottom assembly 107 upward and back into the used position.
(24) The exact geometry of the pivot straps 116, rear bracket 115 and front bracket 114 may depend on the given rise that the chair is being installed on. Splitting the chair or seat mounting brackets 112 into two components (a front 114 and rear bracket 115) keeps the same overall dimensions and can be applied to any rise stanchion to make the chair unit into a double action stanchion 113 by providing the arcuate slots 121, straps 116 and pivot pins according to the present invention described herein.
(25) The foregoing description has been directed to particular embodiments. However, other variations and modifications may be made to the described embodiments, with the attainment of some or all of their advantages. Modifications to the above-described systems and methods may be made without departing from the concepts disclosed herein. Accordingly, the invention should not be viewed as limited by the disclosed embodiments. Furthermore, various features of the described embodiments may be used without the corresponding use of other features. Thus, this description should be read as merely illustrative of various principles, and not in limitation of the invention.